Plant Tropisms

(Frankie) #1

Saether N, and Iversen TH. 1991. Gravitropism and starch statoliths in an Arabidopsismutant.
Planta184:491–7.
Saito Y, Yamasaki S, Fuji N, Hagen G, Guilfoyle T, and Takahashi H. 2004. Isolation of cucumber
CsARFcDNAs and expression of the corresponding mRNAs during gravity-regulated morpho-
genesis of cucumber seedlings. Journal of Experimental Botany55:1315–23.
Saito C, Morita MT, Kato T, and Tasaka M. 2005. Amyloplasts and vacuolar membrane dynamics
in the living graviperceptive cell of the Arabidopsis inflorescence stem. Plant Cell 17:548–558.
Schwuchow JM, Kern VD, and Sack FD. 2002. Tip-growing cells of the moss Ceratodon pur-
pureusare gravitropic in high-density media.Plant Physiology130:2095–2100.
Sievers A, Buchen B, Volkmann D, and Hejnowicz Z. 1991. Role of cytoskeleton in gravity per-
ception. In The cytoskeletal basis of plant growth and form, edited by Clive W. Lloyd, 169–82.
London: Academic Press.
Sievers A, Buchen B, and Hodick D. 1996. Gravity sensing in tip-growing cells. Trends in Plant
Science1:273–9.
Silady RA, Kato T, Kukowitz W, Sieber P, Tasaka M, and Somerville CR. 2004. The gravitropism
defective 2mutants of Arabidopsisare deficient in a protein implicated in endocytosis in
Caenorhabditis elegans.Plant Physiology 136:3095–103.
Staves MP. 1997. Cytoplasmic streaming and gravity sensing in Charainternodal cells. Planta
203:S79–S84.
Staves MP, Wayne R, and Leopold AC. 1997. The effect of external medium on the gravitropic cur-
vature of rice (Oryza sativa, Poaceae) roots. American Journal of Botany 84:1522–9.
Takahashi H, Kamada M, Yamazaki Y, Fujii N, Higashitani A, Aizawa S, Yoshizaki I, Kamigaichi
S, Mukai C, Shimazu T, and Kukuki K. 2000. Morphogenesis in cucumber seedlings is nega-
tively controlled by gravity. Planta210:515–8.
Tanaka A, Kobayashi Y, Hase Y, and Watanabe H. 2002. Positional effect of cell inactivation on
root gravitropism using heavy-ion microbeams. Journal of Experimental Botany53:683–7.
Tsugeki R, and Fedoroff NV. 1999. Genetic ablation of root cap cells in Arabidopsis. 96:12941–6.
Volkmann D, Baluˇska F, Lichtscheidl IK, Driss-Ecole D, and Perbal G. 1999. Statoliths motions
in gravity-perceiving plant cells: Does actomyosin counteract gravity? FASEB Journal
13:S143–S147.
Wang Y-S, Motes CM, Mohamalawari DR, and Blancaflor EB. (2004). Green fluorescent protein
fusions to Arabidopsisfimbrin 1 for spatio-temporal imaging of F-actin dynamics in roots. Cell
Motility and the Cytoskeleton59:79–93.
Wayne R, and Staves MP. 1996. A down-to-earth model of gravisensing or Newton’s Law of
Gravitation from the apple’s perspective.Gravitational and Space Biology Bulletin98:917–21.
Weise SE, and Kiss J. 1999. Gravitropism of inflorescence stems in starch-deficient mutants of
Arabidopsis.Int J Plant Sci160:521–7.
Weise SE, Kuznetsov OA, Hasenstein KH, and Kiss JZ. 2000. Curvature in Arabidopsis inflores-
cence stems is limited to the regions of amyloplasts displacement. Plant and Cell Physiology
41:702–9.
White RG, and Sack FD. 1990. Actin microfilaments in presumptive statocytes of roots caps and
coleoptiles.American Journal of Botany77:17–26.
Wolverton C, Mullen JL, Ishikawa H, and Evans ML. 2002a. Root gravitropism in response to a
signal originating outside of the cap. Planta215:153–7.
Wolverton C, Ishikawa H, and Evans ML. 2002b. The kinetics of root gravitropism: Dual motors
and sensors. Journal of Plant Growth and Regulation 21:102–12.
Yamamoto K, and Kiss JZ. 2002. Disruption of the actin cytoskeleton results in the promotion
of gravitropism in inflorescence stems and hypocotyls of Arabidopsis.Plant Physiology128:
669–81.


18 PLANT TROPISMS
Free download pdf