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Promoted Growth of Maize by the Phosphate Solubilizing Bacteria Isolated from North-east China
Hai-Yan Wu,Li-Chun Wang,Xing-Ai Gao,Rong-De Jin,Zuo-Wei Fan,Kil-Yong Kim,Lan-Po Zhao 한국토양비료학회 2011 한국토양비료학회지 Vol.44 No.1
A strain of phosphate solubilizing bacterium was isolated from rhizosphere and identified as Burkholderia sp. by 16S-rRNA gene sequence analyses. The bacterium was found to release gluconic acid and the solubilization of hydroxyapatite in the liquid medium by a significant drop in pH to 3.7 from an initial pH 7.0. The soluble-P concentration continuously increased during the incubation periods and the total amount of soluble P released in culture filtrate was detected at 990 mg L<SUP>-1</SUP> after 10 days of inoculation. Most promoted maize growth was found in the standard NPK (240-120-120 kg ha<SUP>-1</SUP>) soil inoculation with Burkholderia sp. (Twenty milliliters/ plant, 106 CFU) and also in the absence of Burkholderia sp. inoculation, the soil amended with only 2/3 levels of P gave significant higher plant yield compared to 1/3 levels of P or without P supplementation.
Promoted Growth of Maize by the Phosphate Solubilizing Bacteria Isolated from North-east China
Wu, Hai-Yan,Wang, Li-Chun,Gao, Xing-Ai,Jin, Rong-De,Fan, Zuo-Wei,Kim, Kil-Yong,Zhao, Lan-Po Korean Society of Soil Science and Fertilizer 2011 한국토양비료학회지 Vol.44 No.1
A strain of phosphate solubilizing bacterium was isolated from rhizosphere and identified as Burkholderia sp. by 16S-rRNA gene sequence analyses. The bacterium was found to release gluconic acid and the solubilization of hydroxyapatite in the liquid medium by a significant drop in pH to 3.7 from an initial pH 7.0. The soluble-P concentration continuously increased during the incubation periods and the total amount of soluble P released in culture filtrate was detected at 990 mg $L^{-1}$ after 10 days of inoculation. Most promoted maize growth was found in the standard NPK (240-120-120 kg $ha^{-1}$) soil inoculation with Burkholderia sp. (Twenty milliliters/plant, 106 CFU) and also in the absence of Burkholderia sp. inoculation, the soil amended with only 2/3 levels of P gave significant higher plant yield compared to 1/3 levels of P or without P supplementation.
Monthly distribution of ammonia-oxidizing microbes in a tropical bay
Tie-Qiang Mao,Yan-Qun Li,Hong-Po Dong,Wen-Na Yang,Li-Jun Hou 한국미생물학회 2021 The journal of microbiology Vol.59 No.1
Ammonia oxidation, performed by ammonia-oxidizing archaea (AOA) and bacteria (AOB), plays a critical role in the cycle of nitrogen in the ocean. For now, environmental variables controlling distribution of ammonia-oxidizing microbes are still largely unknown in oceanic environments. In this study, we used real-time quantitative PCR and high-throughput sequencing methods to investigate the abundance and diversity of AOA and AOB from sediment and water in Zhanjiang Bay. Phylogenic analysis revealed that the majority of AOA amoA sequences in water and sediment were affiliated with the genus Nitrosopumilus, whereas the Nitrosotalea cluster was only detected with low abundance in water. Nitrosomonas and Nitrosospira dominated AOB amoA sequences in water and sediment, respectively. The amoA copy numbers of both AOA and AOB varied significantly with month for both sediment and water. When water and sediment temperature dropped to 17– 20°C in December and February, respectively, the copy number of AOB amoA genes increased markedly and was much higher than for AOA amoA genes. Also, AOA abundance in water peaked in December when water temperature was lowest (17–20°C). Stepwise multiple regression analyses revealed that temperature was the most key factor driving monthly changes of AOA or AOB abundance. It is inferred that low water temperature may inhibit growth of phytoplankton and other microbes and so reduce competition for a common substrate, ammonium.
Distributed Target Localization with Inaccurate Collaborative Sensors in Multipath Environments
( Yuan Feng ),( Qinsiwei Yan ),( Po-hsuan Tseng ),( Ganlin Hao ),( Nan Wu ) 한국인터넷정보학회 2019 KSII Transactions on Internet and Information Syst Vol.13 No.5
Location-aware networks are of great importance for both civil lives and military applications. Methods based on line-of-sight (LOS) measurements suffer sever performance loss in harsh environments such as indoor scenarios, where sensors can receive both LOS and non-line-of-sight (NLOS) measurements. In this paper, we propose a data association (DA) process based on the expectation maximization (EM) algorithm, which enables us to exploit multipath components (MPCs). By setting the mapping relationship between the measurements and scatters as a latent variable, coefficients of the Gaussian mixture model are estimated. Moreover, considering the misalignment of sensor position, we propose a space-alternating generalized expectation maximization (SAGE)-based algorithms to jointly update the target localization and sensor position information. A two dimensional (2-D) circularly symmetric Gaussian distribution is employed to approximate the probability density function of the sensor's position uncertainty via the minimization of the Kullback-Leibler divergence (KLD), which enables us to calculate the expectation step with low computational complexity. Moreover, a distributed implementation is derived based on the average consensus method to improve the scalability of the proposed algorithm. Simulation results demonstrate that the proposed centralized and distributed algorithms can perform close to the Monte Carlo-based method with much lower communication overhead and computational complexity.
