SlideShare ist ein Scribd-Unternehmen logo
1 von 5
Downloaden Sie, um offline zu lesen
Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce,
Camp, Pune-01, Maharashtra Page 1
Pattern Formation in Drosophila
The anterior-posterior polarity of the embryo, larva, and adult has its origin in the
anterior-posterior polarity of the egg. The maternal effect genes expressed in the
mother's ovaries produce messenger RNAs that are placed in different regions of
the egg. These messages encode transcriptional and translational regulatory
proteins that diffuse through the syncytial blastoderm and activate or repress the
expression of certain zygotic genes. Two of these
proteins, Bicoid and Hunchback, regulate the production of anterior structures,
while another pair of maternally specified proteins, Nanos and Caudal, regulates
the formation of the posterior parts of the embryo. Next, the zygotic genes
regulated by these maternal factors are expressed in certain broad (about three
segments wide), partially overlapping domains. These genes are called gap
genes (because mutations in them cause gaps in the segmentation pattern), and
they are among the first genes transcribed in the embryo. Differing concentrations
of the gap gene proteins cause the transcription of pair-rule genes, which divide
the embryo into periodic units. The transcription of the different pair-rule genes
results in a striped pattern of seven vertical bands perpendicular to the anterior-
posterior axis. The pair-rule gene proteins activate the transcription of the segment
polarity genes, whose mRNA and protein products divide the embryo into 14
segment-wide units, establishing the periodicity of the embryo. At the same time,
the protein products of the gap, pair-rule, and segment polarity genes interact to
regulate another class of genes, the homeotic selector genes, whose transcription
determines the developmental fate of each segment.
Embryological evidence of polarity regulation by oocyte cytoplasm
There are at least two “organizing centers” in the insect egg, one in the anterior of
the egg and one in the posterior. For instance, Klaus Sander (1975) found that if he
ligated the egg early in development, separating the anterior from the posterior
region, one half developed into an anterior embryo and one half developed into a
Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce,
Camp, Pune-01, Maharashtra Page 2
posterior embryo, but neither half contained the middle segments of the embryo.
The later in development the ligature was made, the fewer middle segments were
missing. Thus, it appeared that there were indeed gradients emanating from the two
poles during cleavage, and that these gradients interacted to produce the positional
information determining the identity of each segment. Moreover, when the RNA of
the anterior of insect eggs was destroyed by ultraviolet light, the resulting embryos
lacked a head and thorax. Instead, these embryos developed two abdomens and
telsons (tails) with mirror-image symmetry: telson-abdomen-abdomen-telson.
Thus, Sander's laboratory postulated the existence of a gradient at both ends of the
egg, and hypothesized that the egg sequesters an RNA that generates a gradient of
anterior-forming material.
The anterior-posterior axis of the Drosophila embryo appears to be patterned
before the nuclei even begin to function. The nurse cells of the ovary deposit
mRNAs in the developing oocyte, and these mRNAs are apportioned to different
regions of the cell. In particular, four maternal messenger RNAs are critical to the
formation of the anterior-posterior axis:
 bicoid and hunchback mRNAs, whose protein products are critical for head
and thorax formation
 nanos and caudal mRNAs, whose protein products are critical for the
formation of the abdominal segments
The bicoid mRNAs are located in the anterior portion of the unfertilized egg, and
are tethered to the anterior microtubules. The nanos messages are bound to the
cytoskeleton in the posterior region of the unfertilized egg.
The hunchback and caudal mRNAs are distributed throughout the oocyte. Upon
fertilization, these mRNAs can be translated into proteins. At the anterior pole,
the bicoid RNA is translated into Bicoid protein, which forms a gradient highest at
the anterior. At the posterior pole, the nanos message is translated into Nanos
protein, which forms a gradient highest at the posterior. Bicoid protein inhibits the
Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce,
Camp, Pune-01, Maharashtra Page 3
