Agriculture Reference
In-Depth Information
Edlund AF, Swanson R, Preuss D (2004) Pollen and stigma structure and function: the role
of diversity in pollination. Plant Cell 16:S84-97
Eun SO, Lee Y (1997) Actin filaments of guard cells are reorganized in response to light and
abscisic acid. Plant Physiol 115:1491-1498
Fischer U, Jänicke RU, Schulze-Osthoff K (2003) Many cuts to ruin: a comprehensive update
of caspase substrates. Cell Death Differ 10:76-100
Foote H, Ride J, Franklin-Tong V, Walker E, Lawrence M, Franklin F (1994) Cloning and
expression of a distinctive class of self-incompatibility ( S )genefrom Papaver rhoeas L.
Proc Natl Acad Sci USA 91:2265-2269
Franklin-Tong VE (1999a) Signaling in pollination. Curr Opin Plant Biol 2:490-495
Franklin-Tong VE (1999b) Signaling and the modulation of pollen tube growth. Plant Cell
11:727-738
Franklin-Tong VE, Franklin FCH (2003) Gametophytic self-incompatibility inhibits pollen
tube growth using different mechanisms. Trends Plant Sci 8:598-605
Franklin-Tong VE, Franklin FCH (2003) The different mechanisms of gametophytic self-
incompatibility. Philos Trans R Soc Lond Ser B Biol Sci 358:1025-1032
Franklin-Tong VE, Lawrence MJ, Franklin FCH (1988) An in vitro bioassay for the stigmatic
product of the self-incompatibility gene in Papaver rhoeas L. New Phytol 110:109-118
Franklin-Tong VE, Ride JP, Franklin FCH (1995) Recombinant stigmatic self-incompatibility
(S-) protein elicits a Ca 2+ transient in pollen of Papaver rhoeas . Plant J 8:299-307
Franklin-Tong VE, Hackett G, Hepler PK (1997) Ratio-imaging of Ca 2+ i in the self-
incompatibility response in pollen tubes of Papaver rhoeas . Plant J 12:1375-1386
Franklin-Tong VE, Ride JP, Read ND, Trewavas AJ, Franklin FCH (1993) The self-
incompatibility response in Papaver rhoeas is mediated by cytosolic free calcium. Plant
J 4:163-177
Franklin-Tong VE, Drøbak BK, Allan AC, Watkins P, Trewavas AJ (1996) Growth of pollen
tubes of Papaver rhoeas is regulated by a slow-moving calcium wave propagated by
inositol 1,4,5-trisphosphate. Plant Cell 8:1305-1321
Franklin-Tong VE, Holdaway-Clarke TL, Straatman KR, Kunkel JG, Hepler PK (2002) In-
volvement of extracellular calcium influx in the self-incompatibility response of Papaver
rhoeas . Plant J 29:333-345
Fu Y, Wu G, Yang Z (2001) Rop GTPase-dependent dynamics of tip-localized F-actin controls
tip growth in pollen tubes. J Cell Biol 152:1019-1032
Geitmann A, Emons AMC (2000) The cytoskeleton in plant and fungal cell tip growth.
J Microsc 198:218-245
Geitmann A, Snowman BN, Emons AMC, Franklin-Tong VE (2000) Alterations in the actin
cytoskeleton of pollen tubes are induced by the self-incompatibility reaction in Papaver
rhoeas . Plant Cell 12:1239-1252
Gibbon BC, Kovar DR, Staiger CJ (1999) Latrunculin B has different effects on pollen
germination and tube growth. Plant Cell 11:2349-2364
Gourlay CW, Ayscough KR (2005) Identification of an upstream regulatory pathway con-
trolling actin-mediated apoptosis in yeast. J Cell Sci 118:2119-2132
Gourlay CW, Carpp LN, Timpson P, Winder SJ, Ayscough KR (2004) A role for the actin
cytoskeleton in cell death and aging in yeast. J Cell Biol 164:803-809
Greenberg JT, Yao N (2004) The role and regulation of programmed cell death in plant-
pathogen interactions. Cell Microbiol 6:201-211
Gu Y, Vernoud V, Fu Y, Yang Z (2003) ROP GTPase regulation of pollen tube growth through
the dynamics of tip-localized F-actin. J Exp Bot 54:93-101
Gu Y, Fu Y, Dowd P, Li S, Vernoud V, Gilroy S, Yang Z (2005) A Rho family GTPase controls
actin dynamics and tip growth via two counteracting downstream pathways in pollen
tubes. J Cell Biol 169:127-138
Search WWH ::




Custom Search