• 沒有找到結果。

Phenotype Observed in Mutant M0046938 May be Due to the Second

T- DNA Insertion

From Hooker PCR, another T-DNA insertion was discovered in mutant M0046938 which inserts near a peroxidase precursor gene (Fig 23). Since expression level of LAX5 was not influenced in plants with monozygous or heterozygous T-DNA insertion near LAX5 gene (Fig 22C), it is possible that the more crown rot phenotype observed in this mutant line is not caused by LAX5, rather by this uncharacterized peroxidase precursor. However, so far there is no any report saying about how peroxidase precursor could shape root architecture, it would be interesting to see how this peroxidase precursor could influence root development.

References

Aida, M., Beis, D., Heidstra, R., Willemsen, V., Blilou, I., Galinha, C., Nussaume, L., Noh, Y. S., Amasino, R. Scheres, B. (2004). The PLETHORA Genes Mediate Patterning of the Arabidopsis Root Stem Cell Niche. Cell. 119:109–120.

Arteca, R.N., Tsai, D. S., Schlagnhaufer, C., Mandava, N. B. (1983). The Effect of Brassinosteroid on Auxin-Induced Ethylene Production by Etiolated Mung Bean Segments. Physiol. Plant. 59:539-544.

Asai, K., Satoh, N., Sasaki, H., Satoh, H. and Nagato, Y. (2002). A Rice Heterochronic Mutant, mori1, is Defective in the Juvenile-Adult Phase Change. Development. 129:265–273.

Asch, F., Dingkuhn, M., Sow, A., Audebert, A. (2005). Drought-Induced Changes in Rooting Patterns and Assimilate Partitioning between Root and Shoot in Upland Rice. Field Crops Res. 93: 223–236.

Bainbridge, K., Guyomarch, S., Bayer, E., Swarup, R., Bennett, M., Mandel, T. (2008). Auxin Influx Carriers Stabilize Phyllotactic Patterning. Genes Dev. 22:810–823.

Barbez, E., Kubes, M., Rolcik, J. (2012). A Novel Putative Auxin Carrier Family Regulates Intracellular Auxin Homeostasis in Plants. Nature. 485:119–122.

Barlow, P. W. (1994). In Biology of Adventitious Root Formation. Plenum, New York: Davis, T. D. and Hassing, B. E. pp. 1–23.

Benfey, P. N., Linstead, P. J., Roberts, K., Schiefelbein, J. W., Hauser M. T., Aeschbacher, R. A. (1993).

Root Development in Arabidopsis: Four Mutants with Dramatically Altered Root Morphogenesis.

Development. 119:57–70.

Benkova, E., Michniewicz, M., Sauer, M., Teichmann, T., Seifertova, D., Jurgens, G. Friml, J. (2003). Local, Efflux-Dependent Auxin Gradients as a Common Module for Plant Organ Formation. Cell. 115:591-602.

Bennett, M. J., Marchant, A., Green, H. G., May, S. T., Ward, S. P., Millner, P. A., Walker, A. R., Schulz, B.

Feldmann, K. A. (1996). Arabidopsis AUX1 gene: A Permease-Like Regulator of Root Gravitropism.

Science. 273:948–950.

Berleth, T. and Mattsson, J. (2000). Vascular Development: Tracing Signals along Veins. Curr. Opin.

Plant Biol. 3:406–411.

Berleth, T., Mattsson, J., Hardtke, C. S. (2000). Vascular Continuity and Auxin Signals. Trends Plant Sci.

5:387–393.

Blakeslee, J. J., Bandyopadhyay, A., Lee, O. R., Mravec, J., Titapiwatanakun, B., Sauer, M., Makam, S. N., Cheng, Y., Bouchard, R., Adamec, J. (2007). Interactions Among PIN-FORMED and P-Glycoprotein Auxin Transporters in Arabidopsis. Plant Cell. 19:131-147.

Blilou, I., Xu, J., Wildwater, M., Willemsen, V., Paponov, I., Friml, J., Heidstra, R., Aida, M., Palme, K., Scheres, B. (2005). The PIN Auxin Efflux Facilitator Network Controls Growth and Patterning in Arabidopsis Roots. Nature. 433:39- 44.

