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      • <i>Haloactinopolyspora alkaliphila</i> sp. nov., and emended description of the genus <i>Haloactinopolyspora</i>

        Zhang, Yong-Guang,Liu, Qing,Wang, Hong-Fei,Zhang, Dao-Feng,Zhang, Yuan-Ming,Park, Dong-Jin,Kim, Chang-Jin,Li, Wen-Jun International Union of Microbiological Societies 2014 International journal of systematic and evolutiona Vol.64 No.6

        <P>A facultatively alkaliphilic actinomycete strain, designated EGI 80088<SUP>T</SUP>, was isolated from a saline-alkali soil sample from Xinjiang province, north-west China, and subjected to a polyphasic taxonomic characterization. Strain EGI 80088<SUP>T</SUP> formed fragmented aerial hyphae and short spore chains, and rod-like spores aggregated at maturity. Whole-cell hydrolysates of the isolate contained <SMALL>ll</SMALL>-diaminopimelic acid as the diagnostic diamino acid, and glucosamine, mannose, galactose, glucose and rhamnose as the marker sugars. The major fatty acids identified (>5 %) were anteiso-C<SUB>15 : 0</SUB>, iso-C<SUB>15 : 0</SUB>, summed feature 4 (iso-C<SUB>17 : 1</SUB>I/anteiso-C<SUB>17 : 1</SUB>B), iso-C<SUB>16 : 0</SUB> and anteiso-C<SUB>17 : 0</SUB>. The predominant menaquinone was MK-9(H<SUB>4</SUB>). The G+C content of the genomic DNA of strain EGI 80088<SUP>T</SUP> was 70.6 mol%. EGI 80088<SUP>T</SUP> showed the highest 16S rRNA gene sequence similarity to its closest phylogenetic neighbour <I>Haloactinopolyspora alba</I> YIM 93246<SUP>T</SUP> (98.5 %). The DNA–DNA relatedness value of the strain EGI 80088<SUP>T</SUP> and <I>H. alba</I> YIM 93246<SUP>T</SUP> was 59.3±5.2 %. On the basis of morphological, chemotaxonomic and phylogenetic characteristics and DNA–DNA hybridization data, strain EGI 80088<SUP>T</SUP> represents a novel species of the genus <I>Haloactinopolyspora</I>, for which the name <I>Haloactinopolyspora alkaliphila</I> sp. nov. (type strain EGI 80088<SUP>T</SUP> = BCRC 16946<SUP>T</SUP> = JCM 19128<SUP>T</SUP>) is proposed. The description of the genus <I>Haloactinopolyspora</I> has also been emended.</P>

      • A two-storey structured photoanode of a 3D Cu2ZnSnS4/CdS/ZnO@steel composite nanostructure for efficient photoelectrochemical hydrogen generation

        Choi, Youngwoo,Baek, Minki,Zhang, Zhuo,Dao, Van-Duong,Choi, Ho-Suk,Yong, Kijung The Royal Society of Chemistry 2015 Nanoscale Vol.7 No.37

        <P>A two-storey structured photoanode of a 3D Cu2ZnSnS4(CZTS)/CdS/ZnO@steel composite nanostructure has been fabricated by using the solution method and demonstrated highly efficient photoelectrochemical hydrogen generation due to its contraption in the structure for sufficient light absorption as well as the three step-down band alignments for efficient charge separation and transport. This composite structure is composed of two storeys: the upper storey is the CZTS/CdS/ZnO hetero-nanorods (NRs) covered on the stainless steel mesh; the bottom storey is the CZTS/CdS/ZnO hetero-NRs grown on the FTO glass. The CZTS/CdS/ZnO hetero-NRs have cascade band gaps decreasing from 3.15 to 1.82 eV, which gives them efficient charge transfer and broad photoresponse in the UV to near-IR region, resulting in 47% IPCE in a wide light region from 400 to 500 nm; and the stainless steel mesh serves not only as a conductor for charge transport, but also as a skeleton of the grid structure for absorbing more light. The related mechanism has been investigated, which demonstrates that the two-storey CZTS/CdS/ZnO@steel composite nanostructure would have great potential as a promising photoelectrode with high efficiency and low cost for PEC hydrogen generation.</P>

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        Ginseng consumption and risk of cancer: A meta-analysis

        Jin, Xin,Che, Dao-biao,Zhang, Zhen-hai,Yan, Hong-mei,Jia, Zeng-yong,Jia, Xiao-bin The Korean Society of Ginseng 2016 Journal of Ginseng Research Vol.40 No.3

        Background: The findings of currently available studies are not consistent with regard to the association between the risk of cancer and ginseng consumption. Therefore, we aimed to evaluate this association by conducting a meta-analysis of different studies. Methods: To systematically evaluate the effect of ginseng consumption on cancer incidence, six databases were searched, including PubMed, Ovid Technologies, Embase, The Cochrane Library, China National Knowledge Infrastructure, and Chinese VIP Information, from 1990 to 2014. Statistical analyses based on the protocol employed for a systematic review were conducted to calculate the summary relative risks (RRs) and 95% confidence intervals (CIs). Results: We identified nine studies, including five cohort studies, three case-control studies, and one randomized controlled trial, evaluating the association between ginseng consumption and cancer risk; these studies involved 7,436 cases and 334,544 participants. The data from the meta-analysis indicated a significant 16% lower risk of developing cancer in patients who consumed ginseng (RR = 0.84, 95% CI = 0.76-0.92), with evidence of heterogeneity (p = 0.0007, $I^2$ = 70%). Stratified analyses suggested that the significant heterogeneity may result from the incidence data for gastric cancer that were included in this study. Publication bias also showed the same result as the stratified analyses. In addition, subgroup analyses for four specific types of cancer (colorectal cancer, lung cancer, gastric cancer, and liver cancer) were also performed. The summary RRs for ginseng intake versus no ginseng consumption were 0.77 for lung cancer, 0.83 for gastric cancer, 0.81 for liver cancer, and 0.77 for colorectal cancer. Conclusion: The findings of this meta-analysis indicated that ginseng consumption is associated with a significantly decreased risk of cancer and that the effect is not organ specific.

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        Bioremediation of Pb-Contaminated Soil Based on Microbially Induced Calcite Precipitation

        ( Achal Varenyam ),( Xiang Liang Pan ),( Dao Yong Zhang ),( Qing Long Fu ) 한국미생물 · 생명공학회 2012 Journal of microbiology and biotechnology Vol.22 No.2

        To remediate lead (Pb)-contaminated soils, it is proposed that microbially induced calcite precipitation (MICP) would provide the best alternative to other remediation technologies. In this study, Pb bioremediation in soils was investigated using the calcite-precipitating bacterium Kocuria flava. Results indicate that the Pb is primarily associated with the carbonate fraction in bioremediated soil samples. The bioavailability of Pb in contaminated soil was reduced so that the potential stress of Pb was alleviated. This research provides insight into the geochemistry occurring in the MICP-based Pb-remediated soils, which will help in remediation decisions.

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