扩增子多营养级基于高通量测序技术,突破传统单一微生物研究局限,实现对环境样本中细菌、真菌、古菌、真核生物等多营养级生物群落的全面解析。通过靶向扩增特定功能基因或标记基因,精准捕捉不同营养级生物的组成与丰度信息,为生态系统结构与功能研究、环境微生物群落动态监测、农业土壤健康评估等多领域提供关键数据支撑,深度挖掘样本中生物间复杂的互作关系与生态规律。

全面覆盖:同时检测多个营养级生物、一次实验即可获得环境样本中细菌、真菌、原生生物、藻类等多种生物类群的遗传信息,打破传统单一扩增子检测的局限性。
高灵敏度与准确性:采用高保真聚合酶与优化的扩增体系,结合先进的高通量测序平台,能够精准检测到低丰度物种,确保数据真实可靠,有效降低假阳性与假阴性结果。
特异性引物:针对不同营养级生物的特异性基因位点,设计多种高特异性引物,通过多轮验证确保引物扩增效率与特异性,可精准区分近缘物种,避免交叉扩增干扰。
数据分析:自主研发的生物信息学分析软件,整合多组学分析方法,从物种注释、群落结构组成、物种间互作关系、功能预测等多个维度进行深度挖掘,提供直观可视化的分析结果。
环境样本(使用干冰或冰袋运输) | 土壤≥5g 粪便≥2g |
DNA样品(使用干冰或冰袋运输) | DNA总量≥500ng; 浓度≥5ng/ul; 样本数目≥30 |

发表时间 | 文章标题 | 杂志名 | 影响因子 | 合作单位 |
2024 | Hysteretic and asynchronous regime shifts of bacterial and micro-eukaryotic communities driven by nutrient loading | Water Research | 11.4 | 河海大学环境学院 |
2024 | Multitrophic interactions support belowground carbon sequestration through microbial necromass accumulation in dryland biocrusts | Soil Biology&Biochemistry | 9.8 | 中国农业大学 |
2024 | Deforestation impacts soil biodiversity and ecosystem services worldwide | PANS | 9.4 | 南京农业大学 |
2024 | Environmental heterogeneity caused by large-scale cultivation of Pyropia haitanensis shapes multi-group biodiversity distribution in coastal areas | Science of The Total Environment | 8.2 | 集美大学水产学院 |
2024 | Ecological restoration enhanced the stability of epiphytic microbial food webs of submerged macrophytes: Insights from predation characteristics of epiphytic predators | Science of the Total Environment | 8.2 | 河海大学 |
2025 | Stability characteristics of bacterial and protistan communities along an estuarine continuum: Diversity, composition and co-occurrence networks | Environmental Research | 7.7 | 河海大学环境学院 |
2024 | Body size of soil organisms is more sensitive to fertilization than their community structure: Evidence from a rice field trial | Ecological Indicators | 7 | 浙江省农业科学院环境资源与土壤肥料研究所 |
2024 | Inoculation of the Morchella importuna mycosphere with Pseudomonas chlororaphis alleviated a soil-borne disease caused by Paecilomyces penicillatus | Biology and Fertility of Soils | 5.1 | 四川省农业科学院 |
2024 | Differentiation strategies for microbial community assembly and their associations with soil functions in lemon farmland | Applied Soil Ecology | 4.8 | 中国农业科学院中国柑橘国家工程研究中心 |
2024 | Chlorine disinfectant significantly changed microfauna habitat, community structure, and colonization mode in wastewater treatment plants | Environmental Microbiology | 4.3 | 华中科技大学环境科学与工程学院 |
2024 | Mechanisms of bacterial and fungal community assembly in leaf miners during transition from natural to laboratory environments | Frontiers in Microbiology | 4 | 扬州大学植物保护学院昆虫学系 |