Bolam D. N., Ciruela A., McQueen-Mason S., Simpson P., Williamson M. P., Rixon J. E., Boraston A., Hazlewood G. P., Gilbert H. J. (1998) Pseudomonas Cellulose-Binding Domains Mediate Their Effects by Increasing Enzyme Substrate Proximity. Biochem. J. 331:775–781.

Boraston A. B., Bolam D. N., Gilbert H. J., Davies G. J. (2004) Carbohydrate-Binding Modules:

Fine-Tuning Polysaccharide Recognition. Biochem. J. 382:769–781.

Boyer, J. S. (1982). Plant Productivity and Environment. Science. 218(4571):443–448.

Calderón Villalobos, L. I., Lee S, De Oliveira, C., Ivetac, A., Brandt, W., Armitage, L., Sheard, L. B., Tan, X., Parry, G., Mao, H., Zheng, N., Napier, R., Kepinski, S., Estelle, M. (2012). A combinatorial TIR1/AFB- Aux/IAA Co-Receptor System for Differential Sensing of Auxin. Nat. Chem. Biol. 8:477–485.

Caño-Delgado, A., Lee, J. Y., Demura, T. (2010). Regulatory Mechanisms for Specification and Patterning of Plant Vascular Tissues. Annu. Rev. Cell Dev. Biol. 26:605-637.

Carrier, D. J., Bakar, N. T. A., Swarup, R., Callaghan, R., Napier, R. M., Bennett, M. (2008). The Binding of Auxin to the Arabidopsis Auxin Influx Transporter AUX1. Plant Physiol. 148:529–535.

Chapman, E. J., and Estelle, M. (2009). Mechanism of Auxin-Regulated Gene Expression in Plants.

Annu. Rev. Genet. 43:265–285.

Chen, P. W., Chiang, C. M., Tseng, T. H., Yu, S. M. (2006). Interaction between Rice MYBGA and the Gibberellin Response Element Controls Tissue-Specific Sugar Sensitivity of Alpha-Amylase Genes. Plant Cell. 18:2326–2340.

Chen, P. W., Lu, C. A., Yu, T. S., Tseng, T. H., Wang, C. S., Yu, S. M. (2002). Rice Alpha-Amylase Transcriptional Enhancers Direct Multiple Mode Regulation of Promoters in Transgenic Rice. J. Biol.

Chem. 277:13641–13649.

Chen, R., Hilson, P., Sedbrook, J., Rosen, E., Caspar, T. Masson, P. (1998). The Arabidopsis thaliana AGRAVITROPIC 1 Gene Encodes a Component of the Polar-Auxin-Transport Efflux Carrier. Proc. Natl.

Acad. Sci. USA. 95:15112- 15117.

Chen, Y., Fan, X., Song, W., Zhang, Y., Xu, G. (2012). Over-Expression of OsPIN2 Leads to Increased Tiller Numbers, Angle and Shorter Plant Height through Suppression of OsLAZY1. Plant Biotechnol. J.

10:139–149.

Chen, Y. S., Lo, S. F., Sun, P. K., Lu, C. A., Ho, T. H., Yu, S. M. (2015). A Late Embryogenesis Abundant Protein HVA1 Regulated by an Inducible Promoter Enhances Root Growth and Abiotic Stress Tolerance in Rice without Yield Penalty. Plant Biotechnol J. 13(1):105-16.

Cho, M., Lee, S. H. and Cho, H. T. (2007). P-Glycoprotein 4 Displays Auxin Efflux Transporter-Like Action in Arabidopsis Root Hair Cells and Tobacco Cells. Plant Cell. 19:3930-3943.

Cho, M., Lee, Z. W., Cho, H. T. (2012). ATP-Binding Cassette B4, an Auxin-Efflux Transporter, Stably Associates with the Plasma Membrane and Shows Distinctive Intracellular Trafficking from That of PIN-FORMED Proteins. Plant Physiol. 159:642–654.

Christie, J. M. and Murphy, A. S. (2013). Shoot Phototropism in Higher Plants: New Light through Old Concepts. Am. J. Bot. 100:35–46.

