College of Marine Life Sciences, Ocean University of China, Qingdao, Shandong, China.
Marine Science Research Institute of Shandong Province, National Oceanographic Center, Qingdao, Shandong, China.
BMC Microbiol. 2024 Oct 11;24(1):405. doi: 10.1186/s12866-024-03558-0.
Microorganisms play pivotal roles in seagrass ecosystems by facilitating material and elemental cycling as well as energy flux. However, our understanding of how seasonal factors and seagrass presence influence the assembly of bacterial communities in seagrass bed sediments is limited. Employing high-throughput sequencing techniques, this study investigates and characterizes bacterial communities in the rhizosphere of eelgrass (Zostera marina) and the bulk sediments across different seasons. The research elucidates information on the significance of seasonal variations and seagrass presence in impacting the microbial communities associated with Zostera marina.
The results indicate that seasonal variations have a more significant impact on the bacterial community in seagrass bed sediments than the presence of seagrass. We observed that the assembly of bacterial communities in bulk sediments primarily occurs through stochastic processes. However, the presence of seagrass leading to a transition from stochastic to deterministic processes in bacterial community assembly. This shift further impacts the complexity and stability of the bacterial co-occurrence network. Through LEfSe analysis, different candidate biomarkers were identified in the bacterial communities of rhizosphere sediments in different seasons, indicating that seagrass may possess adaptive capabilities to the environment during different stages of growth and development.
Seasonal variations play a significant role in shaping these communities, while seagrass presence influences the assembly processes and stability of the bacterial community. These insights will provide valuable information for the ecological conservation of seagrass beds.
微生物在海草生态系统中发挥着关键作用,促进物质和元素循环以及能量流动。然而,我们对季节性因素和海草存在如何影响海草床沉积物中细菌群落的组装的理解有限。本研究采用高通量测序技术,调查和描述了鳗草(Zostera marina)根际和不同季节的海草床沉积物中的细菌群落。该研究阐明了季节性变化和海草存在对与鳗草相关的微生物群落的影响的重要信息。
结果表明,季节性变化对海草床沉积物中细菌群落的影响大于海草的存在。我们观察到,在大量沉积物中,细菌群落的组装主要通过随机过程发生。然而,海草的存在导致细菌群落组装从随机到确定性过程的转变。这种转变进一步影响了细菌共生网络的复杂性和稳定性。通过 LEfSe 分析,在不同季节的根际沉积物细菌群落中鉴定出了不同的候选生物标志物,表明海草在不同的生长和发育阶段可能具有适应环境的能力。
季节性变化在塑造这些群落方面起着重要作用,而海草的存在影响细菌群落的组装过程和稳定性。这些见解将为海草床的生态保护提供有价值的信息。