Role of Lipid Metabolism in Plant Pollen Exine Development

花粉 生物 雄蕊 孢粉素 植物 拟南芥 绒毡层 授粉 双受精 植物繁殖 花粉管 小孢子 细胞生物学 基因 遗传学 突变体
作者
Dabing Zhang,Jianxin Shi,Xijia Yang
出处
期刊:Sub-cellular biochemistry [Springer Nature]
卷期号:: 315-337 被引量:87
标识
DOI:10.1007/978-3-319-25979-6_13
摘要

Pollen plays important roles in the life cycle of angiosperms plants. It acts as not only a biological protector of male sperms but also a communicator between the male and the female reproductive organs, facilitating pollination and fertilization. Pollen is produced within the anther, and covered by the specialized outer envelope, pollen wall. Although the morphology of pollen varies among different plant species, the pollen wall is mainly comprised of three layers: the pollen coat, the outer exine layer, and the inner intine layer. Except the intine layer, the other two layers are basically of lipidic nature. Particularly, the outer pollen wall layer, the exine, is a highly resistant biopolymer of phenylpropanoid and lipidic monomers covalently coupled by ether and ester linkages. The precise molecular mechanisms underlying pollen coat formation and exine patterning remain largely elusive. Herein, we summarize the current genetic, phenotypic and biochemical studies regarding to the pollen exine development and underlying molecular regulatory mechanisms mainly obtained from monocot rice (Oryza sativa) and dicot Arabidopsis thaliana, aiming to extend our understandings of plant male reproductive biology. Genes, enzymes/proteins and regulatory factors that appear to play conserved and diversified roles in lipid biosynthesis, transportation and modification during pollen exine formation, were highlighted.

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