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Number of items: 90.

Blatt, M. R. (2024) A charged existence: a century of transmembrane ion transport in plants. Plant Physiology, (doi: 10.1093/plphys/kiad630) (PMID:38163639) (Early Online Publication)

Jarvis, M. C. (2024) Forces on and in the cell walls of living plants. Plant Physiology, 194(1), pp. 8-14. (doi: 10.1093/plphys/kiad387) (PMID:37403192)

Simkin, A. J., Alqurashi, M., Lopez-Calcagno, P. E., Headland, L. R. and Raines, C. A. (2023) Glyceraldehyde-3-phosphate dehydrogenase subunits A and B are essential to maintain photosynthetic efficiency. Plant Physiology, (doi: 10.1093/plphys/kiad256) (PMID:37099455) (Early Online Publication)

Ronald, J. , Su, C., Wang, L. and Davis, S. J. (2022) Cellular localization of Arabidopsis EARLY FLOWERING3 is responsive to light quality. Plant Physiology, 190(2), pp. 1024-1036. (doi: 10.1093/plphys/kiac072) (PMID:35191492) (PMCID:PMC9516731)

Baena, G. , Xia, L. , Waghmare, S. and Karnik, R. (2022) SNARE SYP132 mediates divergent trafficking of H+-ATPase AHA1 and antimicrobial PR1 during bacterial pathogenesis. Plant Physiology, 189(3), pp. 1639-1661. (doi: 10.1093/plphys/kiac149) (PMID:35348763) (PMCID:PMC9237740)

Przybyla-Toscano, J., MacLean, A. E., Franceschetti, M., Liebsch, D., Vignols, F., Keech, O., Rouhier, N. and Balk, J. (2022) Protein lipoylation in mitochondria requires Fe–S cluster assembly factors NFU4 and NFU5. Plant Physiology, 188(2), pp. 997-1013. (doi: 10.1093/plphys/kiab501) (PMID:34718778) (PMCID:PMC8825329)

Blatt, M. (2021) Ae fond fareweel. Plant Physiology, 187(4), pp. 2341-2343. (doi: 10.1093/plphys/kiab467) (PMID:34890468) (PMCID:PMC8644277)

Lefoulon, C. (2021) The bare necessities of plant K+ channel regulation. Plant Physiology, 187(4), pp. 2092-2109. (doi: 10.1093/plphys/kiab266) (PMID:34618033)

Ronald, J. , Wilkinson, A. J. and Davis, S. J. (2021) EARLY FLOWERING3 sub-nuclear localization responds to changes in ambient temperature. Plant Physiology, 187(4), pp. 2352-2355. (doi: 10.1093/plphys/kiab423) (PMID:34618097) (PMCID:PMC8644450)

Moseler, A. et al. (2021) The function of glutaredoxin GRXS15 is required for lipoyl-dependent dehydrogenases in mitochondria. Plant Physiology, 186(3), pp. 1507-1525. (doi: 10.1093/plphys/kiab172) (PMID:33856472)

Klejchova, M. , Silva-Alvim, F. A.L., Blatt, M. R. and Alvim, J. C. (2021) Membrane voltage as a dynamic platform for spatio-temporal signalling, physiological and developmental regulation. Plant Physiology, 185(4), pp. 1523-1541. (doi: 10.1093/plphys/kiab032) (PMID:33598675)

Zhang, B. , Xia, L. , Zhang, Y., Wang, H. and Karnik, R. (2021) Tri-SUS: a yeast split-ubiquitin assay to examine protein interactions governed by a third binding partner. Plant Physiology, 185(2), pp. 285-289. (doi: 10.1093/plphys/kiaa039) (PMID:33721898)

Xia, L. , Marquès-Bueno, M. M. and Karnik, R. (2020) Trafficking SNARE SYP132 partakes in auxin-associated root growth. Plant Physiology, 182, pp. 1836-1840. (doi: 10.1104/pp.19.01301) (PMID:31974128)

