She Chen-Xing, Lin Hong, Su Yu-Ping, Zhang Yong, Lin Wan-Zhen, Lan Rui-Fang
College of Environmental Science and Engineering, Fujian Normal University, Fuzhou 350007, China.
Fujian Key Laboratory of Pollution Control and Resource Reuse, Fuzhou 350007, China.
Ying Yong Sheng Tai Xue Bao. 2021 May;32(5):1863-1872. doi: 10.13287/j.1001-9332.202105.038.
Microbial mineralization of organic phosphorus is an important component of marine phosphorus cycle. The research on organic phosphate-mineralizing bacteria (OPB) is helpful to reveal microbial driving mechanism of organic phosphorus mineralization in eutrophic sea area. The diversity and community characteristics of OPB were examined by Illumina high-throughput sequencing using the primer sets in the sea area between Minjiang Estuary to Pingtan in April (spring) and July (summer) 2019. The results showed that the Shannon index of OPB in the surface seawater samples ranged from 3.21 to 7.91, and that the diversity at each station was greater in spring than that in summer. Shannon index of OPB in the sediment samples ranged from 2.04 to 8.70, which was greater in summer than that in spring. Shannon index of OPB in surface seawater of each station was higher than that of sediment in spring, while it was in adverse in summer. Nine phyla of OPB were detected in surface seawater, with Proteobacteria and Cyanobacteria being the most abundant. Tweleve phyla of OPB were detected in the sediments, with Proteobacteria and Bacteroidetes being the most dominant. OPB community composition at the genus level showed obvious spatio-temporal variation. , and were the major genera in the seawater in spring, while , , , , , and were the major genera detected in summer. , , , and were major genera in the sediment in spring, while , , , , and were the major genera in summer. A large number of unclassified OPB were detected in both surface seawater and sediment. The redundancy analysis results showed that dissolved oxygen, water temperature, pH, dissolved inorganic nitrogen, NO-N, and NO-N had great influences on community distribution of OPB in the surface seawater. The abundant OPB in the surface seawater and sediment might play an important role in phosphorus cycle in this sea area.
有机磷的微生物矿化是海洋磷循环的重要组成部分。对有机磷矿化细菌(OPB)的研究有助于揭示富营养化海域有机磷矿化的微生物驱动机制。于2019年4月(春季)和7月(夏季),使用引物组通过Illumina高通量测序对闽江口至平潭之间海域的OPB多样性和群落特征进行了检测。结果表明,表层海水样品中OPB的香农指数在3.21至7.91之间,且各站位的多样性春季大于夏季。沉积物样品中OPB的香农指数在2.04至8.70之间,夏季大于春季。春季各站位表层海水中OPB的香农指数高于沉积物中的,而夏季则相反。在表层海水中检测到9个OPB门类,其中变形菌门和蓝细菌门最为丰富。在沉积物中检测到12个OPB门类,其中变形菌门和拟杆菌门最为占优势。OPB群落组成在属水平上表现出明显的时空变化。春季海水中的主要属为 、 和 ,而夏季检测到的主要属为 、 、 、 、 和 。春季沉积物中的主要属为 、 、 和 ,而夏季的主要属为 、 、 、 和 。在表层海水和沉积物中均检测到大量未分类的OPB。冗余分析结果表明,溶解氧、水温、pH、溶解无机氮、NO-N和NO-N对表层海水中OPB的群落分布有很大影响。表层海水和沉积物中丰富的OPB可能在该海域的磷循环中发挥重要作用。