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Zhang, Y.; Yan, Y.-P.; Wang, Z.-Z. 2010: The Arabidopsis PAP1 transcription factor plays an important role in the enrichment of phenolic acids in Salvia miltiorrhiza. Journal of Agricultural and Food Chemistry 58(23): 12168-12175
Lacatus, G.; Sunter, G. 2009: The Arabidopsis PEAPOD2 transcription factor interacts with geminivirus AL2 protein and the coat protein promoter. Virology 392(2): 196-202
Ross, A.; Yamada, K.; Hiruma, K.; Yamashita-Yamada, M.; Lu, X.; Takano, Y.; Tsuda, K.; Saijo, Y. 2014: The Arabidopsis PEPR pathway couples local and systemic plant immunity. EMBO Journal 33(1): 62-75
Hyun, T.K.; van der Graaff, E.; Albacete, A.; Eom, S.H.; Großkinsky, D.K.; Böhm, H.; Janschek, U.; Rim, Y.; Ali, W.W.; Kim, S.Y.; Roitsch, T. 2014: The Arabidopsis PLAT domain protein1 is critically involved in abiotic stress tolerance. Plos one 9(11): E112946
Strader, L.C.; Bartel, B. 2009: The Arabidopsis Pleiotropic Drug Resistance8/Abcg36 ATP Binding Cassette Transporter Modulates Sensitivity to the Auxin Precursor Indole-3-Butyric Acid. Plant Cell 21(7): 1992-2007
Pape, S.; Thurow, C.; Gatz, C. 2010: The Arabidopsis PR-1 promoter contains multiple integration sites for the coactivator NPR1 and the repressor SNI1. Plant Physiology 154(4): 1805-1818
Yu, X.; Michaels, S.D. 2010: The Arabidopsis Paf1c complex component CDC73 participates in the modification of FLOWERING LOCUS C chromatin. Plant Physiology 153(3): 1074-1084
Wang, Y.; Ries, A.; Wu, K.; Yang, A.; Crawford, N.M. 2010: The Arabidopsis Prohibitin Gene PHB3 Functions in Nitric Oxide-Mediated Responses and in Hydrogen Peroxide-Induced Nitric Oxide Accumulation. Plant Cell 22(1): 249-259
Wang, Y.; Xiao, R.; Wang, H.; Cheng, Z.; Li, W.; Zhu, G.; Wang, Y.; Ma, H. 2014: The Arabidopsis RAD51 paralogs RAD51B, RAD51D and XRCC2 play partially redundant roles in somatic DNA repair and gene regulation. New Phytologist 201(1): 292-304
Mang, H.G.; Laluk, K.A.; Parsons, E.P.; Kosma, D.K.; Cooper, B.R.; Park, H.C.; AbuQamar, S.; Boccongelli, C.; Miyazaki, S.; Consiglio, F.; Chilosi, G.; Bohnert, H.J.; Bressan, R.A.; Mengiste, T.; Jenks, M.A. 2009: The Arabidopsis RESURRECTION1 gene regulates a novel antagonistic interaction in plant defense to biotrophs and necrotrophs. Plant Physiology 151(1): 290-305
Cho, S.K.; Ryu, M.Y.; Seo, D.H.; Kang, B.G.; Kim, W.T. 2011: The Arabidopsis RING E3 ubiquitin ligase AtAIRP2 plays combinatory roles with AtAIRP1 in abscisic acid-mediated drought stress responses. Plant Physiology 157(4): 2240-2257
Kim, J.H.; Kim, W.T. 2013: The Arabidopsis RING E3 ubiquitin ligase AtAIRP3/LOG2 participates in positive regulation of high-salt and drought stress responses. Plant Physiology 162(3): 1733-1749
Bu, Q.; Li, H.; Zhao, Q.; Jiang, H.; Zhai, Q.; Zhang, J.; Wu, X.; Sun, J.; Xie, Q.; Wang, D.; Li, C. 2009: The Arabidopsis RING finger E3 ligase RHA2a is a novel positive regulator of abscisic acid signaling during seed germination and early seedling development. Plant Physiology 150(1): 463-481
Li, H.; Jiang, H.; Bu, Q.; Zhao, Q.; Sun, J.; Xie, Q.; Li, C. 2011: The Arabidopsis RING finger E3 ligase RHA2b acts additively with RHA2a in regulating abscisic acid signaling and drought response. Plant Physiology 156(2): 550-563
