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Mauricio Parra Quijano
International Treaty on Plant Genetic Resources
for Food and Agriculture
CAPFITOGEN Program Coordinator
http://www.capfitogen.net
ELC maps
It allows the user to create eco-geographical land
characterization maps (ELC), that reflect adaptive
scenarios for a given species (or species groups) and a
specific country or region
Characterization of a territory
Variable selection
Geophysical variables
Cluster analysis
Determination of
optimal number
of groups
Combination
(N bioclimatic*N geophysical*N edaphic)
Categories
MAP
Description of categories using original variables
Edaphic variables
Cluster analysis
Determination of
optimal number
of groups
Bioclimatic variables
Cluster analysis
Determination of
optimal number
of groups
How an ELC map is developed?
Expert opinion / knowledge
• Experts on target species are a valuable source of information
• Surveys are an efficient way to gather information from expert knowledge
(internet/email, meetings, workshops, etc.).
• Variable lists are made by components, with details on the nature of the variables
(explanation of codes, variable units, source, etc..). Then a value is assigned based
on the importance that a given variable has regarding the adaptation of the
species.
Bibliography search on major factors in the adaptation of target species
Variable selection – subjective/objective
Subjective option
• Redundancy? Correlation? Collinearity? Importance on species adaptation?
• Bivariate correlations analysis, Principal Component Analysis
• Importance of each variable analysis
x1
x2
x1
x1
x1
Variable selection – subjective/objective
Objective option:
Easiest way: Use SelecVar
What type of map you need?
Depending on the approach of the analysis, the ELC map can be :
1. Generalist map
2. Map by species / gene pool / group of related Sp
(Specific map)
It defines the major environments for a large number of species
(related or not). For most of these species, the ELC map should
discriminate different adaptive scenarios in a given target area. It is
expected to find unadjusted relationships between adaptive
characteristic of a smaller group of species and the resulting map (see
Parra-Quijano et al., 2012).
They define in more detail the key environments for a particular
species or a limited set of genetically related species. A good fit
between the map and the adaptive characteristics of the target
species is expected.
ELC mapas tool results
• Maps (which can be opened with DIVA-GIS) and tables describing each category.
SelecVar
It allows to select the most important and non-
redundant ecogeographical variables for ELC maps
from the objective point of view
SelecVar
Why this plant/population is here…
And why when you translocate this plants and provide “better
conditions” they …
What underlying or obvious abiotic factors
are controlling adaptation?
CAPFITOGEN tools include
105 ecogeographical variables:
67 bioclimatic
7 geophysic
31 edaphic
Why to select a set of most important
variables?
To obtain reliable maps showing different
ecogeographic scenarios
To obtain accurate species distribution
models
How to select a set of most important
variables?
What variables are the most important to create groups which represent similar plant
adaptation scenarios?
• Clustvarsel
• Random Forest
Precipitation1
Temperature12
Soil3
Landscape3
Groups
1
2
3
4
5
Speciespresencedata
How to select a set of most important
variables?
What variables are providing different information and have the most discriminatory
ability?
• Principal Component Analysis (PCA)
Precipitation1
Temperature12
Soil3
Landscape3
CS2
CS3
CS1
tmax11
bio1
bio3
tmin2
How to select a set of most important
variables?
What variables are related to others introducing redundancy?
• Bivariate correlation analysis
Precipitation1
Precipitation2
Precipitation3
Precipitation12
Temperature1
Temperature5
Annual temp
Soil2
Soil3
Landscape3
P12
P1
P3
P2
S2
S1
L1
PRECIPITATION
TEMPERATURE
SOIL
landscape
PRECIPITATION
TEMPERATURE
SOIL
LANDSCAPE
ECOGEO
It allows to perform eco-geographical characterization
of the geo-referenced collecting sites
0 cm
5 cm
10 cm
Internodes
length
= 5.56 cm
1 2 3
1 0 1
0 1 0
= present = 1
= absent = 0
NOT of the
germplasm
but of the
collecting site
ECOGEO is a characterization
Process of ecogeographical characterization
Characterization
matrix :
Rows: Germplasm
identifier
Columns:
Ecogreographical
descriptors
passport
Data (including
coordinates)
GIS
Elevation
Average Annual Temp
Soil Organic Carbon
Soil pH
….
….
Y
X
Point or radial extraction?
