首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Malorientation in half-bivalents at anaphase: analysis of autosomal laggards in untreated cold-treated and cold-recovering crane fly spermatocytes
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Malorientation in half-bivalents at anaphase: analysis of autosomal laggards in untreated cold-treated and cold-recovering crane fly spermatocytes

机译:后期半二价错误:未处理冷处理和冷恢复的鹤蝇精母细胞中常染色体落后者的分析

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摘要

Exposing crane fly larvae to 6 degrees C or returning them to 22 degrees C after exposure to 6, 2, or 0.2 degrees C can induce any number of autosomes in their primary spermatocytes to lag near the spindle equator at anaphase. Autosomal laggards in cold-recovering cells are contained in bivalents until anaphase (Janicke, M. A., and J. R. LaFountain, 1982, Chromosoma, 85:619-631). We report here documentation that lagging autosomes in cold-treated and cold- recovering cells are maloriented. During meiosis I, half-bivalents usually associate with only one pole via kinetochore fibers, with sister chromatids being oriented to the same pole. In contrast, laggards had kinetochore microtubules (kMTs) extending from them toward both poles: one sister was oriented to one pole and the other had some or all of its kMTs extending toward the opposite pole. Bipolar malorientation of autosomal laggards also was observed in one untreated cell. The number of kMTs per half-bivalent was similar in lagging and non-lagging autosomes, and those kMTs were contained in long birefringent kinetochore fibers. The overall spindle structure in cold- recovering cells was similar to that observed in untreated anaphase cells. Giemsa-stained centromeric dots of sister chromatids were contiguous in non-laggards and separated in laggards at anaphase. We conclude that bipolar malorientations can exist at anaphase in chromosomes that remain paired until anaphase, that cold recovery increases the frequency of that anomaly, and that such malorientations may be one cause of anaphase lag.
机译:将鹤蝇幼虫暴露于6摄氏度或暴露于6、2或0.2摄氏度后使其恢复至22摄氏度,会在后期诱导其初级精母细胞中的许多常染色体滞后于纺锤赤道附近。冷恢复细胞中的常染色体发育迟滞以二价形式存在直至后期(Janicke,M. A.和J. R. LaFountain,1982,Chromosoma,85:619-631)。我们在这里报告文档,表明在冷处理和冷恢复的细胞中滞后的常染色体是错误的。在减数分裂I期间,半二价通常仅通过动线粒纤维与一个极点结合,而姐妹的染色单体则指向同一极点。相比之下,落后者的线粒体微管(kMT)从它们延伸到两个极点:一个姊妹朝向一个极点,另一个姐妹的一些或全部kMT朝着另一个极点延伸。在一个未处理的细胞中也观察到常染色体的落后者的双极性取向不良。在滞后和非滞留常染色体中,每半二价的kMT数量相似,而这些kMT包含在长的双折射动粒纤维中。冷恢复细胞的整体纺锤体结构与未经处理的后期细胞相似。姐妹染色单体的吉姆萨染色的着丝粒点在非后代中是连续的,在后期时则在后代中分离。我们得出的结论是,双极性错误取向可以存在于染色体中的后期,这些染色体保持配对直到后期,冷恢复会增加该异常的频率,并且这种错误取向可能是后期滞后的原因之一。

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