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61.
Peri-urban water bodies are at risk from excessive pollution as they are direct sinks for urban effluents. The occurrence of oestrogenic and androgenic endocrine disrupting chemicals (EDCs) in effluents and water bodies around the city of Bulawayo, Zimbabwe, and their effects on wild fish was investigated in 2013. Effluent and water were sampled from sewage treatment plants, an urban stream, and effluent-polluted dams, and were compared with a ‘pristine’ dam upstream of Bulawayo. Organic pollutants were extracted by solid-phase extraction and tested for EDCs using a yeast oestrogen/androgen screen. Oestrogenic and androgenic potencies were expressed as 17β-oestradiol equivalent (EEq) or dihydrotestosterone equivalent (TEq). Tilapia and catfish from the dams were analysed for gonado-somatic indices and testis histopathology. Effluents from STPs, which directly flow into Umguza Dam, had EEq of 33 ng l?1 and 55 ng l?1, respectively. Umguza Dam, Khami Dam and Matsheumhlope Stream had EEqs of 237 ng l–1, 9 ng l?1 and 2 ng l?1, respectively. Androgenic activity was detected in only one STP (TEq = 93 ng l?1). Tilapia sampled from effluent-polluted dams had high incidences of testis-ova, but catfish had no signs of reproductive dysfunction. These findings underscore the need for greater attention to EDCs in developing countries where there is scant literature regarding their occurrence and impacts.  相似文献   
62.
Summary The P-1 incompatibility group plasmid RP1 transfers itself from Escherichia coli J53 to the clover endosymbiont bacterium Rhizobium trifolii strain T1 at low frequency in agar surface matings. R. trifolii T1 R-plasmid recipients display a phenotype identical to the wild-type parent strain in all respects except RP1 antibiotic resistances, allowing straightforward donor counterselection and differentiation of excojugants in further intergeneric plasmid transfer experiments. Hence RP1 can readily transfer itself intergenerically from R. trifolii T1 to the related plant pathogenic organism Agrobacterium tumefaciens and to a strain of the free-living diazotroph Klebsiella pneumoniae.Using R. trifolii T1 (RP1) as donor and as recipient LBA 4006, an avirulent strain of A. tumefaciens lacking the tumour-inducing (Ti) plasmid, selection was made for intergeneric transfer of the R-plasmid and its potential as vector of nitrogen-fixation genes evaluated by subsequent indirect screening. Exconjugant Agrobacteria were obtained which carried RP1 resistance markers and, given specific physiological conditions, would reduce acetylene under air. This is the first report of expression of nif genes in a hybrid strain of A. tumefaciens and is of interest since the Ti plasmid of this organism has been suggested as a natural vector for the introduction of these genes into plants. Plasmid RP1 also cotransferred Rhizobium nif genes to KP52, a strain of K. pneumoniae M5al, with deletion by phage eduction of the chromosomal genes for histidine biosynthesis, one of the nif regulatory genes (nif A), the gene for molybdenum cofactor (nif B) and for an electron transport protein of the nitrogen-fixation pathway (nif F). KP52 exconjugants carried RP1 drug resistances and reduced acetylene under anaerobic conditions.  相似文献   
63.
M c L oughlin , T.J. B ordeleau L.M. & D unican , L.K. 1984. Competition studies with Rhizobium trifolii in a field experiment. Journal of Applied Bacteriology 56 , 131–135.
Competition studies were carried out in a field experiment by comparing the ability of antibiotic marked Rhizobium strains inoculated at three inoculum levels in forming nodules against an effective indigenous Rhizobium population of 1.5 times 105/g. Three inoculum strains were assessed. It was seen that by increasing the level of inoculum there was a corresponding increase in the number of nodules formed by the introduced strains. G1067 formed a high proportion (85%) at the highest level, whereas the other two inoculum strains occupied less than 50% of the nodules at the same level. Persistence of the inoculum strain was measured into the second season; G1032 could not be detected, G1006 (another 'foreign' strain) formed 43% and G1067 formed 97% of the nodules sampled. The indigenous Rhizobium population isolated from nodules was shown to be heterogenous, and 15 different intrinsic antibiotic resistance patterns were found. Fifty per cent of the isolates fell in the same group which showed a similar pattern to that of the inoculum strain G1067.  相似文献   
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