Suppr超能文献

玉米中不同大小着丝粒染色体组合的减数分裂研究。

Meiotic Studies on Combinations of Chromosomes With Different Sized Centromeres in Maize.

作者信息

Han Fangpu, Lamb Jonathan C, McCaw Morgan E, Gao Zhi, Zhang Bing, Swyers Nathan C, Birchler James A

机构信息

Division of Biological Sciences, University of Missouri, Columbia, MO, United States.

State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.

出版信息

Front Plant Sci. 2018 Jun 13;9:785. doi: 10.3389/fpls.2018.00785. eCollection 2018.

Abstract

Multiple centromere misdivision derivatives of a translocation between the supernumerary B chromosome and the short arm of chromosome 9 (TB-9Sb) permit investigation of how centromeres of different sizes behave in meiosis in opposition or in competition with each other. In the first analysis, heterozygotes were produced between the normal TB-9Sb and derivatives of it that resulted from centromere misdivision that reduced the amounts of centromeric DNA. These heterozygotes could test whether these drastic differences would result in meiotic drive of the larger chromosome in female meiosis. Cytological determinations of the segregation of large and small centromeres among thousands of progeny of four combinations were made. The recovery of the larger centromere was at a few percent higher frequency in two of four combinations. However, examination of phosphorylated histone H2A-Thr133, a characteristic of active centromeres, showed a lack of correlation with the size of the centromeric DNA, suggesting an expansion of the basal protein features of the kinetochore in two of the three cases despite the reduction in the size of the underlying DNA. In the second analysis, plants containing different sizes of the B chromosome centromere were crossed to plants with TB-9Sb with a foldback duplication of 9S (TB-9Sb-Dp9). In the progeny, plants containing large and small versions of the B chromosome centromere were selected by FISH. A meiotic "tug of war" occurred in hybrid combinations by recombination between the normal 9S and the foldback duplication in those cases in which pairing occurred. Such pairing and recombination produce anaphase I bridges but in some cases the large and small centromeres progressed to the same pole. In one combination, new dicentric chromosomes were found in the progeny. Collectively, the results indicate that the size of the underlying DNA of a centromere does not dramatically affect its segregation properties or its ability to progress to the poles in meiosis potentially because the biochemical features of centromeres adjust to the cellular conditions.

摘要

额外的B染色体与9号染色体短臂之间易位(TB-9Sb)的多个着丝粒错分衍生物,使得研究不同大小的着丝粒在减数分裂中相互对立或竞争时的行为成为可能。在首次分析中,正常的TB-9Sb与其因着丝粒错分导致着丝粒DNA量减少的衍生物之间产生了杂合子。这些杂合子可以测试这些巨大差异是否会导致雌性减数分裂中较大染色体的减数分裂驱动。对四种组合的数千个后代中大小着丝粒的分离进行了细胞学测定。在四种组合中的两种中,较大着丝粒的回收频率高出几个百分点。然而,对磷酸化组蛋白H2A-Thr133(活跃着丝粒的一个特征)的检测表明,它与着丝粒DNA的大小缺乏相关性,这表明在三种情况中的两种情况下,尽管潜在的DNA大小减小,但动粒的基础蛋白质特征有所扩展。在第二次分析中,将含有不同大小B染色体着丝粒的植株与带有9S反向重复的TB-9Sb植株(TB-9Sb-Dp9)杂交。在后代中,通过荧光原位杂交选择含有大小不同版本B染色体着丝粒的植株。在发生配对的情况下,通过正常9S与反向重复之间的重组,杂种组合中发生了减数分裂“拔河比赛”。这种配对和重组产生后期I桥,但在某些情况下,大小着丝粒会移向同一极。在一种组合中,后代中发现了新的双着丝粒染色体。总体而言,结果表明着丝粒潜在的DNA大小不会显著影响其在减数分裂中的分离特性或移向两极的能力,这可能是因为着丝粒的生化特征会根据细胞条件进行调整。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/198c/6008422/804dc1da83fa/fpls-09-00785-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验