DOI: 10.1002/pei3.70199 ISSN: 2575-6265
MYB59 is Linked to Natural Variation of Water‐Use Associated With Warmer Temperatures in
Arabidopsis thaliana
John N. Ferguson, Oliver Brendel, Ulrike Bechtold ABSTRACT
Water‐use contributes significantly to plant growth and productivity, yet the extent to which variation in water‐use is a function of adaptive differentiation is unknown. Here, we studied natural variation of water use in
Arabidopsis thaliana
to understand how climatic history impacts water‐use strategies. We performed a survey of vegetative water use (VWU) and life‐history traits across
A. thaliana
ecotypes in controlled and outdoor settings. Performance of select ecotypes in controlled experiments was reflective of performance in outdoor conditions. Through trait‐climate and genome‐wide association (GWAS) analyses, we tested for signals of environmental adaptation in water use. Ecotypes from warmer environments were noted in displaying enhanced water use, independent of precipitation. GWAS identified the transcription factor
MYB59
as a determiner of VWU. Functionally significant
MYB59
SNPs showed associations with temperature, but not precipitation, and
myb59
mutants demonstrated reduced water use under high temperatures. Our study suggests intraspecific variation in water‐use can be explained in part by climatic history, where temperature is the most significant driver.
MYB59
appears to contribute to this association and represents a promising candidate for future investigation in crops.