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蝗虫Eyprepocnemis plorans中B染色体变异替代的原因。

Causes of B chromosome variant substitution in the grasshopper Eyprepocnemis plorans.

作者信息

Manrique-Poyato M I, Muñoz-Pajares A J, Loreto V, López-León M D, Cabrero J, Camacho J P M

机构信息

Departamento de Genética, Facultad de Ciencias, Universidad de Granada, 18071 Granada, Spain.

出版信息

Chromosome Res. 2006;14(6):693-700. doi: 10.1007/s10577-006-1081-2. Epub 2006 Sep 14.

Abstract

We have analysed B chromosome frequency for three consecutive years, B transmission rate at population and individual levels, clutch size, egg fertility and embryo-adult viability in a natural population of the grasshopper Eyprepocnemis plorans containing two different B chromosome variants, i.e. B(2) and B(24), the second being derived from the first and having replaced it in nearby populations. From 2002 to 2003 the relative frequency of both variants changed, although the differences did not reach significance. A mother-offspring analysis showed no significant effect of any of the two B variants on clutch size, egg fertility or embryo-adult viability, but B(24) was more efficiently transmitted than B(2) through males from the 2002 season, which explains the observed frequency change. Controlled crosses, at individual level, showed significant drive through some females for B(24) but not for B(2), suggesting that this difference in transmission rate might also be important for the substitution process. The analysis of relative fitness for B(2) and B(24) carriers for all fitness components, as a whole, showed a significantly better performance of B(24)-carrying individuals, suggesting that the cumulative effect of these slight differences might contribute to the replacement of B(2) by B(24).

摘要

我们连续三年分析了含有两种不同B染色体变体(即B(2)和B(24),后者由前者衍生而来并已在附近种群中取代了前者)的草地蝗虫Eyprepocnemis plorans自然种群中的B染色体频率、种群和个体水平的B染色体传递率、窝卵数、卵的受精率以及胚胎到成虫的存活率。从2002年到2003年,两种变体的相对频率发生了变化,尽管差异未达到显著水平。母代与子代分析表明,两种B变体对窝卵数、卵的受精率或胚胎到成虫的存活率均无显著影响,但从2002年季节开始,B(24)通过雄性的传递效率高于B(2),这解释了观察到的频率变化。在个体水平上进行的控制性杂交显示,一些雌性对B(24)有显著的驱动作用,而对B(2)则没有,这表明这种传递率的差异可能对替代过程也很重要。总体而言,对B(2)和B(24)携带者所有适合度成分的相对适合度分析表明,携带B(24)的个体表现明显更好,这表明这些细微差异的累积效应可能有助于B(24)取代B(2)。

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