首页> 外文期刊>Journal of Experimental Botany >A major quantitative trait locus for increasing cadmium-specific concentration in rice grain is located on the short arm of chromosome 7.
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A major quantitative trait locus for increasing cadmium-specific concentration in rice grain is located on the short arm of chromosome 7.

机译:增加稻米中镉比浓度的主要数量性状位点位于第7号染色体的短臂上。

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摘要

Large phenotypic variations in the cadmium (Cd) concentration of rice grains and shoots have been observed. However, the genetic control of Cd accumulation remains poorly understood. Quantitative trait loci (QTLs) determining the grain Cd concentration of rice grown in a Cd-polluted paddy field were identified. Using a mapping population consisting of 85 backcross inbred lines derived from a cross between the low-Cd-accumulating cultivar Sasanishiki (japonica) and high-Cd-accumulating cultivar Habataki (indica), two QTLs for increasing grain Cd concentration were found on chromosomes 2 and 7. A major-effect QTL, qGCd7 (QTL for grain Cd on chromosome 7), was detected on the short arm of chromosome 7. It accounted for 35.5% of all phenotypic variance in backcross inbred lines. qGCd7 was not genetically related to any QTLs for concentrations of essential trace metals (Cu, Fe, Mn, and Zn) or those for agronomic traits such as heading date, suggesting that this QTL is specific to Cd. Furthermore, the existence of qGCd7 was confirmed using chromosome segment substitution lines (CSSLs) and an F2 population from a cross between the target CSSL and Sasanishiki grown in a Cd-polluted paddy soil. To our knowledge, qGCd7 is a novel QTL with major effects for increasing grain Cd concentrations.
机译:水稻籽粒和芽中镉(Cd)浓度的表型变化很大。但是,对Cd积累的遗传控制仍然知之甚少。确定了定量性状位点(QTLs),其确定了在Cd污染的稻田中生长的水稻的谷物Cd浓度。利用由低Cd积累品种Sasanishiki(japonica)和高Cd积累品种Habataki(indica)之间的杂交衍生的85个回交自交系组成的作图群体,在2号染色体上发现了两个增加Cd籽粒浓度的QTL。 7.在7号染色体的短臂上检测到一个主要的QTL qGCd7(7号染色体上的镉的QTL),占回交自交系所有表型变异的35.5%。对于必需的痕量金属(铜,铁,锰和锌)浓度或农艺性状(抽穗期)而言,qGCd7与任何QTL在遗传上均不相关,这表明该QTL对Cd具有特异性。此外,qGCd7的存在是通过使用染色体区段替换系(CSSLs)和在Cd污染的稻田中生长的目标CSSL和Sasanishiki之间的杂交获得的F2种群来证实的。据我们所知,qGCd7是一种新颖的QTL,对增加谷物Cd的浓度具有重要作用。

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