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Boursiac Y, Lee SM, Romanowsky S, Blank R, Stadek C, Chung WS, Harper JF (2010) Disruption
of the vacuolar calcium-ATPase in Arabidopsis results in the activation of a salicylic acid-
dependent programmed cell death pathway. Plant Physiol 154:1158-1171
Boutrot F, Segonzac C, Chang KN, Qiao H, Ecker JR, Zipfel C (2010) Direct transcriptional
control of the Arabidopsis immune receptor FLS2 by the ethylene-dependent transcription
factors EIN3 and EIL1. Proc Natl Acad Sci U S A 107:14502-14507
Bush DS (1993) Regulation of cytosolic calcium in plants. Plant Physiol 103:7-13
Bush DS (1995) Calcium regulation in plant cells and its role in signaling. Annu Rev Plant Physiol
Plant Mol Biol 46:95-122
Bush J, Cheng SH, Sheen J (2010) Differential innate immune signalling via Ca 2+ sensor protein
kinases. Nature 464:418-422
Camoni L, Fullone MR, Marra M, Aduccia P (1998a) The plasma membrane H + -ATPase from
maize roots is phosphorylated in the C-terminal domain by a calcium-dependent protein kinase.
Physiol Plantarum 104:549-555
Camoni L, Harper JF, Palmgren MG (1998b) 14-3-3 proteins activate a plant calcium-dependent
protein kinase (CDPK). FEBS Lett 430:381-384
Cessna SG, Low PS (2001) Activation of the oxidative burst in aequorin-transformed Nicotiana
tabacum cells is mediated by protein kinase- and anion channel-dependent release of Ca 2+ from
internal stores. Planta 214:126-134
Charpenteau M, Jaworski K, Ramirez BC, Tretyn A, Ranjeva R, Ranty B (2004) A receptor-like
kinase from Arabidopsis thaliana is a calmodulin-binding protein. Biochem J 379:841-848
Chen J, Zhang Y, Wang C, Lu W, Jin JB, Hua X (2011) Proline induces calcium-mediated oxidative
burst and salicylic acid signaling. Amino Acids 40:1473-1484
Cheng S-H, Sheen J, Gerrish C, Bolwell GP (2001) Molecular identifi cation of phenylalanine
ammonia-lyase as a substrate of a specifi c constitutively active Arabidopsis CDPK expressed
in maize protoplasts. FEBS Lett 503:185-188
Cheng S-H, Willmann MR, Chen H-C, Sheen J (2002) Calcium signaling through protein kinases:
the Arabidopsis calcium-dependent protein kinase gene family. Plant Physiol 129:469-485
Chern M-S, Fitzgerald H, Yadav RC, Canlas PE, Dong X, Ronald PC (2001) Evidence for a
disease-resistance pathway in rice similar to the NPR1 -mediated signaling pathway in
Arabidopsis. Plant J 27:101-113
Chiasson D, Ekengren SK, Martin GB, Dobney SL, Snedden WA (2005) Calmodulin-like proteins
from Arabidopsis and tomato are involved in host defense against pseudomonas syringae pv.
tomato . Plant Mol Biol 58:887-897
Chico JM, Raíces M, Téllez-Iñón MT, Ulloa RM (2002) A calcium-dependent protein kinase is
systemically induced upon wounding in tomato plants. Plant Physiol 128:256-270
Chiu J, DeSalle R, Lam HM, Meisel L, Coruzzi G (1999) Molecular evolution of glutamate
receptors: a primitive signaling mechanism that existed before plants and animals diverged.
Mol Biol Evol 16:826-838
Chiu JC, Brenner ED, DeSalle R, Nitabach MN, Holmes TC, Coruzzi GM (2002) Phylogenetic
and expression analysis of the glutamate-receptor-like gene family in Arabidopsis thaliana .
Mol Biol Evol 19:1066-1082
Cho MJ, Vaghy PI, Kondo R, Lee SH, Davis JP, Rehl R, Heo WD, Johnson JD (1998) Reciprocal
regulation of mammalian nitric oxide synthase and calcineurin by plant calmodulin isoforms.
Biochemistry 37:15593-15597
Choi MS, Kim MC, Yoo JH, Moon BC, Koo SC, Park BO, Lee JH, Koo YD, Han HJ, Lee SY,
Chung WS, Lim CO, Cho MJ (2005) Isolation of a calmodulin-binding transcription factor
from rice ( Oryza sativa L.). J Biol Chem 280:40820-40831
Choi HW, Lee DH, Hwang BK (2009) The pepper calmodulin gene CaCaM1 is involved in
reactive oxygen species and nitric oxide generation required for cell death and the defense
response. Mol Plant Microbe Interact 22:1389-1400
Chung H-J, Sehnke PC, Fert RJ (1999) The 14-3-3 proteins: cellular regulation of plant metabolism.
Trends Plant Sci 4:367-371
Clapham DE (2007) Calcium signaling. Cell 131:1047-1058
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