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玉米中r-X1缺失诱导的B染色体不分离分析。

Analysis of B chromosome nondisjunction induced by the r-X1 deficiency in maize.

作者信息

Tseng Shih-Hsuan, Peng Shu-Fen, Cheng Ya-Ming

机构信息

Department of Agronomy, National Chung Hsing University, 250 Kuo Kuang Road, Taichung, 402, Taiwan.

Department of Medical Research, China Medical University Hospital, Taichung, Taiwan.

出版信息

Chromosome Res. 2018 Sep;26(3):153-162. doi: 10.1007/s10577-017-9567-7. Epub 2017 Nov 20.

Abstract

The maize B chromosome typically undergoes nondisjunction during the second microspore division. For normal A chromosomes, the r-X1 deficiency in maize can induce nondisjunction during the second megaspore and first microspore divisions. However, it is not known whether the r-X1 deficiency also induces nondisjunction of the maize B chromosome during these cell divisions. To answer this question, chromosome numbers were determined in the progeny of r-X1/R-r female parents carrying two B chromosomes. Some of the r-X1-lacking progeny (21.2%) contained zero or two B chromosomes. However, a much higher percentage of the r-X1-containing progeny (43.4%) exhibited zero or two B chromosomes, but none displayed more than two B chromosomes. Thus, the results indicated that the r-X1 deficiency could also induce nondisjunction of the B chromosome during the second megaspore division; moreover, the B chromosome in itself could undergo nondisjunction during the same division. In addition, pollen grains from plants with two B chromosomes lacking or exhibiting the r-X1 deficiency were compared via pollen fluorescence in situ hybridization (FISH) using a B chromosome-specific probe. The results revealed that the r-X1 deficiency could induce the occurrence of B chromosome nondisjunction during the first microspore division and that the B chromosome in itself could undergo nondisjunction during the same division at a lower frequency. Our data shed more light on the behavior of the maize B chromosome during cell division.

摘要

玉米B染色体通常在第二次小孢子分裂期间发生不分离。对于正常的A染色体,玉米中的r-X1缺失可在第二次大孢子和第一次小孢子分裂期间诱导不分离。然而,尚不清楚r-X1缺失是否也会在这些细胞分裂过程中诱导玉米B染色体的不分离。为了回答这个问题,我们测定了携带两条B染色体的r-X1/R-r雌性亲本后代的染色体数目。一些缺乏r-X1的后代(21.2%)含有零条或两条B染色体。然而,含有r-X1的后代中,有更高比例(43.4%)表现出零条或两条B染色体,但没有一个显示超过两条B染色体。因此,结果表明r-X1缺失也可在第二次大孢子分裂期间诱导B染色体的不分离;此外,B染色体本身在同一分裂过程中也可能发生不分离。此外,使用B染色体特异性探针,通过花粉荧光原位杂交(FISH)比较了具有两条B染色体但缺乏或表现出r-X1缺失的植株的花粉粒。结果显示,r-X1缺失可在第一次小孢子分裂期间诱导B染色体不分离的发生,并且B染色体本身在同一分裂过程中也可能以较低频率发生不分离。我们的数据为玉米B染色体在细胞分裂过程中的行为提供了更多的线索。

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