Landscape genomics integrates population genetics with landscape ecology, allowing the identification of putative molecular determinants involved in environmental adaptation across the natural geographic and ecological range of populations. Wild Phaseolus vulgaris , the progenitor of common bean ( P. vulgaris ), has a remarkably extended distribution over 10,000 km from northern Mexico to northwestern Argentina. Earlier research has shown that this distribution represents a range expansion from Mesoamerica to the southern Andes through several discrete migration events and that the species colonized areas with different temperature and rainfall compared to its core area of origin. Thus, this species provides an opportunity to examine to wha...
Reliable estimations of drought tolerance in wild plant populations have proved to be challenging an...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...
Landscape genomics integrates population genetics with landscape ecology, allowing the identificatio...
Here we studied the organization of genetic variation of the common bean (Phaseolus vulgaris) in its...
Here we studied the organization of genetic variation of the common bean (Phaseolus vulgaris) in its...
Key words: domestication, genetic diversity, landraces, landscape genetics, Phaseolus vulgaris, SNP ...
The wild progenitor of common-bean has an exceptionally large distribution from northern Mexico to n...
The wild progenitor of common-bean has an exceptionally large distribution from northern Mexico to n...
Abiotic stress is a limiting factor for common bean (Phaseolus vulgaris L.) production globally. The...
Abiotic stress is a limiting factor for common bean (Phaseolus vulgaris L.) production globally. The...
Abiotic stress is a limiting factor for common bean (Phaseolus vulgaris L.) production globally. The...
Drought will reduce global crop production by \u3e10% in 2050 substantially worsening global malnutr...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...
<div><p>Reliable estimations of drought tolerance in wild plant populations have proved to be challe...
Reliable estimations of drought tolerance in wild plant populations have proved to be challenging an...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...
Landscape genomics integrates population genetics with landscape ecology, allowing the identificatio...
Here we studied the organization of genetic variation of the common bean (Phaseolus vulgaris) in its...
Here we studied the organization of genetic variation of the common bean (Phaseolus vulgaris) in its...
Key words: domestication, genetic diversity, landraces, landscape genetics, Phaseolus vulgaris, SNP ...
The wild progenitor of common-bean has an exceptionally large distribution from northern Mexico to n...
The wild progenitor of common-bean has an exceptionally large distribution from northern Mexico to n...
Abiotic stress is a limiting factor for common bean (Phaseolus vulgaris L.) production globally. The...
Abiotic stress is a limiting factor for common bean (Phaseolus vulgaris L.) production globally. The...
Abiotic stress is a limiting factor for common bean (Phaseolus vulgaris L.) production globally. The...
Drought will reduce global crop production by \u3e10% in 2050 substantially worsening global malnutr...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...
<div><p>Reliable estimations of drought tolerance in wild plant populations have proved to be challe...
Reliable estimations of drought tolerance in wild plant populations have proved to be challenging an...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...
Drought will reduce global crop production by >10% in 2050 substantially worsening global malnutriti...