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Assessment of testcross performance and genetic diversity of yellow endosperm maize lines derived from adapted × exotic backcrosses

机译:适应性×外来回交衍生的黄色胚乳玉米品系的testcross性能和遗传多样性评估

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摘要

Introduction of exotic maize (Zea mays L.) into adapted tropical germplasm may enhance genetic variability and lead to greater progress from selection. The first objective of this study was to determine if yellow endosperm lines derived from adapted × exotic backcrosses contain exotic alleles that are superior to the recurrent adapted parental line for yield and other agronomic traits in tropical environments. Thirteen exotic yellow maize inbred lines were crossed to an adapted orange line (KUSR) and the F1s were backcrossed to KUSR to generate the first backcrosses. Fifty BC1F4 lines derived from these backcrosses and the recurrent parent were crossed to a common inbred tester (L4001) to form testcrosses, which were evaluated at eight environments in Nigeria. Testcrosses of the BC-derived lines differed significantly for grain yield and other agronomic traits. Only two testcrosses yielded significantly less than L4001 × KUSR, with the best 15 testcrosses producing between 289 and 1,056 kg/ha more grain yield than L4001 × KUSR. The best testcrosses were similar to or better than L4001 × KUSR for other agronomic traits. The second objective of this study was to assess the extent of genetic diversity present among the BC-derived lines. We genotyped 46 BC-derived lines including KUSR and L4001 with 10 AFLP primer pairs and found 491 polymorphic fragments. The average allelic diversity of the lines was 0.30 ± 0.01. The genetic distance of each BC-derived line from KUSR ranged between 0.49 and 0.91. The average genetic distance for all pairs of the BC-derived lines was 0.68 ± 0.004, varying from 0.34 to 0.92. The increased grain yield and genetic diversity observed in these studies provide evidence that exotic germplasm can contribute new alleles to expand the genetic base of tropical maize and develop high-yielding hybrids.
机译:将外来玉米(Zea mays L.)引入适应的热带种质中可能会增强遗传变异性,并导致选择方面的更大进步。这项研究的第一个目的是确定从适应性×外来回交产生的黄色胚乳品系是否包含外来等位基因,这些等位基因在热带环境下对于产量和其他农艺性状是否优于轮回适应性亲本系。将13个外来的黄色玉米自交系与适应性橙色系(KUSR)杂交,并将F1 s与KUSR回交以产生第一个回交。将来自这些回交和轮回亲本的五十条BC1 F4 品系与一个普通的自交测试仪(L4001)杂交以形成测试杂交,在尼日利亚的八个环境中对其进行了评估。 BC衍生品系的种间杂交在籽粒产量和其他农艺性状上差异显着。只有两个杂交试验的产量显着低于L4001×KUSR,而最好的15个杂交试验的产量比L4001×KUSR高出289至1,056 kg / ha。其他农艺性状的最佳杂交试验与L4001×KUSR相似或更好。这项研究的第二个目标是评估BC衍生品系之间存在的遗传多样性程度。我们用10个AFLP引物对基因组来自BC的KUSR和L4001株系进行了基因分型,发现了491个多态片段。该品系的平均等位基因多样性为0.30±0.01。每个BC衍生系与KUSR的遗传距离在0.49至0.91之间。所有成对的BC衍生品系的平均遗传距离为0.68±0.004,从0.34到0.92不等。在这些研究中观察到的增加的谷物产量和遗传多样性提供了证据,表明外来种质可以贡献新的等位基因,以扩展热带玉米的遗传基础并开发高产杂交种。

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  • 来源
    《Theoretical and Applied Genetics》 |2006年第1期|90-99|共10页
  • 作者单位

    International Institute of Tropical Agriculture;

    International Institute of Tropical Agriculture;

    International Institute of Tropical Agriculture;

    Department of Crop Protection and Environmental Biology University of Ibadan;

    International Institute of Tropical Agriculture;

    International Institute of Tropical Agriculture;

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