生长素
生物
拟南芥
适应(眼睛)
侧根
细胞生物学
植物
基因
遗传学
突变体
神经科学
作者
Takeshi Ogura,Christian Gortázar,Danièle Filiault,Madalina Mirea,Radka Slovak,Bonnie Wolhrab,Santosh B. Satbhai,Wolfgang Busch
出处
期刊:Cell
[Elsevier]
日期:2019-07-01
卷期号:178 (2): 400-412.e16
被引量:129
标识
DOI:10.1016/j.cell.2019.06.021
摘要
Root system architecture (RSA), the distribution of roots in soil, plays a major role in plant survival. RSA is shaped by multiple developmental processes that are largely governed by the phytohormone auxin, suggesting that auxin regulates responses of roots that are important for local adaptation. However, auxin has a central role in numerous processes, and it is unclear which molecular mechanisms contribute to the variation in RSA for environmental adaptation. Using natural variation in Arabidopsis, we identify EXOCYST70A3 as a modulator of the auxin system that causes variation in RSA by acting on PIN4 protein distribution. Allelic variation and genetic perturbation of EXOCYST70A3 lead to alteration of root gravitropic responses, resulting in a different RSA depth profile and drought resistance. Overall our findings suggest that the local modulation of the pleiotropic auxin pathway can gives rise to distinct RSAs that can be adaptive in specific environments.
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