Havecker, E.R.; Wallbridge, L.M.; Hardcastle, T.J.; Bush, M.S.; Kelly, K.A.; Dunn, R.M.; Schwach, F.; Doonan, J.H.; Baulcombe, D.C. 2010: The Arabidopsis RNA-directed DNA methylation argonautes functionally diverge based on their expression and interaction with target loci. Plant Cell 22(2): 321-334
Eckardt, N.A. 2009: The Arabidopsis RPW8 resistance protein is recruited to the extrahaustorial membrane of biotrophic powdery mildew fungi. Plant Cell 21(9): 2543
Poraty-Gavra, L.; Zimmermann, P.; Haigis, S.; Bednarek, P.; Hazak, O.; Stelmakh, O.R.; Sadot, E.; Schulze-Lefert, P.; Gruissem, W.; Yalovsky, S. 2013: The Arabidopsis Rho of plants GTPase AtROP6 functions in developmental and pathogen response pathways. Plant Physiology 161(3): 1172-1188
Yi, D.; Alvim Kamei, C.L.; Cools, T.; Vanderauwera, S.; Takahashi, N.; Okushima, Y.; Eekhout, T.; Yoshiyama, K.O.; Larkin, J.; Van den Daele, H.; Conklin, P.; Britt, A.; Umeda, M.; De Veylder, L. 2014: The Arabidopsis SIAMESE-RELATED cyclin-dependent kinase inhibitors SMR5 and SMR7 regulate the DNA damage checkpoint in response to reactive oxygen species. Plant Cell 26(1): 296-309
Khan, A.; Garbelli, A.; Grossi, S.; Florentin, A.; Batelli, G.; Acuna, T.; Zolla, G.; Kaye, Y.; Paul, L.K.; Zhu, J.-K.; Maga, G.; Grafi, G.; Barak, S. 2014: The Arabidopsis Stress Response Suppressor Dead-Box RNA Helicases Are Nucleolar- and Chromocenter-Localized Proteins that Undergo Stress-Mediated Relocalization and Are Involved in Epigenetic Gene Silencing. Plant Journal: for Cell and Molecular Biology 79(1): 28-43
Huang, L.; Yang, S.; Zhang, S.; Liu, M.; Lai, J.; Qi, Y.; Shi, S.; Wang, J.; Wang, Y.; Xie, Q.; Yang, C. 2009: The Arabidopsis SUMO E3 ligase AtMMS21, a homologue of NSE2/MMS21, regulates cell proliferation in the root. Plant Journal: for Cell and Molecular Biology 60(4): 666-678
Guillaumot, D.; Guillon, S.ép.; Déplanque, T.; Vanhee, C.; Gumy, C.; Masquelier, D.èl.; Morsomme, P.; Batoko, H. 2009: The Arabidopsis TSPO-related protein is a stress and abscisic acid-regulated, endoplasmic reticulum-Golgi-localized membrane protein. Plant Journal: for Cell and Molecular Biology 60(2): 242-256
Frémont, N.; Riefler, M.; Stolz, A.; Schmülling, T. 2013: The Arabidopsis TUMOR PRONE5 gene encodes an acetylornithine aminotransferase required for arginine biosynthesis and root meristem maintenance in blue light. Plant Physiology 161(3): 1127-1140
Schneider, A.; Steinberger, I.; Strissel, H.; Kunz, H.-H.; Manavski, N.; Meurer, J.ör.; Burkhard, G.; Jarzombski, S.; Schünemann, D.; Geimer, S.; Flügge, U.-I.; Leister, D. 2014: The Arabidopsis Tellurite resistance C protein together with ALB3 is involved in photosystem Ii protein synthesis. Plant Journal: for Cell and Molecular Biology 78(2): 344-356
Wang, H.; Lu, Y.; Jiang, T.; Berg, H.; Li, C.; Xia, Y. 2013: The Arabidopsis U-box/ARM repeat E3 ligase AtPUB4 influences growth and degeneration of tapetal cells, and its mutation leads to conditional male sterility. Plant Journal: for Cell and Molecular Biology 74(3): 511-523
Jung, H.J.; Kang, H. 2014: The Arabidopsis U11/U12-65K is an indispensible component of minor spliceosome and plays a crucial role in U12 intron splicing and plant development. Plant Journal: for Cell and Molecular Biology 78(5): 799-810
