PIN2/3/4 auxin carriers mediate root growth inhibition under conditions of boron deprivation in Arabidopsis

生长素 生物 拟南芥 内吞作用 生长素极性运输 开枪 细胞生物学 拟南芥 侧根 化学 突变体 下调和上调 植物 基因 生物化学 细胞
作者
Lin Tao,Hu Zhu,Qiuyu Huang,Xiaoyi Xiao,Ying Luo,Hui Wang,Yalin Li,Xuewen Li,Jiayou Liu,Ján Jásik,Yinglong Chen,Sergey Shabala,František Baluška,Weiming Shi,Lei Shi,Min Yu
出处
期刊:Plant Journal [Wiley]
卷期号:115 (5): 1357-1376 被引量:8
标识
DOI:10.1111/tpj.16324
摘要

The mechanistic basis by which boron (B) deprivation inhibits root growth via the mediation of root apical auxin transport and distribution remains elusive. This study showed that B deprivation repressed root growth of wild-type Arabidopsis seedlings, which was related to higher auxin accumulation (observed with DII-VENUS and DR5-GFP lines) in B-deprived roots. Boron deprivation elevated the auxin content in the root apex, coinciding with upregulation of the expression levels of auxin biosynthesis-related genes (TAA1, YUC3, YUC9, and NIT1) in shoots, but not in root apices. Phenotyping experiments using auxin transport-related mutants revealed that the PIN2/3/4 carriers are involved in root growth inhibition caused by B deprivation. B deprivation not only upregulated the transcriptional levels of PIN2/3/4, but also restrained the endocytosis of PIN2/3/4 carriers (observed with PIN-Dendra2 lines), resulting in elevated protein levels of PIN2/3/4 in the plasma membrane. Overall, these results suggest that B deprivation not only enhances auxin biosynthesis in shoots by elevating the expression levels of auxin biosynthesis-related genes but also promotes the polar auxin transport from shoots to roots by upregulating the gene expression levels of PIN2/3/4, as well as restraining the endocytosis of PIN2/3/4 carriers, ultimately resulting in auxin accumulation in root apices and root growth inhibition.
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