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高粱[双色高粱(L.)Moench]株高和锤度含量的QTL定位及候选基因预测

QTL mapping and candidate genes prediction for plant height and brix content in sorghum [Sorghum bicolor (L.) Moench].

作者信息

Shi Xing, Duan Youhou, Chai Shaohua, Guo Yan, Guo Shuqing, Wang Chuanxing, Li Shiru, Liu Delong, Feng Baili, Lu Feng, Yang Pu

机构信息

College of Agriculture, Northwest A&F University, State Key Laboratory of Crop Stress Biology in Arid Areas, Yangling, Xianyang, 712100, China.

Sorghum Research Institute of Liaoning Academy of Agricultural Sciences, Shenyang, 110161, Liaoning, China.

出版信息

Theor Appl Genet. 2025 Sep 3;138(9):238. doi: 10.1007/s00122-025-05024-5.

Abstract

By constructing a high-density genetic linkage map using a recombinant inbred line (RIL) population from two sorghum lines with distinct variations in plant height and brix content, eight genetic loci were identified, and candidate genes associated with these traits were predicted. Sorghum, recognized as a crucial forage and energy crop, exhibits yield and quality influenced by plant height and sugar content traits. Considering the complex genetic architecture of plant height and sugar content, this study utilized a sorghum recombinant inbred line population comprising 250 lines to elucidate the phenotypic variation and genetic foundations of these traits. Utilizing streamlined genome sequencing technology, the genotypes of each line were scrutinized, culminating in the construction of a sorghum genetic linkage map spanning 1129.97 centi-Morgans (cM) and encompassing 2101 bin markers. This population was planted in Liaoning during the growing seasons from 2014 to 2020, and the phenotypes of plant height and brix content were characterized across six different environments. Simultaneously, optimal genetic models for sorghum plant height and brix content were analyzed. Eight QTLs significantly associated with plant height and brix content were identified on chromosomes 1, 5, 6, 7, and 8, using QTL mapping. In this study, two QTLs associated with plant height and one QTL associated with brix content were identified across at least two different environments. The confidence intervals of the identified major effect QTL loci were utilized to predict candidate genes. Sobic.007G163200.1 was identified as a significant candidate gene for plant height, involved in tryptophan metabolism. Two genes associated with ABC transporter-related pathways were also identified as significant candidate genes for plant height. Furthermore, three genes involved in carbon fixation in photosynthetic organisms were identified as significant candidate genes for brix content.

摘要

通过利用来自两个在株高和锤度含量上有明显差异的高粱品系构建重组自交系(RIL)群体,构建了高密度遗传连锁图谱,鉴定出8个遗传位点,并预测了与这些性状相关的候选基因。高粱是一种重要的饲料和能源作物,其产量和品质受株高和糖分含量性状的影响。鉴于株高和糖分含量复杂的遗传结构,本研究利用一个由250个品系组成的高粱重组自交系群体来阐明这些性状的表型变异和遗传基础。利用简化基因组测序技术,对每个品系的基因型进行了检测,最终构建了一个跨度为1129.97厘摩(cM)、包含2101个bin标记的高粱遗传连锁图谱。该群体于2014年至2020年生长季在辽宁种植,在六个不同环境中对株高和锤度含量的表型进行了表征。同时,分析了高粱株高和锤度含量的最佳遗传模型。利用QTL定位,在第1、5、6、7和8号染色体上鉴定出8个与株高和锤度含量显著相关的QTL。在本研究中,在至少两个不同环境中鉴定出两个与株高相关的QTL和一个与锤度含量相关的QTL。利用已鉴定的主效QTL位点的置信区间来预测候选基因。Sobic.007G163200.1被鉴定为与株高相关的重要候选基因,参与色氨酸代谢。另外两个与ABC转运蛋白相关途径有关的基因也被鉴定为与株高相关的重要候选基因。此外,三个参与光合生物中碳固定的基因被鉴定为与锤度含量相关的重要候选基因。

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