Ciais, Ph., Reichstein, M., Viovy, N., Granier, A., Ogée, J., Allard, A., Aubinet, M., Buchmann, N., Bernhofer,Chr., Carrara, A., Chevallier, F., De Noblet, N., Friend, A. D., Friedlingstein, P., Grünwald, T., Heinesch, B, Keronen, P., Knohl, A., Krinner,G., Loustau,D., Manca, G., Matteucci, G., Miglietta, F., Ourcival, J. M., Papale, D., Pilegaard, K., Rambal, S., Seufert, G, Soussana, J. F., SanzM. J.,Schulze, E. D., Vesala,T., Valentini, R. (2015). Europe-Wide Reduction in Primary Productivity Caused by the Heat and Drought in 2003. Nature. 437:529–533.

Colebrook, E. H., Thomas, S. G., Phillips, A. L., Hedden, P. (2014) The Role of Gibberellin Signalling in Plant Responses to Abiotic Stress. J. Exp. Biol. 217:67-75.

Coudert, Y., Bès, M., Le, T. V., Pré, M., Guiderdoni, E., Gantet, P. (2011). Transcript Profiling of Crown Root Less 1 Stem Base Reveals New Elements Associated with Crown Root Development in Rice. BMC

Genomics. 12:e387.

Cui, H., Levesque, M. P., Vernoux, T., Jung, J. W., Paquette, A. J., Gallagher, K. L., Wang, J. Y., Blilou, I., Scheres, B., Benfey, P. N. (2007). An Evolutionarily Conserved Mechanism Delimiting SHR Movement Defines a Single Layer of Endodermis in Plants. Science. 316:421–425.

Darwin, C. (1880). The Power of Movement in Plants. London: John Murray.

de Oliveira, A. B., Lídia, N., Alencar, M., Gomes-Filho, E. (2013). Comparison Between the Water and Salt Stress Effects on Plant Growth and Development. /ŶdĞĐŚ͗^ĞŶĞƌŬŦŶĐŦ͘

Deng, W., Yang, Y., Ren, Z., Audran-Delalande, C., Mila, I., Wang, X., Song, H., Hu, Y., Bouzayen, M., Li, Z.

(2012). The Tomato SlIAA15 is Involved in Trichome Formation and Axillary Shoot Development. New Phytol. 194(2):379-90.

Dharmasiri, N., Dharmasiri, S., Estelle, M. (2005a). The F-Box Protein TIR1 is an Auxin Receptor. Nature 435:441–445.

Dhonukshe, P., Tanaka, H., Goh, T., Ebine, K., Mähönen, A., Prasad, K., Blilou, I., Geldner, N., Xu, J., Uemura, T. (2008b). Generation of Cell Polarity in Plants Links Endocytosis, Auxin Distribution and Cell Fate Decisions. Nature. 456:962-966.

Dubrovsky, J. G., Sauer, M., Napsucialy-Mendivil, S., Ivanchenko, M. G., Friml, J., Shishkova, S., Celenza, J. Benkova, E. (2008). Auxin Acts as a Local Morphogenetic Trigger to Specify Lateral Root Founder Cells. Proc. Natl. Acad. Sci. USA 105:8790-8794.

Farooq, M. Wahid, A., Kobayashi, N., Fujita, D., Basra, S.M.A. (2009). Plant Drought Stress: Effects, Mechanisms and Management. Agron. Sustain. Dev. 29:185–212.

Fischer, W.N., Kwart, M., Hummel, S., Frommer, W. B. (1995). Substrate Specificity and Expression Profile of Amino Acid Transporters (AAPs) in Arabidopsis. J Biol Chem. 270:16315-16320.

Franks, P. J. (2013). Passive and Active Stomatal Control: Either or Both? New Phytol. 198:325–327.

Friml, J., Benkova, E., Blilou, I., Wi’sniewska, J., Hamann, T., Ljung, K., Woody, S., Sandberg, G., Scheres, B., Jurgens, G. (2002a). AtPIN4 Mediates Sink-Driven Auxin Gradients and Root Patterning in Arabidopsis. Cell. 108:661-673.

