Chen Yunru, Cao Tingting, Lv Meiqi, Fang You, Liu Run, Luo Yunchao, Xu Chi, Tian Xingjun
State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing 210023, China.
Beijing Municipal Ecological and Environmental Monitoring Center, Beijing 100048, China.
J Fungi (Basel). 2022 Mar 28;8(4):348. doi: 10.3390/jof8040348.
Soil invertebrates and microorganisms are two major drivers of litter decomposition. Even though the importance of invertebrates and microorganisms in biogeochemical soil cycles and soil food webs has been studied, the effects of invertebrates on fungi are not well understood compared to other organisms. In this work, we investigated the effects of soil invertebrates on fungi as a factor that cannot be ignored in the study of nutrient cycling. The result showed the grazing of isopods on white-rot fungi was transitive and persistent. The grazed fungi appeared "compensatory" growing. The biomass of fungi increased after grazing. The activities of enzymes associated with nutrient cycling were increased under grazing. The zymography images showed the enzyme hotspots and activities also increased significantly in the grazing area. The results suggest that invertebrate grazing can significantly increase the fungal biomass and enzyme activity, accelerating litter decomposition in the unreached grazer area. The grazing effects of invertebrate plays an important role in promoting the nutrient cycling of the forest ecosystem. We believe that this study will be a good reference related to showing the relationship between soil invertebrates, fungi and soil biogeochemical cycles.
土壤无脊椎动物和微生物是凋落物分解的两个主要驱动因素。尽管无脊椎动物和微生物在土壤生物地球化学循环和土壤食物网中的重要性已得到研究,但与其他生物相比,无脊椎动物对真菌的影响尚未得到充分了解。在这项工作中,我们研究了土壤无脊椎动物对真菌的影响,这是养分循环研究中一个不可忽视的因素。结果表明,等足类动物对白腐真菌的啃食具有传递性和持续性。被啃食的真菌呈现出“补偿性”生长。啃食后真菌的生物量增加。在啃食情况下,与养分循环相关的酶活性增加。酶谱图像显示,啃食区域的酶热点和活性也显著增加。结果表明,无脊椎动物的啃食可显著增加真菌生物量和酶活性,加速未到达啃食者区域的凋落物分解。无脊椎动物的啃食效应在促进森林生态系统的养分循环中起着重要作用。我们相信,这项研究将为展示土壤无脊椎动物、真菌与土壤生物地球化学循环之间的关系提供很好的参考。