translation of the caudal RNA, allowing Caudal protein to be synthesized only in
the posterior of the cell. Conversely, Nanos protein, in conjunction with Pumilio
protein, binds to hunchback RNA, preventing its translation in the posterior portion
of the embryo. Bicoid also elevates the level of Hunchback protein in the anterior
of the embryo by binding to the enhancers of the hunchback gene and stimulating
its transcription. The result of these interactions is the creation of four protein
gradients in the early embryo (Figure-1)
Figure-1 A model of anterior-posterior pattern generation by the Drosophila maternal effect
genes. (A) The bicoid, nanos, hunchback, and caudal messenger RNAs are placed in the
oocyte by the ovarian nurse cells. The bicoid message is sequestered anteriorly.
The nanos message is sent to the posterior pole. (B) Upon translation, the Bicoid protein
gradient extends from anterior to posterior, and the Nanos protein gradient extends from
posterior to anterior. Nanos inhibits the translation of the hunchback message (in the
posterior), while Bicoid prevents the translation of the caudal message (in the anterior). This
inhibition results in opposing Caudal and Hunchback gradients. The Hunchback gradient is
secondarily strengthened by the transcription of the hunchback gene in the anterior nuclei
(since Bicoid acts as a transcription factor to activate hunchback transcription). (C) Parallel
interactions whereby translational gene regulation establishes the anterior-posterior patterning
of the Drosophila embryo.
Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce,
Camp, Pune-01, Maharashtra Page 4
 An anterior-to-posterior gradient of Bicoid protein
 An anterior-to-posterior gradient of Hunchback protein
 A posterior-to-anterior gradient of Nanos protein
 A posterior-to-anterior gradient of Caudal protein
The Bicoid, Hunchback, and Caudal proteins are transcription factors whose relative
concentrations can activate or repress particular zygotic genes. The stage is now set for
the activation of zygotic genes in those nuclei that were busily dividing while this
gradient was being established.
Evidence that the bicoid gradient constitutes the anterior organizing center:
In Drosophila, the phenotype of the bicoid mutant provides valuable information about the
function of gradients. Instead of having anterior structures (acron, head, and thorax) followed
by abdominal structures and a telson, the structure of the bicoid mutant is telson-abdomen-
abdomen-telson. It would appear that these embryos lack whatever substances are needed for
the formation of anterior structures. Moreover, one could hypothesize that the substance that
these mutants lack is the one postulated by Sander and Kalthoff to turn on genes for the
anterior structures and turn off genes for the telson structures.
Further studies have strengthened the view that the product of the wild-type bicoid gene is the
morphogen that controls anterior development. First, bicoid is a maternal effect gene.
Messenger RNA from the mother's bicoid genes is placed in the embryo by the mother's
ovarian cells (Figure-2). The bicoid RNA is strictly localized in the anterior portion of the
oocyte, where the anterior cytoskeleton anchors it through the message's 3´ untranslated
region. This mRNA is dormant until fertilization, at which time it receives a longer
polyadenylate tail and can be translated. Driever and Nüsslein-Volhard (1988) have shown
that when Bicoid protein is translated from this RNA during early cleavage, it forms a
gradient, with the highest concentration in the anterior of the egg and the lowest in the
posterior third of the egg. Moreover, this protein soon becomes concentrated in the
embryonic nuclei in the anterior portion of the embryo (Figure 2 C-D).
Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce,
Camp, Pune-01, Maharashtra Page 5
Figure-2 Gradient of Bicoid protein in the early Drosophila embryo.
(A) bicoid mRNA passing into the oocyte from the nurse cells during oogenesis.
(B) Localization of bicoid mRNA to the anterior tip of the embryo. (C) Gradient of
Bicoid protein shortly after fertilization. Note that the concentration is greatest
anteriorly and trails off posteriorly. Notice also that Bicoid protein is concentrated
in the nuclei of the embryo. (D) Densitometric scan of the Bicoid protein gradient.
The upper curve represents the gradient of Bicoid protein in wild-type embryos.
The lower curve represents Bicoid protein in embryos of bicoid mutant mothers

