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3篇 您的检索式:作者名="Jan Sadowski"
    题名 作者 年代 出处 被引量
1Arabidopsis Protein Phosphatase 2C ABI1 Interacts with Type I ACC Synthases and Is Involved in the Regulation of Ozone-Induced Ethylene Biosynthesis显示文摘它的生合成严格地是的在各种各样的生物过程并且因此的一个关键角色由 multiplemechanisms 调整了的乙烯戏。Posttranslational 规定,在控制乙烯生合成枢轴,经由特定的因素的复杂相互影响影响 1-aminocyclopropane1-carboxylate synthase (交流) 蛋白质稳定性。这里,我们证明 Arabidopsis thaliana 蛋白质磷酸酶打 2C, ABI1, abscisic 酸发信号的一个否定管理者,在氧化压力条件下面涉及 ethylenebiosynthesis 的规定。我们发现 ABI1 与 ACS6 和 dephosphorylates 交往它的 C-terminalfragment,压力应答的激活 mitogen 的蛋白质 kinase 的一个目标, MPK6。另外, ABI1 控制 MPK6 也 activitydirectly 并且由这个工具影响 ACS6 phosphorylation 水平。一致地与这,在 ABI1 猛烈紧张(abi1td ) 显著地更高的导致臭氧的乙烯 productionwas 比在野类型的植物。重要地,在 abi1td 异种的导致压力的乙烯生产的增加由一个更高的 ascorbate 氧化还原作用状态被补偿并且提高了抗氧化剂活动。总的来说, thisstudy 的结果提供 ABI1 由影响 ACS6 的活动限制乙烯合成的证据。ABI1 贡献 tostress 显型支撑它在在 abscisic 酸(骆驼毛的织物) 和表明 pathways.Key 词的乙烯之间的相互影响的角色:Agnieszka Ludwikow Agata Ciesla Anna Kasprowicz-Malusk Filip Mitula Malgorzata Tajdel lukasz Gaigarnski Piotr A. Ziolkowski Piotr Kubiak Arleta Malecka Aneta Piechalak Marta Szabat Alicja Gorska Maciej Dabrowskia Izabela Ibragimow Jan Sadowski 2014Molecular Plant2014,7,6:6
2Gene Networks in Plant Ozone Stress Response and Tolerance显示文摘For many plant species ozone stress has become much more severe in the last decade. The accumulating evidence for the significant effects of ozone pollutant on crop and forest yield situate ozone as one of the most important environmental stress factors that limits plant productivity worldwide. Today, transcriptomic approaches seem to give the best coverage of genome level responses. Therefore, microarray serves as an invaluable tool for global gene expression analyses, unravelling new information about gene pathways, in-species and cross-species gene expression comparison, and for the characterization of unknown relationships between genes. In this review we summarize the recent progress in the transcriptomics of ozone to demonstrate the benefits that can be harvested from the application of integrative and systematic analytical approaches to study ozone stress response. We focused our consideration on microarray analyses identifying gene networks responsible for response and tolerance to elevated ozone concentration. From these analyses it is now possible to notice how plant ozone defense responses depend on the interplay between many complex signaling pathways and metabolite signals.Agnieszka Ludwikow Jan Sadowski 2008Journal of Integrative Plant Biology2008,50,10:2
3Electrokinetic and Flotation Investigations of Surface Properties Modification of Magnesite and Serpentinite Using Biosurfactants and Surfactants显示文摘Agnieszka Didyk-Mucha Izabela Polowczyk Zygmunt Sadowski Jan Kudelko 2015Journal of Physical Science and Application2015,5,2:0
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