梯形物种
生物
生态学
微生物群
微生物生态学
微生物种群生物学
生物地球化学循环
分类单元
社区
基因组
全生物
航程(航空)
生态系统
环境变化
食物网
生态演替
生物地球化学
群落结构
互惠主义(生物学)
共生
全球变化
海洋生物学
海洋生态系统
动物
生物多样性
作者
Ewa Merz,Riley J. Hale,Erik Saberski,Kasia M. Kenitz,Melissa L Carter,Jeff S. Bowman,AD Barton
标识
DOI:10.1093/ismejo/wraf287
摘要
Marine microbes shape global biogeochemical cycles and marine food webs. Although biotic interactions underpin microbial community dynamics, most interactions between wild marine microbes are unknown. Here, we used empirical dynamic modeling to examine a six-year record of coastal microbial community composition to quantify microbial interactions and their changes through time. We found that, on average, marine microbes interact with 20% of other taxa in the community, most interactions are weak (80%), and that positive interactions are more common than negative interactions. Keystone taxa, defined as having disproportionally strong and frequent interactions, were not generally the most abundant taxa. The strength and sign of interactions, as well as the identity of the keystone taxa, varied through time and with changes in water temperature. An increase of 13°C, the dynamic range in water temperature at this location during the observational period, led to a 33% less interactive microbial community and an 11% shift towards more positive interactions. Only a few of the keystone taxa are the most interactive in the community at all times, and we found a temporal succession of keystone taxa. These results reveal that interactions in the marine microbiome are common, more facilitative than previously thought, and highly variable through time.
科研通智能强力驱动
Strongly Powered by AbleSci AI