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在减数分裂前期 I 中发育的大麦花粉囊中蛋白质组。

The proteome of developing barley anthers during meiotic prophase I.

机构信息

Cell and Molecular Sciences, The James Hutton Institute, Invergowrie, Dundee DD2 5DA, UK.

Information and Computational Sciences, The James Hutton Institute, Invergowrie, Dundee DD2 5DA, UK.

出版信息

J Exp Bot. 2022 Mar 2;73(5):1464-1482. doi: 10.1093/jxb/erab494.

Abstract

Flowering plants reproduce sexually by combining a haploid male and female gametophyte during fertilization. Male gametophytes are localized in the anthers, each containing reproductive (meiocyte) and non-reproductive tissue necessary for anther development and maturation. Meiosis, where chromosomes pair and exchange their genetic material during a process called recombination, is one of the most important and sensitive stages in breeding, ensuring genetic diversity. Most anther development studies have focused on transcript variation, but very few have been correlated with protein abundance. Taking advantage of a recently published barley anther transcriptomic (BAnTr) dataset and a newly developed sensitive mass spectrometry-based approach to analyse the barley anther proteome, we conducted high-resolution mass spectrometry analysis of barley anthers, collected at six time points and representing their development from pre-meiosis to metaphase. Each time point was carefully staged using immunocytology, providing a robust and accurate staging mirroring our previous BAnTr dataset. We identified >6100 non-redundant proteins including 82 known and putative meiotic proteins. Although the protein abundance was relatively stable throughout prophase I, we were able to quantify the dynamic variation of 336 proteins. We present the first quantitative comparative proteomics study of barley anther development during meiotic prophase I when the important process of homologous recombination is taking place.

摘要

有花植物通过在受精过程中结合一个单倍体雄配子体和雌配子体来进行有性繁殖。雄配子体位于花药中,每个花药包含生殖(减数分裂)和非生殖组织,这些组织对于花药发育和成熟是必要的。减数分裂是最关键和敏感的繁殖阶段之一,其中染色体配对并交换其遗传物质,这个过程称为重组,确保了遗传多样性。大多数花药发育的研究都集中在转录变异上,但很少有与蛋白质丰度相关的研究。利用最近发表的大麦花药转录组(BAnTr)数据集和新开发的基于灵敏质谱的方法来分析大麦花药蛋白质组,我们对大麦花药进行了高分辨率的质谱分析,这些花药样本是在六个时间点采集的,代表了从减数分裂前期到中期的发育过程。每个时间点都使用免疫细胞化学进行了仔细的分期,提供了一个稳健而准确的分期,与我们之前的 BAnTr 数据集相匹配。我们鉴定了超过 6100 种非冗余蛋白质,其中包括 82 种已知和推测的减数分裂蛋白。尽管在整个减数分裂前期 I 过程中蛋白质丰度相对稳定,但我们能够定量分析 336 种蛋白质的动态变化。我们提出了第一个大麦花药减数分裂前期 I 发育的定量比较蛋白质组学研究,在这个时期同源重组的重要过程正在发生。

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