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首页> 外文期刊>Journal of Crop Improvement >Adaptability and Stability of Bean Cultivars as Determined via Yield-Stability Statistic and GGE Biplot Analysis
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Adaptability and Stability of Bean Cultivars as Determined via Yield-Stability Statistic and GGE Biplot Analysis

机译:通过产量稳定度统计和GGE Biplot分析确定豆类品种的适应性和稳定性

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摘要

International centers, such as CIAT, routinely conduct crop performance tests across years and locations internationally, generating valuable multienvironment trial (MET) data. These data must be properly evaluated and interpreted to enhance efficiency of breeding/testing programs. The purposes of this study were to identify superior bean (Phaseolus vulgaris) cultivars from MET conducted from 1995-2002 in eight southern African countries and to evaluate test locations to improve testing efficiency. Analyses of variance by year across locations revealed significant variation among cultivars in seven years as well as significant variation associated with cultivar-by-location interaction in all eight years. Kang's YSj statistic and GGE biplot methodology based on principal-component analysis helped identify cultivars that had general and/or specific adaptation across/to locations. These methods were also useful in identifying cultivars whose stability/instability was influenced by the linear effect ofenvironmental index. The GGE biplot methodology helped identify redundant and/or non-informative locations. We conclude that the number of test sites used for screening of germplasm in CIAT's southern African bean program can easily be reduced. Elimination of some of the redundant locations could save the CIAT's common bean testing program valuable resources, such as time, labor, and money. Greater use should be made of those test locations that showed greater differentiation among cultivars, e.g., Bembeke, Chitedze, and Delmas. The use of environmental index as a covariate provided only limited amount of information. In half of the trials, the linear effect of environmental index affected the stability of certain cultivars.
机译:CIAT等国际中心在国际上跨年和跨地区例行进行作物性能测试,生成有价值的多环境试验(MET)数据。必须正确评估和解释这些数据,以提高育种/测试程序的效率。本研究的目的是从1995-2002年在八个南部非洲国家的MET中鉴定优质豆类(Phaseolus vulgaris)品种,并评估测试地点以提高测试效率。各地域按年的方差分析显示,七年来各品种间的显着差异,以及在整整八年内与品种间的交互作用相关的显着差异。康的基于主成分分析的YSj统计量和GGE双线图方法有助于确定在各个位置/各个位置具有一般和/或特定适应性的品种。这些方法也可用于鉴定其稳定性/不稳定性受环境指数线性效应影响的品种。 GGE双线图方法论有助于确定冗余和/或非信息性位置。我们得出的结论是,可以容易地减少CIAT南部非洲豆项目中用于筛选种质的测试位点的数量。消除某些冗余位置可以节省CIAT的通用bean测试程序的宝贵资源,例如时间,劳动力和金钱。应该更多地利用那些在品种之间表现出更大差异的测试位置,例如本贝克,奇德兹和德尔马斯。使用环境指数作为协变量只能提供有限的信息量。在一半的试验中,环境指数的线性影响影响了某些品种的稳定性。

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