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Legume Biology
Citations 1-99 of 99 total displayed.
BIOCHEMICAL PROCESSES AND MACROMOLECULAR STRUCTURES
BIOINFORMATICS-PLANT DATABASES
BREAKTHROUGH TECHNOLOGIES
CELL BIOLOGY AND SIGNAL TRANSDUCTION
DEVELOPMENT AND HORMONE ACTION
ENVIRONMENTAL STRESS AND ADAPTATION TO STRESS
GENETICS, GENOMICS, AND MOLECULAR EVOLUTION
GENOME ANALYSIS
MEETING REPORTS
ON THE INSIDE
PLANTS INTERACTING WITH OTHER ORGANISMS
RESEARCH ARTICLES
SYSTEMS BIOLOGY, MOLECULAR BIOLOGY, AND GENE REGULATION
UPDATE ON COMPARATIVE GENOMICS OF LEGUMES
UPDATE ON LEGUME SYMBIOSES
UPDATE ON NEMATODES: SOPHISTICATED PARASITES OF LEGUMES
UPDATE ON PROTEIN DEGRADATION CONTROLS NODULE DEVELOPMENT
UPDATES
BIOCHEMICAL PROCESSES AND MACROMOLECULAR STRUCTURES
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The β-Glucosidases Responsible for Bioactivation of Hydroxynitrile Glucosides in Lotus japonicus
- Anne Vinther Morant, Nanna Bjarnholt, Mads Emil Kragh, Christian Hauge Kjærgaard, Kirsten Jørgensen, Suzanne Michelle Paquette, Markus Piotrowski, Anne Imberty, Carl Erik Olsen, Birger Lindberg Møller, and Søren Bak
Plant Physiology 2008; 147: 1072-1091.
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Coimmunopurification of Phosphorylated Bacterial- and Plant-Type Phosphoenolpyruvate Carboxylases with the Plastidial Pyruvate Dehydrogenase Complex from Developing Castor Oil Seeds
- R. Glen Uhrig, Brendan O'Leary, H. Elizabeth Spang, Justin A. MacDonald, Yi-Min She, and William C. Plaxton
Plant Physiology 2008; 146: 1346-1357.
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The Structure of Chloroplast DNA Molecules and the Effects of Light on the Amount of Chloroplast DNA during Development in Medicago truncatula
- Jeffrey M. Shaver, Delene J. Oldenburg, and Arnold J. Bendich
Plant Physiology 2008; 146: 1064-1074.
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Identification, Biochemical Characterization, and Subcellular Localization of Allantoate Amidohydrolases from Arabidopsis and Soybean
- Andrea K. Werner, Imogen A. Sparkes, Tina Romeis, and Claus-Peter Witte
Plant Physiology 2008; 146: 418-430.
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Quantitative Conversion of Phytate to Inorganic Phosphorus in Soybean Seeds Expressing a Bacterial Phytase
- Kristin D. Bilyeu, Peiyu Zeng, Patricia Coello, Zhanyuan J. Zhang, Hari B. Krishnan, April Bailey, Paul R. Beuselinck, and Joe C. Polacco
Plant Physiology 2008; 146: 468-477.
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Metabolomics Reveals Novel Pathways and Differential Mechanistic and Elicitor-Specific Responses in Phenylpropanoid and Isoflavonoid Biosynthesis in Medicago truncatula Cell Cultures
- Mohamed A. Farag, David V. Huhman, Richard A. Dixon, and Lloyd W. Sumner
Plant Physiology 2008; 146: 387-402.
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Early Steps in Proanthocyanidin Biosynthesis in the Model Legume Medicago truncatula
- Yongzhen Pang, Gregory J. Peel, Elane Wright, Zengyu Wang, and Richard A. Dixon
Plant Physiology 2007; 145: 601-615.
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Thioredoxin-Linked Proteins Are Reduced during Germination of Medicago truncatula Seeds
- Fatima Alkhalfioui, Michelle Renard, William H. Vensel, Joshua Wong, Charlene K. Tanaka, William J. Hurkman, Bob B. Buchanan, and Françoise Montrichard
Plant Physiology 2007; 144: 1559-1579.
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BIOINFORMATICS-PLANT DATABASES
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Databases and Information Integration for the Medicago truncatula Genome and Transcriptome
- Steven B. Cannon, John A. Crow, Michael L. Heuer, Xiaohong Wang, Ethalinda K.S. Cannon, Christopher Dwan, Anne-Francoise Lamblin, Jayprakash Vasdewani, Joann Mudge, Andrew Cook, John Gish, Foo Cheung, Steve Kenton, Timothy M. Kunau, Douglas Brown, Gregory D. May, Dongjin Kim, Douglas R. Cook, Bruce A. Roe, Chris D. Town, Nevin D. Young, and Ernest F. Retzel
Plant Physiology 2005; 138: 38-46.
