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首页> 外文期刊>Molecular Genetics and Genomics >Systematic analysis of potato acid invertase genes reveals that a cold-responsive member, StvacINV1, regulates cold-induced sweetening of tubers
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Systematic analysis of potato acid invertase genes reveals that a cold-responsive member, StvacINV1, regulates cold-induced sweetening of tubers

机译:马铃薯酸转化酶基因的系统分析表明,冷应答成员StvacINV1调节冷诱导的块茎增甜

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摘要

Acid invertase is believed to play a regulatory role during plant developmental processes and to respond to environmental stimuli. The expression profiles of the entire acid invertase family are not yet available for potato. By searching existing databases, it was determined that there are at least six acid invertase genes in potato, including four cell-wall invertase genes and two vacuolar invertase genes. They were subjected to comparative expression profiling in various organs of potato plants and in stored tubers to exploit their potential functions. The results revealed that each gene exhibited a unique expression pattern, which differed in transcript abundance or showed organ-specific features, pointing to the possible involvement of individual genes in plant development. The vacuolar invertase gene StvacINV1 had the highest expression level among three genes detected in the potato tubers. Further storage experiments showed that StvacINV1 was strongly induced by low temperatures, which is consistent with glucose accumulation in cold-stored tubers. Suppression of StvacINV1 by the antisense transformation in potato confirmed that lower StvacINV1 transcript abundance in transgenic tubers is related to lower reducing sugar content and lighter chip color in comparison with the wild type. The evidence strongly suggests that StvacINV1 is a gene involved in regulation of cold-induced sweetening of potato tubers. This provides an avenue for studying the mechanism involved in the regulation of the cold-induced sweetening trait and for agronomic enhancement.
机译:据信酸转化酶在植物发育过程中起调节作用,并对环境刺激作出反应。整个酸转化酶家族的表达谱尚不适用于马铃薯。通过搜索现有数据库,确定马铃薯中至少有六个酸性转化酶基因,包括四个细胞壁转化酶基因和两个液泡转化酶基因。他们在马铃薯植物的各个器官和储藏的块茎中进行了比较表达谱分析,以开发其潜在功能。结果表明,每个基因表现出独特的表达模式,其转录丰度不同或显示器官特异性特征,表明单个基因可能参与植物发育。在马铃薯块茎中检测到的三个基因中,液泡转化酶基因StvacINV1的表达水平最高。进一步的储藏实验表明,StvacINV1被低温强烈诱导,这与冷储块茎中葡萄糖的积累一致。在马铃薯中通过反义转化抑制StvacINV1证实与野生型相比,转基因块茎中较低的StvacINV1转录本丰度与较低的还原糖含量和较浅的芯片颜色有关。有力的证据表明,StvacINV1是一个基因,参与调节马铃薯块茎冷诱导的甜味。这为研究参与调节冷诱导甜味性状的机制和农艺增强提供了途径。

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