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正常条件下埃及棉杂交种(Gossypium barbdense L.)产量性状的遗传分析。

Genetic analysis of yield traits in Egyptian cotton crosses (Gossypium barbdense L.) under normal conditions.

机构信息

Agronomy Department, Faculty of Agriculture, Kafr El-Sheikh University, Kafr el-Sheikh, 33516, Egypt.

Cotton Breeding Department, Cotton Research Institute, Agriculture Research Center, Giza, Egypt.

出版信息

BMC Plant Biol. 2022 Sep 27;22(1):462. doi: 10.1186/s12870-022-03839-8.

Abstract

To generate high-yielding cultivars with favorable fiber quality traits, cotton breeders can use information about combining ability and gene activity within a population to locate elite parents and potential F1 crosses. To this end, in the current study, twelve cotton parents (eight genotypes as female parents and four testers) and their F1 crosses obtained utilizing the linex tester mating design were evaluated for their general and specialized combining abilities (GCA and SCA, respectively) of yield traits. The findings showed that for all the investigated variables, variances owing to genotypes, parents, crosses, and parent vs cross showed extremely significant (P ≤ 0.01) differences. Additionally, throughout the course of two growing seasons, the mean squares for genotypes (parents and crosses) showed strong significance for all the variables under study. The greatest and most desired means for all the examined qualities were in the parent G.94, Pima S6, and tester G.86. The best crossings for the qualities examined were G.86 (G.89 × G.86), G.93 × Suvin, and G.86 × Suvin. The parents' Suvin, G89x G86 and TNB were shown to have the most desired general combining ability effects for seed cotton yield/plant, lint yield/plant, boll weight, number of bolls/plants, and lint index, while Suvin, G.96 and pima S6 were preferred for favored lint percentage. For seed cotton yield, lint percentage, boll weight, and number of bolls per plant per year, the cross-G.86 x (G.89 × G.86) displayed highly significant specific combining ability impacts. The crosses G.86 × Suvin, Kar x TNB, G.93 × Suvin, and G.93 × TNB for all the studied traits for each year and their combined were found to have highly significant positive heterotic effects relative to better parent, and they could be used in future cotton breeding programs for improving the studied traits.

摘要

为了培育出纤维品质优良、产量高的品种,棉花育种者可以利用群体内的组合能力和基因活性信息来定位优秀的亲本和潜在的 F1 杂交种。为此,在本研究中,对 12 个棉花亲本(8 个基因型作为母本和 4 个测验种)及其利用线测验种交配设计获得的 F1 杂交种进行了产量性状的一般和特殊配合力(GCA 和 SCA)评估。结果表明,在所研究的所有变量中,基因型、亲本、杂交种以及亲本与杂交种之间的方差均表现出极显著差异(P≤0.01)。此外,在两个生长季节中,基因型(亲本和杂交种)的均方对所有研究变量均表现出显著差异。在所研究的所有品质中,所有检验品质的最大和最理想均值均出现在母本 G.94、Pima S6 和测验种 G.86 中。所研究品质的最佳杂交种为 G.86(G.89×G.86)、G.93×Suvin 和 G.86×Suvin。亲本 Suvin、G89xG86 和 TNB 对皮棉产量/株、衣分产量/株、铃重、每株铃数和衣分指数具有最理想的一般配合力效应,而 Suvin、G.96 和 Pima S6 则对有利的衣分百分比有偏好。对于皮棉产量、衣分、铃重和每株每产的铃数,交叉-G.86x(G.89×G.86)表现出高度显著的特殊配合力影响。在每个年份以及它们的组合中,杂交种 G.86×Suvin、Kar x TNB、G.93×Suvin 和 G.93×TNB 对所有研究性状均表现出高度显著的正杂种优势效应,优于较好的亲本,可用于未来的棉花育种计划,以提高研究性状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a12c/9513887/d93283f9c1c2/12870_2022_3839_Fig1_HTML.jpg

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