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Integrated Breeding Platform
Breeding Management System
(BMS v3)
IBP Management Team
Presenter – Graham McLaren
January 2015
Integrated Breeding Platform (IBP)
Rationale
 Large private seed companies have successfully
implemented molecular techniques and integrated
informatics tools to turbocharge their breeding programs
 Implementation of this integrated technology in public
programs lags behind, especially in developing countries
 Reasons for this lag are lack of availability of molecular
services and easy-to-use informatics systems for plant
breeding and a lack of human capacity.
 The IBP aims to broker access to affordable, quality
breeding services, to make available a user friendly
Breeding Management System and provide the support and
capacity building for their adoption
https://www.integratedbreeding.net/
Breeding Management System (BMS)
Product Concept
 Simple and easy-to-use application containing all informatics
tools needed by a breeder
 Seamless flow of data between different tools
 Accumulation, sharing and re-use of breeding data
 Targets routine breeding activities and will not replace
research tools
 Will allow integration of user’s own tools into the system
 Implementable as a stand-alone system or a shared system
on a LAN
 Will also be implementable as a cloud-based system via
iPlant cyber-infrastructure
The Workbench
offers access to
multiple breeding
programs and
allows users to add
and remove
programs as
required.
Germplasm lists,
nurseries, trials and
recent activities are
shown for the
highlighted program
Click the Launch
icon to enter the
management
screen for the
selected program
List Manager Functionality
The List Manager is at the center of all activities in the
Breeding Management System:
 First screen you arrive at after opening your Breeding Program
 Left navigation menu provides direct access to all tools
 Easily build and work with the lists that are used in each stage
of the breeding cycle
Key List Manager Features:
 Ability to browse and modify existing lists
 Ability to search for lists and germplasm entries
 Ability to create a new list dynamically by pulling from existing
lists or germplasm search results
 Ability to modify list contents
 Ability to export lists for use outside of the BMS
Germplasm Search
Nursery Management
 Breeding Manager comprises four tools which facilitate
breeding logistics and population development
 Crossing Manager
 Nursery Manager
 Advancement Tool
 Inventory Manager
 Key Features of the Breeding Manager
 Uses germplasm lists to make nurseries
 Uses crossing block nurseries to capture new crosses
 Advances pedigree nurseries by bulk and selection methods
 Tracks seed inventory through population development
Trial Management
 The Trial Manager facilitates the evaluation of germplasm in a
breeding program
 Uses crop specific trait ontologies
 Merges germplasm lists, trait sets and trial designs into fieldbooks
 Produces field maps and label sets
 IB Fieldbook
 Focuses on field trial management for germplasm evaluation
 Trait selection, field design, labels and sample tracking
 Android-based hand-held device
 Optimized for use with Samsung Galaxy tablet for field data
collection
 Other Android devices can be used if preferred
Trait Dictionaries
Measurement
Variate
Trait property
Reporting
units or scale
Measurement
method
Creating Fieldbooks
Selecting the Germplasm List
Specifying Trial Environments
Specifying the Experimental
Design
Traits and Measurements
Bar Code labels
Tablet Devices for Data Capture
Fieldbook
connects to
Android-
based tablet
devises for
data
collection in
the field and
laboratory
Integrated Breeding Database
 Genealogy Management System (GMS)
 Germplasm nomenclature, chronology, IP and passport data
 Pedigrees and breeding history
 Phenotyping Data Management System (DMS)
 Germplasm characterization and evaluation data
 Annotated with Crop Research and Crop Trait Ontologies
 Genotypic Data Management System (GDMS)
 Medium density fingerprinting data
 Genotyping data for MAS and MABC
 Genotyping data for Marker-trait association analysis
Databases fully integrated into BMS workbench
Data Query Tools
 BMS facilitates integrated querying across all database
modules
 browse all germplasm information
 review existing characterization and evaluation data
 search for adapted germplasm
 perform head to head comparisons
Head to Head Query
The H2H query searches the whole database for
trials where specified pairs of standard and test
entries have been tested together and then shows
the comparison trait by trait.
