林业科学研究2026,Vol.39Issue(3):173-182,10.DOI:10.12403/j.1001-1498.20250230
套种黄精对山核桃林土壤细菌群落的影响
Influences of Interplanting Polygonatum cyrtonema Hua on Soil Bacterial Community in Carya cathayensis Sarg.Forest Ecosystems
摘要
Abstract
[Objective]This study aimed to investigate the effects of intercropping Carya cathayensis Sarg.with Polygonatum cyrtonema Hua on composition,structure,and potential functions of soil bacterial com-munity in C.cathayensis Sarg plantations,thereby providing a microbiological basis for their sustainable management.[Methods]Soil samples from both rhizosphere and bulk were collected from two cultivation systems:C.cathayensis Sarg monoculture(C)and C.cathayensis Sarg-P.cyrtonema Hua intercropping(CP).Bacterial community composition and structure were analyzed using high-throughput sequencing,and functional profiles were inferred through predictive methods.The relationships between bacterial com-munities and soil chemical properties were further explored using redundancy analysis.[Results]Inter-cropping significantly altered the structure and potential functions of soil bacterial communities.Specific-ally,the relative abundance of Acidobacteriota increased by 61.95%in rhizosphere soil and 18.34%in bulk soil,whereas Actinobacteriota decreased by 35.86%and 27.08%,respectively.At the genus level,Bradyrhizobium increased significantly by 26.88%in intercropped rhizosphere soil.Biomarker analysis re-vealed that Flavobacterium was enriched in intercropped soils,while Formylgalactosideaceae was more abundant under monoculture.Non-metric multidimensional scaling(NMDS)demonstrated significant sep-aration of bacterial community structures between the two treatments(p<0.05).Co-occurrence network analysis indicated that intercropping reduced bacterial network complexity.However,functional predic-tions indicated increased abundances of microbial groups associated with nitrogen fixation,anaerobic het-erotrophy,organic matter degradation,and urea decomposition.Furthermore,Methylomirabilota and Ver-rucomicrobiota were significantly correlated with soil alkali-hydrolyzable nitrogen and organic matter,re-spectively.Available phosphorus,available potassium,and organic matter were identified as key drivers of bacterial community variation.[Conclusion]Intercropping with P.cyrtonema modified the soil microenvir-onment in C.cathayensis Sarg plantations,reshaping bacterial community structure,and enhancing micro-bial functions related to nutrient cycling and organic matter decomposition.However,the reduced bacterial network complexity during the early stage of intercropping suggests potential short-term shifts in microbial interactions.Long-term studies are required to elucidate microbial succession dynamics and to optimize understory management strategies for sustainable agroforestry systems.关键词
山核桃/套种/土壤细菌群落/细菌群落组成/细菌群落功能Key words
Carya cathayensis Sarg./intercropping/soil bacterial community/bacterial community composition/bacterial community function分类
农业科技引用本文复制引用
杨士杰,金文豪,黄坚钦,彭丽媛,秦华..套种黄精对山核桃林土壤细菌群落的影响[J].林业科学研究,2026,39(3):173-182,10.基金项目
浙江省重点研发计划(尖兵计划项目)(2022C02009) (尖兵计划项目)
浙江省自然科学基金青年基金(LQ23C160004) (LQ23C160004)
国家自然科学基金青年基金(32301562) (32301562)