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Minichromosome analysis of chromosome pairing, disjunction, and sister chromatid cohesion in maize

机译:玉米染色体配对,分离和姐妹染色单体凝聚力的微染色体分析

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With the advent of engineered minichromosome technology in plants, an understanding of the properties of small chromosomes is desirable. Twenty-two minichromosomes of related origin but varying in size are described that provide a unique resource to study such behavior. Fourteen minichromosomes from this set could pair with each other in meiotic prophase at frequencies between 25 and 100%, but for the smaller chromosomes, the sister chromatids precociously separated in anaphase I. The other eight minichromosomes did not pair with themselves, and the sister chromatids divided equationally at meiosis I. In plants containing one minichromosome, the sister chromatids also separated at meiosis I. In anaphase II, the minichromosomes progressed to one pole or the other. The maize ( Zea mays) Shugoshin protein, which has been hypothesized to protect centromere cohesion in meiosis I, is still present at anaphase I on minichromosomes that divide equationally. Also, there were no differences in the level of phosphorylation of Ser-10 of histone H3, a correlate of cohesion, in the minichromosomes in which sister chromatids separated during anaphase I compared with the normal chromosomes. These analyses suggest that meiotic centromeric cohesion is compromised in minichromosomes depending on their size and cannot be maintained by the mechanisms used by normal-sized chromosomes.
机译:随着植物中工程化微染色体技术的出现,人们需要了解小染色体的特性。描述了二十二个相关来源的微型染色体,但是大小不同,它们为研究这种行为提供了独特的资源。该组中的14个微型染色体可以在减数分裂前期以25%至100%的频率相互配对,但对于较小的染色体,姐妹染色单体在后期I早熟分离。其他八个微型染色体不与它们自身配对,而姐妹染色单体在减数分裂I中按等式进行划分。在包含一个微染色体的植物中,姊妹染色单体也在减数分裂I处分离。在后期II中,微染色体发展为一个极或另一个。假设玉米(Sua mays)Shugoshin蛋白可以保护减数分裂I中的着丝粒凝聚力,但它仍存在于等分的微型染色体的I期后期。同样,在微型染色体中,组蛋白H3的Ser-10的磷酸化水平没有差异,凝聚力的相关性是与正常染色体相比,在微型染色体中姐妹染色单体在后期I分离的。这些分析表明减数分裂着丝粒内聚力在微型染色体中取决于其大小而受到损害,并且不能由正常大小的染色体所使用的机制来维持。

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