02.07.2013 Views

The Plant Vascular System: Evolution, Development and FunctionsF

The Plant Vascular System: Evolution, Development and FunctionsF

The Plant Vascular System: Evolution, Development and FunctionsF

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

Hickey L (1973) Classification of the architecture of dicotyledonous<br />

leaves. Amer. J. Bot. 60, 17–33.<br />

Hirakawa Y, Kondo Y, Fukuda H (2010) Regulation of vascular<br />

development by CLE peptide-receptor systems. J. Integr. <strong>Plant</strong> Biol.<br />

52, 8–16.<br />

Hirakawa Y, Kondo Y, Fukuda H (2010) TDIF peptide signaling<br />

regulates vascular stem cell proliferation via the WOX4 homeobox<br />

gene in Arabidopsis. <strong>Plant</strong> Cell 22, 2618–2629.<br />

Hirakawa Y, Kondo Y, Fukuda H (2011) Establishment <strong>and</strong> maintenance<br />

of vascular cell communities through local signaling. Curr.<br />

Opin. <strong>Plant</strong> Biol. 14, 17–23.<br />

Hirakawa Y, Shinohara H, Kondo Y, Inoue A, Nakanomyo I, Ogawa<br />

M, Sawa S, Ohashi-Ito K, Matsubayashi Y, Fukuda H (2008)<br />

Non-cell-autonomous control of vascular stem cell fate by a CLE<br />

peptide/receptor system. Proc. Natl. Acad. Sci. USA 105, 15208–<br />

15213.<br />

Hirose N, Takei K, Kuroha T, Kamada-Nobusada T, Hayashi H,<br />

Sakakibara H (2008) Regulation of cytokinin biosynthesis, compartmentalization<br />

<strong>and</strong> translocation. J. Exp. Bot. 59, 75–83.<br />

Hoad GV (1995) Transport of hormones in the phloem of higher plants.<br />

<strong>Plant</strong> Growth Reg. 16, 173–182.<br />

Hoffman-Thoma G, van Bel AJE, Ehlers K (2001) Ultrastructure of<br />

minor-vein phloem <strong>and</strong> assimilate export in summer <strong>and</strong> winter<br />

leaves of the symplasmically loading evergreens Ajuga reptans L.,<br />

Aucuba japonica Thumb. <strong>and</strong> Hedrix helix L. <strong>Plant</strong>a 212, 231–242.<br />

Holbrook NM, Shashidhar VR, James RA, Munns R (2002) Stomatal<br />

control in tomato with ABA-deficient roots: Response of grafted<br />

plants to soil drying. J. Exp. Bot. 53, 1503–1514.<br />

Holtta T, Mencuccini M, Nikinmaa E (2011) A carbon cost-gain model<br />

explains the observed patterns of xylem safety <strong>and</strong> efficiency. <strong>Plant</strong><br />

Cell Environ. 34, 1819–1834.<br />

Holtta T, Juurola E, Lindfors L, Porcar-Castell A (2012) Cavitation<br />

induced by a surfactant leads to transient release of water stress<br />

<strong>and</strong> subsequent “run away” embolism in scots pine (Pinus sylvestris)<br />

seedlings. J. Exp. Bot. 63, 1057–1067.<br />

Hu G, deHart AKA, Li Y, Ustach C, H<strong>and</strong>ley V, Navarre R, Hwang<br />

CF, Aegerter BJ, Williamson VM, Baker B (2005) EDS1 in tomato<br />

is required for resistance mediated by TIR-class R genes <strong>and</strong> the<br />

receptor-like R gene Ve. <strong>Plant</strong> J. 42, 376–391.<br />

Hu H, Penn SG, Lebrilla CB, Brown PH (1997) Isolation <strong>and</strong> characterization<br />

of soluble boron complexes in higher plants: <strong>The</strong> mechanism<br />

