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| 1 | Abiotic Stress Tolerance: From Gene Discovery in Model Organisms to Crop Improvement显示文摘生产、持续的农业与象新鲜的水那样的宝贵资源的更少的输入在非最优的环境要求成长植物。为更好的理解和不能生活的压力忍耐的快速的改进,在遗传上易控制的模型有机体连接生理、生物化学的工作到分子的研究是重要的。与为应力公差基因和他们的适当等位基因的发现的几种技术的使用,改善的转基因的途径显著地在庄稼强调公差有一个极大地扩展的 germplasm 底和愿望的平行繁殖原则最后成功。 | Ray Bressan Hans Bohnert Jian-Kang Zhu | 2009 | Molecular Plant2009,2,1: | 12 |
| 2 | Sodium Stress in the Halophyte Thellungiella halophila and Transcriptional Changes in a thsos1-RNA Interference Line显示文摘The plasma membrane Na^+/H^+-antiporter salt overly sensitive1(SOS1)from the halophytic Arabidopsis-relative Thel-lungiella halophila(ThSOS1)shows conserved sequence and domain structure with the orthologous genes fromArabidopsis thaliana and other plants.When expression of ThSOS1 was reduced by RNA interference(RNAi),pronouncedcharacteristics of salt-sensitivity were observed.We were interested in monitoring altered transcriptional responsesbetween Thellungiella wild type and thsosl-4,a representative RNAi line with particular emphasis on root responses to saltstress at 350 mmol/L NaCl,a concentration that is only moderately stressful for mature wild type plants.Transcript profilingrevealed several functional categories of genes that were differently affected in wild-type and RNAi plants.Down-regulationof SOS1 resulted in different gene expression even in the absence of stress.The pattern of gene induction in the RNAi plantunder salt stress was similar to that of glycophytic Arabidopsis rather than that of wild type Thellungiella.The RNAi plantsfailed to down-regulate functions that are normally reduced in wild type Thellungiella upon stress and did not up-regulatefunctions that characterize the Thellungiella salt stress response.Metabolite changes observed in wild type Thellungiellaafter salt stress were less pronounced or absent in RNAi plants.Transcript and metabolite behavior suggested SOS1functions including but also extending its established function as a sodium transporter.The down-regulation of ThSOS1converted the halophyte Thellungiella into a salt-sensitive plant. | Dong-Ha Oh Qingqiu Gong Alex Ulanov Quan Zhang Youzhi Li Wenying Ma Dae-Jin Yun Ray A. Bressan Hans J. Bohnert | 2007 | Journal of Integrative Plant Biology2007,49,10: | 9 |
| 3 | PLANT CELLULAR AND MOLECULAR RESPONSES TO HIGH SALINITY显示文摘 | Paul M. Hasegawa Ray A. Bressan Jian-Kang Zhu Hans J. Bohnert | 2000 | Annual Review of Plant Physiology and Plant Molecular Biology2000,,: | 2 |
| 4 | Bressan 2005 Abiotic Stress and Plant Genome Evolution显示文摘 | HANS J BOHNERT RAY A | 2005 | Search for New Models Plant Physiology2005,138,5: | 1 |
| 5 | Adaptations to environmental stresses显示文摘 | Hans J Bohnert Nelson D E Jensen R G | 1995 | Plant cell1995,7,: | 1 |
| 6 | Loss of Halophytism by Interference with SOS1 Expression1[W][OA]显示文摘 | Oh Dong-Ha Leidi Eduardo Zhang Quan Hwang Sung-Min Li Youzhi Quintero Francisco J Jiang Xingyu D’Urzo Matilde Paino Lee Sang Yeol Zhao Yanxiu Bahk Jeong Dong Bressan Ray A Yun Dae-Jin Pardo José M Bohnert Hans J | 2009 | Plant Physiology2009,,1: | 1 |
