生长素
生物
细胞生物学
植物激素
形态发生
流出
象形文字
拟南芥
表型
植物
基因
作物
遗传学
农学
突变体
作者
Craig L. Cowling,Arielle L. Homayouni,Jodi B. Callwood,Maxwell R. McReynolds,Jasper Khor,Haiyan Ke,Melissa A. Draves,Katayoon Dehesh,Justin W. Walley,Lucia C. Strader,Dior R. Kelley
标识
DOI:10.1073/pnas.2313216121
摘要
Plant root systems play a pivotal role in plant physiology and exhibit diverse phenotypic traits. Understanding the genetic mechanisms governing root growth and development in model plants like maize is crucial for enhancing crop resilience to drought and nutrient limitations. This study focused on identifying and characterizing ZmPILS6, an annotated auxin efflux carrier, as a key regulator of various crown root traits in maize. ZmPILS6-modified roots displayed reduced network area and suppressed lateral root formation, which are desirable traits for the “steep, cheap, and deep” ideotype. The research revealed that ZmPILS6 localizes to the endoplasmic reticulum and plays a vital role in controlling the spatial distribution of indole-3-acetic acid (IAA or “auxin”) in primary roots. The study also demonstrated that ZmPILS6 can actively efflux IAA when expressed in yeast. Furthermore, the loss of ZmPILS6 resulted in significant proteome remodeling in maize roots, particularly affecting hormone signaling pathways. To identify potential interacting partners of ZmPILS6, a weighted gene coexpression analysis was performed. Altogether, this research contributes to the growing knowledge of essential genetic determinants governing maize root morphogenesis, which is crucial for guiding agricultural improvement strategies.
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