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Abnormal PMC microtubule distribution pattern and chromosome behavior resulted in low pollen fertility of an intersubspecific autotetraploid rice hybrid

机译:PMC微管分布模式和染色体行为异常导致亚种间四倍体水稻杂交种的花粉育性降低

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Intersubspecific autotetraploid rice hybrids have high heterosis in both vegetative and reproductive growth, but low seed set hinders commercial utilization of autotetraploid rice. Autotetraploid rice hybrids with high and low pollen fertility were used in the present study to compare microtubule distribution patterns and chromosome behavior during pollen mother cell (PMC) meiosis, using indirect immunofluorescence laser scanning confocal microscopy. Microtubule distribution patterns of autotetraploid hybrids were similar to diploid rice, but many different kinds of abnormalities were found in the hybrid with low pollen fertility and seed set. Abnormal microtubule organization including structurally distorted microtubules at pachytene, loosely knitted perinuclear microtubules at diakinesis during prophase I, and abnormal spindles, viz. multipoles, loss of spindle pole focus, abnormal size of spindles, and so on, were found at metaphase I and metaphase II. Some cells developed into triad with no formation of tetrad. Abnormal chromosome behaviors included high percentage of multivalents, chromosome lagging, chromosome bridges, and micronuclei. All these abnormalities were found more frequently in low-fertile hybrid than in high-fertile hybrid. These results suggest that abnormal microtubule distribution pattern is an important factor which affects pollen fertility and percentage seed set in autotetraploid rice, and may also have a close relationship with chromosome behavior.
机译:亚种间同源四倍体水稻杂种在营养生长和生殖生长方面均具有较高的杂种优势,但种子集数低阻碍了同源四倍体水稻的商业利用。通过间接免疫荧光激光扫描共聚焦显微镜,本研究使用具有高和低花粉育性的同源四倍体水稻杂种来比较花粉母细胞(PMC)减数分裂期间的微管分布模式和染色体行为。同源四倍体杂种的微管分布模式与二倍体水稻相似,但是在低花粉育性和结实的杂种中发现了许多不同类型的异常。异常的微管组织,包括在粗线期的结构扭曲的微管,在前期I期间在diakinesis的松散编织的核周微管,以及异常的纺锤体,即。在中期I和中期II中发现了多极,纺锤体极点聚焦的损失,纺锤体尺寸异常等。一些细胞发育成三联体,没有四联体形成。异常的染色体行为包括高百分比的多价,染色体滞后,染色体桥和微核。所有这些异常在低能育种中比在高能育种中更常见。这些结果表明,微管分布异常是影响四倍体水稻花粉育性和结实率的重要因素,也可能与染色体行为密切相关。

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