...
首页> 外文期刊>Australian Journal of Crop Science >Genotype by environment analysis of rice (Oryza sativa L.) populations under drought stressed and well-watered environments
【24h】

Genotype by environment analysis of rice (Oryza sativa L.) populations under drought stressed and well-watered environments

机译:干旱强调和浇水环境下稻米(Oryza Sativa L.)种群的基因型

获取原文

摘要

In Kenya, the key abiotic stress affecting rice production is drought stress which is experienced mainly during reproductive phase of the crop. This study evaluated the performance of Kenyan rice populations including 19 generation of crosses, 6 parental and 5 checks under well-watered and drought stressed environment with the aim of identifying the phenotypic traits that confer drought tolerance in rice. The 19 generation of crosses were in F 3 when they were evaluated in the short rains season and later advanced to F 4 in the long rains season. Nineteen generation of crosses rice (Oryza sativa L.) lines, six parental and five check lines were evaluated for response to drought under drought stressed and well-watered environment. The study was conducted over two seasons in the year 2016/2017 at Kenya Agricultural Livestock Research Organization (KALRO) -Mwea Centre. The experiment was set up in an alpha lattice design with three replications. Drought stress was imposed at panicle initiation by withholding irrigation till physiological maturity meanwhile the well-watered environment continued to enjoy the recommended irrigation regime from planting to physiological maturity. Yield data were scored for drought tolerance. AMMI analysis of variance for grain yield showed that genotypes from crosses of crosses of SARO5XNERICA11, NERICA2XSARO5 and NERICA15XSARO5 expressed high grain yield. AMMI stability Variance (ASV) showed genotypes NERICA15, Duorado Precoce and progenies from crosses of NERICA11XNERICA2, SARO5XKomboka and NERICA2XNERICA11 expressed high stability in both well-watered and drought-stressed environment. GGE analysis showed that Principal Components (PC1) and PC2 accounted for 96.46% and 3.54%, respectively. GGE biplots showed that genotypes from crosses SARO5XNERICA11 and NERICA15XSARO5 were the most stable and high yielding. GGE biplots ranked the rice lines as follows: those above average in performance, the stable ones, unstable and those below average in performance. SARO5XNERICA11 is worth of selection due to its high mean yield value and is stable across the mega-environments.
机译:在肯尼亚,影响水稻生产的关键非生物胁迫是干旱胁迫,主要在作物的生殖阶段体验。本研究评估了肯尼亚稻种群的表现,包括19种次世界,6个父母和5种检查,并在浇水和干旱的危险环境下检查,目的是鉴定赋予水稻的干旱耐受性的表型特征。当在短雨季评估时,19代十字架是在F 3中,后来在长期雨季进入F 4。 19世纪一代过稻(Oryza Sativa L.)线,六条父母和五条检查线进行评估,以应对干旱胁迫和浇水环境下的干旱。该研究在肯尼亚农业畜牧研究组织(Kalro)-MWEA中心的2016/2017年进行了两个季节。该实验设置在具有三种复制的Alpha格子设计中。通过扣留灌溉,在生理到期灌注中施加干旱胁迫,灌注灌注环境继续享受推荐的灌溉制度,从种植到生理成熟时。屈服数据被评分为耐旱性。 AMMI对谷物产量的差异分析表明,来自Saro5xnerica11,Nerica2xsaro5和Nerica15xsaro5的十字架的基因型表达了高颗粒产率。 AMMI稳定性方差(ASV)显示了基因型Nerica15,来自Nerica11xnerica2的十字架的Duorado射精和后代,Saro5xkomboka和Nerica2xnerica11在含水量和干旱的环境中表达了高稳定性。 GGE分析表明,主要成分(PC1)和PC2分别占96.46%和3.54%。 GGE总体表明,来自Crosss Saro5xNerica11和Nerica15xsaro5的基因型是最稳定和高的屈服。 GGE双点如下排名:稻米:高于平均性能,稳定的,不稳定,低于平均性能。由于其高平均产量值,SARO5xNERICA11是值得的,并且在巨型环境中稳定。

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