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The Plant Vascular System: Evolution, Development and FunctionsF

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Palauqui JC, Elmayan T, deBorne FD, Crete P, Charles C,<br />

Vaucheret H (1996) Frequencies, timing, <strong>and</strong> spatial patterns of cosuppression<br />

of nitrate reductase <strong>and</strong> nitrite reductase in transgenic<br />

tobacco plants. <strong>Plant</strong> Physiol. 112, 1447–1456.<br />

Palauqui JC, Elmayan T, Pollien JM, Vaucheret H (1997) <strong>System</strong>ic<br />

acquired silencing: Transgene-specific post-transcriptional silencing<br />

is transmitted by grafting from silenced stocks to non-silenced<br />

scions. EMBO J. 16, 4738–4745.<br />

Pallas JA, Paiva NL, Lamb C, Dixon RA (1996) Tobacco plants epigenetically<br />

suppressed in phenylalanine ammonia-lyase expression<br />

do not develop systemic acquired resistance in response to infection<br />

by tobacco mosaic virus. <strong>Plant</strong> J. 10, 281–293.<br />

Pant BD, Buhtz A, Kehr J, Scheible WR (2008) MicroRNA399 is a<br />

long-distance signal for the regulation of plant phosphate homeostasis.<br />

<strong>Plant</strong> J. 53, 731–738.<br />

Parizot B, Laplaze L, Ricaud L, Boucheron-Dubuisson E, Bayle<br />

V, Bonke M, De Smet I, Poethig SR, Helariutta Y, Haseloff J,<br />

Chriqui D, Beeckman T, Nussaume L (2008) Diarch symmetry of<br />

the vascular bundle in Arabidopsis root encompasses the pericycle<br />

<strong>and</strong> is reflected in distich lateral root initiation. <strong>Plant</strong> Physiol. 146,<br />

140–148.<br />

Park M, Li Q, Shcheynikov N, Zeng W, Muallem S (2004) NaBC1 is<br />

a ubiquitous electrogenic Na + -coupled borate transporter essential<br />

for cellular boron homeostasis <strong>and</strong> cell growth <strong>and</strong> proliferation. Mol.<br />

Cell 16, 331–341.<br />

Park SW, Kaimoyo E, Kumar D, Mosher S, Klessig D (2007) Methyl<br />

salicylate is a critical mobile signal for plant systemic acquired<br />

resistance. Science 318, 113–116.<br />

Park SW, Liu PP, Forouhar F, Vlot AC, Tong L, Tietjen K, Klessig D<br />

(2009) Use of a synthetic salicylic acid analog to investigate the roles<br />

of methyl salicylate <strong>and</strong> its esterases in plant disease resistance. J.<br />

Biol. Chem. 284, 7307–7317.<br />

Parker J, Holub E, Frost L, Falk A, Gunn N, Daniels M (1996)<br />

Characterization of eds1, a mutation in Arabidopsis suppressing<br />

resistance to Peronospora parasitica specified by several different<br />

RPP genes. <strong>Plant</strong> Cell 8, 2033–2046.<br />

Passioura JB, Ashford AE (1974) Rapid translocation in the phloem<br />

of wheat roots. Aust. J. <strong>Plant</strong> Physiol. 1, 521–527.<br />

Peguero-Pina JS, Alquezar-Alquezar JM, Mayr S, Cochard H, Gil-<br />

Pelegrin D (2011) Embolism induced by winter drought in Pinus<br />

sylvestris L.: A possible reason for dieback near its southern<br />

distribution limit? Ann. For. Sci. 38, 565–574.<br />

Peleg-Grossman S, Golani Y, Kaye Y, Melamed-Book N, Levine<br />

A (2009) NPR1 protein regulates pathogenic <strong>and</strong> symbiotic interactions<br />

between Rhizobium <strong>and</strong> legumes <strong>and</strong> non-legumes. PLoS<br />

ONE 4, e8399.<br />

Pérez-Alfocea F, Ghanem ME, Gómez-Cadenas A, Dodd IC (2011)<br />

Omics of root-to-shoot signaling under salt stress <strong>and</strong> water deficit.<br />

