首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Coding Gene Single Nucleotide Polymorphism Mapping and Quantitative Trait Loci Detection for Physiological Reproductive Traits in Brook Charr Salvelinus fontinalis
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Coding Gene Single Nucleotide Polymorphism Mapping and Quantitative Trait Loci Detection for Physiological Reproductive Traits in Brook Charr Salvelinus fontinalis

机译:编码基因单核苷酸多态性定位和定量性状位点检测的生理性状在布鲁克查尔Salvelinus fontinalis

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摘要

A linkage map of 40 linkage groups (LGs) was developed for brook charr, Salvelinus fontinalis, using an F2 interstrain hybrid progeny (n = 171) and 256 coding gene SNP developed specifically for brook charr and validated from a large (>1000) subset of putative SNP, as well as 81 microsatellite markers. To identify quantitative trait loci (QTL) related to reproduction functions, these fish were also phenotyped at six physiological traits, including spermatozoid head diameter, sperm concentration, plasma testosterone, plasma 11-keto-testosterone, egg diameter, and plasma 17β-estradiol. Five significant QTL were detected over four LGs for egg diameter and plasma 17β-estradiol concentration in females, and sperm concentration as well as spermatozoid head diameter in males. In females, two different QTLs located on LG 11 and LG 34 were associated with the egg number, whereas one QTL was associated with plasma 17β-estradiol concentration (LG 8). Their total percent variance explained (PVE) was 26.7% and 27.6%, respectively. In males, two QTL were also detected for the sperm concentration, and their PVE were estimated at 18.58% and 14.95%, respectively. The low QTL number, associated with the high PVE, suggests that the variance in these reproductive physiological traits was either under the control of one major gene or a small number of genes. The QTL associated with sperm concentration, plasma 17β-estradiol, and egg diameter appeared to be under a dominance effect, whereas the two others were under a negative additive effect. These results show that genes underlying the phenotypic variance of these traits are under different modes of action (additive vs. dominance) and may be used to predict an increase or a decrease in their phenotypic values in subsequent generations of selective breeding. Moreover, this newly developed panel of mapped SNP located in coding gene regions will be useful for screening wild populations, especially in the context of investigating the genetic impact of massive stocking of domestic brook charr to support the angling industry throughout eastern North America.
机译:使用F2株间杂种后代(n = 171)和专为布鲁克沙尔开发的256个编码基因SNP开发了40个连锁基团(LGs)的连锁图,用于布鲁克沙尔,Salvelinus fontinalis推定的SNP以及81个微卫星标记。为了确定与生殖功能有关的数量性状基因座(QTL),还对这些鱼进行了6种生理性状表型分析,包括精子顶体直径,精子浓度,血浆睾丸激素,血浆11-酮-睾丸激素,卵径和血浆17β-雌二醇。在四个LG中检测到五个显着QTL,用于检测雌性的卵直径和血浆17β-雌二醇浓度,以及雄性的精子浓度和精子头直径。在雌性中,位于LG 11和LG 34上的两个不同的QTL与卵数相关,而一个QTL与血浆17β-雌二醇浓度(LG 8)相关。他们的总解释方差百分比(PVE)分别为26.7%和27.6%。在男性中,还检测到两个QTL的精子浓度,其PVE分别估计为18.58%和14.95%。低QTL值与高PVE相关,表明这些生殖生理性状的变异受一个主要基因或少数基因的控制。与精子浓度,血浆17β-雌二醇和卵径相关的QTL似乎处于显性效应下,而其他两个则具有负相加效应。这些结果表明,这些性状表型变异的基础基因处于不同的作用模式下(加性与优势),可用于预测其后代选择性育种中表型值的增加或减少。此外,这组新开发的位于编码基因区域的SNP定位图板将有助于筛选野生种群,特别是在调查大量国内小白鲑种群的遗传影响方面,以支持整个北美东部的垂钓产业。

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