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甘蓝型油菜水溶性叶绿素结合蛋白(WSCP1)在拟南芥黑暗诱导的叶片衰老过程中延迟叶绿素降解并抑制丝氨酸蛋白酶。

A Brassica napus water soluble chlorophyll binding protein (WSCP1) delays chlorophyll degradation and inhibits serine proteases during dark-induced leaf senescence in Arabidopsis thaliana.

作者信息

James Maxence, Nexer Elise, Girondé Alexandra, Masclaux-Daubresse Céline, Marmagne Anne, Trouverie Jacques, Etienne Philippe

机构信息

Université de Caen Normandie, UNICAEN, INRAE, UMR 950 EVA, SFR Normandie Végétal (FED4277), 14000, Caen, France.

Université Paris-Saclay, INRAE, AgroParisTech, Institute Jean-Pierre Bourgin for Plant Sciences (IJPB), 78000, Versailles, France.

出版信息

Planta. 2025 Jul 2;262(2):39. doi: 10.1007/s00425-025-04754-6.

Abstract

This preliminary study shows that Brassica napus WSCP1 delays chlorophyll degradation and inhibits serine proteases during dark-induced leaf senescence in Arabidopsis. In Brassica napus L., one of the levers for improving Nitrogen Remobilization Efficiency (NRE) consists to delay senescence onset, which prolongs leaf lifespan and reduces the asynchronism between the nitrogen emptying period in these source organs and the filling period of seeds. Water soluble chlorophyll binding proteins (WSCPs) may have a dual function in chlorophyll protection and protease inhibition. As such they are excellent candidates to propose a technical solution to delay leaf senescence. Several isoforms of WSCPs have been identified in the leaves of rapeseed. Among them, WSCP1 presents two motifs in its protein sequence that are associated to the putative dual function. To test if WSCP1 can actually delay leaf senescence, the overexpression of WSCP1 under the control of the SAG12 senescence promoter (pSAG12::WSCP1) was developed in an Arabidopsis thaliana accession that was previously described as early senescent (RIL232). During dark-induced senescence, our main results reveal a lower chlorophyll degradation and a reduction of the serine proteases (SPs) activity in leaves of pSAG12::WSCP1 lines compared to RIL232. Although SP inhibition was strong in pSAG12::WSCP1 leaves compared with RIL232, no difference in leaf protein content was observed. This result suggests either the recruitment of a compensatory proteolytic system in WSCP1-overexpressing lines or that SPs are not essential for protein nitrogen remobilization during dark-induced leaf senescence.

摘要

这项初步研究表明,甘蓝型油菜WSCP1在拟南芥黑暗诱导的叶片衰老过程中延迟叶绿素降解并抑制丝氨酸蛋白酶。在甘蓝型油菜中,提高氮素再利用效率(NRE)的一个方法是延迟衰老的开始,这可以延长叶片寿命,并减少这些源器官中氮素排空期与种子灌浆期之间的不同步性。水溶性叶绿素结合蛋白(WSCPs)可能在叶绿素保护和蛋白酶抑制方面具有双重功能。因此,它们是提出延迟叶片衰老技术解决方案的优秀候选者。在油菜叶片中已鉴定出几种WSCPs同工型。其中,WSCP1在其蛋白质序列中呈现出两个与假定的双重功能相关的基序。为了测试WSCP1是否真的能延迟叶片衰老,在先前被描述为早衰的拟南芥品系(RIL232)中构建了在SAG12衰老启动子(pSAG12::WSCP1)控制下的WSCP1过表达植株。在黑暗诱导的衰老过程中,我们的主要结果表明,与RIL232相比,pSAG12::WSCP1株系叶片中的叶绿素降解较低,丝氨酸蛋白酶(SPs)活性降低。尽管与RIL232相比,pSAG12::WSCP1叶片中的SP抑制作用很强,但未观察到叶片蛋白质含量的差异。这一结果表明,在过表达WSCP1的株系中可能招募了一个补偿性蛋白水解系统,或者在黑暗诱导叶片衰老过程中,SPs对于蛋白质氮素再利用不是必需的。

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