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BREAKTHROUGH TECHNOLOGIES
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A Novel Image-Analysis Technique for Kinematic Study of Growth and Curvature
- Paramita Basu, Anupam Pal, Jonathan P. Lynch, and Kathleen M. Brown
Plant Physiology 2007; 145: 305-316.
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CELL BIOLOGY AND SIGNAL TRANSDUCTION
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NH4+ Currents across the Peribacteroid Membrane of Soybean. Macroscopic and Microscopic Properties, Inhibition by Mg2+, and Temperature Dependence Indicate a SubpicoSiemens Channel Finely Regulated by Divalent Cations
- Gerhard Obermeyer and Stephen D. Tyerman
Plant Physiology 2005; 139: 1015-1029.
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DEVELOPMENT AND HORMONE ACTION
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The Pea DELLA Proteins LA and CRY Are Important Regulators of Gibberellin Synthesis and Root Growth
- Diana E. Weston, Robert C. Elliott, Diane R. Lester, Catherine Rameau, James B. Reid, Ian C. Murfet, and John J. Ross
Plant Physiology 2008; 147: 199-205.
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The Transcription Factor MtSERF1 of the ERF Subfamily Identified by Transcriptional Profiling Is Required for Somatic Embryogenesis Induced by Auxin Plus Cytokinin in Medicago truncatula
- Feky R. Mantiri, Sergey Kurdyukov, Dasharath P. Lohar, Natalya Sharopova, Nasir A. Saeed, Xin-Ding Wang, Kathryn A. VandenBosch, and Ray J. Rose
Plant Physiology 2008; 146: 1622-1636.
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Proteomic Analysis of Somatic Embryogenesis in Medicago truncatula. Explant Cultures Grown under 6-Benzylaminopurine and 1-Naphthaleneacetic Acid Treatments
- Nijat Imin, Mahira Nizamidin, Daniel Daniher, Kim E. Nolan, Ray J. Rose, and Barry G. Rolfe
Plant Physiology 2005; 137: 1250-1260.
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Characterization of the Lotus japonicus Symbiotic Mutant lot1 That Shows a Reduced Nodule Number and Distorted Trichomes
- Yasuhiro Ooki, Mari Banba, Koji Yano, Jumpei Maruya, Shusei Sato, Satoshi Tabata, Kazuhiko Saeki, Makoto Hayashi, Masayoshi Kawaguchi, Katsura Izui, and Shingo Hata
Plant Physiology 2005; 137: 1261-1271.
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Isolation of mtpim Proves Tnt1 a Useful Reverse Genetics Tool in Medicago truncatula and Uncovers New Aspects of AP1-Like Functions in Legumes
- Reyes Benlloch, Isabelle d'Erfurth, Cristina Ferrandiz, Viviane Cosson, José Pío Beltrán, Luis Antonio Cañas, Adam Kondorosi, Francisco Madueño, and Pascal Ratet
Plant Physiology 2006; 142: 972-983.
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ENVIRONMENTAL STRESS AND ADAPTATION TO STRESS
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Comparative Genomic Sequence and Expression Analyses of Medicago truncatula and Alfalfa Subspecies falcata COLD-ACCLIMATION-SPECIFIC Genes
- Joyce C. Pennycooke, Hongmei Cheng, and Eric J. Stockinger
Plant Physiology 2008; 146: 1242-1254.
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Reduced Carbon Availability to Bacteroids and Elevated Ureides in Nodules, But Not in Shoots, Are Involved in the Nitrogen Fixation Response to Early Drought in Soybean
- Rubén Ladrera, Daniel Marino, Estíbaliz Larrainzar, Esther M. González, and Cesar Arrese-Igor
Plant Physiology 2007; 145: 539-546.
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The Diphenylether Herbicide Lactofen Induces Cell Death and Expression of Defense-Related Genes in Soybean
- Madge Y. Graham
Plant Physiology 2005; 139: 1784-1794.
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A Higher Plant
8 Sphingolipid Desaturase with a Preference for (Z)-Isomer Formation Confers Aluminum Tolerance to Yeast and Plants
- Peter R. Ryan, Qing Liu, Petra Sperling, Bei Dong, Stefan Franke, and Emmanuel Delhaize
Plant Physiology 2007; 144: 1968-1977.
