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The Plant Vascular System: Evolution, Development and FunctionsF

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ultrastructure <strong>and</strong> pressure flow: Sieve-element-occlusion-related<br />

agglomerations do not affect translocation. <strong>Plant</strong> Cell 23, 4428–<br />

4445.<br />

Fu ZQ, Yan S, Saleh A, Wang W, Ruble J, Oka N, Mohan R,<br />

Spoel SH, Tada Y, Zheng Y, Dong X (2012) NPR3 <strong>and</strong> NPR4<br />

are receptors for the immune signal salicylic acid in plants. Nature<br />

16, 228–232.<br />

Fukuda H (2000) Programmed cell death of tracheary elements as a<br />

paradigm in plants. <strong>Plant</strong> Mol. Biol. 44, 245–253.<br />

Fukuda H (2004) Signals that control plant vascular cell differentiation.<br />

Nat. Rev. Mol. Cell Biol. 5, 379–391.<br />

Fukuda H, Hirakawa Y, Sawa S (2007) Peptide signaling in vascular<br />

development. Curr. Opin. <strong>Plant</strong> Biol. 10, 477–482.<br />

Funk V, Kositsup B, Zhao C, Beers EP (2002) <strong>The</strong> Arabidopsis xylem<br />

peptidase XCP1 is a tracheary element vacuolar protein that may<br />

be a papain ortholog. <strong>Plant</strong> Physiol. 128, 84–94.<br />

Gabaldon C, Ros LVG, Pedreno MA, Barcelo AR (2005) Nitric oxide<br />

production by the differentiating xylem of Zinnia elegans. New<br />

Phytol. 165, 121–130.<br />

Gaffney T, Friedrich L, Vernooij B, Negmtto D, Nye G, Uknes S,<br />

Ward E, Kessmann H, Ryals J (1993) Requirement of salicylic<br />

acid for the induction of systemic acquired resistance. Science 261,<br />

754–756.<br />

Gallagher KL, Benfey PN (2009) Both the conserved GRAS domain<br />

<strong>and</strong> nuclear localization are required for SHORT-ROOT movement.<br />

<strong>Plant</strong> J. 57, 785–797.<br />

García AV, Blanvillain-Baufumé S,HuibersRP,WiermerM,LiG,<br />

Gobbato E, Rietz S, Parker JE (2010) Balanced nuclear <strong>and</strong><br />

cytoplasmic activities of EDS1 are required for a complete plant<br />

innate immune response. PLoS Pathogens 6, e1000970<br />

Garcia-Mas J, Benjak A, Sanseverino W, Bourgeois M, Mir G,<br />

González VM, Hénaff E, Câmara F, Cozzuto L, Lowy E, Alioto<br />

T, Capella-Gutiérrez S, Blanca J, Cañizares J, Ziarsolo P,<br />

Gonzalez-Ibeas D, Rodríguez-Moreno L, Droege M, Du L,<br />

Alvarez-Tejado M, Lorente-Galdos B, Melé M, Yang L, Weng<br />

YQ, Navarro A, Marques-Bonet T, Ar<strong>and</strong>a MA, Nuez F, Picó<br />

B, Gabaldón T, Roma G, Guigó R, Casacuberta JM, Arús P,<br />

Puigdomènech P (2012) <strong>The</strong> genome of melon (Cucumis melo L.)<br />

Proc. Natl. Acad. Sci. USA 109, 11872–11877.<br />

Gardiner J, Donner TJ, Scarpella E (2011) Simultaneous activation<br />

of SHR <strong>and</strong> ATHB8 expression defines switch to preprocambial cell<br />

state in Arabidopsis leaf development. Dev. Dynam. 240, 261–270.<br />

Gaupels F, Buhtz A, Knauer T, Deshmurkh S, Waller F, van Bel<br />

AJE, Kogel KH, Kehr J (2008a) Adaption of aphid stylectomy for<br />

analyses of proteins <strong>and</strong> mRNA in barley phloem sap. J. Exp. Bot.<br />

59, 3297–3306.<br />

Gaupels F, Knauer T, van Bel AJE (2008b) A combinatory approach<br />

for analysis of protein sets in barley sieve-tube samples using<br />

EDTA-facilitated exudation <strong>and</strong> aphid stylectomy. J. <strong>Plant</strong> Physiol.<br />

