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High-Density Linkage Map and Mapping for Sex and Growth-Related Traits of Largemouth Bass (Micropterus salmoides)

机译:高密度连锁图谱和大口黑鲈(Micropterus salmoides)性和与生长相关的性状图

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摘要

The largemouth bass is an important species, and its culture has risen sharply with the surge in fish aquaculture in China. Due to the lack of selective breeding technology for the largemouth bass, the growth rate and disease resistance are low, its sexual maturation is slow, and other serious problems are contributing to a sharp decline in the safety and quality of largemouth bass products in recent decades. Therefore, comprehensive breeding programs to improve the economic performance and promote the modern industrial development of largemouth bass must be considered a priority. Here, a total of 152 adult largemouth bass, including two parents and 150 progenies, were selected to produce the genetic mapping family. Then, a high-density linkage map was constructed based on restriction site–associated DNA sequencing using 6,917 single-nucleotide polymorphisms (SNPs) located in 24 linkage groups (LGs). The total genetic length of the linkage map was 1,261.96 cM, and the length of each LG varied from 24.72 cM for LG02 to 117.53 cM for LG16, with an average length of 52.58 cM and an average SNP number of 286. Thirteen significant quantitative trait loci (QTLs) for sex determination were located on LG04, LG05, LG08, LG12, LG15, LG21, and LG23. An informative QTL cluster that included six QTLs was detected on LG12. However, one notable QTL, which accounted for 71.48% of the total phenotypic variation, was located in the region of 1.85 cM on LG05. In addition, 32 identified QTLs were related to growth, including body weight, body length, body height, and head length. The QTLs for these growth-related traits are located in 13 LG regions and have little effect on phenotypic variation. This high-density genetic linkage map will enable the fine-mapping of economic traits and support the future genome assembly of the largemouth bass. Additionally, our study will be useful for future selective culture of largemouth bass and could potentially be used in molecular-assisted breeding of largemouth bass for aquaculture.
机译:大口黑鲈是重要的种类,随着中国鱼类水产养殖的兴起,其养殖急剧增加。由于大口黑鲈缺乏选择性育种技术,生长率和抗病性低,性成熟缓慢,其他严重问题导致近几十年来大口黑鲈产品的安全性和质量急剧下降。 。因此,必须优先考虑制定综合育种计划,以改善经济表现并促进大口黑鲈的现代工业发展。在这里,共选择了152个成年大嘴鲈,包括两个亲本和150个后代,以产生基因作图家族。然后,基于限制性位点相关的DNA测序,使用位于24个连锁组(LG)中的6,917个单核苷酸多态性(SNP),构建了高密度连锁图。连锁图谱的总遗传长度为1,261.96 cM,每个LG的长度从LG02的24.72 cM到LG16的117.53 cM不等,平均长度为52.58 cM,平均SNP数为286。13个重要的定量性状基因座性别确定(QTL)位于LG04,LG05,LG08,LG12,LG15,LG21和LG23。在LG12上检测到包含六个QTL的信息丰富的QTL簇。但是,在LG05上,一个占整个表型变异71.48%的显着QTL位于1.85 cM区域。此外,已确定的32个QTL与生长有关,包括体重,体长,体高和头长。这些与生长相关的性状的QTL位于LG的13个区域,对表型变异影响很小。这种高密度遗传连锁图谱将使经济性状的精细定位成为可能,并支持大嘴鲈的未来基因组组装。另外,我们的研究对于将来大口黑鲈的选择性培养将是有用的,并且有可能被用于水产养殖大口黑鲈的分子辅助育种。

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