构建玉米-teosinte 引种群体并对其 21 个农艺性状进行定量性状位点分析。

IF 4.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yiping Cui , Xin Xiao , Mumu Wang , Mengjiao Zhu , Nana Yuyama , Jingru Zheng , Candong Xiong , Jiangjiang Liu , Sumeng Wang , Yuru Yang , Jun Chen , Hongwei Cai
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引用次数: 0

摘要

teosinte是玉米(Zea mays ssp. mays)的祖先物种,它保留了大量的遗传资源库,在驯化过程中未被改变。为了利用和探索茶新丁固有的遗传资源库,我们利用栽培的公共近交系 H95 和野生种 PI566673(Zea mays ssp.mexicana)开发了一套引种系(IL),其中包括 366 个 BC2F5 系。利用这些品系,基于目标测序基因分型技术将 12481 个高质量多态性同源单核苷酸多态性转化为 2358 个二进制标记。ILs中的同源引种率约为12.1%,异源引种率约为5.7%。根据在三亚和北京采集的21个重要农艺性状的群体表型数据,分别在三亚和北京检测到185个和156个数量性状位点(QTLs),其中64个稳定的QTLs在两地均被检测到。我们在 10 条染色体上检测到 12 个 QTL 群,其中包括与谷粒大小和重量等产量性状有关的各种 QTL。此外,我们还在ILs中发现了有用的材料,可用于进一步克隆相关变异基因。例如,一些遗传纯度较高的异源近交系、目标杂合子较短的异源近交系和一些ILs表现出与植物生长、发育和驯化相关的明显形态变异,表现出白秆、种子尖锐和谷粒破碎等性状。总之,我们的研究结果为深入研究茶树蛋白的遗传资源库奠定了坚实的基础,提供了丰富的遗传资源,并有助于深入了解玉米农艺性状的遗传结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The construction of a maize-teosinte introgression population and quantitative trait loci analysis of their 21 agronomic traits

Teosinte is a progenitor species of maize (Zea mays ssp. mays) that retains a significant reservoir of genetic resources unaltered via the domestication process. To harness and explore the genetic reservoirs inherent in teosinte, we used the cultivated publicly inbred line H95 and wild species PI566673 (Zea mays ssp. mexicana) to develop a set of introgression lines (ILs), including 366 BC2F5 lines. Using these lines, 12481 high-quality polymorphic homozygous single nucleotide polymorphisms were converted into 2358 bin markers based on Genotyping by Target Sequencing technology. The homozygous introgression ratio in the ILs was approximately 12.1 % and the heterozygous introgression ratio was approximately 5.7 %. Based on the population phenotypic data across 21 important agronomic traits collected in Sanya and Beijing, 185 and 156 quantitative trait loci (QTLs) were detected in Sanya and Beijing, respectively, with 64 stable QTLs detected in both locations. We detected 12 QTL clusters spanning 10 chromosomes consisting of diverse QTLs related to yield traits such as grain size and weight. In addition, we identified useful materials in the ILs for further gene cloning of related variations. For example, some heterogeneous inbred families with superior genetic purity, shorter target heterozygotes, and some ILs exhibit clear morphological variation associated with plant growth, development, and domestication, manifesting traits such as white stalks, sharp seeds, and cob shattering. In conclusion, our results provide a robust foundation for delving into the genetic reservoirs of teosinte, presenting a wealth of genetic resources and offering insight into the genetic architecture underlying maize agronomic traits.

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来源期刊
Plant Science
Plant Science 生物-生化与分子生物学
CiteScore
9.10
自引率
1.90%
发文量
322
审稿时长
33 days
期刊介绍: Plant Science will publish in the minimum of time, research manuscripts as well as commissioned reviews and commentaries recommended by its referees in all areas of experimental plant biology with emphasis in the broad areas of genomics, proteomics, biochemistry (including enzymology), physiology, cell biology, development, genetics, functional plant breeding, systems biology and the interaction of plants with the environment. Manuscripts for full consideration should be written concisely and essentially as a final report. The main criterion for publication is that the manuscript must contain original and significant insights that lead to a better understanding of fundamental plant biology. Papers centering on plant cell culture should be of interest to a wide audience and methods employed result in a substantial improvement over existing established techniques and approaches. Methods papers are welcome only when the technique(s) described is novel or provides a major advancement of established protocols.
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