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First Steps in the Successful Fertilization of Rice and Arabidopsis: Pollen Longevity Adhesion and Hydration

机译:稻米和拟南芥成功施肥的第一步:花粉寿命附着力和水合

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摘要

Understanding the behavior of pollen during pollination is important for food security in the future. The elucidation of pollen development and growth regulation largely relies on the study of the dicotyledonous model plant . However, rice ( ) pollen exhibits different characteristics to that of . The latter undergoes programmed dehydration and withstands adverse environmental conditions, whereas rice pollen is sensitive to desiccation. Moreover, the short longevity of rice pollen significantly hampers hybrid seed production. Although the “omics” data for mature rice pollen have been accumulated, few genes that control pollination and pollen hydration have been identified. Therefore, to facilitate future studies, it is necessary to summarize the developmental processes involved in pollen production in rice and to consolidate the underlying mechanisms discovered in previous studies. In this review, we describe the pollen developmental processes and introduce gametophytic mutants, which form defective pollen in and rice. In addition, we discuss the perspectives on the research on pollen longevity, adhesion and hydration.
机译:了解授粉过程中花粉的行为对于未来的粮食安全是重要的。花粉发育和生长调控的阐明在很大程度上依赖于双语模型植物的研究。然而,水稻()花粉表现出不同的特征。后者经历了编程的脱水,承受不良环境条件,而水稻花粉对干燥敏感。此外,水稻花粉的短寿命显着妨碍了杂种种子生产。虽然已经积累了成熟水稻花粉的“OMIC”数据,但已经确定了控制授粉和花粉水合的很少的基因。因此,为了促进未来的研究,有必要总结参与水稻花粉产量的发展过程,并巩固以前研究中发现的潜在机制。在本综述中,我们描述了花粉发育过程并引入了杂草突变体,形成了缺陷的花粉和水稻。此外,我们讨论了花粉寿命,附着力和水化研究的视角。

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