Kim, W.Y.; Jung, H.J.; Kwak, K.J.; Kim, M.K.; Oh, S.H.; Han, Y.S.; Kang, H. 2010: The Arabidopsis U12-type spliceosomal protein U11/U12-31K is involved in U12 intron splicing via RNA chaperone activity and affects plant development. Plant Cell 22(12): 3951-3962
Wang, Z.-Y.; Gehring, C.; Zhu, J.; Li, F.-M.; Zhu, J.-K.; Xiong, L. 2015: The Arabidopsis Vacuolar Sorting Receptor1 is required for osmotic stress-induced abscisic acid biosynthesis. Plant Physiology 167(1): 137-152
Stepanova, A.N.; Yun, J.; Robles, L.M.; Novak, O.; He, W.; Guo, H.; Ljung, K.; Alonso, J.M. 2011: The Arabidopsis YUCCA1 flavin monooxygenase functions in the indole-3-pyruvic acid branch of auxin biosynthesis. Plant Cell 23(11): 3961-3973
Lewis, J.D.; Lee, A.H.-Y.; Hassan, J.A.; Wan, J.; Hurley, B.; Jhingree, J.R.; Wang, P.W.; Lo, T.; Youn, J.-Y.; Guttman, D.S.; Desveaux, D. 2013: The Arabidopsis ZED1 pseudokinase is required for ZAR1-mediated immunity induced by the Pseudomonas syringae type IIi effector HopZ1a. Proceedings of the National Academy of Sciences of the United States of America 110(46): 18722-18727
Joseph, M.P.; Papdi, C.; Kozma-Bognár, L.ás.ó; Nagy, I.án.; López-Carbonell, M.; Rigó, G.áb.; Koncz, C.; Szabados, L.ás.ó 2014: The Arabidopsis Zinc Finger Protein3 Interferes with Abscisic Acid and Light Signaling in Seed Germination and Plant Development. Plant Physiology 165(3): 1203-1220
Chen, Q.-F.; Xiao, S.; Qi, W.; Mishra, G.; Ma, J.; Wang, M.; Chye, M.-L. 2010: The Arabidopsis acbp1acbp2 double mutant lacking acyl-CoA-binding proteins ACBP1 and ACBP2 is embryo lethal. New Phytologist 186(4): 843-855
Kansup, J.; Tsugama, D.; Liu, S.; Takano, T. 2013: The Arabidopsis adaptor protein AP-3μ interacts with the G-protein β subunit AGB1 and is involved in abscisic acid regulation of germination and post-germination development. Journal of Experimental Botany 64(18): 5611-5621
Waditee-Sirisattha, R.; Shibato, J.; Rakwal, R.; Sirisattha, S.; Hattori, A.; Nakano, T.; Takabe, T.; Tsujimoto, M. 2011: The Arabidopsis aminopeptidase LAP2 regulates plant growth, leaf longevity and stress response. New phytologist 191(4): 958-969
Wang, Y.; Hou, Y.; Gu, H.; Kang, D.; Chen, Z.-L.; Liu, J.; Qu, L.-J. 2013: The Arabidopsis anaphase-promoting complex/cyclosome subunit 1 is critical for both female gametogenesis and embryogenesis(F). Journal of Integrative Plant Biology 55(1): 64-74
Fernández-Calvo, P.; Chini, A.; Fernández-Barbero, G.; Chico, J.é-M.; Gimenez-Ibanez, S.; Geerinck, J.; Eeckhout, D.; Schweizer, F.; Godoy, M.; Franco-Zorrilla, J.é M.; Pauwels, L.; Witters, E.; Puga, M.ía.I.; Paz-Ares, J.; Goossens, A.; Reymond, P.; De Jaeger, G.; Solano, R. 2011: The Arabidopsis bHLH transcription factors MYC3 and MYC4 are targets of JAZ repressors and act additively with MYC2 in the activation of jasmonate responses. Plant Cell 23(2): 701-715
Jin, J.; Hewezi, T.; Baum, T.J. 2011: The Arabidopsis bHLH25 and bHLH27 transcription factors contribute to susceptibility to the cyst nematode Heterodera schachtii. Plant Journal: for Cell and Molecular Biology 65(2): 319-328
Yang, O.; Popova, O.V.; Süthoff, U.; Lüking, I.; Dietz, K.-J.; Golldack, D. 2009: The Arabidopsis basic leucine zipper transcription factor AtbZIP24 regulates complex transcriptional networks involved in abiotic stress resistance. Gene 436(1-2): 45-55
