根毛
生长素
延伸率
渗透(战争)
生物
胚芽鞘
突变体
侧根
顶点(几何体)
植物
拟南芥
细胞生物学
生物物理学
基因
材料科学
生物化学
运筹学
工程类
极限抗拉强度
冶金
作者
Xiuzhen Kong,Suhang Yu,Yali Xiong,Xiaoyun Song,Lucia Nevescanin-Moreno,Xiaoqing Wei,Jinliang Rao,Hu Zhou,Malcolm J. Bennett,Bharati Pandey,Guoqiang Huang
标识
DOI:10.1016/j.cub.2024.03.064
摘要
Summary
Compacted soil layers adversely affect rooting depth and access to deeper nutrient and water resources, thereby impacting climate resilience of crop production and global food security. Root hair plays well-known roles in facilitating water and nutrient acquisition. Here, we report that root hair also contributes to root penetration into compacted layers. We demonstrate that longer root hair, induced by elevated auxin response during a root compaction response, improves the ability of rice roots to penetrate harder layers. This compaction-induced auxin response in the root hair zone is dependent on the root apex-expressed auxin synthesis gene OsYUCCA8 (OsYUC8), which is induced by compaction stress. This auxin source for root hair elongation relies on the auxin influx carrier AUXIN RESISTANT 1 (OsAUX1), mobilizing this signal from the root apex to the root hair zone. Mutants disrupting OsYUC8 and OsAUX1 genes exhibit shorter root hairs and weaker penetration ability into harder layers compared with wild type (WT). Root-hair-specific mutants phenocopy these auxin-signaling mutants, as they also exhibit an attenuated root penetration ability. We conclude that compaction stress upregulates OsYUC8-mediated auxin biosynthesis in the root apex, which is subsequently mobilized to the root hair zone by OsAUX1, where auxin promotes root hair elongation, improving anchorage of root tips to their surrounding soil environment and aiding their penetration ability into harder layers.
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