Kumar Manoj, Pandya-Kumar Nirali, Dam Anandamoy, Haor Hila, Mayzlish-Gati Einav, Belausov Eduard, Wininger Smadar, Abu-Abied Mohamad, McErlean Christopher S P, Bromhead Liam J, Prandi Cristina, Kapulnik Yoram, Koltai Hinanit
Institute of Plant Sciences, Agricultural Research Organization (ARO), the Volcani Center, Bet Dagan 50250, Israel.
School of Chemistry, the University of Sydney, NSW 2006, Australia.
J Exp Bot. 2015 Mar;66(5):1499-510. doi: 10.1093/jxb/eru513. Epub 2015 Jan 21.
Strigolactones (SLs) are plant hormones that regulate the plant response to phosphate (Pi) growth conditions. At least part of SL-signalling execution in roots involves MAX2-dependent effects on PIN2 polar localization in the plasma membrane (PM) and actin bundling and dynamics. We examined PIN2 expression, PIN2 PM localization, endosome trafficking, and actin bundling under low-Pi conditions: a MAX2-dependent reduction in PIN2 trafficking and polarization in the PM, reduced endosome trafficking, and increased actin-filament bundling were detected in root cells. The intracellular protein trafficking that is related to PIN proteins but unassociated with AUX1 PM localization was selectively inhibited. Exogenous supplementation of the synthetic SL GR24 to a SL-deficient mutant (max4) led to depletion of PIN2 from the PM under low-Pi conditions. Accordingly, roots of mutants in MAX2, MAX4, PIN2, TIR3, and ACTIN2 showed a reduced low-Pi response compared with the wild type, which could be restored by auxin (for all mutants) or GR24 (for all mutants except max2-1). Changes in PIN2 polarity, actin bundling, and vesicle trafficking may be involved in the response to low Pi in roots, dependent on SL/MAX2 signalling.
独脚金内酯(SLs)是一类植物激素,可调节植物对磷酸盐(Pi)生长条件的响应。根部至少部分SL信号传导过程涉及MAX2对质膜(PM)中PIN2极性定位以及肌动蛋白束集和动态变化的依赖性作用。我们研究了低磷条件下PIN2的表达、PIN2在质膜上的定位、内体运输以及肌动蛋白束集情况:在根细胞中检测到,MAX2依赖性地减少了PIN2在质膜中的运输和极化,降低了内体运输,并增加了肌动蛋白丝束集。与PIN蛋白相关但与AUX1质膜定位无关的细胞内蛋白运输被选择性抑制。在低磷条件下,向SL缺陷型突变体(max4)外源补充合成SL GR24会导致PIN2从质膜中耗尽。因此,MAX2、MAX4、PIN2、TIR3和ACTIN2突变体的根与野生型相比,对低磷的响应降低,而生长素(对所有突变体)或GR24(对除max2 - 1之外的所有突变体)可恢复这种响应。PIN2极性、肌动蛋白束集和囊泡运输的变化可能参与了根对低磷的响应,这依赖于SL/MAX2信号传导。