蚕豆种子产量稳定性评价使用GGE双图分析基因型

F. Sheikh, R. Sekhavat, H. Asteraki, A. Parkasi, M. Aghajani
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引用次数: 0

摘要

为了研究G × E互作的可采性和模式,在2015-2016和2016-2017两个种植季,在伊朗Gorgan、Dezful、Brojerd和Iranshahr四个农业研究现场站,采用3个重复的随机完全区组设计,对15个蚕豆品系和4个对照品种(Barekat、Saraziri、Baloochi和Zereshki)进行了评价。综合方差分析表明,位置、年份、年×位置互作、基因型×位置互作、基因型×年份互作和年×位置×基因型互作对籽粒产量影响显著。使用ge - biplot方法在8种环境中测试了19个基因型的性能稳定性。使用基因型×环境相互作用(GEI)模型的GGE-双图分析解释了91.5%的总相互作用效应方差。多边形图显示了三个优越的大环境,并确定了每个大环境的相容基因型;戈尔根(G15线),布罗杰德-伊朗沙尔(G3线)和伊朗沙尔(G19线)。品系G15、G7和G13的平均种子产量分别为3439、3128和3094 kg ha -1,具有较高的种子产量和产量稳定性。基于GEI和GGE- Biplot分析,Gorgan和Brojerd实验环境具有良好的分化能力。最后,基因型G12、G14和G15是最稳定的基因型,对所有测试环境的适应性较广,可以作为推荐的优良基因型作为新的商业蚕豆品种发布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Seed Yield Stability of Faba Bean (Vicia faba L.) Genotypes Using GGE Biplot Analysis
To investigate adoptability and pattern of G × E interaction, 15 faba bean lines as well as four check cultivars (including Barekat, Saraziri, Baloochi and Zereshki) were evaluated using a randomized complete block design with three replications in four agricultural research field stations of Gorgan, Dezful, Brojerd and , Iranshahr, Iran during two cropping seasons (2015-2016 and 2016-2017). Combined analysis of variance showed significant effects of location, year, year × location interaction, genotype × location interaction, genotype × year interaction and year × location × genotype interaction on grain yield. Stability in performance of the 19 genotypes was tested using GGE-Biplot approach across eight environments. GGE- Biplot analysis using a genotype × environment interaction (GEI) model explained 91.5% of total interaction effect variance. View of polygon graph revealed three superior mega-environments and the compatible genotypes were determined for each mega-environment; Gorgan (Line G15), Brojerd-Iranshahr (Line G3) and Iranshahr (Line G19). Lines G15, G7 and G13 with average seed yield of 3439, 3128 and 3094 kg ha -1 , respectively, had higher seed yield and yield stability. Based on GEI and GGE- Biplot analysis, Gorgan and Brojerd experimental environments had good differentiation ability. Finally, genotypes G12, G14 and G15 were the most stable genotypes with wider adaptation to all the tested environments and can be recommended as the superior genotypes for being released as new commercial faba bean cultivars.
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