Differences in environmental microbial community responses under rice-crab co-culture and crab monoculture models under cyanobacterial bloom

Li Tong, Ling Jun, Jiang He, Yang Min, Guoqing Duan, Yuting Hu, Huaxing Zhou, Wang Huan, Pan Tingshuang
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Abstract

Cyanobacterial blooms (CBs) present significant challenges to Chinese mitten crab (CMC) culture, posing hazards to the aquatic microbial ecology. However, the current focus on the microbial ecological changes within the CMC culture system under the influence of CBs is somewhat insufficient. There’s an urgent need to analyze the microbial ecosystem of the CMC culture system under CBs. This study employed 16S rRNA gene amplicon sequencing to investigate the dynamics of the environmental microbial community in both the rice-crab co-culture (RC) and crab monoculture (CM) models. The results revealed that cyanobacteria reached high levels in the CM water in July, while they began to increase in the RC water in August. Notably, OTU147 (uncultured bacterium g_Planktothrix NIVA-CYA 15), identified as the dominant taxon associated with CBs, showed a significant linear relationship with TP, NO2−-N, and the N:P ratio. TP, TN, NO2−-N, and CODMn had a more pronounced impact on the structure of bacterial communities and cyanobacterial taxa in the water. The bacterial community structure involved in carbon metabolism displayed temporal succession in the water. The co-occurrence network of the bacterial community primarily consisted of Chloroflexi, Proteobacteria, and Firnicutes in the sediment, and Actinobacteria, Proteobacteria, Chloroflexi, and Bacteroidota in the water. In contrast, the co-occurrence network included different peripheral species in the sediment and water. Keystone species were predominantly represented by OTU22 (uncultured actinobacterium g_ hgcI clade) and OTU12 (uncultured Opitutae bacterium g_ norank) in the RC water, and by OTU25 (uncultured bacterium g_ Limnohabitans) in the CM water. TP, TN, NO2−-N, and CODMn were identified as the primary environmental factors influencing these keystone taxa within the culture water. In conclusion, this study on the microbial ecology of the CMC culture system under the influence of CBs provides valuable insights that can be instrumental in subsequent management efforts.
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蓝藻水华下稻蟹共养和蟹单养模式下环境微生物群落反应的差异
蓝藻水华(CBs)给中华绒螯蟹(CMC)养殖带来巨大挑战,对水生微生物生态造成危害。然而,目前对中华绒螯蟹养殖系统在 CBs 影响下的微生物生态变化的关注还不够。对 CBs 影响下的 CMC 养殖系统微生物生态系统进行分析迫在眉睫。本研究采用 16S rRNA 基因扩增片测序技术研究了稻蟹共作(RC)和蟹单作(CM)模式下环境微生物群落的动态变化。结果表明,蓝藻在 7 月的 CM 水体中达到高水平,而在 8 月的 RC 水体中开始增加。值得注意的是,OTU147(未培养的细菌 g_Planktothrix NIVA-CYA 15)被确定为与 CB 相关的优势类群,它与 TP、NO2--N 和 N:P 比率呈显著的线性关系。TP、TN、NO2--N 和 CODMn 对水中细菌群落结构和蓝藻类群的影响更为明显。水体中参与碳代谢的细菌群落结构表现出时间上的演替性。在沉积物中,细菌群落的共生网络主要由绿僵菌、变形菌和纤毛菌组成;在水中,细菌群落的共生网络主要由放线菌、变形菌、绿僵菌和类杆菌组成。相比之下,共现网络包括了沉积物和水中的不同边缘物种。在 RC 水体中,OTU22(未培养的放线菌 g_ hgcI 支系)和 OTU12(未培养的 Opitutae 细菌 g_ norank)是主要的基石物种,而在 CM 水体中,OTU25(未培养的 Limnohabitans 细菌 g_)是主要的基石物种。TP、TN、NO2--N 和 CODMn 被确定为影响养殖水体中这些关键类群的主要环境因素。总之,这项关于 CBs 影响下 CMC 养殖系统微生物生态学的研究提供了宝贵的见解,有助于后续的管理工作。
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