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[单倍体玉米(Zea mays L.)中的两种新型减数分裂恢复机制]

[Two novel meiotic restitution mechanisms in haploid maize (Zea mays L.)].

作者信息

Shamina N V, Shatskaia O A

出版信息

Genetika. 2011 Apr;47(4):499-507.

Abstract

Two original mechanisms of nuclear restitution related to different processes of meiotic division of pollen mother cells (PMCs) have been found in male meiosis of the lines of maize haploids no. 2903 and no. 2904. The first mechanism, which is characteristic of haploid no. 2903, consists in spindle deformation (bend) in the conventional metaphase-anaphase I. This leads to asymmetric incomplete cytokinesis with daughter cell membranes in the form of incisions on the mother cell membrane. As a result, the chromosomes of the daughter nuclei are combined into a common spindle during the second meiotic division, and a dyad of haploid microspores is formed at the tetrad stage. The frequency of this abnormality is about 50%. The second restitution mechanism, which has been observed in PMCs of haploid no. 2904, results from disturbance of the fusion of membrane vesicles (plastosomes) at the moment of formation of daughter cell membranes and completion of cytokinesis in the first meiotic division. This type of cell division yields a binuclear monad. In the second meiotic division, the chromosomes of the daughter nuclei form a common spindle, and meiosis results in a dyad of haploid microspores. The frequency of this abnormality is as high as 15%. As a result, haploid lines no. 2903 and no. 2904 partly restore fertility.

摘要

在玉米单倍体系2903和2904的雄性减数分裂中,发现了与花粉母细胞(PMC)减数分裂不同过程相关的两种核重建原始机制。第一种机制是2903单倍体所特有的,表现为在常规的减数第一次分裂中期 - 后期纺锤体变形(弯曲)。这导致不对称的不完全胞质分裂,子细胞膜以母细胞膜上的切口形式存在。结果,在第二次减数分裂期间,子核的染色体合并到一个共同的纺锤体中,并在四分体阶段形成单倍体小孢子二分体。这种异常的频率约为50%。第二种重建机制在2904单倍体的PMC中观察到,是由于在第一次减数分裂中形成子细胞膜和完成胞质分裂时膜泡(质体小球)融合受到干扰所致。这种类型的细胞分裂产生双核单分体。在第二次减数分裂中,子核的染色体形成一个共同的纺锤体,减数分裂产生单倍体小孢子二分体。这种异常的频率高达15%。结果,2903和2904单倍体系部分恢复了育性。

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