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Difference of proteomics vernalization-induced in bolting and flowering transitions of Beta vulgaris

机译:蛋白质组学vernalization诱导的βvulgaris血栓化诱导的差异

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Sugar beet (Beta vulgaris) is a biennial crop that accounts for 30% sugar production of the world. Vernalization is an essential factor for sugar beet reproductative growth under long days. Although genes association with bolting and flowering were well explored, the difference of proteomics in the two growth stages were still poorly understood. To address the molecular mechanism at the level of proteins, an isobaric tags for relative and absolute quantification (iTRAQ)-based quantitative proteomics approach was employed to the three different growth stages (germination, bolting, flowering) of vernalized samples and the corresponding stage germination (17W weeks), 19W and 20W of nonvernalized samples. A total of 1110 peptides, 842 unique peptides and 570 proteins were identified. Most of them were assigned to phenylpropanoid biosynthesis, hormone metabolism and protein processing pathway. IAA and Gibberellins (GA3) promoted growth and development in a threshold manner at growth stage germination after vernalization. A novel discovery was that IAA biosynthetic pathway of sugar beet was the Trp-dependent. In addition, two predominant pathways of protein processing association with vernalization were also identified in sugar beet at growth stage flowering. This study provided an in-depth understanding of the molecular mechanism of vernalization at the level of proteomics.
机译:甜菜(Beta寻常型)是一项两年一次的作物,占世界糖生产30%。春化是甜菜繁殖生长在漫长的日子中的重要因素。虽然与螺栓和开花的基因与爆炸和开花进行了很好的探索,但两种生长阶段的蛋白质组学的差异仍然很差。为了解决蛋白质水平的分子机制,用于相对和绝对定量(ITRAQ)的量化标签用于络合样品的三种不同的生长阶段(萌发,螺栓,开花)和相应的阶段发芽(17W周),19W和20W的非更大样本。鉴定了总共1110个肽,842个独特的肽和570个蛋白质。其中大部分都被分配给苯丙醇丙酮化生物合成,激素代谢和蛋白质加工途径。 IAA和赤霉素(GA3)在春节化后的生长阶段萌发中以阈值方式促进生长和发育。一种新的发现是糖甜菜的IAA生物合成途径是TRP依赖性的。此外,还在生长阶段开花的甜菜中鉴定了蛋白质加工蛋白质加工联合的两个主要途径。本研究提供了对蛋白质组学水平的春化分子机制的深入了解。

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