165, 95–103.<br />

Gendre D, Czernic P, Conejero G, Pianelli K, Briat J, Lebrun M, Mari<br />

S (2007) TcYSL3, a member of the YSL gene family from the hyper-<br />

Insights into <strong>Plant</strong> <strong>Vascular</strong> Biology 369<br />

accumulator Thlaspi caerulescens, encodes a nicotianamine-Ni/Fe<br />

transporter. <strong>Plant</strong> J. 49, 1–15.<br />

Genoud T, Buchala AJ, Chua NH, Metraux JP (2002) Phytochrome<br />

signalling modulates the SA-perceptive pathway in Arabidopsis.<br />

<strong>Plant</strong> J. 31, 87–95.<br />

Ghanem ME, Albacete A, Smigocki AC, Frébort I, Pospísilová<br />

H, Martínez-Andújar C, Acosta M, Sánchez-Bravo J, Lutts S,<br />

Dodd IC, Pérez-Alfocea F (2011) Root-synthesized cytokinins<br />

improve shoot growth <strong>and</strong> fruit yield in salinized tomato (Solanum<br />

lycopersicum L.) plants. J. Exp. Bot. 62, 125–140.<br />

Giaquinta RT (1983) Phloem loading of sucrose. Annu. Rev. <strong>Plant</strong><br />

Physiol. 34, 347–387.<br />

Giavalisco P, Kapitza K, Kolasa A, Buhtz A, Kehr J (2006) Towards<br />

theproteomeofBrassica napus phloem sap. Proteomics 6, 896–<br />

909.<br />

Glazebrook J, Ausubel FM (1994) Isolation of phytoalexin-deficient<br />

mutants of Arabidopsis thaliana <strong>and</strong> characterization of their interactions<br />

with bacterial pathogens. Proc. Natl. Acad. Sci. USA 91,<br />

8955–8959.<br />

Glazebrook J, Rogers EE, Ausubel FM (1996) Isolation of Arabidopsis<br />

mutants with enhanced disease susceptibility by direct screening.<br />

Genetics 143, 973–982.<br />

Golecki B, Schulz A, Carstens-Behrens U, Kollmann R (1998)<br />

Evidence for graft transmission of structural phloem proteins or<br />

their precursors in heterografts of Cucurbitaceae. <strong>Plant</strong>a 206,<br />

630–640.<br />

Golecki B, Schulz A, Thompson GA (1999) Translocation of structural<br />

P proteins in the phloem. <strong>Plant</strong> Cell 11, 127–140.<br />

Gomez-Roldan V, Fermas S, Brewer PB, Puech-Pagès V, Dun<br />

EA, Pillot JP, Letisse F, Matusova R, Danoun S, Portais<br />

JC, Bouwmeester H, Bécard G, Beveridge CA, Rameau C,<br />

Rochange SF (2008) Strigolactone inhibition of shoot branching.<br />

Nature 455, 189–194.<br />

Gould N, Minchin PEH, Thorpe MR (2004a) Direct measurements of<br />

sieve element hydrostatic pressure reveal strong regulation after<br />

pathway blockage. Funct. <strong>Plant</strong> Biol. 31, 987–993.<br />

Gould N, Thorpe MR, Koroleva O, Minchin PEH (2005) Phloem<br />

hydrostatic pressure relates to solute loading rate: A direct test of<br />

the Münch hypothesis. Funct. <strong>Plant</strong> Biol. 32, 1019–1026.<br />

Gould N, Thorpe MR, Minchin PEH, Pritchard J, White PJ (2004b)<br />

Solute is imported to elongating root cells of barley as a pressure<br />

driven-flow of solution. Funct. <strong>Plant</strong> Biol. 31, 391–397.<br />

Grimmer C, Komor E (1999) Assimilate export by leaves of Ricinus<br />

communis L. growing under normal <strong>and</strong> elevated carbon dioxide<br />

concentrations: <strong>The</strong> same rate during the day, a different rate at<br />

night. <strong>Plant</strong>a 209, 275–281.<br />

Grodzinski B, Jiao J, Leonardos ED (1998) Estimating photosynthesis<br />

<strong>and</strong> concurrent export rates in C3 <strong>and</strong> C4 species at ambient<br />

<strong>and</strong> elevated CO2. <strong>Plant</strong> Physiol. 117, 207–215.<br />

Grusak MA (1994) Iron transport to developing ovules of Pisum<br />

sativum. (I. seed import characteristics <strong>and</strong> phloem iron-loading<br />

capacity of source regions). <strong>Plant</strong> Physiol. 104, 649–655.

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