Friml, J., Benková, E., Mayer, U., Palme, K. Muster, G. (2003a). Automated Whole Mount Localisation Techniques for Plant Seedlings. Plant J. 34:115-124.

Friml, J., Vieten, A., Sauer, M., Weijers, D., Schwarz, H., Hamann, T., Offringa, R. Jürgens, G. (2003b).

Efflux-Dependent Auxin Gradients Establish the Apical-Basal Axis of Arabidopsis. Nature. 426:147-153.

&ƌŝŵů͕:͕͘tŝƑŶŝĞǁƐŬĂ͕:͕͘ĞŶŬŽǀĄ͕͕͘DĞŶĚŐĞŶ͕<͘ĂŶĚWĂůŵĞ͕<͘;ϮϬϬϮďͿ͘>ĂƚĞƌĂůZĞůŽĐĂƚŝŽŶŽĨƵdžŝŶ

Efflux Regulator PIN3 Mediates Tropism in Arabidopsis. Nature. 415:806-809.

Galinha, C., Hofhuis, H., Luijten, M., Willemsen, V., Blilou, I., Heidstra, R., Scheres, B. (2007). PLETHORA Proteins as Dose-Dependent Master Regulators of Arabidopsis Root Development. Nature.

449:1053–1057.

Gallavotti, A. (2013). The Role of Auxin in Shaping Shoot Architecture. J. Exp. Bot. 64:2593–2608.

Gälweiler, L., Guan, C., Müller, A., Wisman, E., Mendgen, K., Yephremov, A., Palme, K. (1998).

Regulation of Polar Auxin Transport by AtPIN1 in Arabidopsis vascular Tissue. Science. 282:2226-2230.

Geisler, M., Blakeslee, J. J., Bouchard, R. (2005). Cellular Efflux of Auxin Catalyzed by the Arabidopsis MDR/PGP Transporter AtPGP1. Plant J. 44:179–194.

Geisler, M., Blakeslee, J. J., Bouchard, R., Lee, O. R., Vincenzetti, V., Bandyopadhyay, A., Titapiwatanakun, B., Peer, W. A., Bailly, A., Richards, E. L. (2005). Cellular Efflux of Auxin Catalyzed by the Arabidopsis MDR/PGP Transporter AtPGP1. Plant J. 44:179-194.

Geisler, M., Wang, B., Zhu, J. (2014). Auxin Transport During Root Gravitropism: Transporters and Techniques. Plant Biol. (Stuttg.) 16(Suppl.1):50–57.

Giardina T., Gunning A. P., Juge N., Faulds C. B., Furniss C. S., Svensson B., Morris V. J., Williamson G.

(2001). Both Binding Sites of the Starch-Binding Domain of Aspergillus niger Glucoamylase are Essential for Inducing a Conformational Change in Amylose. J. Mol. Biol. 313:1149–1159.

Gómez-Cadenas, A., Zentella, R., Walker-Simmons, M. K., Ho, T. H. (2001). Gibberellin/Abscisic Acid Antagonism in Barley Aleurone Cells: Site of Action of the Protein Kinase PKABA1 in Relation to Gibberellin Signaling Molecules. Plant Cell. 13:667–679.

Gray, W. M., del Pozo, J. C., Walker, L., Hobbie, L., Risseeuw, E., Banks, T., Crosby, W.L., Yang, M., Ma, H., Estelle, M. (1999). Identification of an SCF Ubiquitin-Ligase Complex Required for Auxin Response in

Arabidopsis thaliana. Genes Dev. 13:1678–1691.

Gray, W. M., Kepinski, S., Rouse, D., Leyser, O., Estelle, M. (2001). Auxin Regulates SCF(TIR1)- Dependent Degradation of AUX/IAA Proteins. Nature. 414:271–276.

Guilfoyle, T. J. (2015). The PB1 Domain in Auxin Response Factor and Aux/IAA Proteins: A Versatile Protein Interaction Module in the Auxin Response. Plant Cell. 27(1):33-43.

Guilfoyle, T. J., and Hagen, G. (2007). Auxin Response Factors. Curr. Opin. Plant Biol. 10:453–460.

