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生物系统学与植物蛋白质组学:蛋白质组学在植物系统发育分析中的作用

Biosystematics and plant proteomics: role of proteomics in plant phylogenetic analysis.

作者信息

Ishtiaq C Muhammad, He Q, Huang J P, Wang Yi, Xiao P G, Yi Yu Cheng

机构信息

College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310028, People's Republic of China.

出版信息

Pak J Biol Sci. 2007 Oct 15;10(20):3487-96. doi: 10.3923/pjbs.2007.3487.3496.

Abstract

Since time immemorial, systematics has played significant role in every sphere of life. Biosystematics has evolved from folk taxonomy towards natural classification system and then culminated into homology based classification system. A good systematic approach is practical and predictive of phylogenetics of taxa incorporating different data. The morphological, chemical and molecular (genomics and proteomics) informations are used to explore the exact inter-relationship among the organisms. Proteomics is an essential and inevitable aspect in plant biology which can help in deciphering the functions of the genes that are or will be sequenced. Proteomics has proved to be a good tool in characterisation of individual lines and genetic distances among the genera, species, subspecies, verities and populations describing their phylogenetic interrelationships. Two-dimensional electrophoresis (2-DE) is the major technique being applied for polypeptide characterization of each taxon for exploring phylogenetic or physiological relationships among organs, tissues or organisms. Moreover, proteomics can lead to unraveling the natural phenomena of plants development and their response to changing environment. These proteomic derived informations and their application in phylogenetic studies can be useful in agro-biotechnology development for better yield and safe use of food and medicines.

摘要

自古以来,分类学在生活的各个领域都发挥着重要作用。生物分类学已从民间分类法发展到自然分类系统,进而发展为基于同源性的分类系统。一种良好的分类方法是实用的,并且能够结合不同数据对分类单元的系统发育进行预测。形态学、化学和分子(基因组学和蛋白质组学)信息被用于探究生物体之间的确切相互关系。蛋白质组学是植物生物学中一个必不可少且不可避免的方面,它有助于解读已测序或即将测序的基因的功能。蛋白质组学已被证明是表征各个品系以及描述属、种、亚种、变种和种群之间遗传距离的良好工具,这些遗传距离描述了它们的系统发育相互关系。二维电泳(2-DE)是用于表征每个分类单元的多肽以探究器官、组织或生物体之间系统发育或生理关系的主要技术。此外,蛋白质组学能够揭示植物发育的自然现象及其对不断变化的环境的反应。这些源自蛋白质组学的信息及其在系统发育研究中的应用,对于农业生物技术的发展可能有用,有助于提高产量以及安全使用食品和药品。

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