Fungal Saprotrophic Promotion and Plant Pathogenic Suppression under Ditch-Buried Straw Return with Appropriate Burial Amount and Depth

Author:

Zhou Jie1,Li Yanling1,Lou Jiawen1,Wang Yuekai12,Kan Zhengrong1,Neugschwandtner Reinhard W.3ORCID,Li Fengmin1,Liu Jian4,Dong Ke5ORCID,Xue Yaguang4,Yang Haishui167,Shi Lingling8

Affiliation:

1. College of Agriculture, Nanjing Agricultural University, Nanjing 210095, China

2. Longkang Farm, Anhui Agricultural Reclamation Group Co., Ltd., Huaiyuan 233426, China

3. Institute of Agronomy, University of Natural Resources and Life Sciences Vienna (BOKU), 3430 Tulln, Austria

4. Institute of Agricultural Sciences of Yanjiang District of Jiangsu Province, Rugao 226541, China

5. Life Science Major, Kyonggi University, Suwon 16227, Republic of Korea

6. Jiangsu Key Laboratory for Information Agriculture, Nanjing Agricultural University, Nanjing 210095, China

7. Jiangsu Collaborative Innovation Center for Modern Crop Production, Nanjing Agricultural University, Nanjing 210095, China

8. Geo-Biosphere Interactions, Department of Geosciences, Faculty of Sciences, University of Tuebingen, 72074 Tuebingen, Germany

Abstract

Fungi as heterotrophs are key participants in the decomposition of organic materials and the transformation of nutrients in agroecosystems. Ditch-buried straw return as a novel conservation management strategy can improve soil fertility and alter hydrothermal processes. However, how ditch-buried straw return strategies affect the soil fungal community is still unclear. Herein, a 7-year field trial was conducted to test the influences of burial depth (0, 10, 20, 30, and 40 cm) and the amount of ditch-buried straw (half, full, double) on the diversity, composition, and predicted functions of a soil fungal community, as well as the activities of carbon-degraded enzymes. Under the full amount of straw burial, the abundance of phylum Ascomycota was 7.5% higher as compared to other burial amount treatments. This further increased the activity of cellobiohydrolase by 32%, as revealed by the positive correlation between Ascomycota and cellobiohydrolase. With deeper straw burial, however, the abundance of Ascomycota and β-D-glucopyranoside activity decreased. Moreover, genus Alternaria and Fusarium increased while Mortierella decreased with straw burial amount and depth. FUNgild prediction showed that plant fungal pathogens were 1- to 2-fold higher, whilst arbuscular mycorrhizal fungi were 64% lower under straw buried with double the amount and at a depth of 40 cm. Collectively, these findings suggest that ditch-buried straw return with a full amount and buried at a depth less than 30 cm could improve soil nutrient cycles and health and may be beneficial to subsequent crop production.

Funder

Natural Science Foundation of China

Publisher

MDPI AG

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