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华山姜施用复合菌剂后土壤化学性质及细菌群落结构变化特征
The changes in soil chemical properties and bacterial community structure after applying the compound microbial agent to Alpinia oblongifolia
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摘要: 为探究复合菌剂对华山姜土壤细菌群落结构和养分含量的潜在影响,在华山姜根部以灌根的方式施用复合菌剂,采集复合菌剂施用前后3个月的华山姜根际、非根际土壤,测定土壤化学性质和细菌物种丰度。结果表明:复合菌剂施用后根际土壤和非根际土壤的有机质含量和全氮含量均显著增加,有机质含量分别增加了32.32%和24.55%,全氮含量分别增加了146.34%和30.00%;华山姜土壤细菌在门分类水平上,酸杆菌门、变形菌门、绿弯菌门、放线菌门、疣微菌门为优势菌门。在属水平,除未确定菌属外,优势细菌菌属有酸栖热菌属、慢生根瘤菌属、嗜酸杆菌属;对土壤细菌群落相关性网络分析表明,施加菌剂前的土壤细菌群落中核心菌属的相关性网络结构较为松散,施用菌剂后的3个月,核心菌属数目未发生改变,但核心菌属间的链接更紧密,形成以酸栖热菌属、慢生根瘤菌属、嗜酸杆菌属作为核心菌属的关系网。复合菌剂的施用能有效改良土壤,影响华山姜土壤细菌群落的组成,增强土壤功能细菌间的互作,提高华山姜土壤养分含量,进而对华山姜幼苗生长可能产生促进作用。Abstract: To investigate the potential effects of a compound microbial agent on the soil bacterial community structure and nutrient content of Alpinia oblongifolia, the agent was applied to the rhizosphere via root irrigation. Rhizosphere and non-rhizosphere soil samples were collected before and three months after application to determine soil chemical properties and soil bacterial species abundance Results showed that the application of the compound microbial agent significantly increased both organic matter and total nitrogen content in both rhizosphere and non-rhizosphere soils (P < 0.05). Organic matter increased by 32.32% and 24.55%, respectively, while total nitrogen increased by 146.34% and 30.00%, respectively. At the phylum level, the dominant bacterial phyla in Alpinia oblongifolia soil were Acidobacteriota, Proteobacteria, Chloroflexi, Actinobacteriota, and Verrucomicrobiota. At the genus level, excluding unidentified genera, the dominant bacterial genera were Acidothermus, Bradyrhizobium, and Acidibacter. Correlation network analysis of the soil bacterial community showed that the correlation network structure of core genera in the soil bacterial community was relatively loose before the application of the inoculant. Three months after application, the number of core genera did not change, but the links between core genera became tighter, forming a network with Acidothermus, Bradyrhizobium, and Acidibacter as core genera. The application of the compound inoculant can effectively improve the soil, influence the composition of the Alpinia oblongifolia soil bacterial community, enhance the interaction among soil functional bacteria, and increase the nutrient content of Alpinia oblongifolia soil, thus potentially promoting the growth of Alpinia oblongifolia seedlings.
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