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首页> 外文期刊>Plant Physiology and Biochemistry >Carotenoid profiling, in silico analysis and transcript profiling of miRNAs targeting carotenoid biosynthetic pathway genes in different developmental tissues of tomato
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Carotenoid profiling, in silico analysis and transcript profiling of miRNAs targeting carotenoid biosynthetic pathway genes in different developmental tissues of tomato

机译:番茄不同发育组织中针对类胡萝卜素生物合成途径基因的miRNA的类胡萝卜素分析,计算机分析和转录本分析

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Carotenoid biosynthetic pathway is one of the highly significant and very well elucidated secondary metabolic pathways in plants. microRNAs are the potential regulators, widely known for playing a pivotal role in the regulation of various biological as well as metabolic processes. miRNAs may assist in the metabolic engineering of the secondary metabolites for the production of elite genotypes with increased biomass and content of various metabolites. miRNA mediated regulation of carotenoid biosynthetic genes has not been elucidated so far: To illustrate the potential regulatory role of miRNAs in carotenoid biosynthesis, transcript profiling of the known miRNAs and their possible target carotenoid genes was undertaken at eight different developmental stages of tomato, using stem-loop PCR approach combined with quantitative RT-PCR. The inter-relationship amongst carotenoid content, biosynthetic genes and miRNAs was studied in depth. Comparative expression profiles of miRNA and target genes showed variable expression in different tissues studied. The expression level of miRNAs and their target carotenoid genes displayed similar pattern in the vegetative tissues as compared to the reproductive ones, viz. fruit (different stages), indicating the possibility of regulation of carotenoid biosynthesis at various stages of fruit development. This was later confirmed by the HPLC analysis of the carotenoids. The present study has further enhanced the understanding of regulation of carotenoid biosynthetic pathway in plants. The identified miRNAs can be employed to manipulate the biosynthesis of different carotenoids, through metabolic engineering for the production of lycopene rich tomatoes. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:类胡萝卜素的生物合成途径是植物中高度重要且阐明得很好的次级代谢途径之一。 microRNA是潜在的调节剂,众所周知,其在各种生物学和代谢过程的调节中起着关键作用。 miRNA可以协助次级代谢产物的代谢工程化,以产生生物量和各种代谢产物含量增加的优良基因型。迄今为止,尚未阐明miRNA介导的类胡萝卜素生物合成基因的调控:为了说明miRNA在类胡萝卜素生物合成中的潜在调控作用,已知的miRNA及其可能的目标类胡萝卜素基因的转录谱分析在番茄的八个不同发育阶段进行,使用茎环PCR方法与定量RT-PCR相结合。深入研究了类胡萝卜素含量,生物合成基因和miRNA之间的相互关系。 miRNA和靶基因的比较表达谱显示了在所研究的不同组织中的可变表达。与生殖组织相比,miRNA及其靶类胡萝卜素基因在营养组织中的表达水平相似。果实(不同阶段),表明在果实发育的各个阶段调节类胡萝卜素生物合成的可能性。后来通过类胡萝卜素的HPLC分析证实了这一点。本研究进一步增强了对植物类胡萝卜素生物合成途径调控的认识。可以通过代谢工程技术利用鉴定出的miRNA操纵不同类胡萝卜素的生物合成,以生产富含番茄红素的番茄。 (C)2016 Elsevier Masson SAS。版权所有。

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