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| 1 | Iron- and Ferritin-Dependent Reactive Oxygen Species Distribution: Impact on Arabidopsis Root System Architecture显示文摘铁(Fe ) 动态平衡与反应的氧种类(ROS ) 的生产是综合的,并且在根尖端的分发参予根生长的控制。过量 Fe 增加 ferritin 丰富,启用 Fe 的存储,它对导致 Fe 的氧化应力贡献植物的保护。AtFer1 和 AtFer3 是在 Arabidopsis thaliana 根的 meristematic 地区, pericycle 和内皮表示的二 ferritin 基因,并且是在这些区域我们观察到 Fe 染色了点。这染色消失在三倍的 fer1-3-4 ferritin 异种。Fe 过量减少以一样的方法在的主要的根长度野类型并且在 fer1-3-4 变异。相反,侧面的根(LR ) 的调停 Fe 的减少长度和密度在 LR 出现由于一个缺点在 fer1-3-4 植物被提高。我们观察到在过量 Fe, ferritin,和根系统建筑学(RSA ) 之间的这个相互作用被 H 2 O 2/O2 吗?? | Guilhem Reyt Soukaina Boudouf Jossia Boucherez Frédéric Gaymard Jean-Francois Briat | 2015 | Molecular Plant2015,8,3: | 9 |
| 2 | Facilitated Fe Nutrition by Phenolic Compounds Excreted by the Arabidopsis ABCG37/PDR9 Transporter Requires the IRT1/FRO2 High-Affinity Root Fe^2+ Transport System显示文摘Dear Editor, Iron (Fe) is an essential metal nutrient for plant productivity and plant product quality (Briat et al.,2015).Fe exists under two forms,ferrous (Fe2+) or ferric (Fe3+),and is very reactive with oxygen,explaining why Fe plant nutrition is dependent upon both Fe chelation and Fe reduction.Fe availability in the soil is pH dependent,this metal being particularly insoluble in its ferric form in calcareous soils,representing one-third of the world's cultivated soils.Consequently,plants grown on these soils,in particular non-graminaceous plants,often suffer from Fe deficiency,which alters their growth. | Pierre Fourcroy Nicolas Tissot Frederic Gaymard Jean-Francois Briat Christian Dubos | 2016 | Molecular Plant2016,9,3: | 5 |
| 3 | Post-Translational Regulation of AtFER2 Ferritin in Response to Intracellular Iron Trafficking during Fruit Development in Arabidopsis显示文摘Ferritins 是在植物铁动态平衡的主要播放器。令人惊讶地,他们在转基因的植物的 overexpression 仅仅带了到种子铁内容的中等增加,建议为装载的铁和在种子的存储的控制检查点的存在。这个工作报导二个这些检查点的鉴定。首先,在在 Arabidopsis thaliana 的水果开发期间满意的种子金属的测量揭示一类似为 Fe, Mn, Cu,和 Zn 装载动态。控制金属装进种子的步从壳由运输的规定发生到种子。第二,金属装载和 ferritin 丰富在在 vacuolar 铁运输影响的不同基因背景被监视(AtVIT1, AtNRAMP3, AtNRAMP4 ) 或质体铁存储(到 4 的 AtFER1 ) 。揭示的这条途径(1 ) 在种子的 ferritin 累积的一条 translational 以后规定,并且(2 ) 那 ferritin 稳定性取决于在液泡和质体之间的铁分配的平衡。因此,为铁 biofortification 的 ferritin overexpression 策略的成功,在开发国家,将强烈得益于鉴定并且启用高度的 translocation 的机制设计减少铁缺乏贫血症的一条有希望的途径铁总计进种子质体。 | Karl Ravet Brigitte Touraine Sun A. Kim Francoise Cellier Sebastien Thomine Mary Lou Guerinot Jean-Francois Briat Frederic Gaymard | 2009 | Molecular Plant2009,2,5: | 5 |
| 4 | Conformational change and in vitro core-formation modifications induced by site-directed mutagenesis of the specific N-terminus of pea seed ferritin 显示文摘 | Van Wuytswinkel O Briat J F | 1995 | Biochem J1995,305,: | 1 |
| 5 | Plant responses to metal toxicity显示文摘 | Briat L R Lebrun M | 1999 | Comptes Rendus de 1''Academie des Sciences Series Ⅲ: Sciences de la Vie1999,322,1: | 1 |
