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首页> 外文期刊>Frontiers in Plant Science >Genetic Loci Conferring Reducing Sugar Accumulation and Conversion of Cold-Stored Potato Tubers Revealed by QTL Analysis in a Diploid Population
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Genetic Loci Conferring Reducing Sugar Accumulation and Conversion of Cold-Stored Potato Tubers Revealed by QTL Analysis in a Diploid Population

机译:QTL分析揭示了二倍体群体中降低糖积累和转化的冷藏马铃薯块茎转化的遗传基因座。

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摘要

Cold-induced sweetening (CIS) caused by reducing sugar (RS) accumulation during storage in low temperature in potato tubers is a critical factor influencing the quality of fried potato products. The reconditioning (REC) by arising storage temperature is a common measure to lower down RS. However, both CIS and REC are genotype-dependent and the genetic basis remains uncertain. In the present study, with a diploid potato population with broad genetic background, four reproducible QTL of CIS and two of REC were resolved on chromosomes 5, 6, and 7 of the CIS-sensitive parent and chromosomes 5 and 11 of the CIS-resistant parent, respectively, implying that these two traits may be genetically independent. This hypothesis was also supported by the colocalization of two functional genes, a starch synthesis gene AGPS2 mapped in QTL CIS_E_07-1 and a starch hydrolysis gene GWD colocated with QTL REC_B_05-1. The cumulative effects of identified QTL were proved to contribute largely and stably to CIS and REC and confirmed with a natural population composed of a range of cultivars and breeding lines. The present research identified reproducible QTL for CIS and REC of potato in diverse conditions and elucidated for the first time their cumulative genetic effects, which provides theoretical bases and applicable means for tuber quality improvement.
机译:马铃薯块茎低温保存过程中糖(RS)积累减少引起的冷诱导甜味(CIS)是影响油炸马铃薯产品质量的关键因素。通过升高存储温度来进行调节(REC)是降低RS的常用措施。但是,CIS和REC都是基因型依赖性的,遗传基础仍然不确定。在本研究中,具有广泛遗传背景的二倍体马铃薯种群,在CIS敏感亲本的5号,6号和7号染色体以及对CIS抗性的5号和11号染色体上解析了四个可重现的CIS QTL和两个REC亲本,分别暗示这两个性状在遗传上可能是独立的。两个功能基因的共定位也支持了该假设,这两个基因是定位在QTL CIS_E_07-1中的淀粉合成基因AGPS2和与QTL REC_B_05-1共定位的淀粉水解基因GWD。事实证明,鉴定出的QTL的累积效应对CIS和REC的贡献很大且稳定,并且已被一系列品种和育种系组成的自然种群所证实。本研究确定了在各种条件下马铃薯的CIS和REC具有可重现的QTL,并首次阐明了它们的累积遗传效应,这为提高块茎质量提供了理论基础和适用手段。

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