多环境下杂交水稻的品质变异和稳定性探索

IF 2.6 3区 农林科学 Q1 AGRONOMY Molecular Breeding Pub Date : 2024-01-15 DOI:10.1007/s11032-024-01442-3
Rirong Chen, Dongxu Li, Jun Fu, Chenjian Fu, Peng Qin, Xuanwen Zhang, Zhenbiao Sun, Kui He, Liang Li, Wei Zhou, Yingjie Wang, Kai Wang, Xuanming Liu, Yuanzhu Yang
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引用次数: 0

摘要

提高质量是水稻育种和生产的基本目标。然而,水稻品质并不完全由基因型决定,还受到环境的影响。表型可塑性是指特定基因型在不同环境条件下产生不同表型的能力,它可以代表性状的稳定性。在中国南方 5 个间歇播种 3 至 5 次的试验点,对 7 个热敏基因雄性不育系(TGMS)和 25 个恢复系的 141 个杂交组合的 7 个品质性状进行了评价。在长江流域观察到,推迟杂交水稻组合的播种时间可提高其整体品质。研究发现,12 个亲本的可塑性一般梳理能力(GCA)值较低,但生产质量更稳定的杂交稻的能力较强。质量上乘的亲本往往表现出较低的可塑性 GCA 值。全基因组关联研究(GWAS)分别发现了 13 个和 15 个与表型可塑性和 BLUP 测量相关的数量性状位点(QTLs)。值得注意的是,7 个 QTL 同时影响表型可塑性和 BLUP 测量。两个克隆的水稻品质基因 ALK 和 GL7 可能参与控制杂交水稻品质性状的可塑性。QTL6(ALK)对碱展值(ASV)可塑性的遗传效应方向在不同的种植环境中有所不同。这项研究为了解品质性状在不同种植区域、栽培方式和气候变化下的动态遗传基础提供了新的见解。这些发现为精确育种和生产稳定的优质水稻奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Exploration of quality variation and stability of hybrid rice under multi-environments

Improving quality is an essential goal of rice breeding and production. However, rice quality is not solely determined by genotype, but is also influenced by the environment. Phenotype plasticity refers to the ability of a given genotype to produce different phenotypes under different environmental conditions, which can be a representation of the stability of traits. Seven quality traits of 141 hybrid combinations, deriving from the test-crossing of 7 thermosensitive genic male sterile (TGMS) and 25 restorer lines, were evaluated at 5 trial sites with intermittent sowing of three to five in Southern China. In the Yangtze River Basin, it was observed that delaying the sowing time of hybrid rice combinations leads to an improvement in their overall quality. Twelve parents were identified to have lower plasticity general combing ability (GCA) values with increased ability to produce hybrids with a more stable quality. The parents with superior quality tend to exhibit lower GCA values for plasticity. The genome-wide association study (GWAS) identified 13 and 15 quantitative trait loci (QTLs) associated with phenotype plasticity and BLUP measurement, respectively. Notably, seven QTLs simultaneously affected both phenotype plasticity and BLUP measurement. Two cloned rice quality genes, ALK and GL7, may be involved in controlling the plasticity of quality traits in hybrid rice. The direction of the genetic effect of the QTL6 (ALK) on alkali spreading value (ASV) plasticity varies in different cropping environments. This study provides novel insights into the dynamic genetic basis of quality traits in response to different cropping regions, cultivation practices, and changing climates. These findings establish a foundation for precise breeding and production of stable and high-quality rice.

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来源期刊
Molecular Breeding
Molecular Breeding 农林科学-农艺学
CiteScore
5.60
自引率
6.50%
发文量
67
审稿时长
1.5 months
期刊介绍: Molecular Breeding is an international journal publishing papers on applications of plant molecular biology, i.e., research most likely leading to practical applications. The practical applications might relate to the Developing as well as the industrialised World and have demonstrable benefits for the seed industry, farmers, processing industry, the environment and the consumer. All papers published should contribute to the understanding and progress of modern plant breeding, encompassing the scientific disciplines of molecular biology, biochemistry, genetics, physiology, pathology, plant breeding, and ecology among others. Molecular Breeding welcomes the following categories of papers: full papers, short communications, papers describing novel methods and review papers. All submission will be subject to peer review ensuring the highest possible scientific quality standards. Molecular Breeding core areas: Molecular Breeding will consider manuscripts describing contemporary methods of molecular genetics and genomic analysis, structural and functional genomics in crops, proteomics and metabolic profiling, abiotic stress and field evaluation of transgenic crops containing particular traits. Manuscripts on marker assisted breeding are also of major interest, in particular novel approaches and new results of marker assisted breeding, QTL cloning, integration of conventional and marker assisted breeding, and QTL studies in crop plants.
期刊最新文献
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