Horaruang, W., Hills, A. and Blatt, M. R. (2020) Communication between the plasma membrane and tonoplast is an emergent property of ion transport. Plant Physiology, 182, pp. 1833-1835. (doi: 10.1104/pp.19.01485) (PMID:31988199)

Waghmare, S. , Lefoulon, C., Zhang, B. , Lileikyte, E., Donald, N. and Blatt, M. (2019) K+ channel and SEC11 binding exchange regulates SNARE assembly for secretory traffic. Plant Physiology, 181, pp. 1096-1113. (doi: 10.1104/pp.19.00919) (PMID:31548266)

Papanatsiou, M. (2019) MVApp flies its flag to the challenging frontier of multivariate data analysis. Plant Physiology, 180(3), pp. 1251-1252. (doi: 10.1104/pp.19.00454) (PMID:31253747)

Sullivan, S. , Kharshiing, E., Laird, J., Sakai, T. and Christie, J. M. (2019) Deetiolation enhances phototropism by modulating NON-PHOTOTROPIC HYPOCOTYL3 phosphorylation status. Plant Physiology, 180, pp. 1119-1131. (doi: 10.1104/pp.19.00206) (PMID:30918082) (PMCID:PMC6548275)

Xia, L. , Marques-Bueno, M. M., Bruce, C. G. and Karnik, R. (2019) Unusual roles of secretory SNARE SYP132 in plasma membrane H+-ATPase traffic and vegetative plant growth. Plant Physiology, 180(2), pp. 837-858. (doi: 10.1104/pp.19.00266) (PMID:30926657)

Zhang, B. , Karnik, R. , Alvim, J., Donald, N. and Blatt, M. R. (2019) Dual sites for SEC11 on the SNARE SYP121 implicate a binding exchange during secretory traffic. Plant Physiology, 180, pp. 228-239. (doi: 10.1104/pp.18.01315) (PMID:30850468) (PMCID:PMC6501095)

Waghmare, S. , Lileikyte, E., Karnik, R. , Goodman, J. K., Blatt, M. R. and Jones, A. M.E. (2018) SNAREs SYP121 and SYP122 mediate the secretion of distinct cargo subsets. Plant Physiology, 178(4), pp. 1679-1688. (doi: 10.1104/pp.18.00832) (PMID:30348815)

Knox, K. , Paterlini, A., Thomson, S. and Oparka, K. (2018) The coumarin glucoside, esculin, reveals rapid changes in phloem-transport velocity in response to environmental cues. Plant Physiology, 178(2), pp. 795-807. (doi: 10.1104/pp.18.00574) (PMID:30111635)

Zhang, B. , Karnik, R. , Donald, N. and Blatt, M. R. (2018) A GPI signal peptide-anchored split-ubiquitin (GPS) system for detecting soluble bait protein interactions at the membrane. Plant Physiology, 178(1), pp. 13-17. (doi: 10.1104/pp.18.00577) (PMID:30037807)

Shahzad, Z., Kellermeier, F., Armstrong, E. M., Rogers, S. , Lobet, G., Amtmann, A. and Hills, A. (2018) EZ-Root-VIS: A software pipeline for the rapid analysis and visual reconstruction of root system architecture. Plant Physiology, 177(4), pp. 1368-1381. (doi: 10.1104/pp.18.00217) (PMID:29895611)

Bastow, E. L., Garcia de la Torre, V. S., MacLean, A. E., Green, R. T., Merlot, S., Thomine, S. and Balk, J. (2018) Vacuolar iron stores gated by NRAMP3 and NRAMP4 are the primary source of iron in germinating seeds. Plant Physiology, 177(3), pp. 1267-1276. (doi: 10.1104/pp.18.00478) (PMID:29784767)

Litthauer, S., Chan, K. X. and Jones, M. (2018) 3'-phosphoadenosine 5'-phosphate accumulation delays the circadian system. Plant Physiology, 176(4), pp. 3120-3135. (doi: 10.1104/pp.17.01611) (PMID:29487119) (PMCID:PMC5884616)