Statistical Analysis of Phenotype Data
 Breeding View provides easy access to the high throughput
analyses routinely required by breeders
 The same interface can be used to access procedures in
Genstat or R-scripts and allows analyses to be configured
 Single site analysis is available for complete and incomplete block
designs as well as row-column designs and spatial analysis
 New designs are being added at each update,
 Analyses can be run in batches over environments and traits
 Two-stage multi-site analysis is available for GxE and
stability analysis with or without grouping of environments
 Single pass meta analysis of unbalanced site by season data is
being incorporated.
Tools to be fully integrated into the BMS by June 2015
Management and Analysis of
Genotyping Data
 The GDMS module allows users to integrate the use of
molecular techniques into their breeding programs:
 Order genotyping services
 Import genotyping data
 Search for polymorphic markers
 Retrieve, view and analyse genotyping data
 Key Functions
 search genotyping data for a set of lines, retrieve and visualize
these data and calculate a similarity matrix
 search genotyping data for parents of a potential cross to
confirm there are sufficient polymorphic markers
 select available SNP markers (including any markers linked to a
trait of interest) and create a genotyping order form
Uploading Genotyping Data
Breeding View - QTL analysis
 Single trait linkage analysis (QTL)
 Quality control phenotypes (summary
statistics)
 Quality control marker data
 QTL detection – genome-wide scan
using single and composite IM
 Output includes profile plots and tables
 Results available for automatic viewing
in Flapjack
 HTML report of QTL results
 Multiple trait sequential analysis
 QTL results for each trait combined
 Single Flapjack view for all traits
Decision support for
Marker implementation
 OptiMAS
Developed at INRA, Le
Moulon
Implementation of
markers in a MARS
breeding scheme
Identify and track
favorable alleles through
cycles of recombination
and selection
 Molecular Breeding
Decision Tool (MBDT)
Developed by team at
ICRISAT
Implementation of
markers in a MAS and
MABC context
Future Directions
 Continuous improvement of UI based on user
feedback
 Additional analysis methods for expanded
experimental designs and genetic analysis
 Seed inventory management system improved
 Cloud based deployment available in 2015
 Data will be stored in a single shareable
database with user access roles
 Offline capability will be supported by a data
cache which will synchronize when a connection
is available

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PAG 2015 - Overview of the Breeding Management System - Dr Graham McLaren

  • 1. Integrated Breeding Platform Breeding Management System (BMS v3) IBP Management Team Presenter – Graham McLaren January 2015
  • 2. Integrated Breeding Platform (IBP) Rationale  Large private seed companies have successfully implemented molecular techniques and integrated informatics tools to turbocharge their breeding programs  Implementation of this integrated technology in public programs lags behind, especially in developing countries  Reasons for this lag are lack of availability of molecular services and easy-to-use informatics systems for plant breeding and a lack of human capacity.  The IBP aims to broker access to affordable, quality breeding services, to make available a user friendly Breeding Management System and provide the support and capacity building for their adoption
  • 4. Breeding Management System (BMS) Product Concept  Simple and easy-to-use application containing all informatics tools needed by a breeder  Seamless flow of data between different tools  Accumulation, sharing and re-use of breeding data  Targets routine breeding activities and will not replace research tools  Will allow integration of user’s own tools into the system  Implementable as a stand-alone system or a shared system on a LAN  Will also be implementable as a cloud-based system via iPlant cyber-infrastructure
  • 5.
  • 6. The Workbench offers access to multiple breeding programs and allows users to add and remove programs as required. Germplasm lists, nurseries, trials and recent activities are shown for the highlighted program Click the Launch icon to enter the management screen for the selected program
  • 7. List Manager Functionality The List Manager is at the center of all activities in the Breeding Management System:  First screen you arrive at after opening your Breeding Program  Left navigation menu provides direct access to all tools  Easily build and work with the lists that are used in each stage of the breeding cycle Key List Manager Features:  Ability to browse and modify existing lists  Ability to search for lists and germplasm entries  Ability to create a new list dynamically by pulling from existing lists or germplasm search results  Ability to modify list contents  Ability to export lists for use outside of the BMS
  • 8.
