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391篇 您的检索式:作者名="Brosche"
    题名 作者 年代 出处 被引量
1The Role of ABA Recycling and Transporter Proteins in Rapid Stomatal Responses to Reduced Air Humidity, Elevated CO2, and Exogenous ABA显示文摘减少的空气湿度 -- ,提高的公司 2-, 和骆驼毛的织物的导致骆驼毛的织物的有气孔的回答搬运并且再循环异种。Ebe Merilo Pirko Jalakas Hannes Kollist Mikael Brosch 2015Molecular Plant2015,8,4:11
2Dissecting Abscisic Acid Signaling Pathways Involved in Cuticle Formation显示文摘表皮是在植物和环境之间的天线植物表面和一个重要相互作用点的外部物理障碍。许多环境压力影响表皮形成,然而,包含的规章的小径仍然保持未定义。我们在 Arabidopsis thaliana 使用了遗传和基因表达式分析定义表明断然经由表明小径的核心骆驼毛的织物调整表皮形成的循环的 abscisic 酸(骆驼毛的织物) ,包括 PYR/PYL 受体, PP2C 磷酸酶,和 SNF1 相关的蛋白质 Kinase (SnRK ) 2.2/SnRK2.3/SnRK2.6。SnRK2 kinases 下游,表皮形成没被骆驼毛的织物应答的元素绑定抄写因素,但是由相当调整使脱蜡, MYB16, MYB94,和 MYB96。另外,低空气湿度增加了核心骆驼毛的织物小径和表明表皮生合成基因的稀释表示的房间 death/reactive 氧种类的表皮形成独立人士。在 Physcomitrella 圣餐盘,外长的骆驼毛的织物压制了表皮相关的基因的表示, orthologs 是其 Arabidopsis 导致骆驼毛的织物。因此,调整表皮形成的机制被保存但是在陆地植物复杂。与表皮缺乏有关明确地发信号被识别在表明小径异种到增加的湿度并且在 modulating 的骆驼毛的织物的改编起一个主要作用他们的免疫到在 Arabidopsis 的 Botrytis cinerea。这些结果在表明调整回答到外部环境的小径的 ABA 定义一个表皮特定的下游的分支。Fuqiang Cui Mikael Brosche Mikko T. Lehtonen Ali Amiryousefi Enjun Xu Matleena Punkkinen Jari P.T. Valkonen Hiroaki Fujii Kirk Overmyer 2016Molecular Plant2016,9,6:3
3Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence显示文摘Cole ST Brosch R Parkhill J 0,,:2
4Abscisic Acid Transport and Homeostasis in the Context of Stomatal Regulation显示文摘cytosolic 骆驼毛的织物受体的发现是在有气孔的研究的重要突破;经由这些受体发信号涉及决定基础有气孔的传导力和有气孔的应答。然而,在警卫房间的骆驼毛的织物的来源仍然不充分被理解。骆驼毛的织物的水平由 de novo 合成在警卫房间增加,再循环从不活跃而它由 hydroxylation,变化形式,和出口减少,经由 -glucosidases BG1 和 BG2 并且由进口结合。骆驼毛的织物进口商包括 NRT1/PTR 家庭蛋白质 AIT1, ATP 有约束力的盒子蛋白质 ABCG40,并且可能 ABCG22,而 DTX 家庭成员 DTX50 和 ABCG25 作为骆驼毛的织物出口商工作。这里,我们考察在有气孔的规定涉及骆驼毛的织物运输和动态平衡和他们的生理的角色的蛋白质。最近的实验建议功能的冗余性可能在在 vasculature 和警卫房间和骆驼毛的织物再循环蛋白质之间的骆驼毛的织物 transporters 之中存在,作为有气孔的工作在 abcg22, abcg25, abcg40, ait1,和 bg1bg2 异种仍然保持未经触动。仅仅对减少的空气湿度的起始的反应显著地在 abcg22 被推迟。就在警卫房间显示出自治骆驼毛的织物合成的报告而言,我们讨论那对大气的因素的快速的有气孔的回答可能取决于首先,在长期的土壤水赤字的情况中看守综合房间的骆驼毛的织物,骆驼毛的织物在 vasculature 综合了可能有一个重要角色。Ebe Merilo Pirko Jalakas Kristiina Laanemets Omid Mohammadi Hanna Horak Hannes Koliist Mikael Brosche 2015Molecular Plant2015,8,9:2
5Influence of ESAT-6 secretion system 1 (RD1) of Mycobacterium tuberculosis on the interaction between mycobacteria and the host immune system显示文摘Majlessi L Brodin P Brosch R 2005J Immunol2005,174,:1
6Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence显示文摘Cole S T Brosch R Parkhill J 1998Nature1998,393,6685:1