Christie, J. M. , Suetsugu, N., Sullivan, S. and Wada, M. (2018) Shining light on the function of NPH3/RPT2-like proteins in phototropin signalling. Plant Physiology, 176(2), pp. 1015-1024. (doi: 10.1104/pp.17.00835) (PMID:28720608) (PMCID:PMC5813532)

Pantin, F. and Blatt, M. R. (2018) Stomatal response to humidity: blurring the boundary between active and passive movement. Plant Physiology, 176(1), pp. 485-488. (doi: 10.1104/pp.17.01699) (PMID:29317526)

Larson, E. R., Van Zelm, E., Roux, C., Marion-Poll, A. and Blatt, M. R. (2017) Clathrin Heavy Chain subunits coordinate endo- and exocytic traffic and affect stomatal movement. Plant Physiology, 175(2), pp. 708-720. (doi: 10.1104/pp.17.00970) (PMID:28830938)

Cai, S. et al. (2017) Evolutionary conservation of ABA signaling for stomatal closure in ferns. Plant Physiology, 174(2), pp. 732-747. (doi: 10.1104/pp.16.01848) (PMID:28232585)

Vialet-Chabrand, S., Hills, A., Wang, Y., Griffiths, H., Lew, V. L., Lawson, T., Blatt, M. R. and Rogers, S. (2017) Global sensitivity analysis of OnGuard models identifies key hubs for transport interaction in stomatal dynamics. Plant Physiology, 174(2), pp. 680-688. (doi: 10.1104/pp.17.00170) (PMID:28432256)

Jezek, M. and Blatt, M. R. (2017) The membrane transport system of the guard cell and its integration for stomatal dynamics. Plant Physiology, 174(2), pp. 487-519. (doi: 10.1104/pp.16.01949) (PMID:28408539)

Vialet-Chabrand, S. R.M., Matthews, J. S.A., McAusland, L., Blatt, M. R. , Griffiths, H. and Lawson, T. (2017) Temporal dynamics of stomatal behavior: modeling and implications for photosynthesis and water use. Plant Physiology, 174(2), pp. 603-613. (doi: 10.1104/pp.17.00125) (PMID:28363993)

Zhang, B. , Karnik, R. , Waghmare, S. , Donald, N. A. and Blatt, M. R. (2017) VAMP721 conformations unmask an extended motif for K+ channel binding and gating control. Plant Physiology, 173(1), pp. 536-551. (doi: 10.1104/pp.16.01549) (PMID:27821719)

Papanatsiou, M., Amtmann, A. and Blatt, M. R. (2016) Stomatal spacing safeguards stomatal dynamics by facilitating guard cell ion transport independent of the epidermal solute reservoir. Plant Physiology, 172(1), pp. 254-263. (doi: 10.1104/pp.16.00850) (PMID:27406168)

Perrella, G., Carr, C., Asensi-Fabado, M. A., Donald, N. A., Páldi, K., Hannah, M. A. and Amtmann, A. (2016) The Histone Deacetylase Complex (HDC) 1 protein of Arabidopsis thaliana has the capacity to interact with multiple proteins including histone 3-binding proteins and histone 1 variants. Plant Physiology, 171(1), pp. 62-70. (doi: 10.1104/pp.15.01760) (PMID:26951436) (PMCID:PMC4854681)

Minguet-Parramona, C., Wang, Y., Hills, A., Vialet-Chabrand, S., Griffiths, H., Rogers, S., Lawson, T., Lew, V. L. and Blatt, M. R. (2016) An optimal frequency in Ca2+ oscillations for stomatal closure is an emergent property of ion transport in guard cells. Plant Physiology, 170(1), pp. 33-42. (doi: 10.1104/pp.15.01607) (PMID:26628748) (PMCID:PMC4704601)

Jones, M. A. , Hu, W., Litthauer, S., Lagarias, J. C. and Harmer, S. L. (2015) A constitutively active allele of phytochrome B maintains circadian robustness in the absence of light. Plant Physiology, 169, pp. 814-825. (doi: 10.1104/pp.15.00782) (PMID:26157113)

Amtmann, A. , Ma, H. and Wagner, D. (2015) Chromatin and epigenetics. Plant Physiology, 168(4), pp. 1185-1188. (doi: 10.1104/pp.15.01023) (PMID:26246617)

