Ministry of Agriculture Key Lab of Molecular Biology of Crop Pathogens and Insect Pests, Institute of Insect Sciences, College of Agricultural and Biotechnology, Zhejiang University, Hangzhou, China.
Entomology Section, Central Cotton Research Institute, Sakrand, Shaheed Benazirabad, Sindh, Pakistan.
Insect Sci. 2021 Dec;28(6):1512-1529. doi: 10.1111/1744-7917.12890. Epub 2020 Dec 23.
Fungus-growing termites are among the most successful herbivorous animals and improve crop productivity and soil fertility. A range of symbiotic organisms can be found inside their nests. However, interactions of termites with these symbionts are poorly understood. This review provides detailed information on the role of multipartite symbioses (between termitophiles, termites, fungi, and bacteria) in fungus-growing termites for lignocellulose degradation. The specific functions of each component in the symbiotic system are also discussed. Based on previous studies, we argue that the enzymatic contribution from the host, fungus, and bacteria greatly facilitates the decomposition of complex polysaccharide plant materials. The host-termitophile interaction protects the termite nest from natural enemies and maintains the stability of the microenvironment inside the colony.
菌食性白蚁是最成功的草食性动物之一,它们可以提高作物生产力和土壤肥力。在它们的巢穴中可以发现一系列共生生物。然而,白蚁与这些共生体的相互作用还不太清楚。这篇综述提供了关于多组分共生关系(白蚁、真菌和细菌之间)在菌食性白蚁木质纤维素降解中的作用的详细信息。还讨论了共生系统中每个组成部分的特定功能。基于以前的研究,我们认为宿主、真菌和细菌的酶促贡献极大地促进了复杂多糖植物材料的分解。宿主-白蚁共生体的相互作用保护了白蚁巢免受天敌的侵害,并维持了蚁群内部微环境的稳定性。