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首页> 外文期刊>Plant Biotechnology >Polyamines as anabolic growth regulators revealed by transcriptome analysis and metabolite profiles of tomato fruits engineered to accumulate spermidine and spermine
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Polyamines as anabolic growth regulators revealed by transcriptome analysis and metabolite profiles of tomato fruits engineered to accumulate spermidine and spermine

机译:通过转录组分析和工程化番茄果实积累亚精胺和亚精胺的代谢产物谱揭示了多胺作为合成代谢生长调节剂

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Transgenic tomato (Solatium lycopersicum) genotypes that were engineered to contain high endogenous polyamines levels in fruit due to a ripening targeted expression of yeast SAM decarboxylase were used as a model system to determine the effects of enhanced spermidine (Spd) and spermine (Spm) on gene expression. Subtractive cloning of total RNA of transgenic from wild type ripening fruits resulted in isolation of several genes that were up-regulated and represented a wide range of functional classifications. To establish the global pattern of gene expression in transgenic and wild-type fruit, a custom array containing 1066 unique fruit cDNA was constructed and used to quantify levels of a large number of transcripts in transgenic and wild-type fruitsduring the ripening. About one-quarter of genes on the array were differentially regulated in transgenic compared to wild type fruits. The differentially up-regulated genes were twice as abundant as down-regulated genes in the high polyamine fruits. Thedifferentially expressed genes represented functional categories including transcription, translation, signal transduction, chaperone family, stress related, amino acid biosynthesis, ethylene biosynthesis and action, polyamine biosynthesis, isoprenoid pathway, and flavonoid biosynthesis. About 44% of the differentially regulated cDNAs included genes encoding products not yet classified for the functional attributes. Based on the results presented here on the limited transcriptome in conjunction with metabolite profiles showing significant enhancement of anabolic pathways in transgenic fruits, we propose that Spd/Spm act as anabolic growth regulator.
机译:由于酵母SAM脱羧酶的成熟靶向表达而被设计为在水果中包含高内源多胺水平的转基因番茄(Solyium lycopersicum)基因型,被用作模型系统来确定增强的亚精胺(Spd)和亚精胺(Spm)对基因表达。从野生型成熟果实中转基因总RNA的减法克隆导致几个上调基因的分离,这些基因代表了广泛的功能分类。为了建立转基因和野生型水果中基因表达的整体模式,构建了一个包含1066个独特水果cDNA的定制阵列,并用于量化成熟期间转基因和野生型水果中大量转录本的水平。与野生型水果相比,转基因芯片中约有四分之一的基因受到差异调节。在高多胺果实中,差异上调的基因是下调的基因的两倍。差异表达的基因代表功能类别,包括转录,翻译,信号转导,伴侣家族,应激相关,氨基酸生物合成,乙烯生物合成和作用,多胺生物合成,类异戊二烯途径和类黄酮生物合成。大约44%的差异调节cDNA包含的基因编码的产品尚未按功能属性分类。基于此处在有限的转录组上呈现的结果,结合代谢物谱显示转基因水果中合成代谢途径的显着增强,我们建议Spd / Spm充当合成代谢生长调节剂。

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