High temperature-induced production of unreduced pollen and its cytological effects in Populus

减数分裂 花粉 微管 微核试验 细胞骨架 胞质分裂 热应力 生物 细胞生物学 染色体分离 染色体 植物 小孢子 遗传学 细胞分裂 化学 细胞 基因 雄蕊 有机化学 动物科学 毒性
作者
Jun Wang,Daili Li,Fengnan Shang,Xiangyang Kang
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:7 (1) 被引量:78
标识
DOI:10.1038/s41598-017-05661-x
摘要

Temperature change is of potential to trigger the formation of unreduced gametes. In this study, we showed that short periods of high temperature treatment can induce the production of 2n pollen in Populus pseudo-simonii Kitag. The meiotic stage, duration of treatment, and temperature have significant effects on the induction of 2n pollen. Heat stress resulted in meiotic abnormalities, including failure of chromosome separation, chromosome stickiness, laggards and micronuclei. Spindle disorientations in the second meiotic division, such as parallel, fused, and tripolar spindles, either increased in frequency or were induced de novo by high temperature treatment. We found that the high temperature treatment induced depolymerisation of meiotic microtubular cytoskeleton, resulting in the failure of chromosome segregation. New microtubular cytoskeletons were able to repolymerise in some heat-treated cells after transferring them to normal conditions. However, aberrant cytokinesis occurred owing to defects of new radial microtubule systems, leading to production of monads, dyads, triads, and polyads. This suggested that depolymerisation and incomplete restoration of microtubules may be important for high temperature-induction of unreduced gametes. These findings might help us understand how polyploidisation is induced by temperature-related stress and support the potential effects of global climate change on reproductive development of plants.
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