Papanatsiou, M., Scuffi, D., Blatt, M. R. and Garia-Mata, C. (2015) Hydrogen sulphide regulates inward-rectifying K+ channels in conjunction with stomatal closure. Plant Physiology, 168(1), pp. 29-35. (doi: 10.1104/pp.114.256057) (PMID:25770153) (PMCID:PMC4424018)

Knoblauch, M., Vendrell, M., de Leau, E., Paterlini, A., Knox, K. , Ross-Elliot, T., Reinders, A., Brockman, S. A., Ward, J. and Oparka, K. (2015) Multispectral phloem-mobile probes: properties and applications. Plant Physiology, 167(4), pp. 1211-1220. (doi: 10.1104/pp.114.255414) (PMID:25653316)

Lefoulon, C., Karnik, R. , Honsbein, A., Gutla, P. V., Grefen, C., Riedelsberger, J., Poblete, T., Dreyer, I., Gonzalez, W. and Blatt, M. R. (2014) Voltage-sensor transitions of the inward-rectifying K+ channel KAT1 indicate a latching mechanism biased by hydration within the voltage sensor. Plant Physiology, 166(2), pp. 960-975. (doi: 10.1104/pp.114.244319) (PMID:25185120)

Amezaga, J. M. et al. (2014) Biodesalination: a case study for applications of photosynthetic bacteria in water treatment. Plant Physiology, 164(4), pp. 1661-1676. (doi: 10.1104/pp.113.233973)

Blatt, M. R. , Chaumont, F. and Farquhar, G. (2014) Focus on water. Plant Physiology, 164(4), pp. 1553-1555. (doi: 10.1104/pp.114.900484)

Prince, D. C., Drurey, C. , Zipfel, C. and Hogenhout, S. A. (2014) The leucine-rich repeat receptor-like kinase BRASSINOSTEROID INSENSITIVE1-ASSOCIATED KINASE1 and the cytochrome P450 PHYTOALEXIN DEFICIENT3 contribute to innate immunity to aphids in Arabidopsis. Plant Physiology, 164(4), pp. 2207-2219. (doi: 10.1104/pp.114.235598) (PMID:24586042)

Lawson, T. and Blatt, M. R. (2014) Stomatal size, speed, and responsiveness impact on photosynthesis and water use efficiency. Plant Physiology, 164(4), pp. 1556-1570. (doi: 10.1104/pp.114.237107)

Wang, Y., Hills, A. and Blatt, M. (2014) Systems analysis of guard cell membrane transport for enhanced stomatal dynamics and water use efficiency. Plant Physiology, 164(4), pp. 1593-1599. (doi: 10.1104/pp.113.233403) (PMID:24596330)

Tossi, V., Lamattina, L., Jenkins, G. I. and Cassia, R. O. (2014) Ultraviolet-B-induced Sstomatal closure in arabidopsis is regulated by the UV RESISTANCE LOCUS8 photoreceptor in a nitric oxide-dependent mechanism. Plant Physiology, 164(4), pp. 2220-2230. (doi: 10.1104/pp.113.231753)

Gehl, B., Lee, C. P., Bota, P., Blatt, M. R. and Sweetlove, L. J. (2014) An arabidopsis stomatin-like protein affects mitochondrial respiratory supercomplex organization. Plant Physiology, 164(3), pp. 1389-1400. (doi: 10.1104/pp.113.230383)

Christie, J. and Blatt, M. (2014) Plant physiology sees the light. Plant Physiology, 164(1), p. 12. (doi: 10.1104/pp.113.900477)

Wang, Y., Chen, Z., Zhang, B. , Hills, A. and Blatt, M. R. (2013) PYR/PYL/RCAR abscisic acid receptors regulate K+ and Cl- channels through reactive oxygen species-mediated activation of Ca2+ channels at the plasma membrane of intact Arabidopsis guard cells. Plant Physiology, 163(2), pp. 566-577. (doi: 10.1104/pp.113.219758) (PMID:23899646)

