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减数分裂细线期异位的端粒似乎是小麦(普通小麦)倒位杂合子中交叉配对的原因。

Out-of-position telomeres in meiotic leptotene appear responsible for chiasmate pairing in an inversion heterozygote in wheat (Triticum aestivum L.).

作者信息

Pernickova Katerina, Linc Gabriella, Gaal Eszter, Kopecky David, Samajova Olga, Lukaszewski Adam J

机构信息

Centre of the Region Hana for Biotechnological and Agricultural Research, Institute of Experimental Botany, Slechtitelu 31, Olomouc, Czech Republic.

Centre for Agricultural Research, Agricultural Institute, Hungarian Academy of Sciences, Martonvasar, 2462, Hungary.

出版信息

Chromosoma. 2019 Mar;128(1):31-39. doi: 10.1007/s00412-018-0686-5. Epub 2018 Nov 27.

DOI:10.1007/s00412-018-0686-5
PMID:30483879
Abstract

Chromosome pairing in meiosis usually starts in the vicinity of the telomere attachment to the nuclear membrane and congregation of telomeres in the leptotene bouquet is believed responsible for bringing homologue pairs together. In a heterozygote for an inversion of a rye (Secale cereale L.) chromosome arm in wheat, a distal segment of the normal homologue is capable of chiasmate pairing with its counterpart in the inverted arm, located near the centromere. Using 3D imaging confocal microscopy, we observed that some telomeres failed to be incorporated into the bouquet and occupied various positions throughout the entire volume of the nucleus, including the centromere pole. Rye telomeres appeared ca. 21 times more likely to fail to be included in the telomere bouquet than wheat telomeres. The frequency of the out-of-bouquet rye telomere position in leptotene was virtually identical to the frequency of telomeres deviating from Rabl's orientation in the nuclei of somatic cells, and was similar to the frequency of synapsis of the normal and inverted chromosome arms, but lower than the MI pairing frequency of segments of these two arms normally positioned across the volume of the nucleus. Out-of-position placement of the rye telomeres may be responsible for reduced MI pairing of rye chromosomes in hybrids with wheat and their disproportionate contribution to aneuploidy, but appears responsible for initiating chiasmate pairing of distantly positioned segments of homology in an inversion heterozygote.

摘要

减数分裂中的染色体配对通常始于端粒附着于核膜附近,细线期花束状结构中端粒的聚集被认为有助于将同源染色体对聚集在一起。在小麦中一个黑麦(黑麦草)染色体臂倒位的杂合子中,正常同源染色体的远端片段能够与其位于着丝粒附近的倒位臂中的对应片段进行交叉配对。使用三维成像共聚焦显微镜,我们观察到一些端粒未能纳入花束状结构,并在细胞核的整个体积中占据不同位置,包括着丝粒极。黑麦端粒未被纳入端粒花束状结构的可能性似乎比小麦端粒高约21倍。细线期黑麦端粒不在花束状结构中的位置频率与体细胞细胞核中端粒偏离拉布尔方向的频率几乎相同,并且与正常和倒位染色体臂的联会频率相似,但低于这两个臂通常在细胞核体积中相对位置的减数第一次分裂配对频率。黑麦端粒位置异常可能是导致其与小麦杂交后代中黑麦染色体减数第一次分裂配对减少及其对非整倍体不成比例贡献的原因,但似乎也是倒位杂合子中远距离同源片段交叉配对起始的原因。

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