Tamary Eyal, Nevo Reinat, Naveh Leah, Levin-Zaidman Smadar, Kiss Vladimir, Savidor Alon, Levin Yishai, Eyal Yoram, Reich Ziv, Adam Zach
The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture The Hebrew University Rehovot Israel.
Department of Biomolecular Sciences Weizmann Institute of Science Rehovot Israel.
Plant Direct. 2019 Mar 20;3(3):e00127. doi: 10.1002/pld3.127. eCollection 2019 Mar.
The earliest visual changes of leaf senescence occur in the chloroplast as chlorophyll is degraded and photosynthesis declines. Yet, a comprehensive understanding of the sequence of catabolic events occurring in chloroplasts during natural leaf senescence is still missing. Here, we combined confocal and electron microscopy together with proteomics and biochemistry to follow structural and molecular changes during Arabidopsis leaf senescence. We observed that initiation of chlorophyll catabolism precedes other breakdown processes. Chloroplast size, stacking of thylakoids, and efficiency of PSII remain stable until late stages of senescence, whereas the number and size of plastoglobules increase. Unlike catabolic enzymes, whose level increase, the level of most proteins decreases during senescence, and chloroplast proteins are overrepresented among these. However, the rate of their disappearance is variable, mostly uncoordinated and independent of their inherent stability during earlier developmental stages. Unexpectedly, degradation of chlorophyll-binding proteins lags behind chlorophyll catabolism. Autophagy and vacuole proteins are retained at relatively high levels, highlighting the role of extra-plastidic degradation processes especially in late stages of senescence. The observation that chlorophyll catabolism precedes all other catabolic events may suggest that this process enables or signals further catabolic processes in chloroplasts.
叶片衰老最早的视觉变化发生在叶绿体中,因为叶绿素降解且光合作用下降。然而,对于自然叶片衰老过程中叶绿体发生的分解代谢事件的顺序仍缺乏全面的了解。在这里,我们将共聚焦显微镜和电子显微镜与蛋白质组学和生物化学相结合,以追踪拟南芥叶片衰老过程中的结构和分子变化。我们观察到叶绿素分解代谢的启动先于其他分解过程。叶绿体大小、类囊体堆叠以及PSII效率在衰老后期之前保持稳定,而质体小球的数量和大小增加。与分解代谢酶水平增加不同,大多数蛋白质的水平在衰老过程中下降,并且叶绿体蛋白质在这些蛋白质中占比过高。然而,它们消失的速率是可变的,大多不协调且与它们在早期发育阶段的固有稳定性无关。出乎意料的是,叶绿素结合蛋白的降解落后于叶绿素分解代谢。自噬和液泡蛋白保持在相对较高的水平,突出了质体外降解过程的作用,特别是在衰老后期。叶绿素分解代谢先于所有其他分解代谢事件这一观察结果可能表明,该过程能够启动或标志着叶绿体中的进一步分解代谢过程。