Suppr超能文献

“花束捕获”、单极染色体分离和异常纺锤体的纠正。

"Bouquet arrest", monopolar chromosomes segregation, and correction of the abnormal spindle.

机构信息

Institute of Chemical Biology and Fundamental Medicine of Siberian Branch of RAS, Novosibirsk, Russia.

出版信息

Protoplasma. 2012 Jan;249(1):43-51. doi: 10.1007/s00709-010-0260-3. Epub 2011 Jan 28.

Abstract

According to our data, the arrest of univalents in bouquet arrangement is a widespread meiotic feature in cereal haploids and allohaploids (wide hybrids F(1)). We have analyzed 83 different genotypes of cereal haploids and allohaploids with visualization of the cytoskeleton and found a bouquet arrest in 45 of them (in 30% to 100% pollen mother cells (PMCs)). The meiotic plant cell division in 26 various genotypes with a zygotene bouquet arrest was analyzed in detail. In three of them in PMCs, a very specific monopolar conic-shaped figure at early prometaphase is formed. This monopolar figure consists of mono-oriented univalents and their kinetochore fibers converging in pointed pole. Such figures are never observed at wild-type prometaphase or in asynaptic meiosis in the variants without a bouquet arrest. Later at prometaphase, the bipolar central spindle fibers join in this monopolar figure, and a bipolar spindle with all univalents connected to one pole is formed. As a result of monopolar chromosome segregation at anaphase and normal cytokinesis at telophase, a dyad with one member carrying a restitution nucleus and the other enucleated is formed. However, such phenotype has only three genotypes among 26 analyzed with a bouquet arrest. In the remaining 23 haploids and allohaploids, the course of prometaphase was altered after the conic monopolar figure formation. In these variants, the completely formed conic monopolar figure was disintegrated into a chaotic network of spindle fibers and univalents acquired a random orientation. This arrangement looks like a mid-prometaphase in the wild-type meiosis. At late prometaphase, a bipolar spindle is formed with the univalents distributed more or less equally between two poles, similar to the phenotypes without a bouquet arrest. The product of cell division is a dyad with aneuploid members. Thus, the spindle abnormality-monopolar chromosome orientation-is corrected. In some cells the correction of the prometaphase monopolus occurs by means of its splitting into two half-spindles and their rotation along the future division axis.

摘要

根据我们的数据,在谷物单倍体和异源单倍体(宽杂种 F(1))中,单价体在 bouquet 排列中的阻滞是一种广泛存在的减数分裂特征。我们已经分析了 83 种不同基因型的谷物单倍体和异源单倍体,并通过可视化细胞骨架发现其中 45 种(在 30%到 100%花粉母细胞 (PMC) 中)存在 bouquet 阻滞。在 26 种具有合线期 bouquet 阻滞的不同基因型中,详细分析了减数分裂植物细胞分裂。在其中 3 种 PMC 中,早期前期会形成一个非常特殊的单极锥形结构。这个单极结构由单定向的单价体及其动粒纤维在尖极汇聚组成。这种形态从未在野生型前期或无 bouquet 阻滞的变体中观察到的不联会减数分裂中观察到。后期前期,两极中央纺锤体纤维加入这个单极结构,形成一个带有所有单价体连接到一个极的两极纺锤体。由于后期前期的单极染色体分离和后期中期的正常细胞分裂,形成一个带有一个成员携带修复核和另一个去核的二联体。然而,在具有 bouquet 阻滞的 26 种分析中,只有 3 种基因型具有这种表型。在其余的 23 种单倍体和异源单倍体中,在锥形单极结构形成后,前期的进程发生了改变。在这些变体中,完全形成的锥形单极结构分解成一个混乱的纺锤体纤维网络,单价体获得随机取向。这种排列类似于野生型减数分裂中的中期前期。在后期前期,形成一个带有或多或少均匀分布在两个极之间的单价体的两极纺锤体,类似于没有 bouquet 阻滞的表型。细胞分裂的产物是一个具有非整倍体成员的二联体。因此,纺锤体异常-单价体取向-得到了纠正。在一些细胞中,通过将 monopolus 分裂成两个半纺锤体并沿未来的分裂轴旋转来实现前期 monopolus 的纠正。

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