Munemasa, S.; Hossain, M.A.; Nakamura, Y.; Mori, I.C.; Murata, Y. 2011: The Arabidopsis calcium-dependent protein kinase, CPK6, functions as a positive regulator of methyl jasmonate signaling in guard cells. Plant Physiology 155(1): 553-561
Chen, X.-Y.; Liu, L.; Lee, E.; Han, X.; Rim, Y.; Chu, H.; Kim, S.-W.; Sack, F.; Kim, J.-Y. 2009: The Arabidopsis callose synthase gene GSL8 is required for cytokinesis and cell patterning. Plant Physiology 150(1): 105-113
Bender, K.W.; Rosenbaum, D.M.; Vanderbeld, B.; Ubaid, M.; Snedden, W.A. 2013: The Arabidopsis calmodulin-like protein, CML39, functions during early seedling establishment. Plant Journal: for Cell and Molecular Biology 76(4): 634-647
Chigri, F.; Flosdorff, S.; Pilz, S.; Kölle, E.; Dolze, E.; Gietl, C.; Vothknecht, U.C. 2012: The Arabidopsis calmodulin-like proteins AtCML30 and AtCML3 are targeted to mitochondria and peroxisomes, respectively. Plant Molecular Biology 78(3): 211-222
Jurado, S.; Abraham, Z.; Manzano, C.ón.; López-Torrejón, G.; Pacios, L.F.; Del Pozo, J.C. 2010: The Arabidopsis cell cycle F-box protein SKP2A binds to auxin. Plant Cell 22(12): 3891-3904
Gutierrez, C. 2009: The Arabidopsis cell division cycle. Arabidopsis Book 7: E0120
Yang, Y.; Qin, Y.; Xie, C.; Zhao, F.; Zhao, J.; Liu, D.; Chen, S.; Fuglsang, A.T.; Palmgren, M.G.; Schumaker, K.S.; Deng, X.W.; Guo, Y. 2010: The Arabidopsis chaperone J3 regulates the plasma membrane H+-ATPase through interaction with the PKS5 kinase. Plant Cell 22(4): 1313-1332
Zhang, X.; Hu, J. 2010: The Arabidopsis chloroplast division protein DYNAMIN-RELATED PROTEIN5B also mediates peroxisome division. Plant Cell 22(2): 431-442
Lee, S.-Y.; Seok, H.-Y.; Tarte, V.N.; Woo, D.-H.; Le, D.H.; Lee, E.-H.; Moon, Y.-H. 2014: The Arabidopsis chloroplast protein S-RBP11 is involved in oxidative and salt stress responses. Plant Cell Reports 33(6): 837-847
Wang, L.; Ouyang, M.; Li, Q.; Zou, M.; Guo, J.; Ma, J.; Lu, C.; Zhang, L. 2010: The Arabidopsis chloroplast ribosome recycling factor is essential for embryogenesis and chloroplast biogenesis. Plant Molecular Biology 74(1-2): 47-59
Ding, Y.; Lapko, H.; Ndamukong, I.; Xia, Y.; Al-Abdallat, A.; Lalithambika, S.; Sadder, M.; Saleh, A.; Fromm, M.; Riethoven, J.-J.; Lu, G.; Avramova, Z. 2009: The Arabidopsis chromatin modifier ATX1, the myotubularin-like AtMTM and the response to drought. Plant Signaling and Behavior 4(11): 1049-1058
McClung, C.R.; Salomé, P.A.; Michael, T.P. 2002: The Arabidopsis circadian system. Arabidopsis Book 1: E0044
Viola, I.L.; Uberti Manassero, N.G.; Ripoll, R.; Gonzalez, D.H. 2011: The Arabidopsis class i TCP transcription factor AtTCP11 is a developmental regulator with distinct DNA-binding properties due to the presence of a threonine residue at position 15 of the TCP domain. Biochemical Journal 435(1): 143-155
König, A.-C.; Hartl, M.; Pham, P.A.; Laxa, M.; Boersema, P.J.; Orwat, A.; Kalitventseva, I.; Plöchinger, M.; Braun, H.-P.; Leister, D.; Mann, M.; Wachter, A.; Fernie, A.R.; Finkemeier, I. 2014: The Arabidopsis class Ii sirtuin is a lysine deacetylase and interacts with mitochondrial energy metabolism. Plant Physiology 164(3): 1401-1414
Somers, D.E. 2012: The Arabidopsis clock: time for an about-face?. Genome Biology 13(4): 153
