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Using Ipomoea aquatic as an environmental-friendly alternative to Elodea nuttallii for the aquaculture of Chinese mitten crab

机译:用番薯水生植物替代中华绒螯蟹的水产养殖

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摘要

Elodea nuttallii is widely used in Chinese mitten crab (CMC) rearing practice, but it is not a native aquatic plant and cannot endure high temperature. Thus, large E. nuttallii mortality and water deterioration events could occur during high-temperature seasons. The aim of this study was to identify the use of local macrophytes in CMC rearing practice, including Ipomoea aquatic and Oryza sativa. A completely randomized field experiment was conducted to investigate the crab yield, water quality, bacterioplankton community and functions in the three different systems (E. nuttallii, I. aquatic, and O. sativa). Average crab yields in the different macrophyte systems did not differ significantly. The I. aquatic and O. sativa systems significantly decreased the total nitrogen and nitrate-N quantities in the outflow waters during the rearing period compared to the E. nuttallii system, and the I. aquatic and O. sativa plants assimilated more nitrogen than the E. nuttallii plant. Moreover, the significant changes of bacterioplankton abundances and biodiversity in the three systems implied that cleanliness of rearing waters was concomitantly attributed to the differential microbial community and functions. In addition, principle component analysis successfully differentiated the bacterioplankton communities of the three macrophytes systems. Environmental factor fitting and the co-occurrence network analyses indicated that pH was the driver of bacterioplankton community structure. Functional predictions using PICRUSt (v.1.1.3) software based on evolutionary modeling indicated a higher potential for microbial denitrification in the I. aquatic and O. sativa systems. Notably, the O. sativa plants stopped growing in the middle of the rearing period. Thus, the I. aquatic system rather than the O. sativa system could be a feasible and environmental-friendly alternative to the E. nuttallii system in CMC rearing practice.
机译:Elodea nuttallii已广泛用于中华绒螯蟹(CMC)的饲养实践中,但它不是本地水生植物,不能耐高温。因此,在高温季节中可能会发生大量的纳豆菌死亡和水质恶化事件。这项研究的目的是确定在CMC饲养实践中使用本地大型植物,包括番薯属水生植物和水稻。进行了一个完全随机的田间实验,以研究蟹的产量,水质,浮游细菌群落及其在三种不同系统(E. nuttallii,I。aquatic和O. sativa)中的功能。不同大型植物系统中的平均螃蟹产量没有显着差异。与E. nuttallii系统相比,在饲养期间,I。aquatic和O. sativa系统显着减少了流出水中的总氮和硝酸盐N含量,而I. aquatic和O. sativa植物吸收的氮量大于E. nuttallii系统。 E. nuttallii植物。此外,这三个系统中浮游细菌丰度和生物多样性的显着变化表明,饲养水的清洁度应同时归因于不同的微生物群落和功能。此外,主成分分析成功地区分了三种大型植物系统的浮游细菌群落。环境因子拟合和共现网络分析表明,pH是浮游细菌群落结构的驱动因素。使用基于进化建模的PICRUSt(v.1.1.3)软件进行的功能预测表明,在I. Aquatic和O. sativa系统中微生物反硝化的潜力更高。值得注意的是,O。sativa植物在饲养中期停止生长。因此, I。水生系统,而不是 O。苜蓿系统可能是 E的可行且环保的替代方案。 nuttallii 系统在CMC饲养实践中的应用。

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