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95篇 您的检索式:作者名="TIMKO"
    题名 作者 年代 出处 被引量
1Tobacco Transcription Factors NtMYC2a and NtMYC2b Form Nuclear Complexes with the NtJAZ1 Repressor and Regulate Multiple Jasmonate-lnducible Steps in Nicotine Biosynthesis显示文摘关於生命、不能生活的应力在栽培烟草(Nicotiana tabacum L.) 导致烟碱和相关 pyridine 碱的生合成的 jasmonic 酸(JA ) 和它的衍生物和激活的提高的层次。在 JA 应答的基因之中是 NtPMT1a,编码 putrescine N 甲基 transferase,在烟碱形成的关键规章的酶。我们描绘了三基因(NtMYC2a, b, c ) 其表达式被 JA 和那很快明确地导致的编码基本 helix-loop-helix (bHLH ) 抄写因素(TF ) 由绑定激活 JA 可诱导的 NtPMT1a 表示在 NtPMT1a 倡导者在以内的一个 G 盒子主题在 vivo 并且在 vitro 试金。用 split-YFP 试金,我们进一步证明当 JA 不在时, NtMYC2a 和 NtMYC2b 与 NtJAZ1 抑压者表现为原子建筑群。 RNA 干扰( RNAi )调停了在在编码涉及烟碱和次要的碱生合成的另外的酶的抄本的JA可诱导的 NtPMT1a 抄本层次,以及减少的层次的重要减少的 NtMYC2a 和 NtMYC2b 表示结果击倒,包括在编码通常认为的烟碱 synthase 基因 NtA662 的抄本的水平的8090%减小。相反, NtMYC2a 和 NtMYC2b 的宫外的 overexpression 没当面在 NtPMT1a 表示上有效果或外长地增加的 JA 的缺席。这些数据建议那 NtMYC2a, b, c 是在烟碱 biosynthetic 小径的多重基因的 JA 可诱导的表示的要求的部件并且可以在 JA 回答的激活 additively 行动。Hong-Bo Zhang Marta T. Bokowiec Paul J. Rushton Sheng-Cheng Han Michael R Timko 2012Molecular Plant2012,5,1:47
2Antimicrobial susceptibility of Enterobacteriaceae causing urinary tract infections: a central military hospital study显示文摘Urinary tract infection (UTI) remains one of the most common bacterial infections seen in hospitalized patients of all ages.Prevalence of UTIs increases with age and is often accompanied by higher resistance rates.The aim of this study was to determine the degree of resistance of most common enterobacterial uropathogens isolated from patients at Central Military Hospital and compare this resistance with the results found by the North America and Europe Study for Monitoring Antimicrobial Resistance Trends (SMART) study during 2009-2010.Jaroslav Timko 2014Chinese Medical Journal2014,,23:2
3The pc-1 phenotype of Chlamydomonas reinhardtii results from a deletion mutation in the nuclear gene for NADPH: Protochlorophyllide oxidoreductase显示文摘Li J and Timko M P 1996Plant Mol Biol1996,30,:1
4显示文摘Lu W X J Timko B P 2005Proc Natl Acad Sci2005,102,10:1
5DNA microarrays- techniques and applications in microbial systems显示文摘Majtan T Bukovska G Timko J 2004Folia Microbiol2004,49,6:1
6Magnetorheological Properties of Some Ferrofluids 显示文摘Timko M Zentko A Zentkova M 1994IEEE Transactions on Magnetics1994,30,2:1
7AFLP analysis of genetic polymorphism and evolutionary relationships among cultivated and wild Nicotiana species显示文摘RenN Timko MP 2001Genome2001,44,4:1
8Regulation by heme ofmitochondrial protein transport through a conserved a-mino acid motif 显示文摘LATHROP J T’TIMKO M P 1993Science1993,259,5094:1
9Multidimensional data modeling for location-based services显示文摘Christian S Jensen Augustas Kligys Torben Bach Pedersen Igor Timko The International Journal on Very Large Data Bases Issue0,13,1:1
10Advances in drug delivery 显示文摘Timko B P Whitehead K Gao W 2011Annual Review of Materials Research2011,41,1:1
11Immobilization of enzymes on magnetic particles 显示文摘KONERACKA M KOPCANSKY P TIMKO M 2006Method Bioteehnol2006,22,:1
12The evolution of parasitism in plants显示文摘Westwood J H Yoder J I Timko M P 2010Trends Plant Science2010,15,4:1
13Dibenzothiophene oxidation in a model diesel fuel using CuO/GC catalysts and H 2 O 2 in the presence of acetic acid under acidic condition显示文摘U. Arellano J.M. Shen J.A. Wang M.T. Timko L.F. Chen J.T. Vázquez Rodríguez M. Asomoza A. Estrella O.A. González Vargas M.E. Llanos 2014Fuel2014,,:1
14Synthesis and characterization of polymeric nanosph eres loaded with the anticancer drug paclitaxel and magnetic particles显示文摘Vlasta Zavisovd Milan Timko Martina Koneracka 2009J Magn Magn Mater2009,321,:1
15The evolution of parasitism in plants显示文摘Westwood JH Yoder JI Timko MP 0,,:1
16Recent Advances on Citrus yellow vein clearing virus in Citrus显示文摘Citrus yellow vein clearing virus(CYVCV)is the causal agent of yellow vein clearing disease,a significant and devastating disease of most citrus species including lemon and sour orange.CYVCV,a single-strand positive-sense RNA virus containing six ORFs(Open Reading Frames),represents a new species in the genus Mandarivirus of the Alphaflexiviridae family.The virus can cause particularly serious damage,resulting in reduced tree vigor,lower yields,and decreased marketability of fruit production,and it has been found in India,Turkey,Pakistan,China and Iran.Here we described the geographical distribution of the virus,its transmission mode by grafting,mechanical inoculation,and insects,as well as currently available techniques for detection.In addition,we also discussed practical measures aimed at controlling the disease and provided theoretical guidance to prevent the acquisition and spread of the disease that is a significant step toward ensuring the health of the citrus industry.Cuihua Liu Hai Liu John Hurst Michael P Timko Changyong Zhou 2020Horticultural Plant Journal2020,6,4:1
17An overview of resist processing for deep-UV lithography 显示文摘Nalamasu O Cheng M Timko A G 1991Journal of Photopolymer Science and Technology1991,4,3:1
18Self-monitoring and the attitude-behavior relation 显示文摘AJZEN I TIMKO C WHITE J B 1982Journal of Personality and Social Psychology1982,423,:1
19Photo-reactivity of natural dissolved organic matter from fresh to marine waters in the Florida Everglades, USA显示文摘Timko S A Romera-Castillo C Jaffé R 2014Environmental Science: Processes & Impacts2014,16,4:1
20A probabilistie data model and algebra for location-based data warehouses and their implementation 显示文摘Timko I Dyreson C Pedersen T B 2014Geoinformatica2014,18,2:1
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