Blatt, M. and Martin, C. (2013) Manipulation and misconduct in the handling of image data. Plant Physiology, 163(1), pp. 3-4. (doi: 10.1104/pp.113.900471)

Blatt, M. (2013) Plant Physiology welcomes its new topical reviews. Plant Physiology, 162(4), p. 1767. (doi: 10.1104/pp.113.900467)

Blatt, M. (2013) Associate Editor Graham Farquhar receives honors for his research in plant physiology and climate change. Plant Physiology, 162(3), p. 1213. (doi: 10.1104/pp.113.900466)

Kellermeier, F., Chardon, F. and Amtmann, A. (2013) Natural variation of arabidopsis root architecture reveals complementing adaptive strategies to potassium starvation. Plant Physiology, 161(3), pp. 1421-1432. (doi: 10.1104/pp.112.211144)

Morales, L.O., Brosche, M., Vainonen, J., Jenkins, G.I. , Wargent, J.J., Sipari, N., Strid, A., Lindfors, A.V., Tegelberg, R. and Aphalo, P.J. (2013) Multiple roles for UV RESISTANCE LOCUS8 in regulating gene expression and metabolite accumulation in arabidopsis under solar ultraviolet radiation. Plant Physiology, 161(2), pp. 744-759. (doi: 10.1104/pp.112.211375)

Blatt, M. (2013) Plant Physiology plugged in. Plant Physiology, 161(1), pp. 3-4. (doi: 10.1104/pp.112.900453)

Heilmann, M. and Jenkins, G.I. (2013) Rapid reversion from monomer to dimer regenerates the ultraviolet-B photoreceptor UV RESISTANCE LOCUS8 in intact arabidopsis plants. Plant Physiology, 161(1), pp. 547-555. (doi: 10.1104/pp.112.206805)

Thomas, L.H., Forsyth, V.T., Sturcova, A., Kennedy, C.J., May, R.P., Altaner, C.M., Apperley, D.C., Wess, T.J. and Jarvis, M.C. (2013) Structure of cellulose microfibrils in primary cell-walls from collenchyma. Plant Physiology, 161(1), pp. 465-476. (doi: 10.1104/pp.112.206359)

Wang, Y., Papanatsiou, M., Eisenach, C., Karnik, R. , Williams, M., Hills, A., Lew, V.L. and Blatt, M.R. (2012) Systems dynamic modeling of a guard cell Cl- channel mutant uncovers an emergent homeostatic network regulating stomatal transpiration. Plant Physiology, 160(4), pp. 1956-1967. (doi: 10.1104/pp.112.207704)

Grefen, C. and Blatt, M.R. (2012) Do calcineurin B-like proteins interact independently of the serine threonine kinase CIPK23 with the K+ channel AKT1? Lessons learned from a menage a trois. Plant Physiology, 159(3), pp. 915-919. (doi: 10.1104/pp.112.198051)

Hills, A., Chen, Z.-H., Amtmann, A. , Blatt, M.R. and Lew, V.L. (2012) OnGuard, a computational platform for quantitative kinetic modeling of guard cell physiology. Plant Physiology, 159(3), pp. 1026-1042.

Chen, Z.-H., Hills, A., Batz, U., Amtmann, A. , Lew, V.L. and Blatt, M.R. (2012) Systems dynamic modeling of the stomatal guard cell predicts emergent behaviors in transport, signaling, and volume control. Plant Physiology, 159(3), pp. 1235-1251. (doi: 10.1104/pp.112.197350)

Sullivan, S. , Ralet, M.-C., Berger, A., Diatloff, E., Bischoff, V., Gonneau, M., Marion-Poll, A. and North, H.M. (2011) CESA5 is required for the synthesis of cellulose with a role in structuring the adherent mucilage of Arabidopsis seeds. Plant Physiology, 156(4), pp. 1725-1739. (doi: 10.1104/pp.111.179077)