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GENETICS, GENOMICS, AND MOLECULAR EVOLUTION
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Control of Compound Leaf Development by FLORICAULA/LEAFY Ortholog SINGLE LEAFLET1 in Medicago truncatula
- Hongliang Wang, Jianghua Chen, Jiangqi Wen, Million Tadege, Guangming Li, Yu Liu, Kirankumar S. Mysore, Pascal Ratet, and Rujin Chen
Plant Physiology 2008; 146: 1759-1772.
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Overlaps in the Transcriptional Profiles of Medicago truncatula Roots Inoculated with Two Different Glomus Fungi Provide Insights into the Genetic Program Activated during Arbuscular Mycorrhiza
- Natalija Hohnjec, Martin F. Vieweg, Alfred Pühler, Anke Becker, and Helge Küster
Plant Physiology 2005; 137: 1283-1301.
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A Segment of the Apospory-Specific Genomic Region Is Highly Microsyntenic Not Only between the Apomicts Pennisetum squamulatum and Buffelgrass, But Also with a Rice Chromosome 11 Centromeric-Proximal Genomic Region
- Gustavo Gualtieri, Joann A. Conner, Daryl T. Morishige, L. David Moore, John E. Mullet, and Peggy Ozias-Akins
Plant Physiology 2006; 140: 963-971.
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GENOME ANALYSIS
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Identification and Characterization of Nucleotide-Binding Site-Leucine-Rich Repeat Genes in the Model Plant Medicago truncatula
- Carine Ameline-Torregrosa, Bing-Bing Wang, Majesta S. O'Bleness, Shweta Deshpande, Hongyan Zhu, Bruce Roe, Nevin D. Young, and Steven B. Cannon
Plant Physiology 2008; 146: 5-21.
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Sequencing and Analysis of Common Bean ESTs. Building a Foundation for Functional Genomics
- Mario Ramírez, Michelle A. Graham, Lourdes Blanco-López, Sonia Silvente, Arturo Medrano-Soto, Matthew W. Blair, Georgina Hernández, Carroll P. Vance, and Miguel Lara
Plant Physiology 2005; 137: 1211-1227.
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Genome Organization of More Than 300 Defensin-Like Genes in Arabidopsis
- Kevin A.T. Silverstein, Michelle A. Graham, Timothy D. Paape, and Kathryn A. VandenBosch
Plant Physiology 2005; 138: 600-610.
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Molecular Evolution of Lysin Motif-Type Receptor-Like Kinases in Plants
- Xue-Cheng Zhang, Xiaolei Wu, Seth Findley, Jinrong Wan, Marc Libault, Henry T. Nguyen, Steven B. Cannon, and Gary Stacey
Plant Physiology 2007; 144: 623-636.
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MEETING REPORTS
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Legumes as a Model Plant Family. Genomics for Food and Feed Report of the Cross-Legume Advances through Genomics Conference
- Paul Gepts, William D. Beavis, E. Charles Brummer, Randy C. Shoemaker, H. Thomas Stalker, Norman F. Weeden, and Nevin D. Young
Plant Physiology 2005; 137: 1228-1235.
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ON THE INSIDE
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On the Inside
- Peter V. Minorsky
Plant Physiology 2005; 139: 1097-1098.
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On the Inside
- Peter V. Minorsky
Plant Physiology 2005; 137: 1171-1172.
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On the Inside
- Peter V. Minorsky
Plant Physiology 2006; 141: 1-2.
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PLANTS INTERACTING WITH OTHER ORGANISMS
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Ascorbate and Homoglutathione Metabolism in Common Bean Nodules under Stress Conditions and during Natural Senescence
- Jorge Loscos, Manuel A. Matamoros, and Manuel Becana
Plant Physiology 2008; 146: 1282-1292.
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Antisense Repression of the Medicago truncatula Nodule-Enhanced Sucrose Synthase Leads to a Handicapped Nitrogen Fixation Mirrored by Specific Alterations in the Symbiotic Transcriptome and Metabolome
- Markus C. Baier, Aiko Barsch, Helge Küster, and Natalija Hohnjec
Plant Physiology 2007; 145: 1600-1618.
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Medicago truncatula as a Model for Nonhost Resistance in Legume-Parasitic Plant Interactions
- M. Dolores Lozano-Baena, Elena Prats, M. Teresa Moreno, Diego Rubiales, and Alejandro Pérez-de-Luque
Plant Physiology 2007; 145: 437-449.
