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用于循环生物经济的真菌生物加工:探索木质纤维素废弃物的价值化利用

Fungal bioprocessing for circular bioeconomy: Exploring lignocellulosic waste valorization.

作者信息

Dhiman Sunny, Kaur Pardeep, Narang Jasjeet, Mukherjee Gunjan, Thakur Babita, Kaur Sukhminderjit, Tripathi Manikant

机构信息

University Institute of Biotechnology, Chandigarh University, Gharuan, Mohali, Punjab, India.

Biotechnology Program, Dr. Rammanohar Lohia Avadh University, Ayodhya, Uttar Pradesh, India.

出版信息

Mycology. 2024 Mar 18;15(4):538-563. doi: 10.1080/21501203.2024.2316824. eCollection 2024.

Abstract

The rising global demand for sustainable and eco-friendly practices has led to a burgeoning interest in circular bioeconomy, wherein waste materials are repurposed into valuable resources. Lignocellulosic waste, abundant in agricultural residues and forestry by-products, represents a significant untapped resource. This article explores the potential of fungal-mediated processes for the valorisation of lignocellulosic waste, highlighting their role in transforming these recalcitrant materials into bio-based products. The articles delve into the diverse enzymatic and metabolic capabilities of fungi, which enable them to efficiently degrade and metabolise lignocellulosic materials. The paper further highlights key fungal species and their mechanisms involved in the breakdown of complex biomass, emphasising the importance of understanding their intricate biochemical pathways for optimising waste conversion processes. The key insights of the article will significantly contribute to advancing the understanding of fungal biotechnology for circular bioeconomy applications, fostering a paradigm shift towards a more resource-efficient and environmentally friendly approach to waste management and bio-based product manufacturing.

摘要

全球对可持续和环保做法的需求不断上升,引发了人们对循环生物经济的浓厚兴趣,在循环生物经济中,废料被重新利用成为有价值的资源。木质纤维素废料在农业残余物和林业副产品中大量存在,是一种尚未充分开发的重要资源。本文探讨了真菌介导的过程在木质纤维素废料增值方面的潜力,强调了它们在将这些难处理的材料转化为生物基产品中所起的作用。文章深入研究了真菌多样的酶促和代谢能力,这些能力使它们能够有效地降解和代谢木质纤维素材料。本文还重点介绍了参与复杂生物质分解的关键真菌种类及其机制,强调了了解其复杂生化途径对优化废料转化过程的重要性。本文的关键见解将极大地有助于推动对用于循环生物经济应用的真菌生物技术的理解,促进向更具资源效率和环境友好型的废料管理及生物基产品制造方法的范式转变。

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