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蓝藻中蛋白质组的失调对非生物胁迫的响应

Proteomic De-Regulation in Cyanobacteria in Response to Abiotic Stresses.

作者信息

Babele Piyoosh Kumar, Kumar Jay, Chaturvedi Venkatesh

机构信息

Department of Biological Sciences, Indian Institute of Science Education and Research Bhopal, Bhopal, India.

School of Biotechnology, Institute of Science, Banaras Hindu University, Varanasi, India.

出版信息

Front Microbiol. 2019 Jun 12;10:1315. doi: 10.3389/fmicb.2019.01315. eCollection 2019.

Abstract

Cyanobacteria are oxygenic photoautotrophs, exhibiting a cosmopolitan distribution in almost all possible environments and are significantly responsible for half of the global net primary productivity. They are well adapted to the diverse environments including harsh conditions by evolving a range of fascinating repertoires of unique biomolecules and secondary metabolites to support their growth and survival. These phototrophs are proved as excellent models for unraveling the mysteries of basic biochemical and physiological processes taking place in higher plants. Several known species of cyanobacteria have tremendous biotechnological applications in diverse fields such as biofuels, biopolymers, secondary metabolites and much more. Due to their potential biotechnological and commercial applications in various fields, there is an imperative need to engineer robust cyanobacteria in such a way that they can tolerate and acclimatize to ever-changing environmental conditions. Adaptations to stress are mainly governed by a precise gene regulation pathways resulting in the expression of novel protein/enzymes and metabolites. Despite the demand, till date few proteins/enzymes have been identified which play a potential role in improving tolerance against abiotic stresses. Therefore, it is utmost important to study environmental stress responses related to post-genomic investigations, including proteomic changes employing advanced proteomics, synthetic and structural biology workflows. In this respect, the study of stress proteomics offers exclusive advantages to scientists working on these aspects. Advancements on these fields could be helpful in dissecting, characterization and manipulation of physiological and metabolic systems of cyanobacteria to understand the stress induced proteomic responses. Till date, it remains ambiguous how cyanobacteria perceive changes in the ambient environment that lead to the stress-induced proteins thus metabolic deregulation. This review briefly describes the current major findings in the fields of proteome research on the cyanobacteria under various abiotic stresses. These findings may improve and advance the information on the role of different class of proteins associated with the mechanism(s) of stress mitigation in cyanobacteria under harsh environmental conditions.

摘要

蓝藻是产氧光合自养生物,在几乎所有可能的环境中都有广泛分布,对全球净初级生产力的一半负有重大责任。它们通过进化出一系列独特的生物分子和次生代谢产物来适应包括恶劣条件在内的各种环境,以支持其生长和生存。这些光合生物被证明是解开高等植物中基本生化和生理过程奥秘的优秀模型。几种已知的蓝藻物种在生物燃料、生物聚合物、次生代谢产物等不同领域有巨大的生物技术应用。由于它们在各个领域的潜在生物技术和商业应用,迫切需要对蓝藻进行工程改造,使其能够耐受并适应不断变化的环境条件。对压力的适应主要由精确的基因调控途径控制,导致新的蛋白质/酶和代谢产物的表达。尽管有需求,但迄今为止,很少有蛋白质/酶被鉴定出在提高对非生物胁迫的耐受性方面发挥潜在作用。因此,研究与基因组后调查相关的环境应激反应至关重要,包括采用先进的蛋白质组学、合成生物学和结构生物学工作流程的蛋白质组变化。在这方面,应激蛋白质组学的研究为从事这些方面工作的科学家提供了独特的优势。这些领域的进展有助于剖析、表征和操纵蓝藻的生理和代谢系统,以了解应激诱导的蛋白质组反应。迄今为止,蓝藻如何感知周围环境的变化从而导致应激诱导蛋白进而代谢失调仍不明确。这篇综述简要描述了在各种非生物胁迫下蓝藻蛋白质组研究领域的当前主要发现。这些发现可能会改进和推进关于在恶劣环境条件下不同类蛋白质与蓝藻应激缓解机制相关作用的信息。

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