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首页> 外文期刊>BMC Genomics >Integrated metabolomics and genomics analysis provides new insights into the fiber elongation process in Ligon lintless-2 mutant cotton (Gossypium hirsutum L.)
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Integrated metabolomics and genomics analysis provides new insights into the fiber elongation process in Ligon lintless-2 mutant cotton (Gossypium hirsutum L.)

机译:集成的代谢组学和基因组学分析提供了对Ligon lintless-2突变棉(Gossypium hirsutum L.)纤维伸长过程的新见解。

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Background The length of cotton fiber is an important agronomic trait characteristic that directly affects the quality of yarn and fabric. The cotton (Gossypium hirsutum L.) fiber mutation, Ligon lintless-2, is controlled by a single dominant gene (Li2) and results in extremely shortened lint fibers on mature seeds with no visible pleiotropic effects on vegetative growth and development. The Li2 mutant phenotype provides an ideal model system to study fiber elongation. To understand metabolic processes involved in cotton fiber elongation, changes in metabolites and transcripts in the Li2 mutant fibers were compared to wild-type fibers during development. Results Principal component analysis of metabolites from GC-MS data separated Li2 mutant fiber samples from WT fiber samples at the WT elongation stage, indicating that the Li2 mutation altered the metabolome of the mutant fibers. The observed alterations in the Li2 metabolome included significant reductions in the levels of detected free sugars, sugar alcohols, sugar acids, and sugar phosphates. Biological processes associated with carbohydrate biosynthesis, cell wall loosening, and cytoskeleton were also down-regulated in Li2 fibers. Gamma-aminobutyric acid, known as a signaling factor in many organisms, was significantly elevated in mutant fibers. Higher accumulation of 2-ketoglutarate, succinate, and malate suggested higher nitrate assimilation in the Li2 line. Transcriptional activation of genes involved in nitrogen compound metabolism along with changes in the levels of nitrogen transport amino acids suggested re-direction of carbon flow into nitrogen metabolism in Li2 mutant fibers. Conclusions This report provides the first comprehensive analysis of metabolite and transcript changes in response to the Li2 mutation in elongating fibers. A number of factors associated with cell elongation found in this study will facilitate further research in understanding metabolic processes of cotton fiber elongation.
机译:背景技术棉纤维的长度是重要的农艺性状特征,直接影响纱线和织物的质量。棉花(陆地棉)纤维突变Ligon lintless-2受单个显性基因(Li 2 )控制,导致成熟种子上的棉绒纤维极短,对棉籽无多效作用。营养生长和发展。 Li 2 突变表型为研究纤维伸长提供了理想的模型系统。为了了解棉纤维伸长过程中的代谢过程,将Li 2 突变纤维中代谢物和转录物的变化与野生型纤维进行了比较。结果WT延伸期从GC-MS数据中分离出的Li 2 突变纤维样品和WT纤维样品中代谢产物的主成分分析,表明Li 2 突变改变了代谢组突变纤维。 Li 2 代谢组中观察到的变化包括检测到的游离糖,糖醇,糖酸和糖磷酸酯水平的显着降低。 Li 2 纤维中与碳水化合物生物合成,细胞壁松弛和细胞骨架相关的生物学过程也被下调。 γ-氨基丁酸,在许多生物中被称为信号传导因子,在突变纤维中显着升高。 Li 2 品系中2-酮戊二酸,琥珀酸和苹果酸的积累量较高,表明硝酸盐同化程度更高。氮化合物代谢相关基因的转录激活以及氮转运氨基酸水平的变化表明,Li 2 突变纤维中碳流重新导向氮代谢。结论本报告首次全面分析了伸长纤维中Li 2 突变对代谢产物和转录本变化的影响。这项研究中发现的许多与细胞伸长相关的因素将有助于进一步研究,以了解棉纤维伸长的代谢过程。

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