相思
生物
驯化
基因组
豆类
遗传学
农学
生物技术
基因
适应(眼睛)
神经科学
作者
Samira Mafi Moghaddam,Atena Oladzad,ChuShin Koh,Larissa Ramsay,Jonathan J. Hart,Sujan Mamidi,Genevieve Hoopes,Avinash Sreedasyam,Andrew T. Wiersma,Dongyan Zhao,Jane Grimwood,John Hamilton,Jerry Jenkins,Brieanne Vaillancourt,Joshua C. Wood,Jeremy Schmutz,Sateesh Kagale,Timothy G. Porch,Kirstin E. Bett,C. Robin Buell,Phillip E. McClean
标识
DOI:10.1038/s41467-021-22858-x
摘要
Abstract Tepary bean ( Phaseolus acutifolis A. Gray), native to the Sonoran Desert, is highly adapted to heat and drought. It is a sister species of common bean ( Phaseolus vulgaris L.), the most important legume protein source for direct human consumption, and whose production is threatened by climate change. Here, we report on the tepary genome including exploration of possible mechanisms for resilience to moderate heat stress and a reduced disease resistance gene repertoire, consistent with adaptation to arid and hot environments. Extensive collinearity and shared gene content among these Phaseolus species will facilitate engineering climate adaptation in common bean, a key food security crop, and accelerate tepary bean improvement.
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