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精确定位影响稻米食味品质的主效 QTL qECQ8。

Fine mapping of a major QTL, qECQ8, for rice taste quality.

机构信息

National Engineering Research Center of Rice (Nanchang); Key Laboratory of Germplasm innovation and Breeding of Double-cropping Rice (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs; Bio-breeding Innovation Center of Jiangxi province (JXBIC); Rice Research Institute, Jiangxi Academy of Agricultural Sciences, Nanchang, 330200, China.

出版信息

BMC Plant Biol. 2024 Oct 31;24(1):1034. doi: 10.1186/s12870-024-05744-8.

Abstract

BACKGROUND

Rice ECQ (eating and cooking quality) is an important determinant of rice consumption and market expansion. Therefore, improvement of ECQ is one of the primary goals in rice breeding. However, ECQ-related quantitative trait loci (QTL) have not yet been fully revealed. The present study aimed to identify a major effect QTL for rice taste, an important component of ECQ via genotyping-by-sequencing, to reveal the associated molecular mechanisms, and to predict key candidate genes.

RESULTS

A population of F recombinant inbred lines resulting from a cross between R668 (national standard of high-quality third class) and R838 (common edible rice) was used to construct a high-density genetic map (2,295.062 cM). The map comprises 639,504 markers distributed on 12 linkage elements with an average genetic distance of 0.004 cM. We detected a major taste-related QTL, qECQ8, which explained 41.4% of phenotypic variance and had LOD values of 4.42-7.73. Using a five-generation NIL population from the backcross of "Ganxiangzhan No. 1" carrying qECQ8 with the recurrent parent R838 (without qECQ8), we narrowed qECQ8 to a 187.5 kb interval between markers M33 and M37 on Chr8. Comparative transcriptomic analysis revealed that photosynthesis, glyoxylate and dicarboxylate metabolism, carbon fixation in photosynthetic organisms, and alpha-linolenic acid metabolism were induced in developing seeds of lines containing qECQ8. Furthermore, we identified two candidate genes in the qECQ8 region, including LOC_Os08g30550 (zinc knuckle family protein), a major candidate for genetic-assisted breeding of high-quality rice.

CONCLUSION

Our findings provide important genetic resources for targeted improvement of rice taste quality and may facilitate the genetic breeding of rice ECQ.

摘要

背景

大米食用和烹饪品质(简称“ECQ”)是决定稻米消费和市场拓展的重要因素。因此,改善 ECQ 是水稻育种的主要目标之一。然而,ECQ 相关的数量性状位点(QTL)尚未被完全揭示。本研究旨在通过基因分型测序鉴定一个影响水稻口感的主效 QTL,口感是 ECQ 的一个重要组成部分,揭示其相关的分子机制,并预测关键的候选基因。

结果

利用 R668(国家优质三级标准)和 R838(普通食用稻)杂交产生的 F2 重组自交系群体构建了一张高密度遗传图谱(2295.062cM)。该图谱包含 639504 个标记,分布在 12 个连锁群上,平均遗传距离为 0.004cM。我们检测到一个主要的与口感相关的 QTL,qECQ8,该 QTL 解释了 41.4%的表型方差,LOD 值为 4.42-7.73。利用携带 qECQ8 的回交五代近等基因系群体(“赣香占 1 号”与轮回亲本 R838(不含 qECQ8)杂交),我们将 qECQ8 缩小到 Chr8 上标记 M33 和 M37 之间的 187.5kb 区间内。比较转录组分析表明,在含有 qECQ8 的系种子发育过程中,光合作用、乙醛酸和二羧酸代谢、光合生物的碳固定以及α-亚麻酸代谢被诱导。此外,我们在 qECQ8 区域鉴定到两个候选基因,包括 LOC_Os08g30550(锌指家族蛋白),这是一个用于遗传辅助培育优质水稻的重要候选基因。

结论

本研究结果为有针对性地改善水稻口感品质提供了重要的遗传资源,可能有助于水稻 ECQ 的遗传育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58af/11526670/747a5e051e27/12870_2024_5744_Fig1_HTML.jpg

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