Ottenschlager I, Wolff P, Wolverton C, Bhalerao RP, Sandberg G, Ishikawa H, Evans M, Palme K
(2003) Gravity-regulated differential auxin transport from columella to lateral root cap cells.
Proc Natl Acad Sci U S A 100:2987–2991
Paul A-L, Manak MS, Mayfield JD, Reyes MF, Gurley WB, Ferl RJ (2011) Parabolic flight
iInduces changes in gene expression patterns in Arabidopsis thaliana. Astrobiology 11:743–758
Paul AL, Amalfitano CE, Ferl RJ (2012) Plant growth strategies are remodeled by spaceflight. BMC
Plant Biol 12:232
Perbal G, Driss-Ecole D (2003) Mechanotransduction in gravisensing cells. Trends Plant Sci
8:498–504
Perbal G, Driss-Ecole D, Tewinkel M, Volkmann D (1997) Statocyte polarity and gravisensitivity
in seedling roots grown in microgravity. Planta 203:S57–S62
Perbal G, Jeune B, Lefranc A, Carnero-Diaz E, Driss-Ecole D (2002) The dose-response curve of
the gravitropic reaction: a re-analysis. Physiol Plant 114:336–342
Philosoph-Hadas S, Friedman H, Meir S (2005) Gravitropic bending and plant hormones. Plant
Horm 72:31–78
Ponce G, Corkidi G, Eapen D, Lledias F, Cardenas L, Cassab G (2017) Root hydrotropism and
thigmotropism in Arabidopsis thaliana are differentially controlled by redox status. Plant Signal
Behav 12:e1305536
Provart NJ, Alonso J, Assmann SM, Bergmann D, Brady SM, Brkljacic J, Browse J, Chapple C,
Colot V, Cutler S, Dangl J, Ehrhardt D, Friesner JD, Frommer WB, Grotewold E,
Meyerowitz E, Nemhauser J, Nordborg M, Pikaard C, Shanklin J, Somerville C, Stitt M,
Torii KU, Waese J, Wagner D, McCourt P (2016) 50 years of Arabidopsis research: highlights
and future directions. New Phytol 209:921–944
Richter GL, Monshausen GB, Krol A, Gilroy S (2009) Mechanical Stimuli Modulate Lateral Root
Organogenesis. Plant Physiol 151:1855–1866
Rigo G, Ayaydin F, Tietz O, Zsigmond L, Kovacs H, Pay A, Salchert K, Darula Z, Medzihradszky
KF, Szabados L, Palme K, Koncz C, Cseplo A (2013) Inactivation of plasma membranelocalized CDPK-RELATED KINASE5 decelerates PIN2 exocytosis and root gravitropic
response in Arabidopsis. Plant Cell 25:1592–1608
Roux SJ (2012) Root waving and skewing - unexpectedly in micro-g. BMC Plant Biol 12:231
Roy R, Bassham DC (2014) Root growth movements: waving and skewing. Plant Sci 221:42–47
Roy R, Bassham DC (2017) TNO1, a TGN-localized SNARE-interacting protein, modulates root
skewing in Arabidopsis thaliana. BMC Plant Biol 17:73
Roy SJ, Gilliham M, Berger B, Essah PA, Cheffings C, Miller AJ, Davenport RJ, Liu LH, Skynner
MJ, Davies JM, Richardson P, Leigh RA, Tester M (2008) Investigating glutamate receptor-like
gene co-expression in Arabidopsis thaliana. Plant Cell Environ 31:861–871
Ruzicka K, Ljung K, Vanneste S, Podhorska R, Beeckman T, Friml J, Benkova E (2007) Ethylene
regulates root growth through effects on auxin biosynthesis and transport-dependent auxin
distribution. Plant Cell 19:2197–2212
Salmi ML, ul Haque A, Bushart TJ, Stout SC, Roux SJ, Porterfield DM (2011) Changes in gravity
rapidly alter the magnitude and direction of a cellular calcium current. Planta 233:911–920
Santelia D, Henrichs S, Vincenzetti V, Sauer M, Bigler L, Klein M, Bailly A, Lee Y, Friml J,
Geisler M, Martinoia E (2008) Flavonoids redirect PIN-mediated polar auxin fluxes during root
gravitropic responses. J Biol Chem 283:31218–31226
Sato EM, Hijazi H, Bennett MJ, Vissenberg K, Swarup R (2015) New insights into root gravitropic
signalling. J Exp Bot 66:2155–2165
Schmidt T, Pasternak T, Liu K, Blein T, Aubry-Hivet D, Dovzhenko A, Duerr J, Teale W, Ditengou
FA, Burkhardt H, Ronneberger O, Palme K (2014) The iRoCS toolbox - 3D analysis of the plant
root apical meristem at cellular resolution. Plant J 77:806–814
Schultz ER, Zupanska AK, Sng NJ, Paul AL, Ferl RJ (2017) Skewing in Arabidopsis roots involves
disparate environmental signaling pathways. BMC Plant Biol 17:31
Scott AC, Allen NS (1999) Changes in cytosolic pH within Arabidopsis root columella cells play a
key role in the early signaling pathway for root gravitropism. Plant Physiol 121:1291–1298
References
109
(2003) Gravity-regulated differential auxin transport from columella to lateral root cap cells.