Carretero-Paulet, L., Galstyan, A., Roig-Villanova, I., Martínez-García, J. F., Bilbao-Castro, J. R. and Robertson, D. L. (2010) Genome-wide classification and evolutionary analysis of the bHLH family of transcription factors in Arabidopsis, poplar, rice, moss, and algae. Plant Physiology, 153(3), pp. 1398-1412. (doi: 10.1104/pp.110.153593) (PMID:20472752)

Armengaud, P., Sulpice, R., Miller, A.J., Stitt, M., Amtmann, A. and Gibon, Y. (2009) Multilevel analysis of primary metabolism provides new insights into the role of potassium nutrition for glycolysis and nitrogen assimilation in arabidopsis roots. Plant Physiology, 150(2), pp. 772-785. (doi: 10.1104/pp.108.133629)

Bassham, D.C. and Blatt, M.R. (2008) SNAREs: Cogs and coordinators in signaling and development. Plant Physiology, 147(4), pp. 1504-1515. (doi: 10.1104/pp.108.121129)

Brown, B.A. and Jenkins, G.I. (2008) UV-B signaling pathways with different fluence-rate response profiles are distinguished in mature Arabidopsis leaf tissue by requirement for UVR8, HY5, and HYH. Plant Physiology, 146(2), pp. 576-588. (doi: 10.1104/pp.107.108456) (PMID:18055587)

Cho, H.-Y., Tseng, T.S., Kaiserli, E., Sullivan, S. , Christie, J.M. and Briggs, W.R. (2007) Physiological roles of the light, oxygen, or voltage domains of phototropin 1 and phototropin 2 in Arabidopsis1. Plant Physiology, 143(1), pp. 517-529. (doi: 10.1104/pp.106.089839)

Veronico, P., Giannino, D., Melillo, M.T., Leone, A., Reyes, A., Kennedy, M.W. and Bleve-Zacheo, T. (2006) A novel lipoxygenase in pea roots: its function in wounding and biotic stress. Plant Physiology, 141(3), pp. 1045-1055.

Veronico, P., Giannino, D., Melillo, M., Leone, A., Reyes, A., Kennedy, M. and Bleve-Zacheo, T. (2006) A novel lipoxygenase in pea roots. Its function in wounding and biotic stress. Plant Physiology, 141, pp. 1045-1055. (doi: 10.1104/pp.106.081679)

Amtmann, A. (2005) Abiotic stress and plant genome evolution. Search for new models. Plant Physiology, 138(1), pp. 127-130. (doi: 10.1104/pp.105.059972)

Love, A., Yun, B., Laval, V., Loake, G. and Milner, J. (2005) Cauliflower mosaic virus, a compatible pathogen of Arabidopsis, engages three distinct defense-signaling pathways and activates rapid systemic generation of reactive oxygen species. Plant Physiology, 139, pp. 935-948. (doi: 10.1104/pp.105.066803)

Boxall, S., Foster, J., Bohnert, H., Cushman, J., Nimmo, H. and Hartwell, J. (2005) Conservation and divergence of circadian clock operation in a stress-inducible crassulacean acid metabolism species reveals clock compensation against stress. Plant Physiology, 137, pp. 969-982. (doi: 10.1104/pp.104.054577)

Taybi, T., Nimmo, H.G. and Borland, A.M. (2004) Expression of phosphoenolpyruvate carboxylase and phosphoenolpyruvate carboxylase kinase genes. Implications for genotypic capacity and phenotypic plasticity in the expression of crassulacean acid metabolism. Plant Physiology, 135(1), pp. 587-598. (doi: 10.​1104/​pp.​103.​036962) (PMID:15133148)

Taybi, T., Nimmo, H. and Borland, A. (2004) Expression of phosphoenolpyruvate carboxylase and phosphoenolpyruvate carboxylase kinase genes. Implications for genotypic cavacity and phenotypic plasticity in the expression of crassulacean acid metabolism. Plant Physiology, 135, pp. 587-598. (doi: 10.1104/pp.103.036962)

Sokolovski, S. and Blatt, M. (2004) Nitric oxide block of outward-rectifying K+ channels indicates direct control by protein nitrosylation in guard cells. Plant Physiology, 136, pp. 4275-4284. (doi: 10.1104/pp.104.050344)

