Palmitoylation mediates the proteolysis of seed storage proteins during the cooling process in hydrated lettuce seeds (Lactuca sativa)

IF 2.1 3区 生物学 Q2 PLANT SCIENCES Seed Science Research Pub Date : 2023-06-01 DOI:10.1017/s096025852300017x
Ying Yu, Yingying Han, Yujiao Ding, Weijie Li, Ganesh K. Jaganathan, Baolin Liu
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Abstract

Abstract Palmitoyl-protein thioesterase (PPT), involved in the fatty acid synthesis and the de-palmitoylation of protein, was induced under ecological cooling treatment in hydrated lettuce seeds. However, there was no significant difference in fatty acid levels between the control and the cooled samples. To further study the function of PPT, 2-bromopalmitic acid (2-Bp), an inhibitor of protein palmitoylation, was applied during the imbibition of hydrated lettuce seeds, which was followed by slow-cooling treatment (−3°C h −1 ). The application of 2-Bp (1 mM) significantly increased the survival rate of seeds from 6.70% (control imbibition) to 22.67% (2-Bp imbibition) after slow cooling to −20°C. Differential scanning calorimetry (DSC) analysis indicated that 2-Bp led to earlier onset of ice crystals in the endosperm than the control group. Two-dimensional electrophoresis (2D) confirmed that 2-Bp could promote the hydrolysis of seed globulins and the accumulation of globulin peptides with small molecular weights. High-efficiency hydrolysis of globulin induced by mercaptoethanol improved the freezing tolerance of hydrated lettuce seeds and led to the accumulation of small globulin peptides, which further proved the positive function of small globulin polypeptides in enhancing the freezing tolerance of hydrated lettuce seeds. DSC of small globulin peptides showed that the smaller the molecular weight, the earlier the appearance of ice crystals and the higher the enthalpy of heat release. For the smallest peptides, the 2-Bp-4 in 2-Bp group exhibited higher enthalpy in exothermic peak than the control group (c-4). In conclusion, the hydrolysis of seed globulins and accumulation of small-molecule globulin peptides could be the major reason for improving the freezing tolerance of hydrated seeds after de-palmitoylation treatment.
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棕榈酰化介导水合莴苣种子冷却过程中种子贮藏蛋白的蛋白质水解
生态冷却诱导水合莴苣种子中参与脂肪酸合成和蛋白去棕榈酰化的棕榈酰蛋白硫酯酶(PPT)的产生。然而,对照组和冷却样品之间的脂肪酸水平没有显著差异。为了进一步研究PPT的功能,我们在水合莴苣种子的吸胀过程中加入了蛋白棕榈酰化抑制剂2-溴铝酸(2-Bp),然后缓慢冷却(- 3°C h - 1)。2 bp (1 mM)缓冷至- 20℃后,种子成活率由6.70%(对照吸胀)显著提高至22.67% (2 bp吸胀)。差示扫描量热法(DSC)分析表明,2-Bp导致胚乳中冰晶的出现比对照组早。二维电泳(2D)证实,2-Bp可以促进种子球蛋白的水解和小分子量球蛋白肽的积累。巯基乙醇对球蛋白的高效水解提高了水合莴苣种子的抗冻性,并导致小球蛋白多肽的积累,进一步证明了小球蛋白多肽在提高水合莴苣种子抗冻性方面的积极作用。小球蛋白肽的DSC结果表明,分子量越小,冰晶出现越早,热释放焓越高。对于最小的肽,2-Bp组中的2-Bp-4在放热峰的焓值高于对照组(c-4)。综上所述,种子球蛋白的水解和小分子球蛋白肽的积累可能是去棕榈酰化处理后水合种子抗冻性提高的主要原因。
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来源期刊
Seed Science Research
Seed Science Research 生物-植物科学
CiteScore
3.60
自引率
4.80%
发文量
23
审稿时长
>12 weeks
期刊介绍: Seed Science Research, the official journal of the International Society for Seed Science, is a leading international journal featuring high-quality original papers and review articles on the fundamental aspects of seed science, reviewed by internationally distinguished editors. The emphasis is on the physiology, biochemistry, molecular biology and ecology of seeds.
期刊最新文献
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