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Bioinformatics Resources for Plant Abiotic Stress Responses: State of the Art and Opportunities in the Fast Evolving -Omics Era

机译:植物非生物胁迫响应的生物信息学资源:快速发展的-Omics时代的最新发展和机遇

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摘要

Abiotic stresses are among the principal limiting factors for productivity in agriculture. In the current era of continuous climate changes, the understanding of the molecular aspects involved in abiotic stress response in plants is a priority. The rise of -omics approaches provides key strategies to promote effective research in the field, facilitating the investigations from reference models to an increasing number of species, tolerant and sensitive genotypes. Integrated multilevel approaches, based on molecular investigations at genomics, transcriptomics, proteomics and metabolomics levels, are now feasible, expanding the opportunities to clarify key molecular aspects involved in responses to abiotic stresses. To this aim, bioinformatics has become fundamental for data production, mining and integration, and necessary for extracting valuable information and for comparative efforts, paving the way to the modeling of the involved processes. We provide here an overview of bioinformatics resources for research on plant abiotic stresses, describing collections from -omics efforts in the field, ranging from raw data to complete databases or platforms, highlighting opportunities and still open challenges in abiotic stress research based on -omics technologies.
机译:非生物胁迫是农业生产力的主要限制因素之一。在当前持续不断的气候变化时代,了解植物中非生物胁迫响应所涉及的分子方面是当务之急。组学方法的兴起为促进该领域的有效研究提供了关键策略,从而促进了从参考模型到越来越多的物种,耐受性和敏感基因型的研究。现在,基于基因组学,转录组学,蛋白质组学和代谢组学水平的分子研究的集成多级方法是可行的,从而扩大了阐明非生物胁迫响应中涉及的关键分子方面的机会。为此,生物信息学已成为数据生产,挖掘和集成的基础,对于提取有价值的信息和进行比较工作是必不可少的,从而为相关过程的建模铺平了道路。我们在这里提供了用于植物非生物胁迫研究的生物信息学资源概述,描述了从-omics领域进行的收集工作,从原始数据到完整的数据库或平台,重点介绍了基于-omics技术的非生物胁迫研究中的机遇和仍然面临的挑战。

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