欢迎访问《生态学杂志》官方网站,今天是

生态学杂志 ›› 2026, Vol. 45 ›› Issue (9): 2983-2993.doi: 10.13292/j.1000-4890.202609.016

• 研究报告 • 上一篇    下一篇

抗生素处理对沃柑微生物群落结构的影响

廖满余1,6,陈香玲1,陈廷速3,何悦4,康贻豪3,王成秋4,陆珍1,岑明澧5,赵洪涛1*,李果果1,2*   

  1. 1广西农业科学院园艺研究所, 南宁 530007; 2华中农业大学园艺林学学院, 武汉 430070; 3广西农业科学院微生物研究所, 南宁 530007; 4西南大学柑桔研究所, 重庆 400799; 5广西农业职业技术大学, 南宁 530007; 6广西八桂种苗高科技集团股份有限公司, 南宁 530007)
  • 出版日期:2026-09-10 发布日期:2026-09-08

Effects of antibiotic treatment on the microbial community of Orah citrus.

LIAO Manyu1,6, CHEN Xiangling1, CHEN Tingsu3, HE Yue4, KANG Yihao3, WANG Chengqiu4, LU Zhen1, CEN Mingli5, ZHAO Hongtao1*, LI Guoguo1,2*   

  1. (1Horticulture Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007, China; 2 College of Horticulture & Forestry Sciences, Huazhong Agricultural University, Wuhan 430070, China; 3Microbiology Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007, China; 4Citrus Research Institute of Southwest University, Chongqing 400799, China; 5Guangxi Agricultural Vocational and Technical University, Nanning 530007, China; 6Guangxi Bagui Seedling High-tech Group Co., Ltd., Nanning 530007, China).

  • Online:2026-09-10 Published:2026-09-08

摘要: 柑橘微生物群落结构是维持植株健康与抗逆性的关键生态基础,而柑橘黄龙病侵染及农业管理措施不当会改变其群落组成。本研究以广西沃柑为对象,设置健康树体(CK)、感染黄龙病树体(HLB)和感染黄龙病并施用抗生素氨苄西林钠(ASS)3组处理,通过高通量测序技术结合理化性质分析,探究施用抗生素对沃柑叶片、根系和根际土壤微生物群落的调控效应。结果表明,感染黄龙病和感染黄龙病并施用抗生素处理的树体的叶片、根系和根际土壤微生物多样性低于健康树体。叶片中的OTU数量从CK组的827个,降至HLB组的639个、ASS组的745个。根系OTU从CK组的574个,降至HLB组的432个、ASS组的369个。而土壤OTU数量方面,ASS组(861个)与HLB组(869个)间无显著差异,但显著低于CK组的1206个。门水平上分析显示,假单胞菌门、芽孢杆菌门和放线菌门为3类样本的共同优势菌门,其中叶片假单胞菌门占比达91.48%,显著高于根系(41.08%)和土壤(16.32%)。在属水平上,ASS组叶片中醋酸菌属、贝尔纳普氏菌属显著富集,且鞘氨醇单胞菌属等与多酚氧化酶(PPO)、过氧化物酶(POD)等氧化应激相关酶活性关联密切。ASS组根系放线菌门丰度较HLB组提升8.47%。土壤中1921-2菌属、新草螺菌属与PPO活性呈显著正相关(P<0.05),部分菌属与脲酶(URE)活性及氮磷钾有效性相关。LEfSe分析进一步证实,抗生素处理可促进迪耶拉菌属等健康相关菌群富集,并抑制黄龙病病原菌(Candidatus Liberibacter asiaticus,CLas)的定殖生态位。研究表明,施用抗生素氨苄西林钠通过重塑微生物群落结构,增强放线菌门等抗病菌群的生态位优势,同时通过调节土壤PPO和URE等酶活性改善根际免疫环境,为基于微生物组的黄龙病综合防控提供了新的理论依据。


关键词: 沃柑, 黄龙病, 氨苄西林钠, 微生物

Abstract: The citrus-associated microbial community plays a key ecological role for maintaining plant health and stress resistance. However, infection by Huanglongbing (HLB) and inappropriate agricultural management practices can substantially alter microbial community composition. We conducted experiment with Orah citrus in Guangxi, China. Three treatments were set: healthy trees (CK), HLB-infected trees (HLB), and HLB-infected trees treated with the antibiotic ampicillin sodium salt (ASS). High-throughput sequencing combined with physicochemical analyses was employed to investigate the effects of antibiotic application on microbial communities in leaves, roots, and rhizosphere soil of Orah citrus. The results showed that microbial diversity in leaves, roots, and rhizosphere soil infected with HLB and those treated with antibiotics was lower than that of healthy trees. The number of operational taxonomic units (OTUs) in leaves decreased from 827 in CK to 639 in HLB and 745 in ASS. The number of OTUs in roots decreased from 574 in CK to 432 in HLB and 369 in ASS. For the number of soil OTUs, there was no significant difference between the ASS group (861) and the HLB group (869), but both were significantly lower than that of the CK (1206). At the phylum level, Proteobacteria, Firmicutes, and Actinobacteria were dominant. Proteobacteria accounted for 91.48% of leaf microbial community, significantly higher than that in roots (41.08%) and soil (16.32%). At the genus level, Acetobacter and Belnapia were significantly enriched in the leaves of the ASS group. The genera, such as Sphingomonas, were closely associated with the activities of oxidative stress-related enzymes, including polyphenol oxidase (PPO) and peroxidase (POD). In roots, the relative abundance of Actinobacteria increased by 8.47% in the ASS group compared with the HLB group. In soil, genera such as 1921-2 and Nocardioides showed significant positive correlations with PPO activity (P<0.05), and some genera were correlated with the urease activity and the availability of nitrogen, phosphorus, and potassium. LEfSe analysis further confirmed that antibiotic treatment promoted the enrichment of health-associated taxa such as Dyella but suppressed the ecological niche of the HLB pathogen (Candidatus Liberibacter asiaticus, CLas). Overall, the application of ampicillin sodium salt reshaped microbial community structure, enhanced the ecological competitiveness of the disease-resistant taxa, and improved the rhizosphere immune environment by regulating soil enzyme activities. These findings provide a new reference for microbiome-based integrated management strategies for citrus Huanglongbing.


Key words: Orah citrus, Huanglongbing, ampicillin sodium salt, microbiome