两种不同水分条件下面包小麦产量及其性状标准杂种优势的比较研究

IF 1.2 4区 生物学 Q3 PLANT SCIENCES
D. Chaudhary, S. Prashant, J. Jaiswal, Rohit Rohit, Sivendra Joshi
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引用次数: 0

摘要

过去在世界许多地方都发生过缺水情况,影响了包括小麦在内的许多作物的产量和生产。本研究利用11个品系和3个品系的杂交设计,对33个杂交组合在两种不同水分条件下的籽粒产量及其性状进行了标准杂种优势评价。与HD2967和PBW660相比,灌水条件下产量和贡献性状的最佳杂交组合为C4、C8、C33、C24和C23。而在雨养条件下,C18、C14、C26、C21和C20的杂交表现优于对照。在灌溉和旱作条件下,最佳杂交组合为C29、C15、C32、C2和C31。因此,这些杂交组合可用于小麦育种计划,以改善面包小麦基因型,提高粮食产量、农业形态特征和对水分胁迫的耐受性。高产性状高杂种优势的存在,不仅有利于利用杂种优势培育杂种,而且有利于产生越界分离,培育优良品系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study of standard heterosis for yield and its attributes in bread wheat under two different water regimes
Water stress conditions have occurred in the past in various places of the world, affecting the yield and production of numerous crops, including wheat. The aim of this research was to estimate standard heterosis under two different water regimes for grain yield and its attributes in 33 crosses, which were obtained by crossing 11 lines and 3 testers in a Line × Tester mating design. The best cross combinations for yield and contributing traits under irrigated condition were C4, C8, C33, C24, and C23, compared to both checks HD2967 and PBW660. Whereas, in rainfed condition, C18, C14, C26, C21, and C20 crosses were superior to the checks. For both irrigated and rainfed conditions, the best cross combinations identified were C29, C15, C32, C2, and C31. As a result, these cross combinations could be used in wheat breeding programmes to improve bread wheat genotypes for increased grain yield, agro-morphological features, and water stress tolerance. The presence of high heterosis for yield-contributing traits not only aids in the development of hybrids by exploiting heterosis but also in the production of transgressive segregants to develop elite lines.
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来源期刊
Plant Genetic Resources: Characterization and Utilization
Plant Genetic Resources: Characterization and Utilization Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
2.80
自引率
0.00%
发文量
29
审稿时长
>12 weeks
期刊介绍: Plant Genetic Resources is an international journal which provides a forum for describing the application of novel genomic technologies, as well as their integration with established techniques, towards the understanding of the genetic variation captured in both in situ and ex situ collections of crop and non-crop plants; and for the airing of wider issues relevant to plant germplasm conservation and utilisation. We particularly welcome multi-disciplinary approaches that incorporate both a technical and a socio-economic focus. Technical aspects can cover developments in technologies of potential or demonstrated relevance to the analysis of variation and diversity at the phenotypic and genotypic levels.
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