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Comprehensive Proteomics Analysis of Laticifer Latex Reveals New Insights into Ethylene Stimulation of Natural Rubber Production

机译:Laticifer乳胶的综合蛋白质组学分析揭示了乙烯刺激天然橡胶生产的新见解

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摘要

Ethylene is a stimulant to increase natural rubber latex. After ethylene application, both fresh yield and dry matter of latex are substantially improved. Moreover, we found that ethylene improves the generation of small rubber particles. However, most genes involved in rubber biosynthesis are inhibited by exogenous ethylene. Therefore, we conducted a proteomics analysis of ethylene-stimulated rubber latex, and identified 287 abundant proteins as well as 143 ethylene responsive latex proteins (ERLPs) with mass spectrometry from the 2-DE and DIGE gels, respectively. In addition, more than 1,600 proteins, including 404 ERLPs, were identified by iTRAQ. Functional classification of ERLPs revealed that enzymes involved in post-translational modification, carbohydrate metabolism, hydrolase activity, and kinase activity were overrepresented. Some enzymes for rubber particle aggregation were inhibited to prolong latex flow, and thus finally improved latex production. Phosphoproteomics analysis identified 59 differential phosphoproteins; notably, specific isoforms of rubber elongation factor and small rubber particle protein that were phosphorylated mainly at serine residues. This post-translational modification and isoform-specific phosphorylation might be important for ethylene-stimulated latex production. These results not only deepen our understanding of the rubber latex proteome but also provide new insights into the use of ethylene to stimulate rubber latex production.
机译:乙烯是增加天然橡胶胶乳的促进剂。施用乙烯后,乳胶的新鲜产率和干物质均得到显着提高。此外,我们发现乙烯可以改善橡胶小颗粒的产生。但是,大多数橡胶生物合成相关基因被外源乙烯抑制。因此,我们对乙烯刺激的胶乳进行了蛋白质组学分析,并通过质谱从2-DE和DIGE凝胶中分别鉴定了287种丰富的蛋白质和143种乙烯响应性胶乳蛋白质(ERLP)。此外,iTRAQ还鉴定了1,600多种蛋白质,包括404种ERLP。 ERLPs的功能分类表明,翻译后修饰,碳水化合物代谢,水解酶活性和激酶活性中涉及的酶被过度代表。某些橡胶颗粒聚集酶被抑制以延长胶乳流动,从而最终提高了胶乳的生产。磷酸蛋白质组学分析鉴定出59种差异磷蛋白;值得注意的是,橡胶延伸因子和小的橡胶颗粒蛋白质的特定同工型主要在丝氨酸残基处被磷酸化。这种翻译后修饰和同工型特异性磷酸化对于乙烯刺激的胶乳生产可能很重要。这些结果不仅加深了我们对橡胶胶乳蛋白质组学的了解,而且为使用乙烯刺激橡胶胶乳生产提供了新的见解。

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