of phloem mobility of boron. <strong>Plant</strong> Physiol. 113, 649–655.<br />

Hu L, Sun H, Li R, Zhang L, Wang S, Sui X, Zhang Z (2011) Phloem<br />

unloading follows an extensive apoplasmic pathway in cucumber<br />

(Cucumis sativa L.) fruit from anthesis to marketable maturing stage.<br />

<strong>Plant</strong> Cell Environ. 40, 743–748.<br />

Huang SW, Li RQ, Zhang ZH, Li L, Gu XF, Fan W, Lucas WJ,<br />

Wang XW, Xie BY, Ni PX, Ren YY, Zhu HM, Li J, Lin K, Jin<br />

WW, Fei ZJ, Li GC, Staub J, Kilian A, van der Vossen EAG,<br />

Wu Y, Guo J, He J, Jia ZQ, Ren Y, Tian G, Lu Y, Ruan J, Qian<br />

WB, Wang MW, Huang QF, Li B, Xuan ZL, Cao JJ, Asan, Wu<br />

ZG, Zhang JB, Cai QL, Bai YQ, Zhao BW, Han YH, Li Y, Li<br />

Insights into <strong>Plant</strong> <strong>Vascular</strong> Biology 371<br />

XF, Wang SH, Shi QX, Liu SQ, Cho WK, Kim JY, Xu Y, Heller-<br />

Uszynska K, Miao H, Cheng ZC, Zhang SP, Wu J, Yang YH,<br />

KangHX,LiM,LiangHQ,RenXL,ShiZB,WenM,JianM,<br />

Yang HL, Zhang GJ, Yang ZT, Chen R, Liu SF, Li JW, Ma LJ,<br />

Liu H, Zhou Y, Zhao J, Fang XD, Li GQ, Fang L, Li YR, Liu DY,<br />

Zheng HK, Zhang Y, Qin N, Li Z, Yang GH, Yang S, Bolund L,<br />

Kristiansen K, Zheng HC, Li SC, Zhang XQ, Yang HM, Wang J,<br />

Sun RF, Zhang BX, Jiang SZ, Wang J, Du YC, Li SG (2009) <strong>The</strong><br />

genome of the cucumber, Cucumis sativus L. Nat. Genet. 41, 1275–<br />

1281.<br />

Huang NC, Yu TS (2009) <strong>The</strong> sequences of Arabidopsis GA-<br />

INSENSITIVE RNA constitute the motifs that are necessary <strong>and</strong><br />

sufficient for RNA long-distance trafficking. <strong>Plant</strong> J. 59, 921–929.<br />

Huang NC, Jane WN, Chen J, Yu TS (2012) Arabidopsis thaliana<br />

CENTRORADIALIS homologue (ATC) acts systemically to inhibit<br />

floral initiation in Arabidopsis. <strong>Plant</strong> J. 72, 175–184.<br />

Hubbard RM, Stiller V, Ryan MG, Sperry JS (2001) Stomatal conductance<br />

<strong>and</strong> photosynthesis vary linearly with plant hydraulic<br />

conductance in ponderosa pine. <strong>Plant</strong> Cell Environ. 24, 113–<br />

121.<br />

Husb<strong>and</strong>s AY, Chitwood DH, Plavskin Y, Timmermans MC (2009)<br />

Signals <strong>and</strong> prepatterns: New insights into organ polarity in plants.<br />

Genes Dev. 23, 1986–1997.<br />

Hussain D, Haydon MJ, Wang Y, Wong E, Sherson SM, Young<br />

J, Camakaris J, Harper JF, Cobbett CS (2004) P-type ATPase<br />

heavy metal transporters with roles in essential zinc homeostasis in<br />

Arabidopsis. <strong>Plant</strong> Cell 16, 1327–1339.<br />

Ilegems M, Douet V, Meylan-Bettex M, Uyttewaal M, Br<strong>and</strong> L,<br />

Bowman JL, Stieger PA (2010) Interplay of auxin, kanadi <strong>and</strong><br />

class iii hd-zip transcription factors in vascular tissue formation.<br />

<strong>Development</strong> 137, 975–984.<br />

Imai A, Hanzawa Y, Komura M, Yamamoto KT, Komeda Y, Takahashi<br />

T (2006) <strong>The</strong> dwarf phenotype of the Arabidopsis acl5 mutant<br />

is suppressed by a mutation in an upstream ORF of a bHLH gene.<br />

<strong>Development</strong> 133, 3575–3585.<br />

Imai A, Komura M, Kawano E, Kuwashiro Y Takahashi T (2008)<br />

A semi-dominant mutation in the ribosomal protein L10 gene<br />

suppresses the dwarf phenotype of the acl5 mutant in Arabidopsis<br />

thaliana. <strong>Plant</strong> J. 56, 881–890.<br />

Ingle RA, Mugford ST, Rees JD, Campbell MM, Smith JAC (2005)<br />

Constitutively high expression of the histidine biosynthetic pathway<br />

contributes to nickel tolerance in hyperaccumulator plants. <strong>Plant</strong><br />

Cell 17, 2089–2106.<br />

Ingram P, Dettmer J, Helariutta Y, Malamy JE (2011) Arabidopsis<br />

lateral root development 3 is essential for early phloem development<br />

<strong>and</strong> function, <strong>and</strong> hence for normal root system development. <strong>Plant</strong><br />

J. 68, 455–467.<br />

Irtelli B, Petrucci WA, Navari-Izzo F (2009) Nicotianamine <strong>and</strong><br />

histidine/proline are, respectively, the most important copper<br />

chelators in xylem sap of Brassica carinata under conditions<br />

of copper deficiency <strong>and</strong> excess. J. Exp. Bot. 60, 269–<br />

277.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!