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Mori IC, Murata Y, Yang Y, Munemasa S, Wang YF, Andreoli S, Tiriac H, Alonso JM, Harper JF,
Ecker JR, Kwak JM, Schroeder JI. CDPKs CPK6 and CPK3 function in ABA regulation
of guard cell S-type anion- and Ca 2 +
-permeable channels and stomatal closure. PLoS Biol.
2006;4:e327.
Mortimer JC, Laohavisit A, Macpherson N, Webb A, Brownlee C, Battey NH, Davies
JM. Annexins: multifunctional components of growth and adaptation. J Exp Bot.
2008;59:533-44.
Murata Y, Pei ZM, Mori IC, Schroeder J. Abscisic acid activation of plasma membrane Ca 2 +
channels in guard cells requires cytosolic NAD(P)H and is differentially disrupted upstream
and downstream of reactive oxygen species production in abi1-1 and abi2-1 protein phos-
phatase 2C mutants. Plant Cell. 2001;13:2513-23.
Mustilli AC, Merlot S, Vavasseur A, Fenzi F, Giraudat J. Arabidopsis OST1 protein kinase medi-
ates the regulation of stomatal aperture by abscisic acid and acts upstream of reactive oxy-
gen species production. Plant Cell. 2002;14:3089-99.
Nadeau JA. Stomatal development: new signals and fate determinants. Curr Opin Plant Biol.
2009;12: 29-35.
Negi J, Matsuda O, Nagasawa T, Oba Y, Takahashi H, Kawai-Yamada M, Uchimiya H,
Hashimoto M, Iba K. CO 2 regulator SLAC1 and its homologues are essential for anion
homeostasis in plant cells. Nature. 2008;452:483-6.
Nishimura N, Hitomi K, Arvai AS, Rambo RP, Hitomi C, Cutler SR, Schroeder JI, Getzoff ED.
Structural mechanism of abscisic acid binding and signaling by dimeric PYR1. Science.
2009;326:1373-9.
Nishimura N, Sarkeshik A, Nito K, Park SY, Wang A, Carvalho PC, Lee S, Caddell DF, Cutler
SR, Chory J, Yates JR, Schroeder JI. PYR/PYL/RCAR family members are major in-vivo
ABI1 protein phosphatase 2C-interacting proteins in Arabidopsis . Plant J. 2010;61:290-9.
Pandey S, Nelson DC, Assmann SM. Two novel GPCR-type G proteins are abscisic acid recep-
tors in Arabidopsis . Cell. 2009;136:136-48.
Park SY, Fung P, Nishimura N, Jensen DR, Fujii H, Zhao Y, Lumba S, Santiago J, Rodrigues
A, Chow TF, Alfred SE, Bonetta D, Finkelstein R, Provart NJ, Desveaux D, Rodriguez
PL, McCourt P, Zhu JK, Schroeder JI, Volkman BF, Cutler SR. Abscisic acid inhib-
its type 2C protein phosphatases via the PYR/PYL family of START proteins. Science.
2009;324:1068-71.
Pei ZM, Ward JM, Schroeder JI. Magnesium sensitizes slow vacuolar channels to physiological
cytosolic calcium and inhibits fast vacuolar channels in fava bean guard cell vacuoles. Plant
Physiol. 1999;121:977-86.
Pei ZM, Kuchitsu K, Ward JM, Schwarz M, Schroeder JI. Differential abscisic acid regulation of
guard cell slow anion channels in Arabidopsis wild-type and abi1 and abi2 mutants. Plant
Cell. 1997;9:409-23.
Pei ZM, Murata Y, Benning G, Thomine S, Klusener B, Allen GJ, Grill E, Schroeder JI. Calcium
channels activated by hydrogen peroxide mediate abscisic acid signalling in guard cells.
Nature. 2000;406:731-4.
Peiter E, Maathuis FJ, Mills LN, Knight H, Pelloux J, Hetherington AM, Sanders D. The vacu-
olar Ca 2 +
-activated channel TPC1 regulates germination and stomatal movement. Nature.
2005;434:404-8.
Peuke AD, Jeschke WD, Hartung W. Flows of elements, ions and abscisic acid in Ricinus com-
munis and site of nitrate reduction under potassium limitation. J Exp Bot. 2002;53:241-50.
Pottosin II, Martínez-Est←vez M. Regulation of the fast vacuolar channel by cytosolic and vacu-
olar potassium. Biophy J. 2003;84:977-86.
Quarrie SA, Jones HG. Effects of abscisic acid and water stress on development and morphology
of wheat. J Exp Bot. 1977;28:192-203.
Rae AM, Ferris R, Tallis MJ, Taylor G. Elucidating genomic regions determining
enhanced leaf growth and delayed senescence in elevated CO 2 . Plant Cell Environ.
2006;29:1730-41.
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