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RNA Interference of Soybean Isoflavone Synthase Genes Leads to Silencing in Tissues Distal to the Transformation Site and to Enhanced Susceptibility to Phytophthora sojae
- Senthil Subramanian, Madge Y. Graham, Oliver Yu, and Terrence L. Graham
Plant Physiology 2005; 137: 1345-1353.
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Transgenic Expression of the Soybean Apyrase in Lotus japonicus Enhances Nodulation
- Crystal B. McAlvin and Gary Stacey
Plant Physiology 2005; 137: 1456-1462.
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Root Border-Like Cells of Arabidopsis. Microscopical Characterization and Role in the Interaction with Rhizobacteria
- Maïté Vicré, Catherine Santaella, Sandrine Blanchet, Aurélien Gateau, and Azeddine Driouich
Plant Physiology 2005; 138: 998-1008.
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Pseudomonas fluorescens and Glomus mosseae Trigger DMI3-Dependent Activation of Genes Related to a Signal Transduction Pathway in Roots of Medicago truncatula
- Lisa Sanchez, Stéphanie Weidmann, Christine Arnould, Anne Rose Bernard, Silvio Gianinazzi, and Vivienne Gianinazzi-Pearson
Plant Physiology 2005; 139: 1065-1077.
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Tissue-Specific Localization of Pea Root Infection by Nectria haematococca. Mechanisms and Consequences
- Uvini Gunawardena, Marianela Rodriguez, David Straney, John T. Romeo, Hans D. VanEtten, and Martha C. Hawes
Plant Physiology 2005; 137: 1363-1374.
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Suppression of Allene Oxide Cyclase in Hairy Roots of Medicago truncatula Reduces Jasmonate Levels and the Degree of Mycorrhization with Glomus intraradices
- Stanislav Isayenkov, Cornelia Mrosk, Irene Stenzel, Dieter Strack, and Bettina Hause
Plant Physiology 2005; 139: 1401-1410.
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Organization and Metabolism of Plastids and Mitochondria in Arbuscular Mycorrhizal Roots of Medicago truncatula
- Swanhild Lohse, Willibald Schliemann, Christian Ammer, Joachim Kopka, Dieter Strack, and Thomas Fester
Plant Physiology 2005; 139: 329-340.
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Nodulation Phenotypes of Gibberellin and Brassinosteroid Mutants of Pea
- Brett J. Ferguson, John J. Ross, and James B. Reid
Plant Physiology 2005; 138: 2396-2405.
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Gibberellins Are Involved in Nodulation of Sesbania rostrata
- Sam Lievens, Sofie Goormachtig, Jeroen Den Herder, Ward Capoen, René Mathis, Peter Hedden, and Marcelle Holsters
Plant Physiology 2005; 139: 1366-1379.
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Lotus japonicus Metabolic Profiling. Development of Gas Chromatography-Mass Spectrometry Resources for the Study of Plant-Microbe Interactions
- Guilhem G. Desbrosses, Joachim Kopka, and Michael K. Udvardi
Plant Physiology 2005; 137: 1302-1318.
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GmN70 and LjN70. Anion Transporters of the Symbiosome Membrane of Nodules with a Transport Preference for Nitrate
- Eric D. Vincill, Krzysztof Szczyglowski, and Daniel M. Roberts
Plant Physiology 2005; 137: 1435-1444.
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Induction of Thioredoxin Is Required for Nodule Development to Reduce Reactive Oxygen Species Levels in Soybean Roots
- Mi-Young Lee, Ki-Hye Shin, Yun-Kyoung Kim, Ji-Yeon Suh, Young-Yun Gu, Mi-Ran Kim, Yoon-Sun Hur, Ora Son, Jin-Sun Kim, Eunsook Song, Myeong-Sok Lee, Kyoung Hee Nam, Keum Hee Hwang, Mi-Kyung Sung, Ho-Jung Kim, Jong-Yoon Chun, Miey Park, Tae-In Ahn, Choo Bong Hong, Suk-Ha Lee, Hong Jae Park, Jong-Sug Park, Desh Pal S. Verma, and Choong-Ill Cheon
Plant Physiology 2005; 139: 1881-1889.
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Nod Factors Induce Nod Factor Cleaving Enzymes in Pea Roots. Genetic and Pharmacological Approaches Indicate Different Activation Mechanisms
- Alexandra O. Ovtsyna, Elena A. Dolgikh, Alexandra S. Kilanova, Viktor E. Tsyganov, Alexey Y. Borisov, Igor A. Tikhonovich, and Christian Staehelin
Plant Physiology 2005; 139: 1051-1064.
