Department of Biology and Centre for Environmental and Marine Studies (CESAM), University of Aveiro, Campus Universitário Santiago, 3810-193, Aveiro, Portugal.
Naturalis Biodiversity Center, Darwinweg 2, 2333 CR, Leiden, the Netherlands.
FEMS Microbiol Ecol. 2024 Feb 14;100(3). doi: 10.1093/femsec/fiae022.
Sponges are abundant components of coral reefs known for their filtration capabilities and intricate interactions with microbes. They play a crucial role in maintaining the ecological balance of coral reefs. Humic substances (HS) affect bacterial communities across terrestrial, freshwater, and marine ecosystems. However, the specific effects of HS on sponge-associated microbial symbionts have largely been neglected. Here, we used a randomized-controlled microcosm setup to investigate the independent and interactive effects of HS, elevated temperature, and UVB radiation on bacterial communities associated with the sponge Chondrilla sp. Our results indicated the presence of a core bacterial community consisting of relatively abundant members, apparently resilient to the tested environmental perturbations, alongside a variable bacterial community. Elevated temperature positively affected the relative abundances of ASVs related to Planctomycetales and members of the families Pseudohongiellaceae and Hyphomonadaceae. HS increased the relative abundances of several ASVs potentially involved in recalcitrant organic matter degradation (e.g., the BD2-11 terrestrial group, Saccharimonadales, and SAR202 clade). There was no significant independent effect of UVB and there were no significant interactive effects of HS, heat, and UVB on bacterial diversity and composition. The significant, independent impact of HS on the composition of sponge bacterial communities suggests that alterations to HS inputs may have cascading effects on adjacent marine ecosystems.
海绵是珊瑚礁中丰富的组成部分,以其过滤能力和与微生物的复杂相互作用而闻名。它们在维持珊瑚礁的生态平衡中起着至关重要的作用。腐殖质(HS)会影响陆地、淡水和海洋生态系统中的细菌群落。然而,HS 对海绵相关微生物共生体的具体影响在很大程度上被忽视了。在这里,我们使用随机对照微宇宙设置来研究 HS、高温和 UVB 辐射对与海绵 Chondrilla sp. 相关的细菌群落的独立和交互影响。我们的结果表明存在一个核心细菌群落,由相对丰富的成员组成,显然对测试的环境扰动具有弹性,同时还有一个可变的细菌群落。高温对与盘状菌目和假红藻科和噬氢菌科相关的 ASVs 的相对丰度有积极影响。HS 增加了几个 ASVs 的相对丰度,这些 ASVs 可能参与难降解有机物的降解(例如,BD2-11 陆地群、糖单胞菌目和 SAR202 进化枝)。UVB 没有显著的独立影响,HS、热和 UVB 对细菌多样性和组成也没有显著的交互作用。HS 对海绵细菌群落组成的显著独立影响表明,HS 输入的改变可能对相邻的海洋生态系统产生级联效应。