...
首页> 外文期刊>Euphytica >QTL-based analysis of genotype-by-environment interaction for grain yield of rice in stress and non-stress environments
【24h】

QTL-based analysis of genotype-by-environment interaction for grain yield of rice in stress and non-stress environments

机译:基于QTL的基因型-环境互作分析在胁迫和非胁迫环境下水稻的籽粒产量

获取原文
获取原文并翻译 | 示例

摘要

Use of DNA-based markers can accelerate cultivar development in variable cultivation environments since, in contrast to phenotype, DNA markers are environment-independent. In an effort to elucidate the genetic basis of genotype-by-environment interaction (G × E) for yield of rice (Oryza sativa L.), the associations between 139 AFLP markers and grain yield were determined for rice grown in fresh water (EC of 0.65 dS m?1) and saline conditions (EC of 4–8 dS m?1) with 0 kg ha?1 or 100 kg ha?1 nitrogen fertilizer in the years 2000 and 2001. A population of recombinant inbred lines of rice, developed from an IR29 × Pokkali cross, was used in the study. Both genotype × salinity and genotype × nitrogen level interactions were significant, with the genotype × salinity interaction being stronger. Through multiple regression analysis using a stepwise procedure for selecting markers, 36 markers were detected for grain yield in the four test conditions and of these 28 were detected in only one test condition implying strong environmental specificity for yield QTL expression. However, the fact that eight QTLs were detected in more than one test condition points to the existence of wide-adaptability genes in this cross. Markers with significant associations with yield explained between 37% and 48% of the yield variation in each test condition. Superior genotypes of rice were identified in all four test conditions based on their marker signatures. Furthermore, across N fertilizer regimes, yield predicted from summed additive effects of QTLs were significantly correlated with observed yield in the same year and across years. Thus marker-assisted selection can help breeders overcome the problem of low selection efficiency encountered during phenotypic selection for yield in stress environments.
机译:由于与表型相反,DNA标记与环境无关,因此基于DNA的标记的使用可以在可变的培养环境中加速品种的发展。为了阐明水稻(Oryza sativa L.)产量的基因-环境相互作用(G×E)的遗传基础,确定了淡水生长的水稻(EC)139种AFLP标记与谷物产量之间的关联0.65 dS m?1 )和生理盐水(EC为4–8 dS m?1 )和0 kg ha?1 或100 kg ha?1 氮这项研究使用了2000年和2001年的肥料。从IR29×Pokkali杂交杂交水稻培育出的重组近交自交系群体。基因型×盐度和基因型×盐度的相互作用均显着,基因型×盐度的相互作用更强。通过使用逐步选择标记的过程进行多元回归分析,在四个测试条件下检测到36个籽粒产量的标记,仅在一个测试条件下检测到这28个标记,这暗示了对产量QTL表达的强烈环境特异性。但是,在一个以上的测试条件下检测到八个QTL的事实表明该杂交中存在广泛适应性基因。与产量显着相关的标记解释了每种测试条件下产量变化的37%至48%。根据其标记特征,在所有四个测试条件下均鉴定出水稻的优良基因型。此外,在不同的氮肥施用方式下,从QTL加和效应的总和中预测的产量与同一年和多年中观察到的产量显着相关。因此,标记辅助选择可以帮助育种者克服在表型选择过程中遇到的低品位效率问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号