Kubeš, M.; Yang, H.; Richter, G.L.; Cheng, Y.; Młodzińska, E.; Wang, X.; Blakeslee, J.J.; Carraro, N.; Petrášek, J.; Zažímalová, E.; Hoyerová, K.ár.; Peer, W.A.; Murphy, A.S. 2012: The Arabidopsis concentration-dependent influx/efflux transporter ABCB4 regulates cellular auxin levels in the root epidermis. Plant Journal: for Cell and Molecular Biology 69(4): 640-654
Chin, K.; DeFalco, T.A.; Moeder, W.; Yoshioka, K. 2013: The Arabidopsis cyclic nucleotide-gated ion channels AtCNGC2 and AtCNGC4 work in the same signaling pathway to regulate pathogen defense and floral transition. Plant Physiology 163(2): 611-624
Takatsuka, H.; Ohno, R.; Umeda, M. 2009: The Arabidopsis cyclin-dependent kinase-activating kinase CDKF;1 is a major regulator of cell proliferation and cell expansion but is dispensable for CDKA activation. Plant Journal: for Cell and Molecular Biology 59(3): 475-487
Rubinovich, L.; Ruthstein, S.; Weiss, D. 2014: The Arabidopsis cysteine-rich GASA5 is a redox-active metalloprotein that suppresses gibberellin responses. Molecular Plant 7(1): 244-247
Rubinovich, L.; Weiss, D. 2010: The Arabidopsis cysteine-rich protein GASA4 promotes GA responses and exhibits redox activity in bacteria and in planta. Plant Journal: for Cell and Molecular Biology 64(6): 1018-1027
Meagher, R.B.; Fechheimer, M. 2003: The Arabidopsis cytoskeletal genome. Arabidopsis Book 2: E0096
Hsiao, A.-S.; Yeung, E.C.; Ye, Z.-W.; Chye, M.-L. 2015: The Arabidopsis cytosolic Acyl-CoA-binding proteins play combinatory roles in pollen development. Plant and Cell Physiology 56(2): 322-333
Ito, J.; Parsons, H.T.; Heazlewood, J.L. 2014: The Arabidopsis cytosolic proteome: the metabolic heart of the cell. Frontiers in Plant Science 5: 21
Tsuchiya, T.; Eulgem, T. 2010: The Arabidopsis defense component EDM2 affects the floral transition in an FLC-dependent manner. Plant Journal: for Cell and Molecular Biology 62(3): 518-528
Mohr, T.J.; Mammarella, N.D.; Hoff, T.; Woffenden, B.J.; Jelesko, J.G.; McDowell, J.M. 2010: The Arabidopsis downy mildew resistance gene RPP8 is induced by pathogens and salicylic acid and is regulated by W box cis elements. Molecular Plant-Microbe Interactions: Mpmi 23(10): 1303-1315
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Wang, Y.; An, C.; Zhang, X.; Yao, J.; Zhang, Y.; Sun, Y.; Yu, F.; Amador, D.M.; Mou, Z. 2013: The Arabidopsis elongator complex subunit2 epigenetically regulates plant immune responses. Plant Cell 25(2): 762-776
Zhang, G.-B.; Yi, H.-Y.; Gong, J.-M. 2014: The Arabidopsis ethylene/jasmonic acid-NRT signaling module coordinates nitrate reallocation and the trade-off between growth and environmental adaptation. Plant Cell 26(10): 3984-3998
Xia, C.; Wang, Y-Jiao.; Li, W-Qing.; Chen, Y-Ran.; Deng, Y.; Zhang, X-Qin.; Chen, L-Qun.; Ye, D. 2010: The Arabidopsis eukaryotic translation initiation factor 3, subunit F (AteIF3f), is required for pollen germination and embryogenesis. Plant Journal: for Cell and Molecular Biology 63(2): 189-202
Ren, B.; Chen, Q.; Hong, S.; Zhao, W.; Feng, J.; Feng, H.; Zuo, J. 2013: The Arabidopsis eukaryotic translation initiation factor eIF5A-2 regulates root protoxylem development by modulating cytokinin signaling. Plant Cell 25(10): 3841-3857
Fendrych, M.ás.; Synek, L.ás.; Pecenková, T.; Toupalová, H.; Cole, R.; Drdová, E.; Nebesárová, J.; Sedinová, M.; Hála, M.; Fowler, J.E.; Zársky, V. 2010: The Arabidopsis exocyst complex is involved in cytokinesis and cell plate maturation. Plant Cell 22(9): 3053-3065