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Invasion of Lotus japonicus root hairless 1 by Mesorhizobium loti Involves the Nodulation Factor-Dependent Induction of Root Hairs
- Bogumil Karas, Jeremy Murray, Monika Gorzelak, Alexandra Smith, Shusei Sato, Satoshi Tabata, and Krzysztof Szczyglowski
Plant Physiology 2005; 137: 1331-1344.
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The Mycorrhizal Fungus Gigaspora margarita Possesses a CuZn Superoxide Dismutase That Is Up-Regulated during Symbiosis with Legume Hosts
- Luisa Lanfranco, Mara Novero, and Paola Bonfante
Plant Physiology 2005; 137: 1319-1330.
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The Ethylene-Insensitive sickle Mutant of Medicago truncatula Shows Altered Auxin Transport Regulation during Nodulation
- Joko Prayitno, Barry G. Rolfe, and Ulrike Mathesius
Plant Physiology 2006; 142: 168-180.
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Architecture of Infection Thread Networks in Developing Root Nodules Induced by the Symbiotic Bacterium Sinorhizobium meliloti on Medicago truncatula
- Hannah Monahan-Giovanelli, Catalina Arango Pinedo, and Daniel J. Gage
Plant Physiology 2006; 140: 661-670.
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Defective Long-Distance Auxin Transport Regulation in the Medicago truncatula super numeric nodules Mutant
- Giel E. van Noorden, John J. Ross, James B. Reid, Barry G. Rolfe, and Ulrike Mathesius
Plant Physiology 2006; 140: 1494-1506.
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Transcript Analysis of Early Nodulation Events in Medicago truncatula
- Dasharath Prasad Lohar, Natalya Sharopova, Gabriella Endre, Silvia Peñuela, Deborah Samac, Christopher Town, Kevin A.T. Silverstein, and Kathryn A. VandenBosch
Plant Physiology 2006; 140: 221-234.
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Effects of Endogenous Salicylic Acid on Nodulation in the Model Legumes Lotus japonicus and Medicago truncatula
- Gary Stacey, Crystal Bickley McAlvin, Sung-Yong Kim, José Olivares, and María José Soto
Plant Physiology 2006; 141: 1473-1481.
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Nitrogen Fixation Mutants of Medicago truncatula Fail to Support Plant and Bacterial Symbiotic Gene Expression
- Colby G. Starker, Adriana L. Parra-Colmenares, Lucinda Smith, Raka M. Mitra, and Sharon R. Long
Plant Physiology 2006; 140: 671-680.
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The DMI1 and DMI2 Early Symbiotic Genes of Medicago truncatula Are Required for a High-Affinity Nodulation Factor-Binding Site Associated to a Particulate Fraction of Roots
- Bridget V. Hogg, Julie V. Cullimore, Raoul Ranjeva, and Jean-Jacques Bono
Plant Physiology 2006; 140: 365-373.
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Biosynthesis of Ascorbic Acid in Legume Root Nodules
- Manuel A. Matamoros, Jorge Loscos, Maria J. Coronado, Javier Ramos, Shusei Sato, Pilar S. Testillano, Satoshi Tabata, and Manuel Becana
Plant Physiology 2006; 141: 1068-1077.
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Lotus japonicus Nodulation Requires Two GRAS Domain Regulators, One of Which Is Functionally Conserved in a Non-Legume
- Anne B. Heckmann, Fabien Lombardo, Hiroki Miwa, Jillian A. Perry, Sue Bunnewell, Martin Parniske, Trevor L. Wang, and J. Allan Downie
Plant Physiology 2006; 142: 1739-1750.
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Recruitment of Novel Calcium-Binding Proteins for Root Nodule Symbiosis in Medicago truncatula
- Junqi Liu, Susan S. Miller, Michelle Graham, Bruna Bucciarelli, Christina M. Catalano, D. Janine Sherrier, Deborah A. Samac, Sergey Ivashuta, Maria Fedorova, Peter Matsumoto, J. Stephen Gantt, and Carroll P. Vance
Plant Physiology 2006; 141: 167-177.
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Aging in Legume Symbiosis. A Molecular View on Nodule Senescence in Medicago truncatula
- Willem Van de Velde, Juan Carlos Pérez Guerra, Annick De Keyser, Riet De Rycke, Stéphane Rombauts, Nicolas Maunoury, Peter Mergaert, Eva Kondorosi, Marcelle Holsters, and Sofie Goormachtig
Plant Physiology 2006; 141: 711-720.
