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AMMONIA CHANGES IN AQUACULTURE PONDS COVERED WITH IPOMOEA AQUATICA FLOATING BEDS

机译:IPOMOEA水生漂浮床覆盖的水产养殖池中氨的变化

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Floating beds were used widely for improving water quality in aquaculture environments, but its effects on ammonia changes in aquaculture environments were still not clear. In this study, the Ipomoea aquatic boating beds were introduced into 2 intensive aquaculture ponds to investigate its effect on ammonia dynamics, and 2 similar ponds set as controls. Throughout the experiment, control ponds were higher than the corresponding floating bed ponds in ammonia concentration by 6.2 ~ 75.7 %c, and 12.4 ~ 43.2 %〇, respectively. The unionized ammonia concentrations of the two control ponds were 2.58 ~ 8.86-fold higher than that of the corresponding experimental ponds. In the Ipomoea aquatica fibrous roots, the amoA copy numbers of ammonia-oxidizing bacteria (AOB) ranged from (1.16 ± 0.01) x 105 to (2.33 ± 0.24) x 106 copy g-1, and those of ammonia-oxidizing archaea (AOA) ranged from (5.41 ± 0.25) x 103 to (3.82 ± 0.37) x 104 copy g-1. The Ipomoea aquatica floating bed can efficiently remove ammonia in intensive aquaculture pond, especially can decrease the unionized ammonia level and the unionized ammonia toxicity to fish. It was assumed that the decrease of the unionized ammonia level was resulted from the pH decrease, which was contributed by the floating bed through algal photosynthesis inhibition. High richness of AOB and AOA in the Ipomoea aquatica rhizosphere indicated that the rhizospheric ammonia-oxidizing microorganisms played a vital role in ammonia removal.
机译:浮床被广泛用于改善水产养殖环境中的水质,但其对水产养殖环境中氨变化的影响仍不清楚。在这项研究中,将番薯属水上划船床引入2个集约化养殖池塘,以研究其对氨动力学的影响,并以2个类似的池塘作为对照。在整个实验中,对照池的氨浓度分别比相应的浮床池高6.2〜75.7%c和12.4〜43.2%〇。两个对照池的联合氨气浓度比相应的实验池高2.58〜8.86倍。在水亚番薯纤维根中,氨氧化细菌(AOB)的amoA拷贝数范围为(1.16±0.01)x 105至(2.33±0.24)x 106拷贝g-1,而氨氧化古细菌(AOA) )的范围从(5.41±0.25)x 103到(3.82±0.37)x 104副本g-1。 I菜浮床可以有效地去除集约化养殖池中的氨,特别是可以降低工会化的氨含量和工会化的氨对鱼类的毒性。可以认为,由于氨水的pH值下降是造成藻酸光合作用抑制的原因之一,这是由于pH值的下降引起的。番薯根际中AOB和AOA的高度丰富表明根际中的氨氧化微生物在去除氨中起着至关重要的作用。

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