利用大刍草渗入系群体定位玉米株高和穗位高QTL
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国家重点研发计划(2016YFD0101803);国家自然科学基金项目(31801319);湖南省教育厅优秀青年项目(18B117)


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    摘要:

    利用玉米自交系W22与大刍草杂交衍生得到的包含866个家系的渗入系群体,结合均匀覆盖玉米全基因组的19 838个SNP分子标记,采用R/qtl的多QTL模型对玉米株高和穗位高进行高精度的QTL定位分析。结果表明:玉米株高和穗位高存在广泛的遗传变异,属于典型的数量性状,由微效多基因控制;共检测到4个控制株高的QTL,分别位于第1、5和8染色体上,单个株高QTL表型贡献率变幅为2.33%~4.85%,加性效应的变幅为2.33~6.01 cm;共检测到10个控制穗位高的QTL,分别位于第1、2、3、5、6、7和8染色体上,单个穗位高QTL表型贡献率的变幅为1.77%~6.15%,加性效应的变幅为1.75~6.25 cm。

    Abstract:

    Using a large population of 866 maize-teosinte introgression lines that has been genotyped into 19,838 SNP markers, we performed a high resolution QTL mapping of the plant height and ear height. The results showed that there are wide genetic variations in plant height and ear height, which belong to typical quantitative traits and are controlled by the genes of small effect. Totally, 4 QTL of the plant height were located on chromosome 1, 5 and 8, and the phenotypic contribution rate and additive effect of each QTL ranged from 2.33% to 4.85% and from 2.33 cm to 6.01 cm, respectively. In addition, 10 QTL of the ear height were located on chromosome 1, 2, 3, 5, 6, 7 and 8, and the phenotypic contribution rate and additive effect of each QTL ranged from 1.77% to 6.15% and from 1.75 cm to 6.25 cm, respectively.

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柳志华,肖仁杰,徐莹,罗红兵,黄成.利用大刍草渗入系群体定位玉米株高和穗位高QTL[J].湖南农业大学学报:自然科学版,2020,46(4):.

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  • 在线发布日期: 2020-08-17
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