Weitere ähnliche Inhalte

Was ist angesagt?

Cleavage and its patterns
Cleavage and its patternsCleavage and its patterns
Cleavage and its patternsSaumya Sharma
 
Molecular event during fertilization
Molecular event during fertilizationMolecular event during fertilization
Molecular event during fertilizationKAUSHAL SAHU
 
Developmental Specification & Differentiation
Developmental Specification & DifferentiationDevelopmental Specification & Differentiation
Developmental Specification & DifferentiationSyed Muhammad Khan
 
cell commitment and differentiation, stem cell,types of differentiation
cell commitment and differentiation, stem cell,types of differentiationcell commitment and differentiation, stem cell,types of differentiation
cell commitment and differentiation, stem cell,types of differentiationshallu kotwal
 
Embryonic induction
Embryonic inductionEmbryonic induction
Embryonic inductionNaveen Gul
 
Cell determination and differentiation
Cell determination and differentiationCell determination and differentiation
Cell determination and differentiationvishnupriya456
 
concept of competence and differentiation of embryonic cells
concept of competence and differentiation of embryonic cellsconcept of competence and differentiation of embryonic cells
concept of competence and differentiation of embryonic cellspavithra M
 
Vulva development - C.elegans
Vulva development - C.elegansVulva development - C.elegans
Vulva development - C.elegansnaren
 
Regeneration in vertebrates
Regeneration in vertebratesRegeneration in vertebrates
Regeneration in vertebratesKashif Manzoor
 
Drosophila Features, Life Cycle & Culture
Drosophila  Features, Life Cycle & Culture Drosophila  Features, Life Cycle & Culture
Drosophila Features, Life Cycle & Culture Ruchira Agarwal
 
Development of tetrapod limb
Development of tetrapod limbDevelopment of tetrapod limb
Development of tetrapod limbMerlyn Denesia
 
Blastulation
BlastulationBlastulation
Blastulationchet08
 

Was ist angesagt? (20)

embryonic-induction.pdf
embryonic-induction.pdfembryonic-induction.pdf
embryonic-induction.pdf
 
Morphogen gradient
Morphogen gradientMorphogen gradient
Morphogen gradient
 
Cleavage and its patterns
Cleavage and its patternsCleavage and its patterns
Cleavage and its patterns
 
Molecular event during fertilization
Molecular event during fertilizationMolecular event during fertilization
Molecular event during fertilization
 
Regeneration sat
Regeneration  satRegeneration  sat
Regeneration sat
 
Regeneration
RegenerationRegeneration
Regeneration
 
Cell fate (fate maps)
Cell fate (fate maps)Cell fate (fate maps)
Cell fate (fate maps)
 
Developmental Specification & Differentiation
Developmental Specification & DifferentiationDevelopmental Specification & Differentiation
Developmental Specification & Differentiation
 
cell commitment and differentiation, stem cell,types of differentiation
cell commitment and differentiation, stem cell,types of differentiationcell commitment and differentiation, stem cell,types of differentiation
cell commitment and differentiation, stem cell,types of differentiation
 
FATE Map
FATE MapFATE Map
FATE Map
 
Embryonic induction
Embryonic inductionEmbryonic induction
Embryonic induction
 
Cell determination and differentiation
Cell determination and differentiationCell determination and differentiation
Cell determination and differentiation
 
concept of competence and differentiation of embryonic cells
concept of competence and differentiation of embryonic cellsconcept of competence and differentiation of embryonic cells
concept of competence and differentiation of embryonic cells
 
Vulva development - C.elegans
Vulva development - C.elegansVulva development - C.elegans
Vulva development - C.elegans
 
cell lineage and fate
cell lineage and fatecell lineage and fate
cell lineage and fate
 
Regeneration in vertebrates
Regeneration in vertebratesRegeneration in vertebrates
Regeneration in vertebrates
 
Establishment of axis in animals
Establishment of axis in animalsEstablishment of axis in animals
Establishment of axis in animals
 
Drosophila Features, Life Cycle & Culture
Drosophila  Features, Life Cycle & Culture Drosophila  Features, Life Cycle & Culture
Drosophila Features, Life Cycle & Culture
 
Development of tetrapod limb
Development of tetrapod limbDevelopment of tetrapod limb
Development of tetrapod limb
 
Blastulation
BlastulationBlastulation
Blastulation
 

Ähnlich wie Pattern formation in drosophila

How does the Drosophila embryo get its pair-rule stripes How is the .pdf
How does the Drosophila embryo get its pair-rule stripes How is the .pdfHow does the Drosophila embryo get its pair-rule stripes How is the .pdf
How does the Drosophila embryo get its pair-rule stripes How is the .pdfdeepakarora871
 
Ontogenetic Development of Drosophila
Ontogenetic Development of DrosophilaOntogenetic Development of Drosophila
Ontogenetic Development of DrosophilaSamchuchoo
 
Drosophila development.pdf
Drosophila development.pdfDrosophila development.pdf
Drosophila development.pdfssuser880f82
 
Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...
Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...
Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...Mr. Suresh R. Jambagi
 
Establishment of Body Axis in Humans
Establishment of Body Axis in HumansEstablishment of Body Axis in Humans
Establishment of Body Axis in HumansSyed Muhammad Khan
 
A Review on Genetic Dominant Disorder-Polydactyly
A Review on Genetic Dominant Disorder-PolydactylyA Review on Genetic Dominant Disorder-Polydactyly
A Review on Genetic Dominant Disorder-Polydactylyijtsrd
 
Drosophila Melanogaster Genome And its developmental process
Drosophila Melanogaster  Genome And its developmental processDrosophila Melanogaster  Genome And its developmental process
Drosophila Melanogaster Genome And its developmental processSubhradeep sarkar
 
Early zebrafish development itis in
Early zebrafish development itis inEarly zebrafish development itis in
Early zebrafish development itis inwujunbo1015
 
Determination of amphibian axes
Determination of amphibian axesDetermination of amphibian axes
Determination of amphibian axesGauri Haval
 
Mesoderm induction see page 5
Mesoderm induction see page 5Mesoderm induction see page 5
Mesoderm induction see page 5Shoeb Ahmad
 
Transgenic animals (1) panjab university
Transgenic animals (1) panjab universityTransgenic animals (1) panjab university
Transgenic animals (1) panjab universitydeepankarshashni
 
(Reproductive biology and endocrinology) Luis Alberto Velasquez Cumplido
(Reproductive biology and endocrinology) Luis Alberto Velasquez Cumplido(Reproductive biology and endocrinology) Luis Alberto Velasquez Cumplido
(Reproductive biology and endocrinology) Luis Alberto Velasquez CumplidoLuis Alberto Velasquez Cumplido
 
Origin and Migration of Germ Cells in Vertebrates
Origin and Migration of Germ Cells in VertebratesOrigin and Migration of Germ Cells in Vertebrates
Origin and Migration of Germ Cells in VertebratesSyed Muhammad Khan
 
Transgenic pig (1) (1)
Transgenic pig (1) (1)Transgenic pig (1) (1)
Transgenic pig (1) (1)jain_sonia
 

Ähnlich wie Pattern formation in drosophila (20)

Developmental genetics
Developmental genetics Developmental genetics
Developmental genetics
 
How does the Drosophila embryo get its pair-rule stripes How is the .pdf
How does the Drosophila embryo get its pair-rule stripes How is the .pdfHow does the Drosophila embryo get its pair-rule stripes How is the .pdf
How does the Drosophila embryo get its pair-rule stripes How is the .pdf
 
Ontogenetic Development of Drosophila
Ontogenetic Development of DrosophilaOntogenetic Development of Drosophila
Ontogenetic Development of Drosophila
 
Drosophila development.pdf
Drosophila development.pdfDrosophila development.pdf
Drosophila development.pdf
 
Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...
Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...
Pathogen-Driven Proteomic Changes in Haemolymph of NPV-Infected Silkworm Bomb...
 
Establishment of Body Axis in Humans
Establishment of Body Axis in HumansEstablishment of Body Axis in Humans
Establishment of Body Axis in Humans
 
A Review on Genetic Dominant Disorder-Polydactyly
A Review on Genetic Dominant Disorder-PolydactylyA Review on Genetic Dominant Disorder-Polydactyly
A Review on Genetic Dominant Disorder-Polydactyly
 
Drosophila Melanogaster Genome And its developmental process
Drosophila Melanogaster  Genome And its developmental processDrosophila Melanogaster  Genome And its developmental process
Drosophila Melanogaster Genome And its developmental process
 
Early zebrafish development itis in
Early zebrafish development itis inEarly zebrafish development itis in
Early zebrafish development itis in
 
Determination of amphibian axes
Determination of amphibian axesDetermination of amphibian axes
Determination of amphibian axes
 
Fertilization 1
Fertilization 1Fertilization 1
Fertilization 1
 
Mesoderm induction see page 5
Mesoderm induction see page 5Mesoderm induction see page 5
Mesoderm induction see page 5
 
Exon shuffling
Exon shufflingExon shuffling
Exon shuffling
 
Chap20
Chap20Chap20
Chap20
 
Transgenic animals (1) panjab university
Transgenic animals (1) panjab universityTransgenic animals (1) panjab university
Transgenic animals (1) panjab university
 