OMIC 15, 893–901.<br />

Pesacreta TC, Groom LH, Rials TG (2005) Atomic force microscopy<br />

of the intervessel pit membrane in the stem of Sapium sebiferum<br />

(Euphorbiaceae). IAWA J. 26, 397–426.<br />

Insights into <strong>Plant</strong> <strong>Vascular</strong> Biology 379<br />

Pesquet E, Ranocha P, Legay S, Digonnet C, Barbier O, Pichon<br />

M, Goffner D (2005) Novel markers of xylogenesis in zinnia are<br />

differentially regulated by auxin <strong>and</strong> cytokinin. <strong>Plant</strong> Physiol. 139,<br />

1821–1839.<br />

Pesquet E, Korolev AV, Calder G, Lloyd CW (2010) <strong>The</strong> microtubuleassociated<br />

protein AtMAP70–5 regulates secondary wall patterning<br />

in Arabidopsis wood cells. Curr. Biol. 20, 744–749.<br />

Petráˇsek J, Mravec J, Bouchard R, Blakeslee JJ, Abas M, Seifertova<br />

D, Wisniewska J, Tadele Z, Kubes M, Covanova M,<br />

Dhonukshe P, Skupa P, Benkova E, Perry L, Krecek P, Lee<br />

OR, Fink GR, Geisler M, Murphy AS, Luschnig C, Zazimalova<br />

E, Friml J (2006) PIN proteins perform a rate-limiting function in<br />

cellular auxin efflux. Science 312, 914–918.<br />

Petráˇsek J, Friml J (2009) Auxin transport routes in plant development.<br />

<strong>Development</strong> 136, 2675–2688.<br />

Petty JA (1972) <strong>The</strong> aspiration of bordered pits in conifer wood. Proc.<br />

R. Soc. Ser. B. Biol. Sci. 181, 395–406.<br />

Petty JA, Preston RD (1969) <strong>The</strong> dimensions <strong>and</strong> number of pit<br />

membrane pores in conifer wood. Proc. R. Soc. Ser. B. Biol. Sci.<br />

172, 137–151.<br />

Peuke AD, Windt C, van As H (2006) Effects of cold girdling on flows in<br />

the transport phloem in Ricinus communis: Is mass flow inhibited?<br />

<strong>Plant</strong> Cell Environ. 29, 15–25.<br />

Pich A, Scholz G (1996) Translocation of copper <strong>and</strong> other micronutrients<br />

in tomato plants (Lycopersicon esculentum Mill.):<br />

Nicotianamine-stimulated copper transport in the xylem. J. Exp. Bot.<br />

47, 41–47.<br />

Pich A, Scholz G, Stephan U (1994) Iron-dependent changes of<br />

heavy-metals, nicotianamine, <strong>and</strong> citrate in different plant organs<br />

<strong>and</strong> in the xylem exudate of 2 tomato genotypes. Nicotianamine<br />

as possible copper translocator. <strong>Plant</strong> Soil 165, 189–<br />

196.<br />

Pickard WF (1981) <strong>The</strong> ascent of sap in plants. Progr. Biophys. Mol.<br />

Biol. 37, 181–229.<br />

Pieruschka R, Huber G, Berry JA (2010) Control of transpiration by<br />

radiation. Proc. Natl. Acad. Sci. USA 107, 13372–13377.<br />

Piquemal J, LaPierre C, Myton K, O’Connel A, Schuch W, Grima-<br />

Pettenati J, Boudet AM (1998) Down-regulation of cinnamoyl-CoA<br />

reductase induces significant changes of lignin profiles in transgenic<br />

tobacco plants. <strong>Plant</strong> J. 13, 71–83.<br />

Pires ND, Dolan L (2012) Morphological evolution in l<strong>and</strong> plants: New<br />

designs with old genes. Phil Trans. R. Soc. 367, 508–518.<br />

Pittermann J (2010) <strong>The</strong> evolution of water transport in plants: An<br />

integrated approach. Goebiology 8, 112–139.<br />

Pittermann J, Sperry JS (2003) Tracheid diameter is the key trait<br />

determining extent of freezing-induced cavitation in conifers. Tree<br />

Physiol. 23, 907–914.<br />

Pittermann J, Sperry JS (2006) Analysis of freeze-thaw embolism in<br />

conifers: <strong>The</strong> interaction between cavitation pressure <strong>and</strong> tracheid<br />

size. <strong>Plant</strong> Physiol. 140, 374–382.<br />

Pittermann J, Sperry JS, Hacke UG, Wheeler JK, Sikkema EH (2005)<br />

Torus-margo pits help conifers compete with angiosperms. Science

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