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在有丝分裂和分化间期核中,相似的黑麦 A、B 染色体组织。

Similar rye A and B chromosome organization in meristematic and differentiated interphase nuclei.

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research, 06466 Gatersleben, Germany.

出版信息

Chromosome Res. 2011 Jul;19(5):645-55. doi: 10.1007/s10577-011-9224-5. Epub 2011 Jun 15.

Abstract

Supernumerary (B) chromosomes of rye are not required for plant development and exhibit a reduced transcription activity. These special features inspired us to analyse whether there are differences between A and B chromatin organization in interphase nuclei. Applying fluorescence in situ hybridization, we found that both rye A and B chromosomes added to hexaploid wheat showed in meristematic nuclei a string-like shape and a clear Rabl orientation. In 4C differentiated leaf nuclei, a more relaxed chromatin structure, round-shaped chromosome territories and a less pronounced Rabl configuration were found. Also, the observed random association of homologues in 2C and 4C nuclei indicated in general a similar behaviour of A and B chromosomes. Whereas in differentiated 4C nuclei A sister centromeres are separated, B sister centromeres align in nearly all nuclei. In short, despite the different transcription activity of A and B chromosomes, both types of chromosomes exhibit a similar organization in meristematic and differentiated interphase nuclei. But the deletion of a B chromosome segment responsible for non-disjunction during gametogenesis induces released sister centromeres also in some interphase nuclei of somatic tissue. Hence, the control of rye B chromosome non-disjunction is also active in sporophytic cells.

摘要

小麦族黑麦属植物的额外(B)染色体对于植物的生长发育并非必需,并且转录活性显著降低。这些特性促使我们分析黑麦 A、B 染色体组在间期核中是否存在染色质组织的差异。应用荧光原位杂交技术,我们发现添加到六倍体小麦中的黑麦 A、B 染色体在分生组织细胞核中呈现串状结构和明显的 Rabl 取向。在 4C 有丝分裂后期的叶片细胞核中,染色体结构更加松散,染色体区室呈现圆形,Rabl 结构也不明显。此外,在 2C 和 4C 核中观察到的同源染色体随机关联表明 A、B 染色体的行为基本相似。在分化的 4C 核中,A 姐妹着丝粒是分开的,而 B 姐妹着丝粒在几乎所有核中都排列在一起。总之,尽管 A、B 染色体的转录活性不同,但这两种类型的染色体在分生组织和分化的间期核中具有相似的组织形式。然而,在配子发生过程中缺失一个导致非姊妹染色单体不分离的 B 染色体片段,也会导致某些体细胞间期核中的姊妹着丝粒释放。因此,黑麦 B 染色体的非姊妹染色单体不分离的调控在孢子体细胞中也是活跃的。

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