7Deciphering the biology of My cobacterium tuberculosis from the complete genome sequence 显示文摘Cole S T Brosch R Parkhill J Gamier T Churcher C Harris D Gordon S V Eiglmeier K Gas S Barry C E Tekaia F Badcock K Basham D Brown D Chillingworth T Cormor R Davies R Devlin K FeltweU T Gentles S Hamlin N Holroyd S Hornsby T Jagels K Kroghs A McLean J Moule S Murphy L Oliver K Osborne J Quail M A Rafandream M A Rogers J Rutter S Seeger K Skelton J Squaraes R Squares S Sulston J E Taylo K Whitehead S Barrell B G 1998Nature1998,393,:1
8Molecular characterization of PeNhaD1:the first member of the NhaD Na+/H+antiporter family of plant origin显示文摘Ottow E A Polle A Brosche M 2005Plant Molecular Biology2005,58,1:1
9Loss of RD1 contributed to the attenuation of the live tuberculosis vaccines Mycobacterium bovis BCG and Mycobacterium microti显示文摘Pym AS Brodin P Brosch R 2002Mol Microbiol2002,46,3:1
10Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence显示文摘Cole S T Brosch R Parkhill J 1998Nature1998,393,6685:1
11Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence显示文摘Cole ST Brosch R Parkhill J 0,,6685:1
12Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence显示文摘Cole ST Brosch R Parkhill J 1998Nature1998,393,6685:1
13Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence 显示文摘Cole ST Brosch R Parkhill J 1998Nature1998,393,:1
14ESX/type VII secretion sys-tems and their role in host-pathogen interaction显示文摘Simeone R Bottai D Brosch R 2009CurrOpin Microhiol72009,12,1:1
15Death, dying, and the ICU nurse显示文摘Brosche TA 2003Dimens Crit Care Nurs2003,22,4:1
16Deciphering the biology of Mycobacte- rium tuberculosis from the complete genome sequence 显示文摘Cole S T Brosch R Parkhill J 1998Nature1998,393,6685:1
17TIS7 regulation of the beta-catenin/Tcf-4 target gene osteopontin(OPN)is histone deacetylase-dependent显示文摘Victor I Kurzbauer R Brosch G 0,,48:1
18Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence 显示文摘Cole ST Brosch R Parkhill J Garnier T Churcher C Harris D Gordon SV Eiglmeier K Gas S Barry CE Tekaia F Badcock K Basham D Brown D Chillingworth T Connor R Davies R Devlin K Feltwell T Gentles S Hamlin N Holroyd S Hornsby T Jagels K Krogh A Mclean J Moule S Murphy L Oliver K Osborne J Quail MA Rajandream MA Rogers J Rutter S Seeger K Skelton J Squares R Squares S Sulston JE Taylor K Whitehead S Barrell BG 1998Nature1998,393,6685:1
19Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence 显示文摘Cole ST Brosch R Parkhill J 1998Nature1998,393,6685:1
20Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence显示文摘Cole ST Brosch R Parkhill J 1998Nature1998,393,6685:1
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