He Hairong, Huang Jiarui, Zhao Zhenzhu, Xu Huifang, Zheng Xiaoke, Zhang Changpeng, Du Pengqiang
College of Pharmacy, Henan University of Chinese Medicine, Zhengzhou, China.
State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-Products, Institute of Agro-Products Safety and Nutrition, Zhejiang Academy of Agricultural Sciences, Hangzhou, China.
Front Microbiol. 2023 May 10;14:1128853. doi: 10.3389/fmicb.2023.1128853. eCollection 2023.
The composition and stability of soil fungal network are important for soil function, but the effect of trifluralin on network complexity and stability is not well understood.
In this study, two agricultural soils were used to test the impact of trifluralin on a fungal network. The two soils were treated with trifluralin (0, 0.84, 8.4, and 84 mg kg) and kept in artificial weather boxes.
Under the impact of trifluralin, the fungal network nodes, edges, and average degrees were increased by 6-45, 134-392, and 0.169-1.468 in the two soils, respectively; however, the average path length was decreased by 0.304-0.70 in both soils. The keystone nodes were also changed in trifluralin treatments in the two soils. In the two soils, trifluralin treatments shared 219-285 nodes and 16-27 links with control treatments, and the network dissimilarity was 0.98-0.99. These results indicated that fungal network composition was significantly influenced. After trifluralin treatment, fungal network stability was increased. Specifically, the network robustness was increased by trifluralin with 0.002-0.009, and vulnerability was decreased by trifluralin with 0.0001-0.00032 in the two soils. Fungal network community functions were also impacted by trifluralin in both soils. Trifluralin significantly impacts the fungal network.
土壤真菌网络的组成和稳定性对土壤功能很重要,但氟乐灵对网络复杂性和稳定性的影响尚不清楚。
在本研究中,使用两种农业土壤来测试氟乐灵对真菌网络的影响。将这两种土壤用氟乐灵(0、0.84、8.4和84毫克/千克)处理,并置于人工气候箱中。
在氟乐灵的影响下,两种土壤中的真菌网络节点、边和平均度分别增加了6 - 45、134 - 392和0.169 - 1.468;然而,两种土壤中的平均路径长度均减少了0.304 - 0.70。两种土壤中氟乐灵处理的关键节点也发生了变化。在这两种土壤中,氟乐灵处理与对照处理共享219 - 285个节点和16 - 27条链接,网络差异为0.98 - 0.99。这些结果表明真菌网络组成受到显著影响。氟乐灵处理后,真菌网络稳定性增加。具体而言;在两种土壤中,氟乐灵使网络鲁棒性增加了0.002 - 0.009,使脆弱性降低了0.0001 - 0.00032。两种土壤中真菌网络群落功能也受到氟乐灵的影响。氟乐灵对真菌网络有显著影响。