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Breakage-fusion-bridge cycles and de novo telomere formation on broken chromosomes in maize callus cultures

机译:玉米愈伤组织培养中的断裂-融合-桥循环和断裂染色体上的从头端粒形成

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Breakpoints involved in chromosome alterations associated with heterochromatin have been detected in maize plants regenerated from callus culture. A cytogenetic analysis of plants regenerated from a maize callus was performed aiming to analyze the stability of a chromosome 7 bearing a deficiency-duplication (Df-Dp), which was interpreted as derived from a chromatid type breakage-fusion-bridge (BFB) cycle. The Df-Dp chromosome 7 was stable in mitotic and meiotic cells of the regenerated plants. Fluorescence in situ hybridization showed signals of telomeric sequences on the broken chromosome arm and provided evidence of de novo telomere formation. The stability of two types of altered chromosome 7 was investigated in C-banded metaphases from samples of the original callus that were collected during a period of 30-42 months after culture initiation. New alterations involving heterochromatic knobs of chromosomes 7 and 9 were observed. The aberrant chromosomes were stable in the subcultures, thus providing evidence of broken chromosome healing. The examination of anaphases showed the presence of bridges, which was consistent with the occurrence of BFB cycles. De novo telomere formation occurred in euchromatic and heterochromatic chromosome termini. The results point to events of chromosomal evolution that might occur in plants.
机译:在从愈伤组织培养物再生的玉米植物中已经检测到与异染色质相关的染色体改变所涉及的断点。进行了从玉米愈伤组织再生的植物的细胞遗传学分析,旨在分析带有缺陷重复(Df-Dp)的7号染色体的稳定性,该染色体被解释为是由染色单体型断裂-融合-桥(BFB)循环产生的。 Df-Dp 7号染色体在再生植物的有丝分裂和减数分裂细胞中稳定。荧光原位杂交在断裂的染色体臂上显示端粒序列的信号,并提供了从头端粒形成的证据。在培养开始后30-42个月内收集的原始愈伤组织样品的C带中期,研究了两种类型的7号染色体改变的稳定性。观察到涉及染色体7和9的异色结的新变化。异常染色体在亚培养中是稳定的,因此提供了染色体断裂修复的证据。后期检查表明存在电桥,这与BFB循环的发生一致。从头端粒形成发生在常染色体和异染色体染色体末端。结果表明可能发生在植物中的染色体进化事件。

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