2 4 3
1 3 2
1 3 2
1
1
3
1 1 3 4
Ecogeografical variable X
NA
NA
NA
NA
1 1 3 4NA
ACCENUMB VARIABLE
a NA
b NA
c 2
2 4 3
1 3 2
1 3 2
1
1
3
1 1 3 4
NA
NA
NA
NA
1 1 3 4NA
a
b
c
Distribution of
passport data entries
2 4 3
1 3 2
1 3 2
1
1
3
1 1 3 4
NA
NA
NA
NA
1 1 3 4NA
GIS overlap Extraction results
ACCENUMB VARIABLE
a NA (1)
b 1
c 3
a
b
c
True location
a=68
b=65
c=50
GEOQUAL
uncertainty
Radius
Radial extraction
ACCENUMB CAPTURED
VALUES
AVERAGE
a NA,1,1 1
b NA,1,1 1
c 3,2,1,3,2,
3
2.333
GIS overlap
Results of radial extraction
ACCENUMB VARIABLE
a 1
b 1
c 3
Correct extraction
ACCENUMB VARIABLE
a NA
b NA
c 2
Point extraction
1
1
2.333
Radial extraction
2 4 3
1 3 2
1 3 2
1
1
3
1 1 3 4
NA
NA
NA
NA
1 1 3 4NA
Characterization
matrix
409-09
320-05319-05
318-05317-05
315-05316-05
405-09
391-07390-07
386-09385-07
386-07375-06
406-09323-05
376-07321-05
401-08311-05
372-06
377-07307-05
369-06299-05
368-06530-09
528-09527-09
523-09524-09
378-07379-07
526-09
504-09-v504-09
503-09-v503-09
501-09502-09
507-09534-09
533-09531-09
532-09
300-05541-09
540-09536-09
535-09522-09
529-09539-09
537-09538-09
308-05414-09
276-05
277-05306-05
357-06365-06
366-06505-09-v
525-09415-09
285-05283-05
284-05546-10
403-09
402-09355-06
356-06304-05
302-05303-05
349-06337-06
338-06397-08
353-06396-08
413-09
516-09454-09
455-09412-09
279-05281-05
287-05280-05
291-05309-05
389-07392-07
324-06
350-06351-06
521-09-v521-09
520-09-v519-09-v
519-09518-09-v
518-09517-09-v
517-09516-09-v
515-09-v
515-09514-09-v
514-09465-09
464-09463-09
462-09461-09
460-09459-09
458-09456-09
457-09
506-09-v505-09
506-09513-09-v
513-09512-09-v
512-09511-09-v
511-09510-09-v
510-09509-09-v
509-09
508-09508-09-v
268-05288-05
289-05361-06
341-06360-06
292-05548-10
348-06
347-06346-06
345-06343-06
342-06335-06
334-06333-06
332-06327-06-v
325-06293-05
298-05
551-10297-05
296-05295-05
294-05262-05
263-05410-09
411-09417-09
418-09393-07
275-05
394-07549-10
552-10550-10
395-07404-09
266-05380-07
274-05467-09
416-09466-09
383-07
382-07269-05
265-05267-05
381-07273-05
272-05270-05
271-05301-05
282-05305-05
507-09-v
453-09452-09
450--09451-09
02468
Cluster analysis - Ecogeographic characterization
hclust (*, "average")
ecogeodist
Height
d = 1
23
4
5
6
7
8
9101112
1314
1516
17
18
19
20
212223
24
2526
27 2829
30313233
34
35
36
37
383940
41
42
43
44
45 46
474849505152
53
54
55
565758596061
6263
64
656667686970
71
7273
74
7576
77
7879
8081
82
83
84
85
86
87
8889
90
91
9293
949596
97
9899
100
101
102
103
104105
106
107108
109
110
111
112
113
114
115
116
117
118
119
120
121
122123124125
126127
128129130131132133134135136137
138139
140141142143144145
146
147
148149
150
151
152153154155156157158159160161162163
164165166167
168
169170171172173174175176177178
179
180181
182
183
184185
186
187
188189190191
192193
194195196
197198
199
200
201202
203
204
DECLATITUDE
alt
northness
slope
bio_18
bio_1
t_clay
t_sand
t_oc
t_silt
t_ph_h2o
Eigenvalues
Data analysis
Presentation 4 - SelecVar, ELCmapas and ECOGEO tools

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Presentation 4 - SelecVar, ELCmapas and ECOGEO tools