(Reproductive biology and endocrinology) Luis Alberto Velasquez Cumplido
(Reproductive biology and endocrinology) Luis Alberto Velasquez Cumplido(Reproductive biology and endocrinology) Luis Alberto Velasquez Cumplido
(Reproductive biology and endocrinology) Luis Alberto Velasquez Cumplido
 
Origin and Migration of Germ Cells in Vertebrates
Origin and Migration of Germ Cells in VertebratesOrigin and Migration of Germ Cells in Vertebrates
Origin and Migration of Germ Cells in Vertebrates
 
Transgenic animals
Transgenic animals Transgenic animals
Transgenic animals
 
Oogenesis 2019
Oogenesis 2019Oogenesis 2019
Oogenesis 2019
 
Transgenic pig (1) (1)
Transgenic pig (1) (1)Transgenic pig (1) (1)
Transgenic pig (1) (1)
 

Mehr von Shoeb Ahmad

Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...
Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...
Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...Shoeb Ahmad
 
Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...
Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...
Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...Shoeb Ahmad
 
Organizer concept
Organizer conceptOrganizer concept
Organizer conceptShoeb Ahmad
 
Neural competence and induction
Neural competence and inductionNeural competence and induction
Neural competence and inductionShoeb Ahmad
 
Fertilization signal transduction
Fertilization signal transductionFertilization signal transduction
Fertilization signal transductionShoeb Ahmad
 
Concept of growth
Concept of growthConcept of growth
Concept of growthShoeb Ahmad
 
Animal distribution
Animal distributionAnimal distribution
Animal distributionShoeb Ahmad
 

Mehr von Shoeb Ahmad (10)

Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...
Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...
Environmental Policies & Practices (based on UGC syllabus of Ability Enhancem...
 
Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...
Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...
Evolutionary Biology: Based on CBCS (2019 Credit Pattern); Savitribai Phule P...
 
Spermatogenesis
SpermatogenesisSpermatogenesis
Spermatogenesis
 
Organizer concept
Organizer conceptOrganizer concept
Organizer concept
 
Neural competence and induction
Neural competence and inductionNeural competence and induction
Neural competence and induction
 
Fertilization signal transduction
Fertilization signal transductionFertilization signal transduction
Fertilization signal transduction
 
Egg activation
Egg activationEgg activation
Egg activation
 
Concept of growth
Concept of growthConcept of growth
Concept of growth
 
Cleavage
CleavageCleavage
Cleavage
 
Animal distribution
Animal distributionAnimal distribution
Animal distribution
 

Kürzlich hochgeladen

NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...
NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...
NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...Amil baba
 
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptxOn_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptxPooja Bhuva
 
Wellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptxWellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptxJisc
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...Nguyen Thanh Tu Collection
 
FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024Elizabeth Walsh
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and ModificationsMJDuyan
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxheathfieldcps1
 
Single or Multiple melodic lines structure
Single or Multiple melodic lines structureSingle or Multiple melodic lines structure
Single or Multiple melodic lines structuredhanjurrannsibayan2
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxRamakrishna Reddy Bijjam
 
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxBasic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxDenish Jangid
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfagholdier
 
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfUGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfNirmal Dwivedi
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsMebane Rash
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.pptRamjanShidvankar
 
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptxHMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptxmarlenawright1
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Jisc
 
Graduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - EnglishGraduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - Englishneillewis46
 
General Principles of Intellectual Property: Concepts of Intellectual Proper...
General Principles of Intellectual Property: Concepts of Intellectual  Proper...General Principles of Intellectual Property: Concepts of Intellectual  Proper...
General Principles of Intellectual Property: Concepts of Intellectual Proper...Poonam Aher Patil
 
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...ZurliaSoop
 

Kürzlich hochgeladen (20)

NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...
NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...
NO1 Top Black Magic Specialist In Lahore Black magic In Pakistan Kala Ilam Ex...
 