| 7 | AtGGM2014, an Arabidopsis gene co-expression network for functional studies显示文摘Gene co-expression networks provide an important tool for systems biology studies. Using microarray data from the Array Express database, we constructed an Arabidopsis gene co-expression network, termed At GGM2014, based on the graphical Gaussian model, which contains 102,644 co-expression gene pairs among 18,068 genes. The network was grouped into 622 gene co-expression modules. These modules function in diverse house-keeping, cell cycle, development, hormone response, metabolism, and stress response pathways. We developed a tool to facilitate easy visualization of the expression patterns of these modules either in a tissue context or their regulation under different treatment conditions. The results indicate that at least six modules with tissue-specific expression pattern failed to record modular regulation under various stress conditions. This discrepancy could be best explained by the fact that experiments to study plant stress responses focused mainly on leaves and less on roots, and thus failed to recover specific regulation pattern in other tissues. Overall, the modular structures revealed by our network provide extensive information to generate testable hypotheses about diverse plant signaling pathways. At GGM2014 offers a constructive tool for plant systems biology studies. | MA ShiSong BOHNERT Hans J DINESH-KUMAR Savithramma P | 2015 | Science China(Life Sciences)2015,58,3: | 1 |
| 8 | Light-induced expression of ipt from Agrobacterium tumefaciens results in cytokinin accumulation and osmotic stress symptoms in transgenic tobacco显示文摘 | John C. Thomas Ann C. Smigocki Hans J. Bohnert | 1995 | Plant Molecular Biology1995,,2: | 1 |
| 9 | Novel regulation of aquaporins during osmotic stress显示文摘 | Rosario Vera-Estrella Bronwyn J Barkla Hans J Bohnert | 2004 | Plant Physiology2004,135,: | 1 |
| 10 | Strategies for engineering water-stress tolerance in plants显示文摘 | Hans J. Bohnert Richard G. Jensen | 1996 | Trends in Biotechnology1996,,3: | 1 |
| 11 | Plant stress adaptations — making metabolism move显示文摘 | Hans J. Bohnert Elena Sheveleva | 1998 | Current Opinion in Plant Biology1998,,3: | 1 |
| 12 | Light-induced expression of ipt from Agrobacterium tumefaciens results in cytokinin accumulation and osmotic stress symptoms in transgenic tobacco显示文摘 | John C. Thomas Ann C. Smigocki Hans J. Bohnert | 1995 | Plant Molecular Biology1995,,2: | 1 |
| 13 | Introduction and expression of an insect proteinase inhibitor in alfalfa Medicago sativa L.显示文摘 | John C. Thomas Catherine C. Wasmann Craig Echt Robert L. Dunn Hans J. Bohnert Thomas J. McCoy | 1994 | Plant Cell Reports1994,,1: | 1 |
| 14 | The Ice Plant Cometh: Lessons in Abiotic Stress Tolerance显示文摘 | Hans J. Bohnert John C. Cushman | 2000 | Journal of Plant Growth Regulation2000,,3: | 1 |
| 15 | Formation of the tight-binding inhibitor, 3-ketoarabinitol-1,5-bisphosphate by ribulose-1,5-bisphosphate carboxylase/oxygenase is O2-dependent显示文摘 | Genhai Zhu Hans J. Bohnert Richard G. Jensen Günter F. Wildner | 1998 | Photosynthesis Research1998,,1: | 1 |
| 16 | Strategies for engineering water-stress tolerance in plants显示文摘 | Hans J. Bohnert Richard G. Jensen | 1996 | Trends in Biotechnology1996,,3: | 1 |
| 17 | The six genes of the Rubisco small subunit multigene family from Mesembryanthemum crystallinum, a facultative CAM plant显示文摘 | E. Jay DeRocher Francoise Quigley Regis Mache Hans J. Bohnert | 1993 | MGG Molecular & General Genetics1993,,3: | 1 |
| 18 | Bressan 2005 Abiotic Stress and Plant Genome Evolution显示文摘 | ANNA AMTMANN HANS J BOHNERT RAY A | 2005 | Search for New Models Plant Physiology2005,138,5: | 1 |
| 19 | Plant stress adaptations — making metabolism move显示文摘 | Hans J. Bohnert Elena Sheveleva | 1998 | Current Opinion in Plant Biology1998,,3: | 1 |
| 20 | Monitoring large-scale changes in transcript abundance in drought- and salt-stressed barley显示文摘 | Z. Neslihan Ozturk Valentina Talamé Michael Deyholos Christine B. Michalowski David W. Galbraith Nermin Gozukirmizi Roberto Tuberosa Hans J. Bohnert | 2002 | Plant Molecular Biology (-)2002,,5: | 1 |