Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

SMDB

General information

URL: https://smdb.gxu.edu.cn/
Full name: SULFUR METABOLISM GENE INTEGRATIVE DATABASE
Description: Here, we introduce SMDB ( https://smdb.gxu.edu.cn/ )-a manually curated database of sulfur genes based on an in-depth review of the scientific literature and orthology database. The SMDB contained a total of 175 genes and covered 11 sulfur metabolism processes with 395,737 representative sequences affiliated with 110 phyla and 2340 genera of bacteria/archaea.
Year founded: 2023
Last update: 2023-05-19
Version: 1.0
Accessibility:
Unaccessible
Country/Region: China

Classification & Tag

Data type:
Data object:
Database category:
Major species:
NA
Keywords:

Contact information

University/Institution: Guangxi Academy of Sciences
Address: National Engineering Research Center for Non-Food Biorefinery, Guangxi Research Center for Biological Science and Technology, Guangxi Academy of Sciences, Nanning, 530007, China. jiangcj0520@vip.163.com.
City:
Province/State:
Country/Region: China
Contact name (PI/Team): Chengjian Jiang
Contact email (PI/Helpdesk): jiangcj0520@vip.163.com

Publications

37208450
Sulfur metabolism in subtropical marine mangrove sediments fundamentally differs from other habitats as revealed by SMDB. [PMID: 37208450]
Shuming Mo, Bing Yan, Tingwei Gao, Jinhui Li, Muhammad Kashif, Jingjing Song, Lirong Bai, Dahui Yu, Jianping Liao, Chengjian Jiang

Shotgun metagenome sequencing provides the opportunity to recover underexplored rare populations and identify difficult-to-elucidate biochemical pathways. However, information on sulfur genes, including their sequences, is scattered in public databases. Here, we introduce SMDB ( https://smdb.gxu.edu.cn/ )-a manually curated database of sulfur genes based on an in-depth review of the scientific literature and orthology database. The SMDB contained a total of 175 genes and covered 11 sulfur metabolism processes with 395,737 representative sequences affiliated with 110 phyla and 2340 genera of bacteria/archaea. The SMDB was applied to characterize the sulfur cycle from five habitats and compared the microbial diversity of mangrove sediments with that of other habitats. The structure and composition of microorganism communities and sulfur genes were significantly different among the five habitats. Our results show that microorganism alpha diversity in mangrove sediments was significantly higher than in other habitats. Genes involved in dissimilatory sulfate reduction were abundant in subtropical marine mangroves and deep-sea sediments. The neutral community model results showed that microbial dispersal was higher in the marine mangrove ecosystem than in others habitats. The Flavilitoribacter of sulfur-metabolizing microorganism becomes a reliable biomarker in the five habitats. SMDB will assist researchers to analyze genes of sulfur cycle from the metagenomic efficiently.

Sci Rep. 2023:13(1) | 2 Citations (from Europe PMC, 2025-12-13)

Ranking

All databases:
5266/6895 (23.64%)
Gene genome and annotation:
1588/2021 (21.475%)
Literature:
454/577 (21.49%)
5266
Total Rank
2
Citations
1
z-index

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Record metadata

Created on: 2023-08-23
Curated by:
Xinyu Zhou [2023-09-12]
Yue Qi [2023-09-06]
Yuxin Qin [2023-08-23]