  • 10. Nursery Management  Breeding Manager comprises four tools which facilitate breeding logistics and population development  Crossing Manager  Nursery Manager  Advancement Tool  Inventory Manager  Key Features of the Breeding Manager  Uses germplasm lists to make nurseries  Uses crossing block nurseries to capture new crosses  Advances pedigree nurseries by bulk and selection methods  Tracks seed inventory through population development
  • 11.
  • 12.
  • 13. Trial Management  The Trial Manager facilitates the evaluation of germplasm in a breeding program  Uses crop specific trait ontologies  Merges germplasm lists, trait sets and trial designs into fieldbooks  Produces field maps and label sets  IB Fieldbook  Focuses on field trial management for germplasm evaluation  Trait selection, field design, labels and sample tracking  Android-based hand-held device  Optimized for use with Samsung Galaxy tablet for field data collection  Other Android devices can be used if preferred
  • 21.
  • 22. Tablet Devices for Data Capture Fieldbook connects to Android- based tablet devises for data collection in the field and laboratory
  • 23. Integrated Breeding Database  Genealogy Management System (GMS)  Germplasm nomenclature, chronology, IP and passport data  Pedigrees and breeding history  Phenotyping Data Management System (DMS)  Germplasm characterization and evaluation data  Annotated with Crop Research and Crop Trait Ontologies  Genotypic Data Management System (GDMS)  Medium density fingerprinting data  Genotyping data for MAS and MABC  Genotyping data for Marker-trait association analysis Databases fully integrated into BMS workbench
  • 24. Data Query Tools  BMS facilitates integrated querying across all database modules  browse all germplasm information  review existing characterization and evaluation data  search for adapted germplasm  perform head to head comparisons
  • 25. Head to Head Query The H2H query searches the whole database for trials where specified pairs of standard and test entries have been tested together and then shows the comparison trait by trait.
  • 26. Statistical Analysis of Phenotype Data  Breeding View provides easy access to the high throughput analyses routinely required by breeders  The same interface can be used to access procedures in Genstat or R-scripts and allows analyses to be configured  Single site analysis is available for complete and incomplete block designs as well as row-column designs and spatial analysis  New designs are being added at each update,  Analyses can be run in batches over environments and traits  Two-stage multi-site analysis is available for GxE and stability analysis with or without grouping of environments  Single pass meta analysis of unbalanced site by season data is being incorporated. Tools to be fully integrated into the BMS by June 2015
  • 27.
  • 28. Management and Analysis of Genotyping Data  The GDMS module allows users to integrate the use of molecular techniques into their breeding programs:  Order genotyping services  Import genotyping data  Search for polymorphic markers  Retrieve, view and analyse genotyping data  Key Functions  search genotyping data for a set of lines, retrieve and visualize these data and calculate a similarity matrix  search genotyping data for parents of a potential cross to confirm there are sufficient polymorphic markers  select available SNP markers (including any markers linked to a trait of interest) and create a genotyping order form
  • 30.
  • 31. Breeding View - QTL analysis  Single trait linkage analysis (QTL)  Quality control phenotypes (summary statistics)  Quality control marker data  QTL detection – genome-wide scan using single and composite IM  Output includes profile plots and tables  Results available for automatic viewing in Flapjack  HTML report of QTL results  Multiple trait sequential analysis  QTL results for each trait combined  Single Flapjack view for all traits
  • 32.
  • 33. Decision support for Marker implementation  OptiMAS Developed at INRA, Le Moulon Implementation of markers in a MARS breeding scheme Identify and track favorable alleles through cycles of recombination and selection  Molecular Breeding Decision Tool (MBDT) Developed by team at ICRISAT Implementation of markers in a MAS and MABC context
  • 34. Future Directions  Continuous improvement of UI based on user feedback  Additional analysis methods for expanded experimental designs and genetic analysis  Seed inventory management system improved  Cloud based deployment available in 2015  Data will be stored in a single shareable database with user access roles  Offline capability will be supported by a data cache which will synchronize when a connection is available