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Medicago LYK3, an Entry Receptor in Rhizobial Nodulation Factor Signaling
- Patrick Smit, Erik Limpens, Rene Geurts, Elena Fedorova, Elena Dolgikh, Clare Gough, and Ton Bisseling
Plant Physiology 2007; 145: 183-191.
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The Medicago truncatula DMI1 Protein Modulates Cytosolic Calcium Signaling
- Edgar Peiter, Jongho Sun, Anne B. Heckmann, Muthusubramanian Venkateshwaran, Brendan K. Riely, Marisa S. Otegui, Anne Edwards, Glenn Freshour, Michael G. Hahn, Douglas R. Cook, Dale Sanders, Giles E.D. Oldroyd, J. Allan Downie, and Jean-Michel Ané
Plant Physiology 2007; 145: 192-203.
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Involvement of a Soybean ATP-Binding Cassette-Type Transporter in the Secretion of Genistein, a Signal Flavonoid in Legume-Rhizobium Symbiosis
- Akifumi Sugiyama, Nobukazu Shitan, and Kazufumi Yazaki
Plant Physiology 2007; 144: 2000-2008.
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Transcriptome Analysis of Arbuscular Mycorrhizal Roots during Development of the Prepenetration Apparatus
- Valeria Siciliano, Andrea Genre, Raffaella Balestrini, Gilda Cappellazzo, Pierre J.G.M. deWit, and Paola Bonfante
Plant Physiology 2007; 144: 1455-1466.
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Medicago truncatula Root Nodule Proteome Analysis Reveals Differential Plant and Bacteroid Responses to Drought Stress
- Estíbaliz Larrainzar, Stefanie Wienkoop, Wolfram Weckwerth, Rubén Ladrera, Cesar Arrese-Igor, and Esther M. González
Plant Physiology 2007; 144: 1495-1507.
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RESEARCH ARTICLES
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Characterization of Pea Aphid Resistance in Medicago truncatula
- Ling-Ling Gao, John P. Klingler, Jonathan P. Anderson, Owain R. Edwards, and Karam B. Singh
Plant Physiology 2008; 146: 996-1009.
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RNAi Silencing of Genes for Elicitation or Biosynthesis of 5-Deoxyisoflavonoids Suppresses Race-Specific Resistance and Hypersensitive Cell Death in Phytophthora sojae Infected Tissues
- Terrence L. Graham, Madge Y. Graham, Senthil Subramanian, and Oliver Yu
Plant Physiology 2007; 144: 728-740.
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The Liverwort Marchantia polymorpha Expresses Orthologs of the Fungal Agaricus bisporus Agglutinin Family
- Willy J. Peumans, Elke Fouquaert, Alain Jauneau, Pierre Rougé, Nausicaä Lannoo, Hiroki Hamada, Richard Alvarez, Bart Devreese, and Els J.M. Van Damme
Plant Physiology 2007; 144: 637-647.
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Pea LATE BLOOMER1 Is a GIGANTEA Ortholog with Roles in Photoperiodic Flowering, Deetiolation, and Transcriptional Regulation of Circadian Clock Gene Homologs
- Valérie Hecht, Claire L. Knowles, Jacqueline K. Vander Schoor, Lim Chee Liew, Sarah E. Jones, Misty J.M. Lambert, and James L. Weller
Plant Physiology 2007; 144: 648-661.
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An IRE-Like AGC Kinase Gene, MtIRE, Has Unique Expression in the Invasion Zone of Developing Root Nodules in Medicago truncatula
- Catalina I. Pislariu and Rebecca Dickstein
Plant Physiology 2007; 144: 682-694.
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A Novel Family of Lectins Evolutionarily Related to Class V Chitinases: An Example of Neofunctionalization in Legumes
- Els J.M. Van Damme, Raphaël Culerrier, Annick Barre, Richard Alvarez, Pierre Rougé, and Willy J. Peumans
Plant Physiology 2007; 144: 662-672.
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The Maize Zmsmu2 Gene Encodes a Putative RNA-Splicing Factor That Affects Protein Synthesis and RNA Processing during Endosperm Development
- Taijoon Chung, Cheol Soo Kim, Hong N. Nguyen, Robert B. Meeley, and Brian A. Larkins
Plant Physiology 2007; 144: 821-835.
