首页> 外文期刊>Journal of Agricultural Science >Estimation of Combining Ability and Gene Action for Improvement Drought Tolerance in Bread Wheat (Triticum aestivum L.) Using GGE Biplot Techniques
【24h】

Estimation of Combining Ability and Gene Action for Improvement Drought Tolerance in Bread Wheat (Triticum aestivum L.) Using GGE Biplot Techniques

机译:利用GGE Biplot技术估算提高面包小麦(Triticum aestivum L.)耐旱性的能力和基因作用的组合

获取原文
           

摘要

Study of combining ability and gene action for drought tolerance in wheat were carried out using Genotype-by-Environment (GGE) biplot techniques. Eight-parental diallel crosses, excluding reciprocals, were grown in a randomized complete block design with three replications under two different water regimes (irrigated and rainfed) in the Agricultural Research Institute of Sararood, Kermanshah, Iran. Significant differences were found for yield potential (Y p ), stress yield (Y s ), stress tolerance index (STI), water use efficiency (WUE) and evapotranspiration efficiency (ETE). GGE biplot analysis showed that the parent A, A, A and B were the best general combiners with two additive genes (A 1 and A 2 ), for improvement of Y, STI, WUE and ETE under drought conditions, respectively. Parents A and C also exhibited positive GCA for all the studied traits. The crosses (A, D and H) × (C, E, F and G), (A, C and F) × (B, E, H and G), (A, C and E) × (B, G, H and F) and (A, C, G and D) × (F, B, E and H) for Y, STI, WUE and ETE were identified as heterotic groups with different dominant tolerance genes (D 1 and D 2 ), respectively. The polygon view of the biplot indicated that combining of A × G and A × C produced the best drought tolerance hybrids for all the traits through integrated the four tolerance genes (A 1 , A 2 , D 1 , and D 2 ).
机译:利用环境基因型(GGE)双标技术对小麦抗旱性的结合能力和基因作用进行了研究。在伊朗克尔曼莎的萨拉鲁德农业研究所,在两个不同的水情(灌溉和雨养)下,以八头亲本二叉杂交法(不包括倒数)在三个完整的随机完整块设计中生长。发现产量潜力(Y p),胁迫产量(Y s),胁迫耐受指数(STI),水分利用效率(WUE)和蒸散效率(ETE)有显着差异。 GGE双图分析表明,亲本A,A,A和B是具有两个加性基因(A 1和A 2)的最佳通用组合物,分别改善了干旱条件下的Y,STI,WUE和ETE。父母A和C对于所有研究的性状也表现出阳性的GCA。十字(A,D和H)×(C,E,F和G),(A,C和F)×(B,E,H和G),(A,C和E)×(B,G ,Y,STI,WUE和ETE的(,H,F)和(A,C,G和D)×(F,B,E和H)×(F,B,E和H)被鉴定为具有不同显性耐受基因(D 1和D 2)的杂合基团, 分别。双线图的多边形视图表明,通过整合四个耐性基因(A 1,A 2,D 1和D 2),A×G和A×C的结合产生了所有性状的最佳耐旱杂种。

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