Proc Natl Acad Sci U S A 100:2987–2991
Paul A-L, Manak MS, Mayfield JD, Reyes MF, Gurley WB, Ferl RJ (2011) Parabolic flight
iInduces changes in gene expression patterns in Arabidopsis thaliana. Astrobiology 11:743–758
Paul AL, Amalfitano CE, Ferl RJ (2012) Plant growth strategies are remodeled by spaceflight. BMC
Plant Biol 12:232
Perbal G, Driss-Ecole D (2003) Mechanotransduction in gravisensing cells. Trends Plant Sci
8:498–504
Perbal G, Driss-Ecole D, Tewinkel M, Volkmann D (1997) Statocyte polarity and gravisensitivity
in seedling roots grown in microgravity. Planta 203:S57–S62
Perbal G, Jeune B, Lefranc A, Carnero-Diaz E, Driss-Ecole D (2002) The dose-response curve of
the gravitropic reaction: a re-analysis. Physiol Plant 114:336–342
Philosoph-Hadas S, Friedman H, Meir S (2005) Gravitropic bending and plant hormones. Plant
Horm 72:31–78
Ponce G, Corkidi G, Eapen D, Lledias F, Cardenas L, Cassab G (2017) Root hydrotropism and
thigmotropism in Arabidopsis thaliana are differentially controlled by redox status. Plant Signal
Behav 12:e1305536
Provart NJ, Alonso J, Assmann SM, Bergmann D, Brady SM, Brkljacic J, Browse J, Chapple C,
Colot V, Cutler S, Dangl J, Ehrhardt D, Friesner JD, Frommer WB, Grotewold E,
Meyerowitz E, Nemhauser J, Nordborg M, Pikaard C, Shanklin J, Somerville C, Stitt M,
Torii KU, Waese J, Wagner D, McCourt P (2016) 50 years of Arabidopsis research: highlights
and future directions. New Phytol 209:921–944
Richter GL, Monshausen GB, Krol A, Gilroy S (2009) Mechanical Stimuli Modulate Lateral Root
Organogenesis. Plant Physiol 151:1855–1866
Rigo G, Ayaydin F, Tietz O, Zsigmond L, Kovacs H, Pay A, Salchert K, Darula Z, Medzihradszky
KF, Szabados L, Palme K, Koncz C, Cseplo A (2013) Inactivation of plasma membranelocalized CDPK-RELATED KINASE5 decelerates PIN2 exocytosis and root gravitropic
response in Arabidopsis. Plant Cell 25:1592–1608
Roux SJ (2012) Root waving and skewing - unexpectedly in micro-g. BMC Plant Biol 12:231
Roy R, Bassham DC (2014) Root growth movements: waving and skewing. Plant Sci 221:42–47
Roy R, Bassham DC (2017) TNO1, a TGN-localized SNARE-interacting protein, modulates root
skewing in Arabidopsis thaliana. BMC Plant Biol 17:73
Roy SJ, Gilliham M, Berger B, Essah PA, Cheffings C, Miller AJ, Davenport RJ, Liu LH, Skynner
MJ, Davies JM, Richardson P, Leigh RA, Tester M (2008) Investigating glutamate receptor-like
gene co-expression in Arabidopsis thaliana. Plant Cell Environ 31:861–871
Ruzicka K, Ljung K, Vanneste S, Podhorska R, Beeckman T, Friml J, Benkova E (2007) Ethylene
regulates root growth through effects on auxin biosynthesis and transport-dependent auxin
distribution. Plant Cell 19:2197–2212
Salmi ML, ul Haque A, Bushart TJ, Stout SC, Roux SJ, Porterfield DM (2011) Changes in gravity
rapidly alter the magnitude and direction of a cellular calcium current. Planta 233:911–920
Santelia D, Henrichs S, Vincenzetti V, Sauer M, Bigler L, Klein M, Bailly A, Lee Y, Friml J,
Geisler M, Martinoia E (2008) Flavonoids redirect PIN-mediated polar auxin fluxes during root
gravitropic responses. J Biol Chem 283:31218–31226
Sato EM, Hijazi H, Bennett MJ, Vissenberg K, Swarup R (2015) New insights into root gravitropic
signalling. J Exp Bot 66:2155–2165
Schmidt T, Pasternak T, Liu K, Blein T, Aubry-Hivet D, Dovzhenko A, Duerr J, Teale W, Ditengou
FA, Burkhardt H, Ronneberger O, Palme K (2014) The iRoCS toolbox - 3D analysis of the plant
root apical meristem at cellular resolution. Plant J 77:806–814
Schultz ER, Zupanska AK, Sng NJ, Paul AL, Ferl RJ (2017) Skewing in Arabidopsis roots involves
disparate environmental signaling pathways. BMC Plant Biol 17:31
Scott AC, Allen NS (1999) Changes in cytosolic pH within Arabidopsis root columella cells play a
key role in the early signaling pathway for root gravitropism. Plant Physiol 121:1291–1298
References
109
