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嗜极真菌在气候变化缓解策略中的潜在作用

Prospective Roles of Extremophilic Fungi in Climate Change Mitigation Strategies.

作者信息

Ali Imran, Qaiser Hina, Abdullah Roheena, Kaleem Afshan, Iqtedar Mehwish, Iqbal Irfana, Chen Xiaoming

机构信息

School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China.

Institute of Molecular Biology and Biotechnology, University of Lahore, Lahore 54000, Pakistan.

出版信息

J Fungi (Basel). 2024 May 27;10(6):385. doi: 10.3390/jof10060385.

Abstract

Climate change and the resultant environmental deterioration signify one of the most challenging problems facing humankind in the 21st century. The origins of climate change are multifaceted and rooted in anthropogenic activities, resulting in increasing greenhouse gases in the environment and leading to global warming and weather drifts. Extremophilic fungi, characterized by their exceptional properties to survive extreme habitats, harbor great potential in mitigating climate change effects. This review provides insight into the potential applications of extremophilic fungi in climate change mitigation strategies. They are able to metabolize organic biomass and degrade carbon compounds, thereby safely sequestering carbon and extenuating its release into the environment as noxious greenhouse gases. Furthermore, they possess extremozymes, which break down recalcitrant organic species, including lignocellulosic biomass and hydrocarbons. Enzymatic machinery equips these extremophilic fungi to perform the bioremediation of polluted environments. Extremophilic fungi can also be exploited for various biological interventions, such as biofuels, bioplastics, and other bioprocessing applications. However, these fungi characterize a valued but underexplored resource in the arsenal of climate change mitigation strategies.

摘要

气候变化以及由此导致的环境恶化是21世纪人类面临的最具挑战性的问题之一。气候变化的成因是多方面的,且根源在于人类活动,这导致环境中的温室气体不断增加,进而引发全球变暖和天气变化。极端嗜热真菌具有在极端栖息地生存的特殊能力,在缓解气候变化影响方面具有巨大潜力。本综述深入探讨了极端嗜热真菌在缓解气候变化策略中的潜在应用。它们能够代谢有机生物质并降解碳化合物,从而安全地封存碳并减少其作为有害温室气体释放到环境中。此外,它们拥有极端酶,能够分解包括木质纤维素生物质和碳氢化合物在内的难降解有机物质。酶促机制使这些极端嗜热真菌能够对污染环境进行生物修复。极端嗜热真菌还可用于各种生物干预,如生物燃料、生物塑料和其他生物加工应用。然而,在缓解气候变化策略的宝库中,这些真菌是一种有价值但尚未得到充分探索的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f214/11204837/d7ec55a5e4c1/jof-10-00385-g001.jpg

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