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首页> 外文期刊>Molecular Genetics and Genomics >Transcriptome analysis of rin mutant fruit and in silico analysis of promoters of differentially regulated genes provides insight into LeMADS-RIN-regulated ethylene-dependent as well as ethylene-independent aspects of ripening in tomato
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Transcriptome analysis of rin mutant fruit and in silico analysis of promoters of differentially regulated genes provides insight into LeMADS-RIN-regulated ethylene-dependent as well as ethylene-independent aspects of ripening in tomato

机译:rin突变果的转录组分析和差异调控基因启动子的计算机分析,可深入了解LeMADS-RIN调控番茄中乙烯依赖性和乙烯依赖性的方面

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摘要

A thorough understanding of molecular mechanisms underlying ripening is the prerequisite for genetic manipulation of fruits for better shelf-life and nutritional quality. Mutation in LeMADS-RIN, a MADS-box gene, leads to non-ripening phenotype of rin fruits in tomato. Characterization of ripening-inhibitor (rin) mutant has elucidated important role of ethylene in the regulation of climacteric fruit ripening. A complete understanding of this mutation will unravel novel genetic regulatory mechanisms involved in fruit ripening. In this study, fruit transcriptomes of two genotypes, including a cultivated Indian cultivar Solanum lycopersicum cv. Pusa Ruby and a homozygous line harboring the rin mutation (LA1795) were compared to get better insight into RIN-regulated ethylene-dependent and ethylene-independent events during ripening. Cluster analysis of ripening-related genes indicated a major shift in their expression profiles in rin mutant fruit. A total of 112 genes, exhibiting expression patterns similar to that of LeMADS-RIN in wild-type fruits, showed down regulation of expression in the rin mutant. In silico analysis of putative promoters of these genes for the presence of CArG box along with ERE and ethylene inducibility of these genes revealed that genes lacking CArG box in their regulatory regions could be indirectly regulated by LeMADS-RIN. New regulators of ethylene-dependent aspect of ripening were also identified. In this study, we have made an attempt to distinguish between ethylene-dependent and ethylene-independent aspects of ripening, which will be useful for developing strategies to improve fruit-related agronomic traits in tomato and other crops.
机译:全面了解成熟的分子机制是对基因进行遗传操纵以提高保质期和营养质量的前提。 LeMADS-RIN(一种MADS-box基因)中的突变导致番茄中rin水果的非成熟表型。成熟抑制剂(rin)突变体的表征阐明了乙烯在更年期果实成熟调控中的重要作用。对该突变的完整理解将揭示与果实成熟有关的新型遗传调控机制。在这项研究中,有两个基因型的水果转录组,包括一个栽培的印度栽培品种Solanum lycopersicum cv。比较了Pusa Ruby和带有rin突变的纯合系(LA1795),以更好地了解RIN调控的乙烯依赖和乙烯独立事件。成熟相关基因的聚类分析表明,它们在rin突变果中的表达谱发生了重大变化。共有112个基因在野生型水果中表现出与LeMADS-RIN相似的表达模式,表明rin突变体的表达下调。在计算机分析中,这些基因的推定启动子是否存在CArG box以及这些基因的ERE和乙烯诱导性表明,LeMADS-RIN可以间接调节其调控区域中缺少CArG box的基因。还确定了乙烯依赖的成熟新调节剂。在这项研究中,我们试图区分乙烯依赖和乙烯依赖的成熟方式,这将有助于制定改善番茄和其他农作物果实相关农艺性状的策略。

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