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptxOn_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
On_Translating_a_Tamil_Poem_by_A_K_Ramanujan.pptx
 
Wellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptxWellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptx
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
 
FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024FSB Advising Checklist - Orientation 2024
FSB Advising Checklist - Orientation 2024
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and Modifications
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptx
 
Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024
 
Single or Multiple melodic lines structure
Single or Multiple melodic lines structureSingle or Multiple melodic lines structure
Single or Multiple melodic lines structure
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docx
 
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxBasic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdfUGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
UGC NET Paper 1 Mathematical Reasoning & Aptitude.pdf
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan Fellows
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptxHMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
HMCS Vancouver Pre-Deployment Brief - May 2024 (Web Version).pptx
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
Graduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - EnglishGraduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - English
 
General Principles of Intellectual Property: Concepts of Intellectual Proper...
General Principles of Intellectual Property: Concepts of Intellectual  Proper...General Principles of Intellectual Property: Concepts of Intellectual  Proper...
General Principles of Intellectual Property: Concepts of Intellectual Proper...
 
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
Jual Obat Aborsi Hongkong ( Asli No.1 ) 085657271886 Obat Penggugur Kandungan...
 

Pattern formation in drosophila

  • 1. Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce, Camp, Pune-01, Maharashtra Page 1 Pattern Formation in Drosophila The anterior-posterior polarity of the embryo, larva, and adult has its origin in the anterior-posterior polarity of the egg. The maternal effect genes expressed in the mother's ovaries produce messenger RNAs that are placed in different regions of the egg. These messages encode transcriptional and translational regulatory proteins that diffuse through the syncytial blastoderm and activate or repress the expression of certain zygotic genes. Two of these proteins, Bicoid and Hunchback, regulate the production of anterior structures, while another pair of maternally specified proteins, Nanos and Caudal, regulates the formation of the posterior parts of the embryo. Next, the zygotic genes regulated by these maternal factors are expressed in certain broad (about three segments wide), partially overlapping domains. These genes are called gap genes (because mutations in them cause gaps in the segmentation pattern), and they are among the first genes transcribed in the embryo. Differing concentrations of the gap gene proteins cause the transcription of pair-rule genes, which divide the embryo into periodic units. The transcription of the different pair-rule genes results in a striped pattern of seven vertical bands perpendicular to the anterior- posterior axis. The pair-rule gene proteins activate the transcription of the segment polarity genes, whose mRNA and protein products divide the embryo into 14 segment-wide units, establishing the periodicity of the embryo. At the same time, the protein products of the gap, pair-rule, and segment polarity genes interact to regulate another class of genes, the homeotic selector genes, whose transcription determines the developmental fate of each segment. Embryological evidence of polarity regulation by oocyte cytoplasm There are at least two “organizing centers” in the insect egg, one in the anterior of the egg and one in the posterior. For instance, Klaus Sander (1975) found that if he ligated the egg early in development, separating the anterior from the posterior region, one half developed into an anterior embryo and one half developed into a
  • 2. Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce, Camp, Pune-01, Maharashtra Page 2 posterior embryo, but neither half contained the middle segments of the embryo. The later in development the ligature was made, the fewer middle segments were missing. Thus, it appeared that there were indeed gradients emanating from the two poles during cleavage, and that these gradients interacted to produce the positional information determining the identity of each segment. Moreover, when the RNA of the anterior of insect eggs was destroyed by ultraviolet light, the resulting embryos lacked a head and thorax. Instead, these embryos developed two abdomens and telsons (tails) with mirror-image symmetry: telson-abdomen-abdomen-telson. Thus, Sander's laboratory postulated the existence of a gradient at both ends of the egg, and hypothesized that the egg sequesters an RNA that generates a gradient of anterior-forming material. The anterior-posterior axis of the Drosophila embryo appears to be patterned before the nuclei even begin to function. The nurse cells of the ovary deposit mRNAs in the developing oocyte, and these mRNAs are apportioned to different regions of the cell. In particular, four maternal messenger RNAs are critical to the formation