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伪饰拟刺蝗(Trimerotropis pseudofasciata)着丝粒周围倒位系统的地理变异性。

Geographical variability in the pericentric inversion system of the grasshopper Trimerotropis pseudofasciata.

作者信息

Weissmann D B

出版信息

Chromosoma. 1976 Jun 23;55(4):325-47. doi: 10.1007/BF00292829.

Abstract

Island and mainland populations of Trimerotropis pseudofasciata from California were compared with respect to the nature and extent of their percentric inversion systems. Island populations generally have more chromosomes polymorphic for centromere position than mainland populations and a considerably higher percentage of the genome in these island populations is in a structurally heterozygous state. Thus, although geographically peripheral, the islands provide habitats capable of supporting denser and more chromosomally polymorphic populations than the mainland. Chiasmata are generally localized to terminal positions in all classes of chromosomes and do not occur in the inverted regions of inversion heterozygotes. Chiasma frequency is highest in inversion homozygotes. It is hypothesized that the inversion system in T. pseudofasciata serves the dual synergistic function of preserving allelic sequences in the inversion region intact through inversion heterozygosity and limiting the generation of variability in regions outside the inversion by increasing terminal chiasmata. Additionally, it is argued that it is the gene sequence on only the inversion chromosome that is important in Trimerotropis. This condition contrasts with the "co-adapted" pattern seen in Drosophila where the gene sequences on both chromosomes in the inversion heterozygote are simultaneously important.

摘要

对来自加利福尼亚的伪带纹蝗(Trimerotropis pseudofasciata)的岛屿种群和大陆种群,就其着丝粒倒位系统的性质和程度进行了比较。岛屿种群中,着丝粒位置具有多态性的染色体通常比大陆种群更多,并且这些岛屿种群中基因组处于结构杂合状态的比例要高得多。因此,尽管岛屿在地理上处于边缘位置,但它们提供的栖息地能够支持比大陆更密集、染色体多态性更高的种群。在所有染色体类别中,交叉通常定位于末端位置,并且在倒位杂合子的倒位区域中不发生。交叉频率在倒位纯合子中最高。据推测,伪带纹蝗的倒位系统具有双重协同功能,即通过倒位杂合性使倒位区域内的等位基因序列保持完整,并通过增加末端交叉来限制倒位区域外区域的变异性产生。此外,有人认为在伪带纹蝗中,只有倒位染色体上的基因序列是重要的。这种情况与在果蝇中看到的“共适应”模式形成对比,在果蝇的倒位杂合子中,两条染色体上的基因序列同时是重要的。

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