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水稻蛋白质组学:迈向更广泛的蛋白质组覆盖的发展,以及比较和功能蛋白质组学,揭示了水稻和植物生物学的奥秘。

Rice proteomics: A move toward expanded proteome coverage to comparative and functional proteomics uncovers the mysteries of rice and plant biology.

机构信息

Research Laboratory for Biotechnology and Biochemistry, Kathmandu, Nepal.

出版信息

Proteomics. 2011 May;11(9):1630-49. doi: 10.1002/pmic.201000696. Epub 2011 Apr 4.

Abstract

Growing rice is an important socio-economic activity. Rice proteomics has achieved a tremendous progress in establishing techniques to proteomes of almost all tissues, organs, and organelles during the past one decade (year 2000-2010). We have compiled these progresses time to time over this period. The present compilation discusses proteomics research in rice published between 1st April 2008 and 30th July 2010. Progress continues mainly towards protein cataloging deep into the proteome with high-confident protein assignment and some functional significance than ever before by (i) identifying previously unreported/low-abundance proteins, (ii) quantifying relative/absolute values of proteins, (iii) assigning protein responses to biotic/abiotic stresses, (iv) protein localization into organelles, (v) validating previous proteomes and eliminating false-positive proteins, and (vi) discovering potential biomarkers for tissues, organs, organelles, and for screening transgenic plants and food-safety evaluation. The notable achievements in global mapping of phosphorylation sites and identifying several novel secreted proteins into the extracellular space are worth appreciating. Our ever-increasing knowledge on the rice proteomics is beginning to impact the biology of not only rice, but also crops and plants. These major achievements will be discussed in this review keeping in mind newcomers, young, and established scientists in proteomics and plants.

摘要

种植水稻是一项重要的社会经济活动。在过去的十年(2000-2010 年)中,水稻蛋白质组学在建立几乎所有组织、器官和细胞器的蛋白质组技术方面取得了巨大进展。在此期间,我们不时地对这些进展进行了汇编。本汇编讨论了 2008 年 4 月 1 日至 2010 年 7 月 30 日期间发表的水稻蛋白质组学研究进展。进展主要朝着对蛋白质组进行更深层次的蛋白质编目方向继续,具有更高的置信度蛋白质分配和比以往更多的功能意义,方法是:(i)鉴定以前未报道/低丰度的蛋白质;(ii)定量蛋白质的相对/绝对值;(iii)分配蛋白质对生物/非生物胁迫的反应;(iv)将蛋白质定位到细胞器中;(v)验证以前的蛋白质组并消除假阳性蛋白质;(vi)发现组织、器官、细胞器的潜在生物标志物,以及筛选转基因植物和食品安全评估。值得赞赏的是,在磷酸化位点的全球图谱绘制和鉴定几个新的分泌蛋白进入细胞外空间方面取得了显著成就。我们对水稻蛋白质组学的不断增加的了解不仅开始影响水稻的生物学,而且还影响作物和植物的生物学。在撰写本综述时,我们将考虑到蛋白质组学和植物领域的新手、年轻和成熟科学家,讨论这些主要成就。

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