The chromosomes of the Filariae.

Rory Post
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引用次数: 25

Abstract

An understanding of the nature of the chromosomes of the filariae is expected to greatly assist the future interpretation of genome data. Filarial development is not eutelic, and there does not seem to be a fixed number of cell divisions in the way that there is in Caenorhabditis. It is not clear whether the chromosomes of the filariae have localized centromeres or whether they are holocentric. Sex determination is by a chromosomal "balance" X0 system in most filariae, but in some Onchocercidae there has been a chromosomal fusion to create a neo-XY system. It is presumed that the molecular basis of sex determination in filariae is similar to Caenorhabditis. The ancestral karyotype of the filariae is probably 5A+X0, but in some Onchocercidae this has been reduced to 4A+XY, and in O. volvulus and O. gibsoni it has been further reduced to 3A+XY. Onchocerca volvulus and O. gibsoni both have supernumary (B-) chromosomes and in O. volvulus there is a single active nucleolus organising region near the middle of the long autosome.

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丝虫的染色体。
对丝虫染色体性质的了解有望极大地帮助未来基因组数据的解释。丝虫病的发育并不是中性的,似乎也没有固定数量的细胞分裂不像杆状虫病那样。目前尚不清楚丝虫的染色体是否有定位着丝粒或它们是否是全新中心的。在大多数丝虫中,性别决定是通过染色体“平衡”X0系统进行的,但在一些盘尾丝虫科中,染色体融合产生了一个新xy系统。据推测,丝虫性别决定的分子基础与隐杆线虫相似。丝虫的祖先核型可能是5A+X0,但在某些盘尾丝虫科,核型已减少到4A+XY,在O. volvulus和O. gibsoni中,核型进一步减少到3A+XY。盘尾丝虫虫和吉布氏盘尾丝虫虫都有多余的(B-)染色体,在盘尾丝虫虫的长常染色体中间有一个活跃的核仁组织区。
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