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不同大小染色体的动粒微管数量。

Kinetochore microtubule numbers of different sized chromosomes.

作者信息

Moens P B

出版信息

J Cell Biol. 1979 Dec;83(3):556-61. doi: 10.1083/jcb.83.3.556.

Abstract

For three species of grasshoppers the volumes of the largest and the smallest metaphase chromosome differ by a factor of 10, but the microtubules (MTs) attached to the individual kinetochores show no corresponding range in numbers. Locusta mitotic metaphase chromosomes range from 2 to 21 mum, and the average number of MTs per kinetochore is 21 with an SD of 4.6. Locusta meiotic bivalents at late metaphase I range from 4 to 40 mum(3), and the kinetochore regions (= two sister kinetochores facing the same spindle pole) have an average of 25 kinetochore microtubules (kMTs) with an SD of 4.9. Anaphase velocities are the same at mitosis and meiosis I. The smaller mitotic metaphase chromosomes of neopodismopsis are similar in size, 6 to 45 mum(3), to Locusta, but they have an average more kMTs, 33, SD = 9.2. The four large Robertsonian fusion chromosomes of neopodismopsis have an average of 67 MTs per kinetochore, the large number possibly the result of a permanent dicentric condition. Chloealtis has three pairs of Robertsonian fusion chromosomes which, at late meiotic metaphase I, form bivalents of 116, 134, and 152 mum (3) with an average of 67 MTs per kinetochore similar to Locusta bivalents, but with a much higher average of 42 MTs per kinetochore region. It is speculated that, in addition to mechanical demands of force, load, and viscosity, the kMT numbers are governed by cell type and evolutionary history of the karyotype in these grasshoppers.

摘要

对于三种蝗虫而言,最大和最小的中期染色体体积相差10倍,但附着在各个动粒上的微管数量并无相应范围的差异。飞蝗有丝分裂中期染色体长度在2至21微米之间,每个动粒的微管平均数量为21条,标准差为4.6。飞蝗减数分裂I后期的二价体长度在4至40微米之间(3),动粒区域(即面对同一纺锤体极的两个姐妹动粒)平均有25条动粒微管(kMTs),标准差为4.9。有丝分裂和减数分裂I的后期速度相同。新足蝗较小的有丝分裂中期染色体大小与飞蝗相似,为6至45微米(3),但每个动粒的kMTs平均数量更多,为33条,标准差 = 9.2。新足蝗的四条大型罗伯逊融合染色体每个动粒平均有67条微管,数量较多可能是由于永久双着丝粒状态。克氏蝗有三对罗伯逊融合染色体,在减数分裂I后期,它们形成的二价体长度分别为116、134和152微米(3),每个动粒平均有67条微管,与飞蝗二价体相似,但每个动粒区域的平均微管数量高达42条。据推测,除了力、负荷和粘度的机械需求外,这些蝗虫的kMT数量还受细胞类型和核型进化史的影响。

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