| 6 | A looped-functional approach for robust stability analysis of linear impulsive systems显示文摘 | Briat C Seuret A | 2012 | Systems & Control Letters2012,61,10: | 1 |
| 7 | Iron induction of ferritin synthesis in soybean cell suspensions显示文摘 | Proudhon D Briat JF Lescure AM | 1989 | Plant Physiol1989,90,2: | 1 |
| 8 | New insights into ferritin synthesis and function highlight a link between iron homeostasis and oxidative stress in plants显示文摘 | Briat J F Ravet K Amaud N | 2009 | Annals of Botany2009,112,: | 1 |
| 9 | New insights into ferritin synthesis and function highlight a link between iron homeostasis and oxidative stress in plants显示文摘 | BRIAT J F RAVET K ARNAUD N | 2010 | Annals of Botany2010,105,5: | 1 |
| 10 | Evidence for conservation of ferritin sequences among plants and animals and for a transit peptide in soybean显示文摘 | Ragland M Briat JF Gagnon J er al | 1990 | J Biol Chem1990,265,18: | 1 |
| 11 | Evidence for conservation of ferritin sequenes among plants and animals and for a transit peptide in soybean显示文摘 | Ragland M Briat J F Gagnon J Theil E C | 1990 | J Biol Chem1990,265,18: | 1 |
| 12 | Iron transport and signaling in plants显示文摘 | Curie C Briat J F | 2003 | Annual review of plant biology2003,54,: | 1 |
| 13 | Ferritin accumulation and degradation in different organs of pea (Pisumsativum) during development显示文摘 | Lobreaux S Briat JF | 1991 | Biochemical Journal1991,274,: | 1 |
| 14 | Remaining useful life prediction of lithium batteries in calendar ageing for automotive applications显示文摘 | Eddahech A Briat O Woirgard E | 2012 | Microelectronics Reliability2012,52,1: | 1 |
| 15 | Characterization of an iron-dependent regulatory sequence involved in the transciptional control of AtFerl and ZmFerl plant ferritin genes by iron显示文摘 | PETIT J M VAN WUYTSWINKEL O BRIAT J F | 2001 | Biol Chem2001,276,8: | 1 |
| 16 | Induction of ferritin synthesis in maize leaves by an iron-mediated oxidative stress显示文摘 | LOBREAUX S THOIRON S BRIAT J F | 1995 | Plant J1995,8,: | 1 |
| 17 | Power cycling tests for accelerated ageing of ultracapacitors 显示文摘 | Briat O LajnefW Vinassa J M | 2006 | Microelectronics Reliability2006,46,911: | 1 |
| 18 | TheFRD3 citrate effluxer promotes iron nutrition betweensymplastically disconnected tissues throughout Arabidopsisdevelopment显示文摘 | Roschzttardtz H Séguéla-Arnaud M Briat J | 2011 | The Plant Cell Online2011,23,27: | 1 |
| 19 | Conformational change and in vitro core-formation modifications induced by site-directed mutagenesis of the specific N-terminus of pea seed ferritin显示文摘 | Van Wuytswinkel O Briat J F | 1995 | Biochem J1995,305,: | 1 |
| 20 | Principle, design and experimental validation of a flywheel-battery hybrid source for heavy-duty electric vehicles显示文摘 | Briat 0 Vinassa J M Lajnef W | 2007 | Electric Power Applications2007,1,5: | 1 |