Liu Yuqian, Cao Xiuyun, Li Hui, Zhou Zijun, Wang Siyang, Wang Zhicong, Song Chunlei, Zhou Yiyong
Key Laboratory of Algal Biology, State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, People's Republic of China.
Yellow River Water Resources Protection Institution, Zhengzhou, 450004, People's Republic of China.
Environ Sci Pollut Res Int. 2017 Jul;24(21):17679-17687. doi: 10.1007/s11356-017-9339-0. Epub 2017 Jun 9.
Phosphorus (P) fractionation and sorption behavior as well as the abundance and community composition of phosphorus-solubilizing bacteria (PSB) in sediments, including inorganic phosphate-solubilizing bacteria (IPB) and organic phosphate-mineralizing bacteria (OPB), were investigated in 27 sampling sites of five sections in the Three Gorges Reservoir (TGR) in December 2012. The calcium-bound phosphorus (CaCO∼P) accounted for the largest part for P fractions in the sediment of TGR, which was paralleled with IPB outnumbering OPB. Furthermore, some PSB isolates, such as Micromonospora sp., Aminobacter sp., and Arthrobacter sp., were shared by the IPB and OPB. Thus, some IPB species functioned as OPB and vise versa, which could be further reflected by a negative and significant relationship between PSB (IPB + OPB) number and content of CaCO∼P together with acid-soluble organic phosphorus (ASOP). Spatially, the highest ASOP content in the section Mudong and the highest CaCO∼P plus iron-bound phosphorus (Fe(OOH)∼P) as well as equilibrium phosphorus concentration (EPC) in the sections of Yunyang and Zigui due to sediment sequestration by the dam, as well as the positive relationship between EPC and the ratios of different phosphorus species and phosphorus sorption maximum (Q ), jointly indicated pathway diversification and potential risk of phosphorus release mediated by PSB in TGR.
2012年12月,对三峡水库(TGR)五个断面的27个采样点沉积物中的磷(P)分级和吸附行为以及解磷细菌(PSB)的丰度和群落组成进行了研究,其中包括无机磷解磷细菌(IPB)和有机磷矿化细菌(OPB)。三峡水库沉积物中钙结合磷(CaCO₃-P)占磷组分的比例最大,这与IPB数量多于OPB的情况相平行。此外,一些PSB分离株,如小单孢菌属、氨基杆菌属和节杆菌属,同时存在于IPB和OPB中。因此,一些IPB物种发挥着OPB的功能,反之亦然,这可以通过PSB(IPB + OPB)数量与CaCO₃-P以及酸溶性有机磷(ASOP)含量之间的负相关且显著关系进一步体现。在空间上,由于大坝对沉积物的截留作用,木洞断面的ASOP含量最高,云阳和秭归断面的CaCO₃-P加上铁结合磷(Fe(OOH)-P)以及平衡磷浓度(EPC)最高,以及EPC与不同磷形态比例和磷吸附最大值(Q)之间的正相关关系,共同表明了三峡水库中PSB介导的磷释放途径多样化和潜在风险。