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首页> 外文期刊>BMC Plant Biology >The qSAC3 locus from indica rice effectively increases amylose content under a variety of conditions
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The qSAC3 locus from indica rice effectively increases amylose content under a variety of conditions

机译:来自籼稻的QSAC3基因座有效地增加了各种条件下的直链淀粉含量

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摘要

Amylose content (AC) is a critical factor for the quality of rice. It is determined by the biosynthesis gene Waxy (Wx) and a variety of quantitative trait loci (QTLs). Although many QTLs have been reported to affect rice AC, few of them have been investigated under varying growth conditions, especially various temperatures, which are known to greatly influence the AC. We analyzed the AC at different temperatures and planting seasons in a set of chromosome segment substitution lines (CSSLs) which were derived from a cross between the indica variety 9311 and the japonica variety Nipponbare carrying the same Wxb allele. A joint analysis detected a single locus, qSAC3, with a high logarithm of odds (LOD) score in four different conditions. The qSAC3 from indica 9311 (qSAC3ind) substantially increased the AC in japonica Nipponbare under all tested growth conditions. Furthermore, introducing the qSAC3ind into the soft rice variety Nangeng9108 with Wxmq, a mutant allele of Wxb, also moderately increased its AC and improved its appearance quality significantly by reducing the chalkiness of the polished rice. Our results indicate that the qSAC3ind could increase the AC of japonica rice in different environments as well as in the background of different Wx alleles and that qSAC3 is a valuable locus for fine-tuning the rice AC and ameliorating the dull endosperm in rice varieties with the Wxmq allele.
机译:直链淀粉含量(AC)是水稻质量的关键因素。它由生物合成基因蜡状(Wx)和各种定量性状基因座(QTL)决定。虽然已经报道了许多QTL来影响水稻AC,但在不同的生长条件下,很少有人调查,特别是各种温度,这已知是大大影响AC的影响。我们分析了不同温度的AC,并在一组染色体分段替代线(CSSL)中种植季节,其衍生自籼稻品种9311与携带相同WXB等位基因的粳稻品种Nipponbare之间的交叉。联合分析检测到单个轨迹QSAC3,在四种不同条件下具有高对数(LOD)得分的高对数。来自籼稻9311(QSAC3IND)的QSAC3在所有测试生长条件下,粳稻Nipponbare的AC基本上增加了AC。此外,通过WXB的突变等位基因将QSAC3IND引入软米品种Nangeng9108,其突变等位基因,也通过减少抛光米的垩白分,使其AC中度增加并显着提高了其外观质量。我们的结果表明,QSAC3IND可以在不同的环境中增加粳稻AC,以及不同WX等位基因的背景,并且QSAC3是一种珍贵的基因座,用于微观调整水稻AC并改善水稻品种中的钝胚胎植物wxmq等位基因。

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