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多胺生物合成的抑制会削弱白三叶草(Trifolium repens)的耐旱性,这与大量蛋白质的改变有关。

The inhibition of polyamine biosynthesis weakens the drought tolerance in white clover (Trifolium repens) associated with the alteration of extensive proteins.

作者信息

Li Zhou, Zhang Yan, Peng Dandan, Peng Yan, Zhang Xinquan, Ma Xiao, Huang Linkai, Yan Yanhong

机构信息

Department of Grassland Science, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu, Sichuan, China.

出版信息

Protoplasma. 2018 May;255(3):803-817. doi: 10.1007/s00709-017-1186-9. Epub 2017 Nov 28.

Abstract

Changes of endogenous polyamine (PA) levels could be a key adaptive response to drought in plants. White clover pretreated with or without dicyclohexylamine (DCHA), an inhibitor of PA biosynthesis, was subjected to drought stress induced by 18% polyethylene glycol 6000 for 8 days in controlled growth chambers. Results showed that drought stress significantly increased endogenous PA content, whereas DCHA significantly decreased PA accumulation under drought stress. The attenuate PA biosynthesis was unfavorable for plant growth and drought tolerance, as reflected by significantly lower relative water content, relative growth rate, instantaneous water use efficiency, and cell membrane stability in leaves in response to drought. On the basis of proteomic analysis, the inhibition of PA synthesis decreased the accumulation of many key differentially expressed proteins including (1) ribosomal structure and biogenesis: elongation factor, ribosomal protein S10E, and 30S ribosomal protein; (2) amino acid transport and metabolism: cysteine synthase, delta-1-pyrroline-5-carboxylate synthetase, and glutamate decarboxylase; (3) carbohydrate metabolism and energy production: photosystem apoprotein, sucrose-phosphate synthase, phosphogluconate dehydrogenase, sucrose-phosphatase, NADH oxidoreductase, and ATP synthase; (4) antioxidant metabolism: catalase, peroxidase I, ascorbate peroxidase, and glutathione S-transferase; and (5) other biological processes: heat shock protein 70, heat shock protein 90, and calcium-dependent protein kinase associated with the decreased drought tolerance in white clover. These findings indicate that PAs play a critical role in the regulation of growth, ribosome, amino acid and energy metabolism, and antioxidant reactions in white clover under drought stress. Drought-induced increases in endogenous PAs could be one of key adaptive responses against drought stress in white clover.

摘要

内源多胺(PA)水平的变化可能是植物对干旱的一种关键适应性反应。用PA生物合成抑制剂二环己胺(DCHA)预处理或未预处理的白三叶草,在可控生长室中经受由18%聚乙二醇6000诱导的干旱胁迫8天。结果表明,干旱胁迫显著增加了内源PA含量,而DCHA显著降低了干旱胁迫下PA的积累。PA生物合成的减弱不利于植物生长和耐旱性,这表现为干旱时叶片相对含水量、相对生长速率、瞬时水分利用效率和细胞膜稳定性显著降低。基于蛋白质组学分析,PA合成的抑制减少了许多关键差异表达蛋白的积累,包括:(1)核糖体结构与生物合成:延伸因子、核糖体蛋白S10E和30S核糖体蛋白;(2)氨基酸转运与代谢:半胱氨酸合酶、δ-1-吡咯啉-5-羧酸合成酶和谷氨酸脱羧酶;(3)碳水化合物代谢与能量产生:光系统脱辅基蛋白、蔗糖磷酸合酶、磷酸葡萄糖酸脱氢酶、蔗糖磷酸酶、NADH氧化还原酶和ATP合酶;(4)抗氧化代谢:过氧化氢酶、过氧化物酶I、抗坏血酸过氧化物酶和谷胱甘肽S-转移酶;以及(5)其他生物学过程:热休克蛋白70、热休克蛋白90和与白三叶草耐旱性降低相关的钙依赖性蛋白激酶。这些发现表明,PA在干旱胁迫下白三叶草的生长、核糖体、氨基酸和能量代谢以及抗氧化反应的调节中起关键作用。干旱诱导的内源PA增加可能是白三叶草对抗干旱胁迫的关键适应性反应之一。

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