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TILLING Mutants of Lotus japonicus Reveal That Nitrogen Assimilation and Fixation Can Occur in the Absence of Nodule-Enhanced Sucrose Synthase
- Irmtraud Horst, Tracey Welham, Simon Kelly, Takakazu Kaneko, Shusei Sato, Satoshi Tabata, Martin Parniske, and Trevor L. Wang
Plant Physiology 2007; 144: 806-820.
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Cowpea Chloroplastic ATP Synthase Is the Source of Multiple Plant Defense Elicitors during Insect Herbivory
- Eric A. Schmelz, Sherry LeClere, Mark J. Carroll, Hans T. Alborn, and Peter E.A. Teal
Plant Physiology 2007; 144: 793-805.
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The MtMMPL1 Early Nodulin Is a Novel Member of the Matrix Metalloendoproteinase Family with a Role in Medicago truncatula Infection by Sinorhizobium meliloti
- Jean-Philippe Combier, Tatiana Vernié, Françoise de Billy, Fikri El Yahyaoui, René Mathis, and Pascal Gamas
Plant Physiology 2007; 144: 703-716.
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A Diffusible Signal from Arbuscular Mycorrhizal Fungi Elicits a Transient Cytosolic Calcium Elevation in Host Plant Cells
- Lorella Navazio, Roberto Moscatiello, Andrea Genre, Mara Novero, Barbara Baldan, Paola Bonfante, and Paola Mariani
Plant Physiology 2007; 144: 673-681.
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Mastoparan Activates Calcium Spiking Analogous to Nod Factor-Induced Responses in Medicago truncatula Root Hair Cells
- Jongho Sun, Hiroki Miwa, J. Allan Downie, and Giles E.D. Oldroyd
Plant Physiology 2007; 144: 695-702.
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Temporal and Spatial Expression of the Major Allergens in Developing and Germinating Peanut Seed
- Il-Ho Kang, Pratibha Srivastava, Peggy Ozias-Akins, and Maria Gallo
Plant Physiology 2007; 144: 836-845.
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Phosphorus Stress in Common Bean: Root Transcript and Metabolic Responses
- Georgina Hernández, Mario Ramírez, Oswaldo Valdés-López, Mesfin Tesfaye, Michelle A. Graham, Tomasz Czechowski, Armin Schlereth, Maren Wandrey, Alexander Erban, Foo Cheung, Hank C. Wu, Miguel Lara, Christopher D. Town, Joachim Kopka, Michael K. Udvardi, and Carroll P. Vance
Plant Physiology 2007; 144: 752-767.
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Flavone Synthases from Medicago truncatula Are Flavanone-2-Hydroxylases and Are Important for Nodulation
- Juan Zhang, Senthil Subramanian, Yansheng Zhang, and Oliver Yu
Plant Physiology 2007; 144: 741-751.
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A Symbiotic Plant Peroxidase Involved in Bacterial Invasion of the Tropical Legume Sesbania rostrata
- Jeroen Den Herder, Sam Lievens, Stephane Rombauts, Marcelle Holsters, and Sofie Goormachtig
Plant Physiology 2007; 144: 717-727.
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Enzymatic Evidence for the Key Role of Arginine in Nitrogen Translocation by Arbuscular Mycorrhizal Fungi
- Cristina Cruz, Helge Egsgaard, Carmen Trujillo, Per Ambus, Natalia Requena, Maria Amélia Martins-Loução, and Iver Jakobsen
Plant Physiology 2007; 144: 782-792.
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Developmental Genes Have Pleiotropic Effects on Plant Morphology and Source Capacity, Eventually Impacting on Seed Protein Content and Productivity in Pea
- Judith Burstin, Pascal Marget, Myriam Huart, Annie Moessner, Brigitte Mangin, Christiane Duchene, Bruno Desprez, Nathalie Munier-Jolain, and Gérard Duc
Plant Physiology 2007; 144: 768-781.
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SYSTEMS BIOLOGY, MOLECULAR BIOLOGY, AND GENE REGULATION
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Systemic Signaling of the Plant Nitrogen Status Triggers Specific Transcriptome Responses Depending on the Nitrogen Source in Medicago truncatula
- Sandrine Ruffel, Sandra Freixes, Sandrine Balzergue, Pascal Tillard, Christian Jeudy, Marie Laure Martin-Magniette, Margaretha J. van der Merwe, Klementina Kakar, Jerôme Gouzy, Alisdair R. Fernie, Michael Udvardi, Christophe Salon, Alain Gojon, and Marc Lepetit
Plant Physiology 2008; 146: 2020-2035.