Lei Chen,Kui-Po Yan,Xin-Can Liu,Wei Wang,Chao Li,Ming Li,Chun-Guang Qiu 대한약학회 2018 Archives of Pharmacal Research Vol.41 No.1
This study investigated the interaction amongvalsartan (VAL), TGF-b pathways, and long non-codingRNA (lncRNA) cardiac hypertrophy-related factor (CHRF)in doxorubicin (DOX)-induced heart failure (HF), andexplored their roles in DOX-induced HF progression. HFmice models in vivo were constructed by DOX induction. The expression of CHRF and TGF-b1 in hearts wasdetected, along with cardiac function, caspase-3 activity,and cell apoptosis. Primary myocardial cells were pretreatedwith VAL, followed by DOX induction in vitro forfunctional studies, including the detection of cell apoptosiswith terminal deoxynucleotidyl transferase dUTP nick-endlabeling and the expression of proteins associated withTGF-b1 pathways. HF models were established in vivo andin vitro. Expression of CHRF and TGF-b1 was up-regulated,and cell apoptosis and caspase-3 activity wereincreased in the hearts and cells of the HF models. VALsupplementation alleviated the cardiac dysfunction andinjury in the HF process. Moreover, overexpressed CHRFup-regulated TGF-b1, promoted myocardial cell apoptosis,and reversed VAL’s cardiac protective effect, while interferenceof CHRF (si-CHRF) did the opposite. Down-regulationof CHRF reversed the increased expression of TGFb1and the downstream proteins induced by pcDNA-TGFb1in HL-1 cells, while overexpression of CHRF reversedthe VAL’s cardiac protective effect in vivo. In conclusion,VAL regulates TGF-b pathways through lncRNA CHRF toimprove DOX-induced HF.
Pou Kuan Leong,Na Chen,Po Yee Chiu,Hoi Yan Leung,Chung Wah Ma,Qing Tao Tang,Kam Ming Ko 한국식품영양과학회 2010 Journal of medicinal food Vol.13 No.2
Wei Kang Su (WKS) is a commercial herbal product based on a Chinese herbal formula, Shengmai San. Here, we investigated the effects of long-term treatment with WKS on mitochondrial antioxidant status and functional ability, as well as heat shock protein (Hsp) 25/70 production, in various tissues of rats. WKS treatment enhanced mitochondrial antioxidant status and ATP generation capacity, as well as Hsp 25/70 production in various rat tissues. WKS treatment suppressed plasma reactive oxygen metabolite levels and protected against carbon tetrachloride hepatotoxicity in rats. Long-term WKS treatment may prevent diseases by enhancing the resistance of mitochondria to oxidative stress.
Large-Scale Production of Graphene Nanoribbons from Electrospun Polymers
Liu, Nan,Kim, Kwanpyo,Hsu, Po-Chun,Sokolov, Anatoliy N.,Yap, Fung Ling,Yuan, Hongtao,Xie, Yanwu,Yan, Hao,Cui, Yi,Hwang, Harold Y.,Bao, Zhenan American Chemical Society 2014 JOURNAL OF THE AMERICAN CHEMICAL SOCIETY - Vol.136 No.49
<P>Graphene nanoribbons (GNRs) are promising building blocks for high-performance electronics due to their high electron mobility and dimensionality-induced bandgap. Despite many past efforts, direct synthesis of GNRs with controlled dimensions and scalability remains challenging. Here we report the scalable synthesis of GNRs using electrospun polymer nanofiber templates. Palladium-incorporated poly(4-vinylphenol) nanofibers were prepared by electrospinning with controlled diameter and orientation. Highly graphitized GNRs as narrow as 10 nm were then synthesized from these templates by chemical vapor deposition. A transport gap can be observed in 30 nm-wide GNRs, enabling them to function as field-effect transistors at room temperature. Our results represent the first success on the scalable synthesis of highly graphitized GNRs from polymer templates. Furthermore, the generality of this method allows various polymers to be explored, which will lead to understanding of growth mechanism and rational control over crystallinity, feature size and bandgap to enable a new pathway for graphene electronics.</P><P><B>Graphic Abstract</B> <IMG SRC='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jacsat/2014/jacsat.2014.136.issue-49/ja509871n/production/images/medium/ja-2014-09871n_0007.gif'></P><P><A href='http://pubs.acs.org/doi/suppl/10.1021/ja509871n'>ACS Electronic Supporting Info</A></P>