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首次发现温度依赖型性别逆转与尼罗罗非鱼(Oreochromis niloticus)家族特异性 QTL 相关。

First evidence for family-specific QTL for temperature-dependent sex reversal in Nile tilapia (Oreochromis niloticus).

机构信息

Department of Animal Sciences, Division of Aquaculture and Water Ecology, Göttingen, Germany.

出版信息

Sex Dev. 2012;6(5):247-56. doi: 10.1159/000339705. Epub 2012 Jul 11.

Abstract

This study for the first time screens microsatellite markers for associations with the temperature-dependent sex of Oreochromis niloticus. Previous studies revealed markers on linkage groups (LG) 1, 3, and 23 to be linked to the phenotypic sex of Oreochromis spp. at normal rearing temperatures. Moreover, candidate genes for sex determination and differentiation have been mapped to these linkage groups. Here, 6 families of a temperature-treated genetically all-female (XX) F(1)-population were genotyped for 21 microsatellites on the 3 LGs. No population-wide QTL (quantitative trait loci) or marker trait associations could be detected. However, family-specific QTL were found on LG 1 flanked by UNH995 and UNH104, on LG 3 at the position of GM213, and on LG 23 next to GM283. Moreover, family-specific single marker associations for UNH995 and UNH104 on LG 1, GM213 on LG 3, as well as for UNH898 and GM283 on LG 23 were detected. Yet, marker trait associations could not explain the temperature-dependent sex of all fish in the respective families. The molecular cue for the temperature-dependent sex in Nile tilapia might partially coincide with allelic variants at major and minor genetic sex determining factors. Moreover, additional QTL contributing to variable liabilities towards temperature might persist on other LGs.

摘要

这项研究首次筛选出与尼罗罗非鱼温度依赖性别相关的微卫星标记。先前的研究表明,在正常饲养温度下,连锁群 (LG) 1、3 和 23 上的标记与奥利亚罗非鱼属的表型性别相关。此外,性决定和分化的候选基因已被定位到这些连锁群上。在这里,对 6 个经温度处理的全雌(XX)F(1)-群体的 21 个微卫星进行了基因型分析。未检测到全群体数量性状位点(QTL)或标记性状关联。然而,在 LG 1 上 UNH995 和 UNH104 之间、LG 3 上 GM213 位置以及 LG 23 上 GM283 旁边发现了特定家族的 QTL。此外,还检测到 LG 1 上的 UNH995 和 UNH104、LG 3 上的 GM213 以及 LG 23 上的 UNH898 和 GM283 特定家族的单标记关联。然而,标记性状关联无法解释各家族中所有鱼类的温度依赖性别。尼罗罗非鱼温度依赖性别的确切分子线索可能部分与主要和次要遗传性别决定因素的等位变异重合。此外,其他连锁群上可能存在导致温度易感性变化的其他 QTL。

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