Tzfadia, O.; Galili, G. 2013: The Arabidopsis exocyst subcomplex subunits involved in a golgi-independent transport into the vacuole possess consensus autophagy-associated atg8 interacting motifs. Plant Signaling and Behavior 8(10): Doi: 10.4161/Psb.26732
Lee, C.; Teng, Q.; Huang, W.; Zhong, R.; Ye, Z.-H. 2010: The Arabidopsis family GT43 glycosyltransferases form two functionally nonredundant groups essential for the elongation of glucuronoxylan backbone. Plant Physiology 153(2): 526-541
Mara, C.D.; Huang, T.; Irish, V.F. 2010: The Arabidopsis floral homeotic proteins APETALA3 and PISTILLATA negatively regulate the BANQUO genes implicated in light signaling. Plant Cell 22(3): 690-702
Gregis, V.; Sessa, A.; Dorca-Fornell, C.; Kater, M.M. 2009: The Arabidopsis floral meristem identity genes AP1, AGL24 and SVP directly repress class B and C floral homeotic genes. Plant Journal: for Cell and Molecular Biology 60(4): 626-637
Sandhu, K.Singh.; Neff, M.M. 2013: The Arabidopsis gene ATST4a in not a typical brassinosteroid catabolic gene. Plant Signaling and Behavior 8(10): Doi: 10.4161/Psb.26847
Xie, Y.-D.; Li, W.; Guo, D.; Dong, J.; Zhang, Q.; Fu, Y.; Ren, D.; Peng, M.; Xia, Y. 2010: The Arabidopsis gene SIGMA FACTOR-BINDING PROTEIN 1 plays a role in the salicylate- and jasmonate-mediated defence responses. Plant Cell and Environment 33(5): 828-839
Wang, L.; Dong, J.; Gao, Z.; Liu, D. 2012: The Arabidopsis gene hypersensitive to phosphate starvation 3 encodes ethylene overproduction 1. Plant and Cell Physiology 53(6): 1093-1105
De Meaux, J.; Pecinka, A. 2012: The Arabidopsis genus: An emerging model to elucidate the molecular basis of interspecific differences in transposable element activity. Mobile Genetic Elements 2(3): 142-144
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Kim, S.Hee.; Son, G.Hui.; Bhattacharjee, S.; Kim, H.Jin.; Nam, J.Chul.; Nguyen, P.Dung.T.; Hong, J.Chan.; Gassmann, W. 2014: The Arabidopsis immune adaptor SRFR1 interacts with TCP transcription factors that redundantly contribute to effector-triggered immunity. Plant Journal: for Cell and Molecular Biology 78(6): 978-989
Bassil, E.; Ohto, M.-a.; Esumi, T.; Tajima, H.; Zhu, Z.; Cagnac, O.; Belmonte, M.; Peleg, Z.; Yamaguchi, T.; Blumwald, E. 2011: The Arabidopsis intracellular Na+/H+ antiporters NHX5 and NHX6 are endosome associated and necessary for plant growth and development. Plant Cell 23(1): 224-239
Wang, H.; Liu, R.; Wang, J.; Wang, P.; Shen, Y.; Liu, G. 2014: The Arabidopsis kinesin gene AtKin-1 plays a role in the nuclear division process during megagametogenesis. Plant Cell Reports 33(5): 819-828
Bouwmeester, K.; Han, M.; Blanco-Portales, R.; Song, W.; Weide, R.; Guo, L.-Y.; van der Vossen, E.A.G.; Govers, F. 2014: The Arabidopsis lectin receptor kinase LecRK-I.9 enhances resistance to Phytophthora infestans in Solanaceous plants. Plant Biotechnology Journal 12(1): 10-16
Desclos-Theveniau, M.; Arnaud, D.; Huang, T-Yu.; Lin, G.Jui-Chih.; Chen, W-Yen.; Lin, Y-Chia.; Zimmerli, L. 2012: The Arabidopsis lectin receptor kinase LecRK-V.5 represses stomatal immunity induced by Pseudomonas syringae pv. tomato DC3000. Plos Pathogens 8(2): E1002513
