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Expression profiling of potato germplasm differentiated in quality traits leads to the identification of candidate flavour and texture genes

机译:品质性状分化的马铃薯种质的表达谱分析导致候选风味和质地基因的鉴定

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摘要

Quality traits such as flavour and texture are assuming a greater importance in crop breeding programmes. This study takes advantage of potato germplasm differentiated in tuber flavour and texture traits. A recently developed 44 000-element potato microarray was used to identify tuber gene expression profiles that correspond to differences in tuber flavour and texture as well as carotenoid content and dormancy characteristics. Gene expression was compared in two Solanum tuberosum group Phureja cultivars and two S. tuberosum group Tuberosum cultivars; 309 genes were significantly and consistently up-regulated in Phureja, whereas 555 genes were down-regulated. Approximately 46% of the genes in these lists can be identified from their annotation and amongst these are candidates that may underpin the Phureja/Tuberosum trait differences. For example, a clear difference in the cooked tuber volatile profile is the higher level of the sesquiterpene α-copaene in Phureja compared with Tuberosum. A sesquiterpene synthase gene was identified as being more highly expressed in Phureja tubers and its corresponding full-length cDNA was demonstrated to encode α-copaene synthase. Other potential ‘flavour genes’, identified from their differential expression profiles, include those encoding branched-chain amino acid aminotransferase and a ribonuclease suggesting a mechanism for 5′-ribonucleotide formation in potato tubers on cooking. Major differences in the expression levels of genes involved in cell wall biosynthesis (and potentially texture) were also identified, including genes encoding pectin acetylesterase, xyloglucan endotransglycosylase and pectin methylesterase. Other gene expression differences that may impact tuber carotenoid content and tuber life-cycle phenotypes are discussed.
机译:在农作物育种计划中,诸如风味和质地之类的品质特征变得越来越重要。这项研究利用了马铃薯块茎的风味和质地特征来区分种质。最近开发的具有44000个元素的马铃薯微阵列用于鉴定与块茎风味和质地以及类胡萝卜素含量和休眠特性的差异相对应的块茎基因表达谱。比较了两个马铃薯块茎Phureja品种和两个马铃薯块茎Stubrosum品种的基因表达。 309个基因在Phureja中显着且持续上调,而555个基因下调。这些列表中大约有46%的基因可以从它们的注释中识别出来,其中有一些候选基因可能支持Phureja / Tuberosum性状差异。例如,与块茎类相比,煮熟的块茎挥发性成分的明显差异是,Phureja中的倍半萜烯α-可可烯含量较高。倍半萜合酶基因被鉴定为在Phureja块茎中表达更高,并且其相应的全长cDNA被证明编码α-copaene合酶。从它们的差异表达谱中可以识别出其他潜在的“风味基因”,包括那些编码分支链氨基酸氨基转移酶和核糖核酸酶的基因,暗示了烹饪马铃薯块茎中5'-核糖核苷酸形成的机制。还确定了参与细胞壁生物合成的基因(和可能的质地)的基因表达水平的主要差异,包括编码果胶乙酰酯酶,木葡聚糖内转糖基化酶和果胶甲基酯酶的基因。讨论了可能影响块茎类胡萝卜素含量和块茎生命周期表型的其他基因表达差异。

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