School of Environmental Sciences, Jawaharlal Nehru University, New Delhi, India.
Department of Environmental Science, University of Jammu, Jammu (J&K), India.
Bioresour Technol. 2019 Nov;291:121890. doi: 10.1016/j.biortech.2019.121890. Epub 2019 Jul 25.
In recent impetus of phycological research, microalgae have emerged as a potential candidate for various arena of application-driven research. Omics-based tactics are used for disentangling the regulation and network integration for biosynthesis/degradation of metabolic precursors, intermediates, end products, and identifying the networks that regulate the metabolic flux. Multi-omics coupled with data analytics have facilitated understanding of biological processes and allow ample access to diverse metabolic pathways utilized for genetic manipulations making microalgal factories more efficient. The present review discusses state-of-art "Algomics" and the prospect of microalgae and their role in symbiotic association by using omics approaches including genomics, transcriptomics, proteomics and metabolomics. Microalgal based uni- and multi-omics approaches are critically analyzed in wastewater treatment, metal toxicity and remediation, biofuel production, and therapeutics to provide an imminent outlook for an array of environmentally sustainable and economically viable microalgal applications.
在最近的藻类学研究推动下,微藻作为各种应用驱动研究领域的潜在候选者出现了。基于组学的策略被用于解开代谢前体、中间产物、终产物的生物合成/降解的调控和网络整合,并确定调控代谢通量的网络。多组学与数据分析相结合,有助于理解生物过程,并为遗传操作中使用的各种代谢途径提供了充分的机会,从而使微藻工厂更高效。本综述讨论了最新的“藻类组学”及其在共生关系中的作用,以及利用组学方法(包括基因组学、转录组学、蛋白质组学和代谢组学)的微藻的前景。微藻的基于单一和多组学的方法在废水处理、金属毒性和修复、生物燃料生产和治疗方面进行了批判性分析,为一系列环境可持续和经济可行的微藻应用提供了迫在眉睫的前景。