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Hemsley, P.A.; Hurst, C.H.; Kaliyadasa, E.; Lamb, R.; Knight, M.R.; De Cothi, E.A.; Steele, J.F.; Knight, H. 2014: The Arabidopsis mediator complex subunits MED16, MED14, and MED2 regulate mediator and RNA polymerase Ii recruitment to CBF-responsive cold-regulated genes. Plant Cell 26(1): 465-484
Iwata, Y.; Fedoroff, N.V.; Koizumi, N. 2009: The Arabidopsis membrane-bound transcription factor AtbZIP60 is a novel plant-specific endoplasmic reticulum stress transducer. Plant Signaling and Behavior 4(6): 514-516
Tsiatsiani, L.; Timmerman, E.; De Bock, P.-J.; Vercammen, D.; Stael, S.; van de Cotte, B.; Staes, A.; Goethals, M.; Beunens, T.; Van Damme, P.; Gevaert, K.; Van Breusegem, F. 2013: The Arabidopsis metacaspase9 degradome. Plant Cell 25(8): 2831-2847
Boccara, M.; Sarazin, A.; Thiébeauld, O.; Jay, F.; Voinnet, O.; Navarro, L.; Colot, V. 2014: The Arabidopsis miR472-RDR6 silencing pathway modulates PAMP- and effector-triggered immunity through the post-transcriptional control of disease resistance genes. Plos Pathogens 10(1): E1003883
Hewezi, T.; Maier, T.R.; Nettleton, D.; Baum, T.J. 2012: The Arabidopsis microRNA396-GRF1/GRF3 regulatory module acts as a developmental regulator in the reprogramming of root cells during cyst nematode infection. Plant Physiology 159(1): 321-335
Pan, R.; Kaur, N.; Hu, J. 2014: The Arabidopsis mitochondrial membrane-bound ubiquitin protease UBP27 contributes to mitochondrial morphogenesis. Plant Journal: for Cell and Molecular Biology 78(6): 1047-1059
Brock, A.K.; Willmann, R.; Kolb, D.; Grefen, L.; Lajunen, H.M.; Bethke, G.; Lee, J.; Nürnberger, T.; Gust, A.A. 2010: The Arabidopsis mitogen-activated protein kinase phosphatase PP2C5 affects seed germination, stomatal aperture, and abscisic acid-inducible gene expression. Plant physiology 153(3): 1098-1111
Vanhee, C.; Zapotoczny, G.; Masquelier, D.èl.; Ghislain, M.; Batoko, H. 2011: The Arabidopsis multistress regulator TSPO is a heme binding membrane protein and a potential scavenger of porphyrins via an autophagy-dependent degradation mechanism. Plant Cell 23(2): 785-805
De Storme, N.; Geelen, D. 2011: The Arabidopsis mutant jason produces unreduced first division restitution male gametes through a parallel/fused spindle mechanism in meiosis II. Plant Physiology 155(3): 1403-1415
Fan, S.-C.; Lin, C.-S.; Hsu, P.-K.; Lin, S.-H.; Tsay, Y.-F. 2009: The Arabidopsis nitrate transporter NRT1.7, expressed in phloem, is responsible for source-to-sink remobilization of nitrate. Plant Cell 21(9): 2750-2761
Li, J.-Y.; Fu, Y.-L.; Pike, S.M.; Bao, J.; Tian, W.; Zhang, Y.; Chen, C.-Z.; Zhang, Y.; Li, H.-M.; Huang, J.; Li, L.-G.; Schroeder, J.I.; Gassmann, W.; Gong, J.-M. 2010: The Arabidopsis nitrate transporter NRT1.8 functions in nitrate removal from the xylem sap and mediates cadmium tolerance. Plant Cell 22(5): 1633-1646
Lezhneva, L.; Kiba, T.; Feria-Bourrellier, A.-B.; Lafouge, F.; Boutet-Mercey, S.ép.; Zoufan, P.; Sakakibara, H.; Daniel-Vedele, F.ço.; Krapp, A. 2014: The Arabidopsis nitrate transporter NRT2.5 plays a role in nitrate acquisition and remobilization in nitrogen-starved plants. Plant Journal: for Cell and Molecular Biology 80(2): 230-241
Meier, I.; Brkljacic, J. 2010: The Arabidopsis nuclear pore and nuclear envelope. Arabidopsis Book 8: E0139
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