Zhou Yaqi, Wang Hongkai, Xu Sunde, Liu Kai, Qi Hao, Wang Mengcen, Chen Xiaoyulong, Berg Gabriele, Ma Zhonghua, Cernava Tomislav, Chen Yun
State Key Laboratory of Rice Biology, and Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, 866 Yuhangtang Road, Hangzhou, 310058, China.
Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Ministry of Agriculture, Institute of Pesticide and Environmental Toxicology, Zhejiang University, Hangzhou, China.
Stress Biol. 2022 Jun 1;2(1):22. doi: 10.1007/s44154-022-00046-1.
Bacteria and fungi are dominant members of environmental microbiomes. Various bacterial-fungal interactions (BFIs) and their mutual regulation are important factors for ecosystem functioning and health. Such interactions can be highly dynamic, and often require spatiotemporally resolved assessments to understand the interplay which ranges from antagonism to mutualism. Many of these interactions are still poorly understood, especially in terms of the underlying chemical and molecular interplay, which is crucial for inter-kingdom communication and interference. BFIs are highly relevant under agricultural settings; they can be determinative for crop health. Advancing our knowledge related to mechanisms underpinning the interactions between bacteria and fungi will provide an extended basis for biological control of pests and pathogens in agriculture. Moreover, it will facilitate a better understanding of complex microbial community networks that commonly occur in nature. This will allow us to determine factors that are crucial for community assembly under different environmental conditions and pave the way for constructing synthetic communities for various biotechnological applications. Here, we summarize the current advances in the field of BFIs with an emphasis on agriculture.
细菌和真菌是环境微生物群落的主要成员。各种细菌-真菌相互作用(BFIs)及其相互调节是生态系统功能和健康的重要因素。这种相互作用可能高度动态,通常需要进行时空分辨评估,以了解从拮抗到共生的相互作用。其中许多相互作用仍知之甚少,尤其是在潜在的化学和分子相互作用方面,而这对于跨界交流和干扰至关重要。BFIs在农业环境中高度相关;它们对作物健康起着决定性作用。增进我们对细菌和真菌之间相互作用机制的了解,将为农业害虫和病原体的生物防治提供更广泛的基础。此外,这将有助于更好地理解自然界中常见的复杂微生物群落网络。这将使我们能够确定在不同环境条件下对群落组装至关重要的因素,并为构建用于各种生物技术应用的合成群落铺平道路。在此,我们总结了BFIs领域的当前进展,重点是农业。