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拟果蝇的性别比例性状:畸变与抗性的地理分布

THE SEX-RATIO TRAIT IN DROSOPHILA SIMULANS: GEOGRAPHICAL DISTRIBUTION OF DISTORTION AND RESISTANCE.

作者信息

Atlan Anne, Merçot Hervé, Landre Claudie, Montchamp-Moreau Catherine

机构信息

Laboratoire "Dynamique du Génome et Evolution, " Institut Jacques Monod, tour 42, 4ème étage, Université Paris 7, 75251 Paris, Cedex 5, France.

出版信息

Evolution. 1997 Dec;51(6):1886-1895. doi: 10.1111/j.1558-5646.1997.tb05111.x.

Abstract

The sex-ratio trait we describe here in Drosophila simulans results from X-linked meiotic drive. Males bearing a driving X chromosome can produce a large excess of females (about 90%) in their progeny. This is, however, rarely the case in the wild, where resistance factors, including autosomal suppressors and insensitive Y chromosomes, prevent the expression of the driver. In this study, we searched for drive and resistance factors in strains of Drosophila simulans collected all over the world. Driving X chromosomes were found in all populations whenever a good sample size was available. Their frequency may reach up to 60%. However, the presence of driving X chromosomes never results in an excess of females, due to the systematic co-occurrence of resistance factors. The highest frequencies of driving X chromosomes were observed in islands, while populations from East and Central Africa (the supposed center of origin of the species) showed the highest level of resistance. The geographical pattern of drive and resistance factors, as well as the results of crosses between strains from different geographical areas, suggest that the sex-ratio system described here has a unique and ancient origin in the species.

摘要

我们在此描述的拟暗果蝇的性比性状源于X连锁减数分裂驱动。携带驱动X染色体的雄性果蝇在其后代中会产生大量的雌性后代(约90%)。然而,在自然环境中这种情况很少见,因为包括常染色体抑制因子和不敏感Y染色体在内的抗性因子会阻止驱动因子的表达。在这项研究中,我们在从世界各地收集的拟暗果蝇品系中寻找驱动因子和抗性因子。只要样本量充足,在所有种群中都发现了驱动X染色体。其频率可能高达60%。然而,由于抗性因子的系统性共存,驱动X染色体的存在从未导致雌性后代过量。在岛屿上观察到驱动X染色体的频率最高,而来自东非和中非(该物种假定的起源中心)的种群显示出最高水平的抗性。驱动因子和抗性因子的地理分布模式,以及来自不同地理区域的品系之间杂交的结果,表明这里描述的性比系统在该物种中有着独特而古老的起源。

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