Wei Yun Qi, Yuan Jun Jie, Xiao Chen Chen, Li Gui Xin, Yan Jing Ying, Zheng Shao Jian, Ding Zhong Jie
State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.
Guangdong Laboratory for Lingnan Modern Agriculture, College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510642, China.
J Integr Plant Biol. 2022 May;64(5):979-994. doi: 10.1111/jipb.13247. Epub 2022 Apr 28.
Plant hormone abscisic acid (ABA) plays an indispensable role in the control of leaf senescence, during which ABA signaling depends on its biosynthesis. Nevertheless, the role of ABA transport in leaf senescence remains unknown. Here, we identified two novel RING-box protein-encoding genes UBIQUITIN LIGASE of SENESCENCE 1 and 2 (ULS1 and ULS2) involved in leaf senescence. Lack of ULS1 and ULS2 accelerates leaf senescence, which is specifically promoted by ABA treatment. Furthermore, the expression of senescence-related genes is significantly affected in mature leaves of uls1/uls2 double mutant (versus wild type (WT)) in an ABA-dependent manner, and the ABA content is substantially increased. ULS1 and ULS2 are mainly expressed in the guard cells and aging leaves, and the expression is induced by ABA. Further RNA-seq and quantitative proteomics of ubiquitination reveal that ABA transporter ABCG40 is highly expressed in uls1/uls2 mutant versus WT, though it is not the direct target of ULS1/2. Finally, we show that the acceleration of leaf senescence, the increase of leaf ABA content, and the promotion of stomatal closure in uls1/usl2 mutant are suppressed by abcg40 loss-of-function mutation. These results indicate that ULS1 and ULS2 function in feedback inhibition of ABCG40-dependent ABA transport during ABA-induced leaf senescence and stomatal closure.
植物激素脱落酸(ABA)在叶片衰老的调控中发挥着不可或缺的作用,在此过程中ABA信号传导依赖于其生物合成。然而,ABA转运在叶片衰老中的作用仍不清楚。在这里,我们鉴定了两个参与叶片衰老的新型编码RING-box蛋白的基因衰老泛素连接酶1和2(ULS1和ULS2)。缺乏ULS1和ULS2会加速叶片衰老,ABA处理会特异性地促进这种衰老。此外,衰老相关基因的表达在uls1/uls2双突变体(相对于野生型(WT))的成熟叶片中以ABA依赖的方式受到显著影响,并且ABA含量大幅增加。ULS1和ULS2主要在保卫细胞和衰老叶片中表达,其表达受ABA诱导。进一步的RNA测序和泛素化定量蛋白质组学表明,ABA转运蛋白ABCG40在uls1/uls2突变体中相对于WT高度表达,尽管它不是ULS1/2的直接靶点。最后,我们表明,abcg40功能缺失突变抑制了uls1/usl2突变体中叶片衰老的加速、叶片ABA含量的增加以及气孔关闭的促进。这些结果表明,在ABA诱导的叶片衰老和气孔关闭过程中,ULS1和ULS2在对ABCG40依赖的ABA转运的反馈抑制中发挥作用。