Guilfoyle, T.J., and Hagen, G. (2012). Getting a Grasp on Domain III/IV Responsible for Auxin Response Factor-IAA protein interactions. Plant Sci. 190:82–88

Harrison, M. A. (2012). Phytohormones and Abiotic Stress Tolerance in Plants. Springer-Verlag: Khan, N.

A. et al.

Hedrich, R., Busch, H., Raschke, K. (1990). Ca2+ and Nucleotide Dependent Regulation of Voltage Dependent Anion Channels in the Plasma Membrane of Guard Cells. EMBO J. 9:3889-92.

Heisler, M. G., Ohno, C., Das, P., Sieber, P., Reddy, G. V., Long, J. A., Meyerowitz, E. M. (2005). Patterns of Auxin Transport and Gene Expression during Primordium Development Revealed by Live Imaging of the Arabidopsis Inflorescence Meristem. Curr. Biol. 15:1899-1911.

Helariutta, Y., Fukaki, H., Wysocka-Diller, J., Nakajima, K., Jung, J., Sena, G., Hauser, M. T., Benfey, P. N.

(2000). The SHORT-ROOT Gene Controls Radial Patterning of the Arabidopsis Root Through Radial Signaling. Cell. 101:555–567.

Hertel, R., Thomson, K. S., Russo, V. E. A. (1972). In-vitro Auxin Binding to Particulate Cell Fractions from Corn Coleoptiles. Planta. 107:325–340.

Inukai, Y., Sakamoto, T., Ueguchi-Tanaka, M., Shibata, Y., Gomi, K., Umemura, I., Hasegawa, Y., Ashikari, M., Kitano, H., Matsuoka, M. (2005). Crown Rootless1, Which is Essential for Crown Root Formation in Rice, is a Target of an AUXIN RESPONSE FACTOR in Auxin Signaling. Plant Cell. 17:1387–1396.

Itoh, J., Nonomura, K., Ikeda, K., Yamaki, S., Inukai, Y., Yamagishi, H., Kitano, H., Nagato, Y. (2005). Rice Plant Development: From Zygote to Spikelet. Plant Cell Physiol. 46(1):23-47.

Jack, D. L., Paulsen, I. T., Saier, M. H., Jr (2000). The APC Superfamily of Transporters Specific for Amino

Acids, Polyamines and Organocations. Microbiology. 146:1797-1814.

Jones, A. M., Im, K. H., Savka, M. A., Wu, M. J., DeWitt, N. G., Shillito, R., Binns, A. N. (1998). Auxin- Dependent Cell Expansion Mediated by Overexpressed Auxin-Binding Protein 1. Science. 282:1114–

1117.

Jurado, S., Abraham, Z., Manzano, C., Lopez-Torrejon, G., Pacios, L. F., Del Pozo, J.C. (2010). The Arabidopsis Cell Cycle F-Box Protein SKP2A Binds to Auxin. Plant Cell. 22:3891–3904.

Kamiya, N., Itoh, J.I., Morikami, A., Nagato, Y. Matsuoka, M. (2003a). The SCARECROW Gene's Role in Asymmetric Cell Divisions in Rice Plants. Plant J. 36:45–54.

Karrer, E.E. and Rodriguez, R.L. (1992). Metabolic Regulation of Rice Alpha-Amylase and Sucrose Synthase Genes in Planta. Plant J. 2:517–523.

Kaufman, P. B. (1959a). Development of the Shoot of Oryza sativa L. - II. Leaf Histogenesis.

Phytomorphology. 9:277-311.

Kende, H. and Zeevaart, J. A. D. (1997). The Five “Classical” Plant Hormones. Plant Cell. 9, 1197–1210.

Kepinski, S., and Leyser, O. (2005). The Arabidopsis F-Box Protein TIR1 is an Auxin Receptor. Nature 435:446–451.

Kerr, I. D. and Bennett, M. J. (2007). New Insight into the Biochemical Mechanisms Regulating Auxin Transport in Plants. Biochem. J. 401:613–622.

Kierzkowski, D., Lenhard, M., Smith, R., Kuhlemeier, C. (2013). Interaction between Meristem Tissue Layers Controls Phyllotaxis. