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首页> 外文期刊>Scientific reports. >Comparative Transcriptome Analysis of Chinary, Assamica and Cambod tea (Camellia sinensis) Types during Development and Seasonal Variation using RNA-seq Technology
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Comparative Transcriptome Analysis of Chinary, Assamica and Cambod tea (Camellia sinensis) Types during Development and Seasonal Variation using RNA-seq Technology

机译:使用RNA-SEQ技术在开发和季节性变化过程中China的,assamica和Cambod Tea(Camellia Sinensis)类型的比较转录体分析

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Tea quality and yield is influenced by various factors including developmental tissue, seasonal variation and cultivar type. Here, the molecular basis of these factors was investigated in three tea cultivars namely, Him Sphurti (H), TV23 (T), and UPASI-9 (U) using RNA-seq. Seasonal variation in these cultivars was studied during active (A), mid-dormant (MD), dormant (D) and mid-active (MA) stages in two developmental tissues viz. young and old leaf. Development appears to affect gene expression more than the seasonal variation and cultivar types. Further, detailed transcript and metabolite profiling has identified genes such as F3'H, F3'5'H, FLS, DFR, LAR, ANR and ANS of catechin biosynthesis, while MXMT, SAMS, TCS and XDH of caffeine biosynthesis/catabolism as key regulators during development and seasonal variation among three different tea cultivars. In addition, expression analysis of genes related to phytohormones such as ABA, GA, ethylene and auxin has suggested their role in developmental tissues during seasonal variation in tea cultivars. Moreover, differential expression of genes involved in histone and DNA modification further suggests role of epigenetic mechanism in coordinating global gene expression during developmental and seasonal variation in tea. Our findings provide insights into global transcriptional reprogramming associated with development and seasonal variation in tea.
机译:茶品质和产量受到各种因素的影响,包括发育组织,季节性变化和品种类型。在此,在三种茶草品种中研究了这些因素的分子基础,即使用RNA-SEQ,他是Sphurti(H),TV23(T)和UPASI-9(U)。在两个发育组织ZiZ中的活性(A),中休眠(MD),休眠(MD),休眠(D)和中活性(MA)阶段期间研究了这些品种的季节变化。年轻和老叶子。发育似乎影响基因表达超过季节性变异和品种类型。此外,详细的转录物和代谢物分析已经鉴定了Cafechin生物合成的F3'H,F3'5'H,FLS,DFR,Lar,ANR和ANS等基因,而咖啡因生物合成/分解代谢的MXMT,SAMS,TCS和XDH为键三种不同茶叶中的开发和季节变异过程中的监管机构。此外,与植物激素如ABA,Ga,乙烯和植物蛋白相关的基因的表达分析表明它们在茶叶季节变异期间的发育组织中的作用。此外,参与组蛋白和DNA改性的基因的差异表达进一步表明表观遗传机制在茶叶中发育和季节变异过程中协调全局基因表达中的作用。我们的调查结果提供了与茶叶中的开发和季节性变化相关的全球转录重新编程的见解。

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