Genetic Effects of Grain Quality Enhancement in Indica Hybrid Rice: Insights for Molecular Design Breeding.

IF 4.8 1区 农林科学 Q1 AGRONOMY
Rice Pub Date : 2024-06-14 DOI:10.1186/s12284-024-00719-7
Ju Gao, Lijun Gao, Weiwei Chen, Juan Huang, Dongjin Qing, Yinghua Pan, Chonglie Ma, Hao Wu, Weiyong Zhou, Jingcheng Li, Xinghai Yang, Gaoxing Dai, Guofu Deng
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Abstract

Improving rice quality remains a crucial breeding objective, second only to enhancing yield, yet progress in quality improvement lags behind yield. The high temperature and ripening conditions in Southern China often result in poor rice quality, impacting hybrid rice production and utilization. Therefore, to address this challenge, analyzing the molecular basis of high-quality traits is essential for molecular design breeding of high-quality hybrid rice varieties. In this study, we investigated the molecular basis of grain shape, amylose content, gel consistency, gelatinization temperature, and aroma, which influence rice quality. We discovered that quality related alleles gs3, GW7TFA, gw8, chalk5, Wxb, ALKTT, and fgr can enhance rice quality when applied in breeding programs. Polymerization of gs3, GW7TFA, gw8, and chalk5 genes improves rice appearance quality. The gs3 and GW7TFA allele polymerization increasing the grain's length-width ratio, adding the aggregation of gw8 allele can further reducing grain width. The chalk5 gene regulates low chalkiness, but low correlation to chalkiness was exhibited with grain widths below 2.0 mm, with minimal differences between Chalk5 and chalk5 alleles. Enhancing rice cooking and eating quality is achieved through Wxb and ALKTT gene polymerization, while introducing the fgr(E7) gene significantly improved rice aroma. Using molecular marker-assisted technology, we aggregated these genes to develop a batch of indica hybrid rice parents with improved rice quality are obtained. Cross-combining these enhanced parents can generate new, high-quality hybrid rice varieties suitable for cultivation in Southern China. Therefore, our findings contribute to a molecular breeding model for grain quality improvement in high-quality indica hybrid rice. This study, along with others, highlights the potential of molecular design breeding for enhancing complex traits, particularly rice grain quality.

Abstract Image

籼型杂交水稻谷粒品质提高的遗传效应:分子设计育种的启示
提高水稻品质仍然是仅次于提高产量的重要育种目标,但品质改良方面的进展却落后于产量。中国南方的高温成熟条件往往导致水稻品质不佳,影响杂交水稻的生产和利用。因此,要解决这一难题,分析优质性状的分子基础对于优质杂交水稻品种的分子设计育种至关重要。本研究探讨了影响稻米品质的粒形、直链淀粉含量、凝胶稠度、糊化温度和香气的分子基础。我们发现,与品质相关的等位基因 gs3、GW7TFA、gw8、chalk5、Wxb、ALKTT 和 fgr 在育种计划中应用时可提高水稻品质。gs3、GW7TFA、gw8 和 chalk5 基因的聚合可改善水稻的外观品质。gs3 和 GW7TFA 等位基因的聚合可提高谷粒的长宽比,加入 gw8 等位基因的聚合可进一步降低谷粒的宽度。chalk5基因调控低垩度,但谷粒宽度低于2.0毫米时,与垩度的相关性较低,Chalk5和chalk5等位基因之间的差异极小。通过 Wxb 和 ALKTT 基因聚合可提高水稻的蒸煮和食用品质,而引入 fgr(E7) 基因可显著改善水稻的香气。利用分子标记辅助技术,我们聚合了这些基因,培育出一批稻米品质得到改善的籼型杂交水稻亲本。将这些改良的亲本杂交,可培育出适合中国南方种植的优质杂交水稻新品种。因此,我们的研究结果有助于建立优质籼型杂交水稻谷粒品质改良的分子育种模型。这项研究和其他研究一起,凸显了分子设计育种在提高复杂性状,尤其是水稻谷粒品质方面的潜力。
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来源期刊
Rice
Rice AGRONOMY-
CiteScore
10.10
自引率
3.60%
发文量
60
审稿时长
>12 weeks
期刊介绍: Rice aims to fill a glaring void in basic and applied plant science journal publishing. This journal is the world''s only high-quality serial publication for reporting current advances in rice genetics, structural and functional genomics, comparative genomics, molecular biology and physiology, molecular breeding and comparative biology. Rice welcomes review articles and original papers in all of the aforementioned areas and serves as the primary source of newly published information for researchers and students in rice and related research.
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