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衰老相关糖转运蛋白1影响发育主控调节因子并控制拟南芥的衰老。

Senescence-Associated Sugar Transporter1 affects developmental master regulators and controls senescence in Arabidopsis.

作者信息

Cheng Jintao, Arystanbek Kyzy Meerim, Heide Adrian, Khan Azkia, Lehmann Martin, Schröder Laura, Nägele Thomas, Pommerrenig Benjamin, Keller Isabel, Neuhaus H Ekkehard

机构信息

College of Horticulture and Forestry Sciences, Huazhong Agricultural University, 430070 Wuhan, China.

Plant Physiology, University of Kaiserslautern-Landau (RPTU), Kaiserslautern D-67653, Germany.

出版信息

Plant Physiol. 2024 Dec 2;196(4):2749-2767. doi: 10.1093/plphys/kiae430.

Abstract

Sugar transport across membranes is critical for plant development and yield. However, an analysis of the role of intracellular sugar transporters in senescence is lacking. Here, we characterized the role of Senescence-Associated Sugar Transporter1 (SAST1) during senescence in Arabidopsis (Arabidopsis thaliana). SAST1 expression was induced in leaves during senescence and after the application of abscisic acid (ABA). SAST1 is a vacuolar protein that pumps glucose out of the cytosol. sast1 mutants exhibited a stay-green phenotype during developmental senescence, after the darkening of single leaves, and after ABA feeding. To explain the stay-green phenotype of sast1 mutants, we analyzed the activity of the glucose-induced master regulator TOR (target of rapamycin), which is responsible for maintaining a high anabolic state. TOR activity was higher in sast1 mutants during senescence compared to wild types, whereas the activity of its antagonist, SNF1-related protein kinase 1 (SnRK1), was reduced in sast1 mutants under senescent conditions. This deregulation of TOR and SnRK1 activities correlated with high cytosolic glucose levels under senescent conditions in sast1 mutants. Although sast1 mutants displayed a functional stay-green phenotype, their seed yield was reduced. These analyses place the activity of SAST1 in the last phase of a leaf's existence in the molecular program required to complete its life cycle.

摘要

糖类跨膜运输对植物发育和产量至关重要。然而,目前缺乏对细胞内糖类转运蛋白在衰老过程中作用的分析。在此,我们对拟南芥衰老相关糖类转运蛋白1(SAST1)在衰老过程中的作用进行了表征。SAST1的表达在衰老期间以及施用脱落酸(ABA)后在叶片中被诱导。SAST1是一种将葡萄糖泵出细胞质的液泡蛋白。sast1突变体在发育衰老期间、单叶遮光后以及ABA处理后表现出持绿表型。为了解释sast1突变体的持绿表型,我们分析了葡萄糖诱导的主调节因子雷帕霉素靶蛋白(TOR)的活性,TOR负责维持高合成代谢状态。与野生型相比,衰老期间sast1突变体中的TOR活性更高,而在衰老条件下,其拮抗剂SNF1相关蛋白激酶1(SnRK1)的活性在sast1突变体中降低。在衰老条件下,sast1突变体中TOR和SnRK1活性的这种失调与高细胞质葡萄糖水平相关。尽管sast1突变体表现出功能性持绿表型,但其种子产量降低。这些分析将SAST1的活性置于叶片生命周期所需分子程序中叶片存在的最后阶段。

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