Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou, 730000, China.
College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua, 321004, China.
J Integr Plant Biol. 2021 Nov;63(11):1922-1936. doi: 10.1111/jipb.13171.
PIN-FORMED (PIN)-dependent directional auxin transport is crucial for plant development. Although the redistribution of auxin mediated by the polarization of PIN3 plays key roles in modulating hypocotyl cell expansion, how PIN3 becomes repolarized to the proper sites within hypocotyl cells is poorly understood. We previously generated the clathrin light chain clc2-1 clc3-1 double mutant in Arabidopsis thaliana and found that it has an elongated hypocotyl phenotype compared to the wild type. Here, we performed genetic, cell biology, and pharmacological analyses combined with live-cell imaging to elucidate the molecular mechanism underlying the role of clathrin light chains in hypocotyl elongation. Our analyses indicated that the defects of the double mutant enhanced auxin maxima in epidermal cells, thus, promoting hypocotyl elongation. PIN3 relocated to the lateral sides of hypocotyl endodermal cells in clc2-1 clc3-1 mutants to redirect auxin toward the epidermal cell layers. Moreover, the loss of function of PIN3 largely suppressed the long hypocotyl phenotype of the clc2-1 clc3-1 double mutant, as did treatment with auxin transport inhibitors. Based on these data, we propose that clathrin modulates PIN3 abundance and polarity to direct auxin flux and inhibit cell elongation in the hypocotyl, providing novel insights into the regulation of hypocotyl elongation.
PIN 形成(PIN)依赖性定向生长素运输对于植物发育至关重要。尽管 PIN3 极化介导的生长素再分配在调节下胚轴细胞扩展中起着关键作用,但 PIN3 如何重新极化到下胚轴细胞中的适当位置尚不清楚。我们之前在拟南芥中生成了笼形蛋白轻链 clc2-1 clc3-1 双突变体,发现与野生型相比,它具有长下胚轴表型。在这里,我们进行了遗传、细胞生物学和药理学分析,并结合活细胞成像,阐明了笼形蛋白轻链在伸长下胚轴中的作用的分子机制。我们的分析表明,双突变体的缺陷增强了表皮细胞中的生长素最大值,从而促进了下胚轴伸长。PIN3 在 clc2-1 clc3-1 突变体中转位到下胚轴内胚层细胞的侧方,将生长素重新导向表皮细胞层。此外,PIN3 的功能丧失极大地抑制了 clc2-1 clc3-1 双突变体的长下胚轴表型,生长素运输抑制剂的处理也有同样的效果。基于这些数据,我们提出笼形蛋白调节 PIN3 的丰度和极性,以指导生长素流并抑制下胚轴中的细胞伸长,为下胚轴伸长的调控提供了新的见解。