Armengaud, P., Breitling, R. and Amtmann, A. (2004) The potassium-dependent transcriptome of Arabidopsis reveals a prominent role of jasmonic acid in nutrient signaling. Plant Physiology, 136, pp. 2556-2576. (doi: 10.1104/pp.104.046482)

Sullivan, S. , Jenkins, G. and Nimmo, H. (2004) Roots, cycles and leaves. Expression of the phosphoenolpyruvate carboxylase kinase gene family in soybean. Plant Physiology, 135, pp. 2078-2087. (doi: 10.1104/pp.104.042762)

Hrabak, E. et al. (2003) The Arabidopsis CDPK-SnRK superfamily of protein kinases. Plant Physiology, 132, pp. 666-680. (doi: 10.1104/pp.102.011999)

Wade, H., Sohal, A. and Jenkins, G. (2003) Arabidopsis ICX1 is a negative regulator of several pathways regulating flavonoid biosynthesis genes. Plant Physiology, 131, pp. 707-715. (doi: 10.1104/pp.012377)

Kohler, B., Hills, A. and Blatt, M. (2003) Control of guard cell ion channels by hydrogen peroxide and abscisic acid indicates their action through alternate signaling pathways. Plant Physiology, 131, pp. 385-388. (doi: 10.1104/pp.016014)

Marsh, J., Sullivan, S. , Hartwell, J. and Nimmo, H. (2003) Structure and expression of phosphoenolpyruvate carboxylase kinase genes in solanaceae. A novel gene exhibits alternative splicing. Plant Physiology, 133, pp. 2021-2028. (doi: 10.1104/pp.103.030775)

Kashara, M. et al. (2002) Photochemical properties of the flavin mononucleotide-binding domains of the phototropins from Arabidopsis, rice, and Chlamydomonas reinhardtii. Plant Physiology, 129(2), pp. 762-773. (doi: 10.1104/pp.002410)

Piazza, P., Procissi, A., Jenkins, G. and Tonelli, C. (2002) Members of the c1/pl1 regulatory gene family mediate the response of maize aleurone and mesocotyl to different light qualities and cytokinins. Plant Physiology, 128, pp. 1077-1086.

Orfila, C., Seymour, G., Willats, W., Huxham, I., Jarvis, M., Dover, C., Thompson, A. and Knox, J. (2001) Altered middle lamella homogalacturonan and disrupted deposition of (1 -> 5)-alpha-L-arabinan in the pericarp of Cnr, a ripening mutant of tomato. Plant Physiology, 126, pp. 210-221.

Nagel, O.W., Waldron, S. and Jones, H.G. (2001) An off-line implementation of the stable isotope technique for measurements of alternative respiratory pathway activities. Plant Physiology, 127(3), pp. 1279-1286.

Amtmann, A. (2001) Phylogenetic relationships within cation transporter families of Arabidopsis. Plant Physiology, 126(4), pp. 1646-1667. (doi: 10.1104/pp.126.4.1646)

Amtmann, A. (2001) The wheat cDNA LCT1 generates hypersensitivity to sodium in a salt-sensitive yeast strain. Plant Physiology, 126(3), pp. 1061-1071. (doi: 10.1104/pp.126.3.1061)

Borland, A. M., Hartwell, J., Jenkins, G. I. , Wilkins, M. B. and Nimmo, H. G. (1999) Metabolite control overrides circadian regulation of phosphoenolpyruvate carboxylase kinase and CO2 fixation in crassulacean acid metabolism. Plant Physiology, 121(3), pp. 889-896. (doi: 10.1104/pp.121.3.889) (PMID:10557237)

Cook, R.M., Lindsay, J.G., Wilkins, M.B. and Nimmo, H.G. (1995) Decarboxylation of malate in the Crassulacean acid metabolism plant Bryophyllum (Kalanchoe) fedtschenkoi (role of NAD-malic enqyme). Plant Physiology, 109(4), pp. 1301-1307. (doi: 10.1104/pp.109.4.1301) (PMID:12228671)

This list was generated on Mon Sep 2 10:18:15 2024 BST.