of the anterior-posterior axis:  bicoid and hunchback mRNAs, whose protein products are critical for head and thorax formation  nanos and caudal mRNAs, whose protein products are critical for the formation of the abdominal segments The bicoid mRNAs are located in the anterior portion of the unfertilized egg, and are tethered to the anterior microtubules. The nanos messages are bound to the cytoskeleton in the posterior region of the unfertilized egg. The hunchback and caudal mRNAs are distributed throughout the oocyte. Upon fertilization, these mRNAs can be translated into proteins. At the anterior pole, the bicoid RNA is translated into Bicoid protein, which forms a gradient highest at the anterior. At the posterior pole, the nanos message is translated into Nanos protein, which forms a gradient highest at the posterior. Bicoid protein inhibits the
  • 3. Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce, Camp, Pune-01, Maharashtra Page 3 translation of the caudal RNA, allowing Caudal protein to be synthesized only in the posterior of the cell. Conversely, Nanos protein, in conjunction with Pumilio protein, binds to hunchback RNA, preventing its translation in the posterior portion of the embryo. Bicoid also elevates the level of Hunchback protein in the anterior of the embryo by binding to the enhancers of the hunchback gene and stimulating its transcription. The result of these interactions is the creation of four protein gradients in the early embryo (Figure-1) Figure-1 A model of anterior-posterior pattern generation by the Drosophila maternal effect genes. (A) The bicoid, nanos, hunchback, and caudal messenger RNAs are placed in the oocyte by the ovarian nurse cells. The bicoid message is sequestered anteriorly. The nanos message is sent to the posterior pole. (B) Upon translation, the Bicoid protein gradient extends from anterior to posterior, and the Nanos protein gradient extends from posterior to anterior. Nanos inhibits the translation of the hunchback message (in the posterior), while Bicoid prevents the translation of the caudal message (in the anterior). This inhibition results in opposing Caudal and Hunchback gradients. The Hunchback gradient is secondarily strengthened by the transcription of the hunchback gene in the anterior nuclei (since Bicoid acts as a transcription factor to activate hunchback transcription). (C) Parallel interactions whereby translational gene regulation establishes the anterior-posterior patterning of the Drosophila embryo.
  • 4. Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce, Camp, Pune-01, Maharashtra Page 4  An anterior-to-posterior gradient of Bicoid protein  An anterior-to-posterior gradient of Hunchback protein  A posterior-to-anterior gradient of Nanos protein  A posterior-to-anterior gradient of Caudal protein The Bicoid, Hunchback, and Caudal proteins are transcription factors whose relative concentrations can activate or repress particular zygotic genes. The stage is now set for the activation of zygotic genes in those nuclei that were busily dividing while this gradient was being established. Evidence that the bicoid gradient constitutes the anterior organizing center: In Drosophila, the phenotype of the bicoid mutant provides valuable information about the function of gradients. Instead of having anterior structures (acron, head, and thorax) followed by abdominal structures and a telson, the structure of the bicoid mutant is telson-abdomen- abdomen-telson. It would appear that these embryos lack whatever substances are needed for the formation of anterior structures. Moreover, one could hypothesize that the substance that these mutants lack is the one postulated by Sander and Kalthoff to turn on genes for the anterior structures and turn off genes for the telson structures. Further studies have strengthened the view that the product of the wild-type bicoid gene is the morphogen that controls anterior development. First, bicoid is a maternal effect gene. Messenger RNA from the mother's bicoid genes is placed in the embryo by the mother's ovarian cells (Figure-2). The bicoid RNA is strictly localized in the anterior portion of the oocyte, where the anterior cytoskeleton anchors it through the message's 3´ untranslated region. This mRNA is dormant until fertilization, at which time it receives a longer polyadenylate tail and can be translated. Driever and Nüsslein-Volhard (1988) have shown that when Bicoid protein is translated from this RNA during early cleavage, it forms a gradient, with the highest concentration in the anterior of the egg and the lowest in the posterior third of the egg. Moreover, this protein soon becomes concentrated in the embryonic nuclei in the anterior portion of the embryo (Figure 2 C-D).
  • 5. Dr. Shoeb Ahmad (Assistant Professor), Department of Zoology, AKI’s Poona College of Arts, Science and Commerce, Camp, Pune-01, Maharashtra Page 5 Figure-2 Gradient of Bicoid protein in the early Drosophila embryo. (A) bicoid mRNA passing into the oocyte from the nurse cells during oogenesis. (B) Localization of bicoid mRNA to the anterior tip of the embryo. (C) Gradient of Bicoid protein shortly after fertilization. Note that the concentration is greatest anteriorly and trails off posteriorly. Notice also that Bicoid protein is concentrated in the nuclei of the embryo. (D) Densitometric scan of the Bicoid protein gradient. The upper curve represents the gradient of Bicoid protein in wild-type embryos. The lower curve represents Bicoid protein in embryos of bicoid mutant mothers