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Transcriptome profiling of cytokinin and auxin regulation in tomato root.

机译:番茄根中细胞分裂素和生长素调节的转录组分析。

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Tomato is a model and economically important crop plant with little information available about gene expression in roots. Currently, there have only been a few studies that examine hormonal responses in tomato roots and none at a genome-wide level. This study examined the transcriptome atlas of tomato root regions (root tip, lateral roots, and whole roots) and the transcriptional regulation of each root region in response to the plant hormones cytokinin and auxin using Illumina RNA sequencing. More than 165 million 1x54 base pair reads were mapped onto the Solanum lycopersicum reference genome and differential expression patterns in each root region in response to each hormone were assessed. Many novel cytokinin- and auxin-induced and -repressed genes were identified as significantly differentially expressed and the expression levels of several were confirmed by qPCR. A number of these regulated genes represent tomato orthologues of cytokinin- or auxin-regulated genes identified in other species, including CKXs, type-A RRs, Aux/IAAs, and ARFs. Additionally, the data confirm some of the hormone regulation studies for recently examined genes in tomato such as SlIAAs and SlGH3s. Moreover, genes expressed abundantly in each root region were identified which provide a spatial distribution of many classes of genes, including plant defence, secondary metabolite production, and general metabolism across the root. Overall this study presents the first global expression patterns of hormone-regulated transcripts in tomato roots, which will be functionally relevant for future studies directed towards tomato root growth and development.
机译:番茄是一种典范植物,在经济上很重要,几乎没有关于根中基因表达的信息。目前,只有很少的研究检查番茄根中的激素反应,而没有在整个基因组水平上进行研究。这项研究使用Illumina RNA测序技术检查了番茄根区(根尖,侧根和全根)的转录组图谱,以及每个根区对植物激素细胞分裂素和生长素的反应转录调控。超过1.65亿个1x54碱基对读数被映射到茄果参考基因组上,并评估了响应每种激素的每个根区域的差异表达模式。许多新的细胞分裂素和生长素诱导和抑制基因被鉴定为显着差异表达,并且qPCR证实了其中几个表达水平。这些受调控的基因中的许多代表在其他物种(包括CKX,A型RR,Aux / IAAs和ARF)中鉴定的细胞分裂素或生长素调控基因的番茄直向同源物。另外,这些数据证实了对番茄中最近检查过的基因(如SLAIAs和SlGH3s)进行的一些激素调节研究。此外,鉴定出在每个根部区域中表达丰富的基因,这些基因提供了许多类基因的空间分布,包括植物防御,次级代谢产物的产生以及整个根部的总体代谢。总的来说,这项研究提出了番茄根中激素调节转录本的首个全球表达模式,这与针对番茄根生长和发育的未来研究在功能上相关。

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