State Key Laboratory of Marine Environmental Science, Fujian Key Laboratory of Marine Carbon Sequestration, College of Ocean and Earth Sciences, Xiamen University, Fujian, China.
Sci Data. 2024 Sep 12;11(1):994. doi: 10.1038/s41597-024-03850-8.
The Changjiang Estuary and adjacent East China Sea are well-known hypoxic aquatic environments. Eutrophication-driven hypoxia frequently occurs in coastal areas, posing a major threat to the ecological environment, including altering community structure and metabolic processes of marine organisms, and enhancing diversion of energy shunt into microbial communities. However, the responses of microbial communities and their metabolic pathways to coastal hypoxia remain poorly understood. Here, we studied the microbial communities collected from spatiotemporal samplings using metagenomic sequencing in the Changjiang Estuary and adjacent East China Sea. This generated 1.31 Tbp of metagenomics data, distributed across 103 samples corresponding to 8 vertical profiles. We further reported 1,559 metagenome-assembled genomes (MAGs), of which 508 were high-quality MAGs (Completeness > 90% and Contamination < 10%). Phylogenomic analysis classified them into 181 archaeal and 1,378 bacterial MAGs. These results provided a valuable metagenomic dataset available for further investigation of the effects of hypoxia on marine microorganisms.
长江口及毗邻的东海是著名的低氧水域。富营养化驱动的缺氧现象经常发生在沿海地区,对生态环境构成重大威胁,包括改变海洋生物的群落结构和代谢过程,并增强能量分流到微生物群落。然而,微生物群落及其代谢途径对沿海缺氧的响应仍知之甚少。在这里,我们使用宏基因组测序技术对长江口及毗邻的东海进行了时空采样,研究了从中采集的微生物群落。这产生了 1.31 Tbp 的宏基因组数据,分布在 103 个样本中,对应 8 个垂直剖面。我们进一步报告了 1,559 个宏基因组组装基因组 (MAGs),其中 508 个是高质量的 MAGs (完整性>90%,污染<10%)。系统发育分析将它们分为 181 个古菌和 1,378 个细菌 MAGs。这些结果提供了一个有价值的宏基因组数据集,可用于进一步研究低氧对海洋微生物的影响。