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减数分裂的时间和持续时间。

The time and duration of meiosis.

作者信息

Bennett M D

出版信息

Philos Trans R Soc Lond B Biol Sci. 1977 Mar 21;277(955):201-26. doi: 10.1098/rstb.1977.0012.

Abstract

Ever since meiosis was recognized as a process there has been a continuing interest in its temporal aspects. Two main types of meiotic timing experiments have been conducted: first, experiments to estimate the duration of meiosis (and sometimes its stages); second, experiments to locate the sensitive stage(s) when exposure of meiocytes to various treatments can affect meiotic chromosome behaviour (e.g. pairing or recombination). Such experiments have played an important role in increasing our understanding of the meiotic process. The duration of meiosis has been estimated in about 70 organisms, including two prokaryotes (yeast and Chlamydomonas) and the following eukaryotes: 1 Basidiomycete (Coprinus lagopus), 2 Gymnosperms (Larix decidua and Thuja plicata gracilis). at least 39 angiosperms, and at least 26 animal species. The duration of female meiosis has been estimated in far fewer species than male meiosis. However, estimates of the duration of female meiosis are available for 6 angiosperms. Drosophila melanogaster, Xenopus laevis, and several mammals. Comparison of these data shows that the duration of meiosis is one of the most variable aspects of the meiotic process, ranging from less than 6 h in yeast to more than 40 years in the human female. Developmental holds at different stages of meiosis are common in plants and animals, and inevitably prolong the meiotic division. However, even among species without developmental holds, the duration of meiosis is very variable. For instance, in animals it ranges from about 1-2 days in male Drosophila melanogaster to more than 24 days in male Homo sapiens and several Orthopterans. Despite the large variation in the duration of meiosis three generalizations can be made: (i) first prophase is always very long compared with the remaining meiotic stages, (ii) the rate of meiotic development is very slow compared with the rate of development in dividing somatic meristem cells of the same organisms under the same conditions, (iii) the duration of meiosis is characteristic of the genotype and species. Four main factors have been recognized which effect or determine the duration of meiosis, namely (1) environmental factors (e.g. temperature); (2) nuclear DNA content; (3) ploidy level of the organism; and, (4) the genotype. Because nuclear DNA content plays a major role in determining the duration of meiosis, it has been suggested that DNA influences the rate of meiotic development in two ways: first through its informational content (the genotype), and second indirectly by the physical and mechanical effects of its mass independently of its informational content (i.e. the nucleotype). Thus, the observed duration of meiosis is the result of a complex genotype-nucleotype-environment interaction. With the obvious exception of variation caused by developmental holds, changes in the duration of meiosis usually involve proportional changes in the durations of all its stages...

摘要

自从减数分裂被确认为一个过程以来,人们一直对其时间方面持续感兴趣。已经进行了两种主要类型的减数分裂时间实验:第一,估计减数分裂持续时间(有时还包括其各个阶段的持续时间)的实验;第二,确定减数分裂细胞暴露于各种处理时,能影响减数分裂染色体行为(如配对或重组)的敏感阶段的实验。这类实验在增进我们对减数分裂过程的理解方面发挥了重要作用。已经在大约70种生物中估计了减数分裂的持续时间,其中包括两种原核生物(酵母和衣藻)以及以下真核生物:1种担子菌(毛头鬼伞)、2种裸子植物(欧洲落叶松和秀丽崖柏)、至少39种被子植物以及至少26种动物。估计雌性减数分裂持续时间的物种比估计雄性减数分裂持续时间的物种要少得多。然而,现已得到6种被子植物、黑腹果蝇、非洲爪蟾以及几种哺乳动物的雌性减数分裂持续时间的估计值。对这些数据的比较表明,减数分裂持续时间是减数分裂过程中最具变异性的方面之一,范围从酵母中的不到6小时到人类女性中的超过40年。减数分裂在不同阶段的发育停滞在植物和动物中很常见,并且不可避免地会延长减数分裂的时间。然而,即使在没有发育停滞的物种中,减数分裂的持续时间也非常多变。例如,在动物中,它从雄性黑腹果蝇的约1 - 2天到雄性智人和几种直翅目昆虫的超过24天不等。尽管减数分裂持续时间存在很大差异,但仍可得出三个一般性结论:(i)与减数分裂的其余阶段相比,第一次减数分裂前期总是非常长;(ii)与相同条件下同一生物体的分裂体分生组织细胞的发育速率相比,减数分裂的发育速率非常缓慢;(iii)减数分裂的持续时间是基因型和物种的特征。已经认识到有四个主要因素影响或决定减数分裂的持续时间,即(1)环境因素(如温度);(2)核DNA含量;(3)生物体的倍性水平;以及(4)基因型。由于核DNA含量在决定减数分裂持续时间方面起主要作用,有人提出DNA以两种方式影响减数分裂的发育速率:第一,通过其信息内容(基因型);第二,通过其质量的物理和机械效应间接影响,而与信息内容无关(即核型)。因此,观察到的减数分裂持续时间是复杂的基因型 - 核型 - 环境相互作用的结果。除了由发育停滞引起的变异这一明显例外情况外,减数分裂持续时间的变化通常涉及所有阶段持续时间的成比例变化……

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