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Proteome of germinating and dormant axillary buds of sugarcane and analysis of sprouting-related proteins

机译:甘蔗腋芽萌发和休眠的蛋白质组及发芽相关蛋白的分析

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The germination potential of the axillary buds is crucial for the installation of new sugarcane crop and is highly relevant for the aintenance of the crop during the regrowth cycles. In this way, 1-DE-UPLC-ESI-Q-TOF system of mass spectrometry in a shotgun approach evaluated total and differential proteome of germinating and dormant axillary buds of cultivar RB867515 in second ratoon. The current paper investigates whether differently expressed proteins can be detected in germinating axillary buds or not. The proteome of germinative and dormant axillary buds were obtained using TCA/acetone in triplicates with subsequent proteins and polypeptides pre-separation by SDS-PAGE and UPLC. Mass spectra were obtained via MS/MS and were confronted with Viridiplante mass spectra from NCBIprot, SwissProt and UniProtKB databases, using Mascot tool from Matrix Science. A total of 159 proteins were identified. In total, 46 proteins were exclusively detected in the germinating buds, while 41 proteins were exclusively reported in the dormant buds and 72 proteins were common in germinating and dormant buds. Different proteins, involved with biotic and abiotic stress, were detected at equivalent proportions in germinating (29.5%) and dormant (31.7%) buds, while contrasting proportions of proteins involved with energy metabolism were detected in germinating (22.7%) and dormant (12%) buds. Budding potential in the third cut seems to be determined by specific proteins related to energy metabolism and steps of the biosynthesis of primary and secondary metabolites for shoot growth and development. Seven enzymes (Aconitase, Succinate dehydrogenase, Pyruvate dehydrogenase, Fructose-6-phosphate 1-phosphotransgerase, Chacone synthase, Chalcone isomerase, and Monodehydroascorbate), one protein subunits (RuBisCo large subunit-binding protein) and one protein of Argonaute protein family (Tudor-Sn) supposedly involved with germinating potential of axillary buds and two enzymes (Hexokinase and Aldehyde dehydrogenase) supposedly involved with non-budding were highlighted.
机译:腋芽的萌发潜力对于安装新的甘蔗作物至关重要,并且与再生周期中作物的生长能力高度相关。通过这种方式,采用shot弹枪方法的1-DE-UPLC-ESI-Q-TOF质谱系统评估了第二再生株RB867515的发芽和休眠腋芽的总蛋白质组和差异蛋白质组。本文研究了在发芽的腋芽中是否可以检测到不同表达的蛋白质。使用TCA /丙酮一式三份获得发芽和休眠的腋芽蛋白质组,随后通过SDS-PAGE和UPLC预分离蛋白质和多肽。质谱是通过MS / MS获得的,并使用Matrix Science的Mascot工具与来自NCBIprot,SwissProt和UniProtKB数据库的Viridiplante质谱进行了对比。总共鉴定出159种蛋白质。总计,在萌芽中仅检测到46种蛋白质,而在休眠芽中仅检测到41种蛋白质,在萌芽和休眠芽中共有72种蛋白质。在发芽(29.5%)和休眠(31.7%)芽中检测到与生化和非生物胁迫有关的不同蛋白质的比例相同,而在发芽(22.7%)和休眠(12.7%)中检测到与能量代谢有关的蛋白质的比例相对。 %)芽。第三次切割的出芽潜力似乎由与能量代谢有关的特定蛋白质以及用于芽生长和发育的主要和次要代谢物生物合成步骤确定。七个酶(乌头酸酶,琥珀酸脱氢酶,丙酮酸脱氢酶,果糖6-磷酸1-磷酸转基因酶,查康斯合酶,查尔酮异构酶和单脱氢抗坏血酸),一个蛋白亚基(RuBisCo大亚基结合蛋白)和一个Argonaute蛋白家族蛋白(Tudor) -Sn)可能与腋芽发芽有关,并着重强调了与非萌芽有关的两种酶(己糖激酶和醛脱氢酶)。

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