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埃塞俄比亚西部低磷土壤条件下大豆(Glycine max L.)生物量产量和根系特性的双列分析。

Diallel analysis of soybean (Glycine max L.) for biomass yield and root characteristics under low phosphorus soil conditions in Western Ethiopia.

机构信息

International Institute of Tropical Agriculture, Ibadan, Nigeria.

International Institute of Tropical Agriculture, Lusaka, Zambia.

出版信息

PLoS One. 2023 Feb 6;18(2):e0281075. doi: 10.1371/journal.pone.0281075. eCollection 2023.

Abstract

Combining ability studies under low soil P conditions provides useful information on the inheritance of important traits to improve soybean for low P tolerance. The study aimed at determining the combining ability and gene actions of biomass yield and root traits in soybean under low phosphorus conditions. Nine parental genotypes and their 36 half diallel F2/F3 progenies were evaluated at two locations in Ethiopia on soils of low P availability. Highly significant (P<0.01) general combining ability (GCA) were found for all the traits and specific combining ability (SCA) for root dry weight and root fresh weight; while the SCA effects of all the rest of the traits were significant (P<0.05). The higher relative contributions of GCA over SCA revealed the preponderance of additive gene action in the inheritance of biomass yield, root dry weight, biomass dry weight, root volume, and root fresh weight with respective relative GCA:SCA contributions of (60.6, 39.4), (50.4, 49.6), (54.9, 45.1), (51.1, 48.9), and (52.1, 47.9); while the narrow-sense heritability was high (34.3%) only for biomass yield. Hardee-1 displayed significant (P<0.05) and positive GCA effects for most of the studied traits, and several crosses involving this parent showed superior performances. The traits i.e., biomass yield, biomass dry weight, root volume and root fresh weight showed highly (P<0.001) correlation with grain yield. Thus, breeding programs aiming to improve soybean for biomass yield and root traits under low-P condition can use Hardee-1 as a parent.

摘要

在低土壤磷条件下进行的配合力研究为提高大豆对低磷耐性的重要性状遗传提供了有用信息。本研究旨在确定低磷条件下大豆生物量产量和根系性状的配合力和基因作用。在埃塞俄比亚的两个地点,对 9 个亲本基因型及其 36 个半双列 F2/F3 后代在低磷可用性土壤上进行了评估。所有性状均表现出极显著(P<0.01)的一般配合力(GCA),根干重和根鲜重表现出特定配合力(SCA);而其余所有性状的 SCA 效应均显著(P<0.05)。GCA 相对于 SCA 的较高相对贡献表明,在生物量产量、根干重、生物量干重、根体积和根鲜重的遗传中,加性基因作用占优势,各自的相对 GCA:SCA 贡献分别为(60.6,39.4)、(50.4,49.6)、(54.9,45.1)、(51.1,48.9)和(52.1,47.9);而狭义遗传力仅为生物量产量的 34.3%。Hardee-1 对大多数研究性状表现出显著(P<0.05)和正的 GCA 效应,并且涉及该亲本的几个杂交表现出优异的表现。生物量产量、生物量干重、根体积和根鲜重与籽粒产量高度(P<0.001)相关。因此,旨在提高大豆在低磷条件下的生物量产量和根系性状的育种计划可以使用 Hardee-1 作为亲本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dd5/9901770/3bd4d4607547/pone.0281075.g001.jpg

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