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通过在小孢子发生过程中中期板上的染色体排列证明臂形草(禾本科:黍族)存在异源多倍体。

Evidence of allopolyploidy in Brachiaria brizantha (Poaceae: Paniceae) through chromosome arrangement at metaphase plate during microsporogenesis.

作者信息

Risso-Pascotto C, Mendes D V, Silva N, Pagliarini M S, Valle C B

机构信息

Departamento de Biologia Celular e Genética, Universidade Estadual de Maringá, Maringá, PR, Brasil.

出版信息

Genet Mol Res. 2006 Dec 8;5(4):797-803.

Abstract

In the hexaploid (2n = 6x = 54) accession B176 of Brachiaria brizantha, one cytological characteristic differentiated it from the other accessions previously analyzed with the same ploidy level. Nearly 40% of meiocytes displayed the chromosome set arranged at two metaphase plates at the poles of the cell, close to the membrane. In these cells, both metaphase plates were arranged in an angle to form a typical tripolar spindle. Therefore, cells did not show normal chromosome segregation at anaphase I. Only nine univalent chromosomes migrated from each plate to the opposite pole with the remainder staying immobile on the plate. As a result of such spindle orientation and chromosome behavior, trinucleate telophases I were recorded. After telophase, cytokinesis eliminated the small nuclei into a microcyte. The second division proceeded normally, with the presence of microcytes in all phases. The origin of such an abnormality was explained on the hexaploid level of the accession which could have resulted by chromosome doubling of a triploid derived from species that did not display the same behavior for spindle organization. The high percentage of meiotic abnormalities recorded in this accession compromises fertility and renders it inadequate for the breeding program.

摘要

在臂形草六倍体(2n = 6x = 54)种质B176中,一个细胞学特征使其与之前分析过的相同倍性水平的其他种质有所不同。近40%的减数分裂细胞显示染色体组排列在细胞两极靠近细胞膜的两个中期板上。在这些细胞中,两个中期板呈一定角度排列,形成典型的三极纺锤体。因此,细胞在减数第一次分裂后期未显示正常的染色体分离。每个板上只有9条单价染色体迁移到相对的极,其余的则停留在板上不动。由于这种纺锤体取向和染色体行为,记录到了三核末期I。末期后,胞质分裂将小核消除形成一个微细胞。第二次分裂正常进行,各阶段均有微细胞存在。这种异常现象的起源在该种质的六倍体水平上得到了解释,这可能是由一个三倍体的染色体加倍导致的,该三倍体来源于在纺锤体组织方面表现不同的物种。该种质中记录到的高比例减数分裂异常损害了育性,使其不适用于育种计划。

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