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藻际浮游细菌的破坏或去除对藻类生长和存活的影响。

Influence of phycospheric bacterioplankton disruption or removal on algae growth and survival.

作者信息

Zheng Ningning, Hu Wei, Zhou Xinzhu, Liu Yu, Bartlam Mark, Wang Yingying

机构信息

Key Laboratory of Pollution Processes and Environmental Criteria (Ministry of Education), Nankai International Advanced Research Institute (Shenzhen Futian), Tianjin Key Laboratory of Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai University, Tianjin, 300350, China.

State Key Laboratory of Medicinal Chemical Biology, Nankai International Advanced Research Institute (Shenzhen Futian), College of Life Sciences, Nankai University, Tianjin, 300350, China.

出版信息

Environ Res. 2023 Nov 15;237(Pt 2):117060. doi: 10.1016/j.envres.2023.117060. Epub 2023 Sep 1.

Abstract

Phycospheric bacteria play a crucial role in the survival of microalgae. However, the potential of using the growth regulation and community structure modulation of phycospheric bacteria to prevent the occurrence of blooms is yet to be verified. The phycospheric bacterioplankton of Cyclotella sp. can be categorized into HNA (high nucleic acid) bacteria and LNA (low nucleic acid) bacteria. 16S rRNA sequencing showed that the HNA bacteria exhibited higher α-diversity compared to the LNA bacteria, and the microbial community composition also exhibited variations. Metagenomic sequencing further indicated the distinct ecological functions between HNA and LNA bacteria. Furthermore, the study showcased the restorative capacity of the phycospheric bacterioplankton. Biomass analysis revealed that the recovery of phycospheric bacterioplankton positively influenced the microalgae growth, thus affirming the significance of phycospheric bacterioplankton to microalgae. The community structure of phycospheric bacterioplankton demonstrated a notable decrease in the abundance of restored LNA core bacteria. Additionally, the restored phycospheric bacterioplankton exhibited a more complex co-occurrence network structure, resulting in decreased resistance and sensitivity of microalgae to adverse environments. The presence of phycospheric bacterioplankton provides a protective shield for microalgae, and thus destabilizing or removing phycospheric bacterioplankton may effectively inhibit growth of microalgae.

摘要

藻际细菌在微藻的生存中起着至关重要的作用。然而,利用藻际细菌的生长调节和群落结构调控来防止水华发生的潜力尚待验证。小环藻属的藻际浮游细菌可分为高核酸(HNA)细菌和低核酸(LNA)细菌。16S rRNA测序表明,与LNA细菌相比,HNA细菌表现出更高的α多样性,微生物群落组成也存在差异。宏基因组测序进一步表明了HNA和LNA细菌之间不同的生态功能。此外,该研究展示了藻际浮游细菌的恢复能力。生物量分析表明,藻际浮游细菌的恢复对微藻生长有积极影响,从而肯定了藻际浮游细菌对微藻的重要性。藻际浮游细菌的群落结构显示,恢复后的LNA核心细菌丰度显著下降。此外,恢复后的藻际浮游细菌表现出更复杂的共现网络结构,导致微藻对不利环境的抗性和敏感性降低。藻际浮游细菌的存在为微藻提供了一个保护屏障,因此破坏或去除藻际浮游细菌可能有效地抑制微藻生长。

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