Pathfinding in angiosperm reproduction: pollen tube guidance by pistils ensures successful double fertilization

雌蕊 花粉管 配子体 生物 双受精 胚珠 花粉 卵细胞 精子 授粉 植物 孢子体 细胞生物学 雄蕊
作者
Ravishankar Palanivelu,Tatsuya Tsukamoto
出处
期刊:Wiley Interdisciplinary Reviews-Developmental Biology [Wiley]
卷期号:1 (1): 96-113 被引量:127
标识
DOI:10.1002/wdev.6
摘要

Abstract Sexual reproduction in flowering plants is unique in multiple ways. Distinct multicellular gametophytes contain either a pair of immotile, haploid male gametes (sperm cells) or a pair of female gametes (haploid egg cell and homodiploid central cell). After pollination, the pollen tube, a cellular extension of the male gametophyte, transports both male gametes at its growing tip and delivers them to the female gametes to affect double fertilization. The pollen tube travels a long path and sustains its growth over a considerable amount of time in the female reproductive organ (pistil) before it reaches the ovule, which houses the female gametophyte. The pistil facilitates the pollen tube's journey by providing multiple, stage‐specific, nutritional, and guidance cues along its path. The pollen tube interacts with seven different pistil cell types prior to completing its journey. Consequently, the pollen tube has a dynamic gene expression program allowing it to continuously reset and be receptive to multiple pistil signals as it migrates through the pistil. Here, we review the studies, including several significant recent advances, that led to a better understanding of the multitude of cues generated by the pistil tissues to assist the pollen tube in delivering the sperm cells to the female gametophyte. We also highlight the outstanding questions, draw attention to opportunities created by recent advances and point to approaches that could be undertaken to unravel the molecular mechanisms underlying pollen tube–pistil interactions. WIREs Dev Biol 2012, 1:96–113. doi: 10.1002/wdev.6 This article is categorized under: Plant Development > Gametophyte Development Plant Development > Fertilization, Embryogenesis, and Seed Development Plant Development > Inflorescence, Flower, and Fruit Development Additional Supporting Information may be found in the online version of this article. Movie1‐Palanivelu‐Tsukamoto.mov Movie1‐Palanivelu‐Tsukamoto.mov

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