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Differential Proteomic Analysis of Anthers between Cytoplasmic Male Sterile and Maintainer Lines in Capsicum annuum L

机译:辣椒细胞质雄性不育系与保持系花药的差异蛋白质组学分析。

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摘要

Cytoplasmic male sterility (CMS), widely used in the production of hybrid seeds, is a maternally inherited trait resulting in a failure to produce functional pollen. In order to identify some specific proteins associated with CMS in pepper, two-dimensional gel electrophoresis (2-DE) was applied to proteomic analysis of anthers/buds between a CMS line (designated NA3) and its maintainer (designated NB3) in Capsicum annuum L. Thirty-three spots showed more than 1.5-fold in either CMS or its maintainer. Based on mass spectrometry, 27 spots representing 23 distinct proteins in these 33 spots were identified. Proteins down-regulated in CMS anthers/buds includes ATP synthase D chain, formate dehydrogenase, alpha-mannosidas, RuBisCO large subunit-binding protein subunit beta, chloroplast manganese stabilizing protein-II, glutathione S-transferase, adenosine kinase isoform 1T-like protein, putative DNA repair protein RAD23-4, putative caffeoyl-CoA 3-O-methyltransferase, glutamine synthetase (GS), annexin Cap32, glutelin, allene oxide cyclase, etc. In CMS anthers/buds, polyphenol oxidase, ATP synthase subunit beta, and actin are up-regulated. It was predicted that male sterility in NA3 might be related to energy metabolism turbulence, excessive ethylene synthesis, and suffocation of starch synthesis. The present study lays a foundation for future investigations of gene functions associated with pollen development and cytoplasmic male sterility, and explores the molecular mechanism of CMS in pepper.
机译:细胞质雄性不育(CMS),广泛用于杂交种子的生产,是一种母体遗传性状,导致无法生产功能性花粉。为了鉴定与辣椒中CMS相关的某些特定蛋白质,将二维凝胶电泳(2-DE)用于辣椒中CMS系(指定为NA3)与其保持物(指定为NB3)之间的花药/芽的蛋白质组学分析。 L. 33个斑点在CMS或其维护者中显示超过1.5倍。基于质谱法,在这33个斑点中鉴定出代表23个不同蛋白质的27个斑点。 CMS花药/芽中下调的蛋白包括ATP合酶D链,甲酸脱氢酶,α-甘露糖苷,RuBisCO大亚基结合蛋白亚基β,叶绿体锰稳定蛋白II,谷胱甘肽S-转移酶,腺苷激酶同工型1T样蛋白。 ,推定的DNA修复蛋白RAD23-4,推定的咖啡酰-CoA 3-O-甲基转移酶,谷氨酰胺合成酶(GS),膜联蛋白Cap32,谷蛋白,氧化烯环化酶等。在CMS花药/芽中,多酚氧化酶,ATP合酶亚基β,和肌动蛋白上调。据预测,NA3中的雄性不育可能与能量代谢紊乱,过量的乙烯合成和淀粉合成的窒息有关。本研究为进一步研究与花粉发育和细胞质雄性不育相关的基因功能奠定了基础,并探索了辣椒中CMS的分子机制。

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