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Genotype-by-environment interaction of newly-developed sweet potato genotypes for storage root yield yield-related traits and resistance to sweet potato virus disease

机译:新开发的甘薯基因型的基因-环境相互作用用于贮藏根产量产量相关性状和对甘薯病毒病的抵抗力

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摘要

Genotype-by-environment interaction analysis is key for selection and cultivar release, and to identify suitable production and test environments. The objective of this study was to determine the magnitude of genotype-by-environment interaction (GEI) for storage root yield, yield-related traits and sweet potato virus disease (SPVD) resistance among candidate sweet potato genotypes in Tanzania. Twenty-three newly bred clones and three check varieties were evaluated across six diverse environments using a randomized complete block design with three replications. The Additive Main Effect and Multiplicative Interaction (AMMI) and genotype and genotype-by-environment (GGE) biplot analyses were used to determine GEI of genotypes. Genotype, environment and GEI effects were highly significant (P ≤ 0.01) for the assessed traits. Further, AMMI analysis of variance revealed highly significant (P ≤ 0.001) differences among genotypes, environments and G × E interaction effects for all the studied traits. Both AMMI and GGE biplot analyses identified the following promising genotypes: G2 (Resisto × Ukerewe), G3 (Ukerewe × Ex-Msimbu-1), G4 (03-03 x SPKBH008), G12 (Ukerewe × SPKBH008) and G18 (Resisto × Simama) with high yields, high dry matter content and SPVD resistance across all test environments. The candidate genotypes are recommended for further stability tests and release in Tanzania or similar environments.
机译:不同环境的基因型相互作用分析是选择和释放品种以及确定合适的生产和测试环境的关键。这项研究的目的是确定坦桑尼亚的甘薯候选基因型之间的贮藏根产量,产量相关性状和甘薯病毒病(SPVD)抗性的基因-环境相互作用(GEI)强度。使用带有三个重复的随机完整区组设计,在六个不同的环境中评估了二十三个新繁殖的克隆和三个检查品种。使用加性主效应和乘性相互作用(AMMI)以及基因型和按环境划分的基因型(GGE)双图分析来确定基因型的GEI。对于评估的性状,基因型,环境和GEI效应非常显着(P≤0.01)。此外,AMMI方差分析显示,对于所有研究的性状,基因型,环境和G×E相互作用效应之间存在显着差异(P≤0.001)。 AMMI和GGE双图分析均确定了以下有前景的基因型:G2(Resisto×Ukerewe),G3(Ukerewe×Ex-Msimbu-1),G4(03-03 x SPKBH008),G12(Ukerewe×SPKBH008)和G18(Resisto× Simama)在所有测试环境中均具有高产量,高干物质含量和SPVD抗性。建议将候选基因型用于进一步的稳定性测试,并在坦桑尼亚或类似环境中释放。

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