首页> 外文期刊>Evolution: International Journal of Organic Evolution >Genetic determinants of protandric sex in the Pacific oyster, Crassostrea gigas Thunberg
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Genetic determinants of protandric sex in the Pacific oyster, Crassostrea gigas Thunberg

机译:太平洋牡蛎Crassostrea gigas Thunberg原生质性的遗传决定因素

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A unique feature of sex in Crassostrea oysters is the coexistence of protandric sex change, dioecy, and hermaphroditism. To determine whether such a system is genetically controlled, we analyzed sex ratios in 86 pair-mated families of the Pacific oyster, Crassostrea gigas Thunberg. The overall female ratios of one-, two-, and three-year-old oysters were 37%, 55%, and 75%, respectively, suggesting that a significant proportion of oysters matured first as males and changed to females in later years. Detailed analysis of sex ratios in factorial and nested crosses revealed significant paternal effects, which corresponded to two types of sires. No major maternal effects on sex were observed. Major genetic control of sex was further indicated by the distribution of family sex ratios in two to four apparently discreet groups. These and other data from the literature are compatible with a single-locus model of primary sex determination with a dominant male allele (M) and a protandric female allele (F), so that MF are true males and FF are protandric females that are capable of sex change. The rate of sex change of FF individuals may be influenced by secondary genes and/or environmental factors. Strong maternal and weak paternal effects on sexual maturation or time of spawning were also suggested. [References: 34]
机译:Crassostrea牡蛎中性的一个独特特征是原变性,雌雄异体和雌雄同体并存。为了确定这种系统是否受基因控制,我们分析了太平洋牡蛎(Crassostrea gigas Thunberg)的86对配对家庭的性别比。一岁,两岁和三岁牡蛎的总体雌性比例分别为37%,55%和75%,这表明很大一部分牡蛎先以雄性先成熟,后来又转变为雌性。对阶乘和巢式杂交中的性别比进行的详细分析显示,父本效应显着,这对应于两种父本。没有观察到产妇对性别的重大影响。在两到四个明显谨慎的群体中,家庭性别比的分布进一步表明了性别的主要遗传控制。来自文献的这些数据和其他数据与具有显性男性等位基因(M)和原色女性等位基因(F)的一次性别决定的单基因座模型兼容,因此MF是真正的雄性,FF是有能力的原色雌性改变性别。 FF个体的性别变化率可能受二级基因和/或环境因素影响。还建议对性成熟或产卵时间的强母体和弱母体作用。 [参考:34]

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