首页> 外文期刊>Journal of proteome research >Luxurious Nitrogen Fertilization of Two Sugar Cane Genotypes Contrasting for Lignin Composition Causes Changes in the Stem Proteome Related to Carbon, Nitrogen, and Oxidant Metabolism but Does Not Alter Lignin Content
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Luxurious Nitrogen Fertilization of Two Sugar Cane Genotypes Contrasting for Lignin Composition Causes Changes in the Stem Proteome Related to Carbon, Nitrogen, and Oxidant Metabolism but Does Not Alter Lignin Content

机译:两种甘蔗基因型的豪华氮肥对木质素组成的对比度导致茎蛋白质组的变化与碳,氮和氧化剂代谢相关,但不改变木质素含量

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摘要

Sugar cane is an important crop for sugar and biofuel production. Its lignocellulosic biomass represents a promising option as feedstock for second-generation ethanol production. Nitrogen fertilization can affect differently tissues and its biopolymers, including the cell-wall polysaccharides and lignin. Lignin content and composition are the most important factors associated with biomass recalcitrance to convert cell-wall polysaccharides into fermentable sugars. Thus it is important to understand the metabolic relationship between nitrogen fertilization and lignin in this feedstock. In this study, a large-scale proteomics approach based on GeLC-MS/MS was employed to identify and relatively quantify proteins differently accumulated in two contrasting genotypes for lignin composition after excessive nitrogen fertilization. From the similar to 1000 nonredundant proteins identified, 28 and 177 were differentially accumulated in response to nitrogen from IACSP04-065 and IACSP04-627 lines, respectively. These proteins were associated with several functional categories, including carbon metabolism, amino acid metabolism, protein turnover, and oxidative stress. Although nitrogen fertilization has not changed lignin content, phenolic acids and lignin composition were changed in both species but not in the same way. Sucrose and reducing sugars increased in plants of the genotype IACSP04-065 receiving nitrogen.
机译:甘蔗是糖和生物燃料生产的重要作物。其木质纤维素生物量代表了用于第二代乙醇产量的原料的有前途的选择。氮肥可以影响不同组织及其生物聚合物,包括细胞壁多糖和木质素。木质素含量和组成是与生物质批量相关的最重要因素,以将细胞壁多糖转化为可发酵的糖。因此,重要的是要了解该原料中氮肥和木质素之间的代谢关系。在该研究中,使用基于GELC-MS / MS的大规模蛋白质组学方法来鉴定和相对量化的蛋白质在过度氮肥后的木质素组合物中的两个对比基因型中不同累积。从类似于1000个鉴定的1000个非重定蛋白,分别响应于来自IACSP04-065和IACSP04-627线的氮气差异累积28和177。这些蛋白质与若干功能类别相关,包括碳代谢,氨基酸代谢,蛋白质转换和氧化应激。虽然氮肥含量没有改变木质素含量,但两种物种在两个物种中改变酚酸和木质素组合物,但不用同样的方式。基因型IACSP04-065接受氮的植物中蔗糖和还原糖增加。

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