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The Medicago truncatula Lysine Motif-Receptor-Like Kinase Gene Family Includes NFP and New Nodule-Expressed Genes
- Jean-François Arrighi, Annick Barre, Besma Ben Amor, Anne Bersoult, Lidia Campos Soriano, Rossana Mirabella, Fernanda de Carvalho-Niebel, Etienne-Pascal Journet, Michèle Ghérardi, Thierry Huguet, René Geurts, Jean Dénarié, Pierre Rougé, and Clare Gough
Plant Physiology 2006; 142: 265-279.
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Characterization of SSIIIa-Deficient Mutants of Rice: The Function of SSIIIa and Pleiotropic Effects by SSIIIa Deficiency in the Rice Endosperm
- Naoko Fujita, Mayumi Yoshida, Tomonori Kondo, Kaori Saito, Yoshinori Utsumi, Takashi Tokunaga, Aiko Nishi, Hikaru Satoh, Jin-Hee Park, Jay-Lin Jane, Akio Miyao, Hirohiko Hirochika, and Yasunori Nakamura
Plant Physiology 2007; 144: 2009-2023.
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UPDATE ON COMPARATIVE GENOMICS OF LEGUMES
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Bridging Model and Crop Legumes through Comparative Genomics
- Hongyan Zhu, Hong-Kyu Choi, Douglas R. Cook, and Randy C. Shoemaker
Plant Physiology 2005; 137: 1189-1196.
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UPDATE ON LEGUME SYMBIOSES
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Peace Talks and Trade Deals. Keys to Long-Term Harmony in Legume-Microbe Symbioses
- Giles E.D. Oldroyd, Maria J. Harrison, and Michael Udvardi
Plant Physiology 2005; 137: 1205-1210.
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UPDATE ON NEMATODES: SOPHISTICATED PARASITES OF LEGUMES
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Nematodes. Sophisticated Parasites of Legumes
- Eric L. Davis and Melissa G. Mitchum
Plant Physiology 2005; 137: 1182-1188.
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UPDATE ON PROTEIN DEGRADATION CONTROLS NODULE DEVELOPMENT
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Ubiquitin-Mediated Proteolysis. To Be in the Right Place at the Right Moment during Nodule Development
- Eva Kondorosi, Miguel Redondo-Nieto, and Adam Kondorosi
Plant Physiology 2005; 137: 1197-1204.
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UPDATES
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Nutrient Sharing between Symbionts
- James White, Jurgen Prell, Euan K. James, and Philip Poole
Plant Physiology 2007; 144: 604-614.
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Legume Evolution: Where Do Nodules and Mycorrhizas Fit In?
- Janet I. Sprent and Euan K. James
Plant Physiology 2007; 144: 575-581.
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Genome Sequencing and Genome Resources in Model Legumes
- Shusei Sato, Yasukazu Nakamura, Erika Asamizu, Sachiko Isobe, and Satoshi Tabata
Plant Physiology 2007; 144: 588-593.
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Legume Transcription Factors: Global Regulators of Plant Development and Response to the Environment
- Michael K. Udvardi, Klementina Kakar, Maren Wandrey, Ombretta Montanari, Jeremy Murray, Andry Andriankaja, Ji-Yi Zhang, Vagner Benedito, Julie M.I. Hofer, Foo Chueng, and Christopher D. Town
Plant Physiology 2007; 144: 538-549.
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Translocation in Legumes: Assimilates, Nutrients, and Signaling Molecules
- Craig Anthony Atkins and Penelope Mary Collina Smith
Plant Physiology 2007; 144: 550-561.
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Genomes of the Symbiotic Nitrogen-Fixing Bacteria of Legumes
- Allyson M. MacLean, Turlough M. Finan, and Michael J. Sadowsky
Plant Physiology 2007; 144: 615-622.
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Genomic and Genetic Control of Phosphate Stress in Legumes
- Mesfin Tesfaye, Junqi Liu, Deborah L. Allan, and Carroll P. Vance
Plant Physiology 2007; 144: 594-603.
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Using Genomics to Study Legume Seed Development
- Brandon H. Le, Javier A. Wagmaister, Tomokazu Kawashima, Anhthu Q. Bui, John J. Harada, and Robert B. Goldberg
Plant Physiology 2007; 144: 562-574.
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Recent Advances in Legume-Microbe Interactions: Recognition, Defense Response, and Symbiosis from a Genomic Perspective
- Deborah A. Samac and Michelle A. Graham
Plant Physiology 2007; 144: 582-587.
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