Zhang Lin Lin, Shao Yu Jian, Ding Lan, Wang Mei Jing, Davis Seth Jon, Liu Jian Xiang
State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou 310027, China.
Department of Biology, University of York, Heslington, York YO10 5DD, UK.
Sci Adv. 2021 May 7;7(19). doi: 10.1126/sciadv.abf4427. Print 2021 May.
Elevated ambient temperature has wide effects on plant growth and development. ELF3, a proposed thermosensor, negatively regulates protein activity of the growth-promoting factor PIF4, and such an inhibitory effect is subjected to attenuation at warm temperature. However, how ELF3 stability is regulated at warm temperature remains enigmatic. Here, we report the identification of XBAT31 as the E3 ligase that mediates ELF3 degradation in response to warm temperature in XBAT31 interacts with ELF3, ubiquitinates ELF3, and promotes ELF3 degradation via the 26S proteasome. Mutation of results in enhanced accumulation of ELF3 and reduced hypocotyl elongation at warm temperature. In contrast, overexpression of accelerates ELF3 degradation and promotes hypocotyl growth. Furthermore, XBAT31 interacts with the B-box protein BBX18, and the XBAT31-mediated ELF3 degradation is dependent on Thus, our findings reveal that XBAT31-mediated destruction of ELF3 represents an additional regulatory layer of complexity in temperature signaling during plant thermomorphogenesis.
环境温度升高对植物生长发育具有广泛影响。ELF3被认为是一种温度感受器,它对促进生长因子PIF4的蛋白活性起负调控作用,且这种抑制作用在温暖温度下会减弱。然而,在温暖温度下ELF3的稳定性是如何被调控的仍不清楚。在此,我们报告鉴定出XBAT31作为一种E3连接酶,它在温暖温度下介导ELF3的降解。XBAT31与ELF3相互作用,使ELF3泛素化,并通过26S蛋白酶体促进ELF3的降解。XBAT31的突变导致温暖温度下ELF3积累增加以及下胚轴伸长减少。相反,XBAT31的过表达加速ELF3降解并促进下胚轴生长。此外,XBAT31与B-box蛋白BBX18相互作用,并且XBAT31介导的ELF3降解依赖于BBX18。因此,我们的研究结果表明XBAT31介导的ELF3降解代表了植物热形态建成过程中温度信号传导复杂性的一个额外调控层面。