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Effects of live rock on removal of dissolved inorganic nitrogen in coral aquaria 被引量:1
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作者 LI Yan ZHENG Xinqing +3 位作者 YANG Xiaozhou OU Dangyun LIN Rongcheng LIU Xinming 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2017年第12期87-94,共8页
Maintaining stable water quality is one of the key processes for recirculating coral aquaculture. Traditional aquarium systems which mainly utilized a nitrification of nitrifying bacteria attached to the surface of ma... Maintaining stable water quality is one of the key processes for recirculating coral aquaculture. Traditional aquarium systems which mainly utilized a nitrification of nitrifying bacteria attached to the surface of massive artificial filter material are difficult to maintain the oligotrophic conditions necessary for coral aquaculture. This study investigated the removal effects of dissolved inorganic nitrogen(ammonia and nitrate) by live rock(LR), a key component in the "Berlin system" coral aquarium. The expression levels of bacterial functional genes, AOA3,amo A and nos Z, were measured on the exterior and interior of LR. The nitrifying and denitrifying bacterial abundance on LR was quantified and the nitrogen nutrient regulatory effects of LR were evaluated. The results demonstrated that LR mainly removed ammonium(NH_4~+) from the water with a mean efficiency of 0.141 mg/(kg·h), while the removal of nitrate(NO_3~–) was not significant. Bacterial diversity analysis showed that ammonia-oxidizing bacteria(AOB) were the most common bacteria on LR, which accounted for 0.5%–1.4% of the total bacterial population, followed by denitrifying bacteria, which accounted for 0.2% of the total population, and the ammonia-oxidizing archaea(AOA) were the least common type(〈0.01%). The low abundance of denitrifying bacteria may be responsible for the poor nitrate(NO_3~–) removal of LR. Thus, other biological filtration methods are needed in coral aquaria to control nitrates generated from nitrification or biological metabolism. 展开更多
关键词 coral live rock water purification dissolved inorganic nitrogen removal efficiency
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Incubation experiment demonstrates effects of carbon and nitrogen on microbial phosphate-solubilizing function 被引量:3
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作者 Hongyang Sun Yanhong Wu +1 位作者 Jun Zhou Haijian Bing 《Science China(Life Sciences)》 SCIE CAS CSCD 2017年第4期436-438,共3页
Dear Editor,Phosphorus(P)ultimately comes from rock weathering in natural ecosystems(Porder et al.,2007),and thus solubilization of rock phosphate plays a crucial ecological role in P supply for the ecosystems.Esp... Dear Editor,Phosphorus(P)ultimately comes from rock weathering in natural ecosystems(Porder et al.,2007),and thus solubilization of rock phosphate plays a crucial ecological role in P supply for the ecosystems.Especially,microbial solubilization of rock phosphate is a vital process for the replenishment of available P in alpine ecosystems where the weathering degree of soil is low. 展开更多
关键词 microbial rock vital comes alpine phosphorus ultimately weathering dissolved phospholipid
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