Plant Tropisms

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Jaffe MJ, Galston AW. 1968. The physiology of tendrils. Annual Review of Plant Physiology19:
417–434.
Janmey PA, Weitz DA. 2004. Dealing with mechanics: mechanisms of force transduction in cells.
Trends in Biochemical Science29: 364–370.
Jones RS, Mitchell CA. 1989. Calcium ion involvement in growth inhibition of mechanically
stressed soybean (Glycine max) seedlings. Physiologia Plantarum76: 598–602.
Joo JH, Bae YS, Lee JS. 2001. Role of auxin-induced reactive oxygen species in root gravitropism.
Plant Physiology126: 1055–1060.
Joo JH, Yoo HJ, Hwang I, Lee JS, Nam KH, Bae YS. 2005. Auxin-induced reactive oxygen species
production requires the activation of phosphatidylinositol 3-kinase. FEBS Letters579: 1243–1248.
Kellenberger S, Schild L. 2002. Epithelial sodium channel/degenerin family of ion channels: a va-
riety of functions for a shared structure. Physiological Review 82: 735–767.
Kerr EM, Fry SC. 2004. Extracellular cross-linking of xylan and xyloglucan in maize cell-
suspension cultures: the role of oxidative phenolic coupling. Planta219: 73–83.
Khan AR, Johnson KA, Braam J, James MN. 1997. Comparative modeling of the three-dimensional
structure of the calmodulin-related TCH2 protein from Arabidopsis. Proteins27: 144–153.
Kimbrough JM, Salinas-Mondragon R, Boss WF, Brown CS, Sederoff HW. 2004. The fast and
transient transcriptional network of gravity and mechanical stimulation in the Arabidopsis root
apex. Plant Physiology136: 2790–2805.
Kinoshita T, Nishimura M, Shimazaki K. 1995. Cytosolic concentration of Ca2+regulates the
plasma membrane H+-ATPase in guard cells of fava bean. Plant Cell7: 1333–1342.
Kiss JZ. 2000. Mechanisms of the early phases of plant gravitropism. CRC Critical Reviews in
Plant Science19: 551–573.
Klusener B, Boheim G, Liss H, Engelberth J, Weiler EW. 1995. Gadolinium-sensitive, voltage-
dependent calcium release channels in the endoplasmic reticulum of a higher plant mechanore-
ceptor organ. EMBO Journal14: 2708–2714.
Klusener B, Boheim G, Weiler EW. 1997. Modulation of the ER Ca2+channel BCC1 from tendrils
ofBryonia dioicaby divalent cations, protons and H 2 O 2 .FEBS Letters 407: 230–234.
Knight MR, Campbell AK, Smith SM, Trewavas AJ. 1991. Transgenic plant aequorin reports the
effects of touch and cold-shock and elicitors on cytoplasmic calcium. Nature352: 524–526.
Knight MR, Smith SM, Trewavas AJ. 1992. Wind-induced plant motion immediately increases cy-
tosolic calcium. Proceedings of the National Academy of Sciences U S A89: 4967–4971.
Knight MR, Read ND, Campbell AK, Trewavas AJ. 1993. Imaging calcium dynamics in living
plants using semi-synthetic recombinant aequorins. Journal of Cell Biology 121: 83–90.
Kung C. 2005. A possible unifying principle for mechanosensation. Nature436: 647–654.
Lai CC, Hong K, Kinnell M, Chalfie M, Driscoll M. 1996. Sequence and transmembrane topol-
ogy of MEC-4, an ion channel subunit required for mechanotransduction in Caenorhabditis el-
egans.Journal of Cell Biology133: 1071–1081.
Lee D, Polisensky DH, Braam J. 2005. Genome-wide identification of touch- and darkness-
regulated Arabidopsis genes: a focus on calmodulin-like and XTHgenes.New Phytologist165:
429–444.
Lee JS, Mulkey TJ, Evans ML. 1983a. Gravity-induced polar transport of calcium across root tips
of maize. Plant Physiology73: 874–876.
Lee JS, Mulkey TJ, Evans ML. 1983b. Reversible loss of gravitropic sensitivity in maize roots
after tip application of calcium chelators. Science73: 874–876.
Lee JS, Mulkey TJ, Evans ML. 1984. Inhibition of polar calcium movement and gravitropism in
roots treated with auxin-transport inhibitors. Planta160: 536–543.
Legue V, Blancaflor E, Wymer C, Perbal G, Fantin D, Gilroy S. 1997. Cytoplasmic free Ca2+ in
Arabidopsis roots changes in response to touch but not gravity. Plant Physiology114: 789–800.


118 PLANT TROPISMS
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