30.05.2014 Views

A comparative structural analysis of direct and indirect shoot ...

A comparative structural analysis of direct and indirect shoot ...

A comparative structural analysis of direct and indirect shoot ...

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.

Aluminium sensitivity <strong>of</strong> root cells related to aluminium internalization 4213<br />

Santelia D, Vincenzetti V, Azzarello E, Bovet L, Fukao Y,<br />

Düchtig P, Mancuso S, Martinoia E, Geisler M. 2005. MDRlike<br />

ABC transporter AtPGP4 is involved in auxin-mediated lateral<br />

root <strong>and</strong> root hair development. FEBS Letters 579, 5399–5406.<br />

Schlicht M, Strnad M, Scanlon MJ, Mancuso S, Hochholdinger<br />

F, Palme K, Volkmann D, Menzel D, Baluška F. 2006. Auxin<br />

immunolocalization implicates vesicular neurotransmitter-like<br />

mode <strong>of</strong> polar auxin transport in root apices. Plant Signaling <strong>and</strong><br />

Behavior 1, 122–133.<br />

Schmohl N, Horst WJ. 2000. Cell wall pectin content modulates<br />

aluminium sensitivity <strong>of</strong> Zea mays (L.) cells grown in suspension<br />

culture. Plant, Cell <strong>and</strong> Environment 23, 735–742.<br />

Silva IR, Smyth TJ, Moxley DF, Carter TE, Thomas EC, Allen<br />

NS, Rufty TW. 2000. Aluminum accumulation at nuclei <strong>of</strong> cells<br />

in the root tip. Fluorescence detection using lumogallion <strong>and</strong> confocal<br />

laser scanning microscopy. Plant Physiology 123, 543–552.<br />

Sivaguru M, Baluška F, Volkmann D, Felle HH, Horst WJ. 1999.<br />

Impact <strong>of</strong> aluminum on the cytoskeleton <strong>of</strong> the maize root apex.<br />

Short-term effects on the distal part <strong>of</strong> the transition zone. Plant<br />

Physiology 119, 1073–1082.<br />

Sivaguru M, Ezaki B, He ZH, Tong H, Osawa H, Baluška F,<br />

Volkmann D, Matsumoto H. 2003a. Aluminum-induced gene<br />

expression <strong>and</strong> protein localization <strong>of</strong> a cell wall-associated receptor<br />

kinase in Arabidopsis. Plant Physiology 132, 2256–2266.<br />

Sivaguru M, Horst WJ. 1998. The distal part <strong>of</strong> the transition zone<br />

is the most aluminium-sensitive apical root zone <strong>of</strong> Zea mays L.<br />

Plant Physiology 116, 155–163.<br />

Sivaguru M, Pike S, Gassmann W, Baskin TI. 2003b. Aluminum<br />

rapidly depolymerizes cortical microtubules <strong>and</strong> depolarizes the<br />

plasma membrane: evidence that these responses are mediated by<br />

a glutamate receptor. Plant Cell Physiology 44, 667–675.<br />

Taylor GJ, McDonald-Stephens JL, Hunter DB, Bertsch DB,<br />

Elmore D, Rengel Z, Reid RJ. 2000. Direct measurement <strong>of</strong><br />

aluminum uptake <strong>and</strong> distribution in single cells <strong>of</strong> Chara<br />

corallina. Plant Physiology 123, 987–996.<br />

Tice KR, Parker DR, DeMason DA. 1992. Operationally defined<br />

apoplastic <strong>and</strong> symplastic aluminum fractions in root tips <strong>of</strong><br />

aluminum-intoxicated wheat. Plant Physiology 100, 109–318.<br />

Vázquez MD. 2002. Aluminum exclusion mechanism in root tip <strong>of</strong><br />

maize (Zea mays L.): lysigeny <strong>of</strong> aluminum hyperaccumulator<br />

cells. Plant Biology 4, 234–249.<br />

Vázquez MD, Poschenrieder C, Corrales I, Barceló J. 1999.<br />

Change in apoplastic aluminum during the initial growth response<br />

to aluminum by roots <strong>of</strong> tolerant maize variety. Plant Physiology<br />

119, 435–444.<br />

Verbelen J-P, De Cnodder T, Le J, Vissenberg K, Baluška F.<br />

2006. The root apex <strong>of</strong> Arabidopsis thaliana consists <strong>of</strong> four<br />

distinct zones <strong>of</strong> cellular activities. Meristematic zone, transition<br />

zone, fast elongation zone, <strong>and</strong> growth terminating zone. Plant<br />

Signaling <strong>and</strong> Behavior (in press).<br />

Vida TA, Emr SD. 1995. A new vital stain for visualizing vacuolar<br />

membrane dynamics <strong>and</strong> endocytosis in yeast. Journal <strong>of</strong> Cell<br />

Biology 128, 779–792.<br />

Vitorello VA, Haug A. 1996. Short-term aluminium uptake by<br />

tobacco cells: growth dependence <strong>and</strong> evidence for internalization<br />

in a discrete peripheral region. Physiologia Plantarum 97,<br />

536–544.<br />

Vitorello VA, Haug A. 1997. An aluminium-morin fluorescence<br />

assay for the visualization <strong>and</strong> determination <strong>of</strong> aluminium in<br />

cultured cells <strong>of</strong> Nicotiana tabacum L. BY-2. Plant Science 122,<br />

35–42.<br />

Voigt B, Timmers ACJ, Šamaj J, et al. 2005. Actin-based motility<br />

<strong>of</strong> endosomes is linked to the polar tip-growth <strong>of</strong> root hairs.<br />

European Journal <strong>of</strong> Cell Biology 84, 609–621.<br />

Wang Y, Stass A, Horst WJ. 2004. Apoplastic binding <strong>of</strong> aluminum<br />

is involved in silicon-induced amelioration <strong>of</strong> aluminum toxicity in<br />

maize. Plant Physiology 136, 3762–3770.<br />

Wang G, Moniri NH, Ozawa K, Stamler JS, Daaka Y. 2006.<br />

Nitric oxide regulates endocytosis by S-nitrosylation <strong>of</strong> dynamin.<br />

Proceedings <strong>of</strong> the National Academy <strong>of</strong> Sciences, USA 103,<br />

1295–1300.<br />

Yu Q, Hlavačka A, Matoh T, Volkmann D, Menzel D, Goldbach<br />

HE, Baluška F. 2002. Short-term boron deprivation inhibits<br />

endocytosis <strong>of</strong> cell wall pectins in meristematic cells <strong>of</strong> maize <strong>and</strong><br />

wheat root apices. Plant Physiology 130, 415–421.

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

Saved successfully!

Ooh no, something went wrong!