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蛋白质组学在理解花粉与雌蕊相互作用方面的进展

Proteomics Advances in the Understanding of Pollen-Pistil Interactions.

作者信息

Fu Ziyang, Yang Pingfang

机构信息

Key Laboratory of Plant Germplasm Enhancement and Speciality Agriculture, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan 430074, China.

出版信息

Proteomes. 2014 Sep 29;2(4):468-484. doi: 10.3390/proteomes2040468.

Abstract

The first key point to the successful pollination and fertilization in plants is the pollen-pistil interaction, referring to the cellular and molecular levels, which mainly involve the haploid pollen and the diploid pistil. The process is defined as "siphonogamy", which starts from the capture of pollen by the epidermis of stigma and ends up with the fusion of sperm with egg. So far, the studies of the pollen-pistil interaction have been explicated around the self-compatibility and self-incompatibility (SI) process in different species from the molecular genetics and biochemistry to cellular and signal levels, especially the mechanism of SI system. Among them, numerous proteomics studies based on the advanced technologies from gel-system to gel-free system were conducted, focusing on the interaction, in order to uncover the mechanism of the process. The current review mainly focuses on the recent developments in proteomics of pollen-pistil interaction from two aspects: self-incompatible and compatible pollination. It might provide a comprehensive insight on the proteins that were involved in the regulation of pollen-pistil interaction.

摘要

植物成功授粉和受精的首要关键点是花粉与雌蕊的相互作用,这涉及细胞和分子水平,主要包括单倍体花粉和二倍体雌蕊。该过程被定义为“管受精”,始于柱头表皮捕获花粉,终于精子与卵子融合。到目前为止,从分子遗传学、生物化学到细胞和信号水平,围绕不同物种的自交亲和性和自交不亲和性(SI)过程,对花粉与雌蕊相互作用进行了阐述,尤其是SI系统的机制。其中,基于从凝胶系统到无凝胶系统等先进技术开展了大量蛋白质组学研究,聚焦于相互作用,以揭示该过程的机制。本综述主要从自交不亲和授粉和亲和授粉两个方面关注花粉与雌蕊相互作用蛋白质组学的最新进展。它可能为参与调控花粉与雌蕊相互作用的蛋白质提供全面的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0860/5302694/52c12879b05f/proteomes-02-00468-g001.jpg

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