Tseng Shih-Hsuan, Peng Shu-Fen, Cheng Ya-Ming
Department of Agronomy, National Chung Hsing University, 250 Kuo Kuang Road, Taichung, 402, Taiwan.
Department of Medical Research, China Medical University Hospital, Taichung, Taiwan.
Chromosome Res. 2018 Sep;26(3):153-162. doi: 10.1007/s10577-017-9567-7. Epub 2017 Nov 20.
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.
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。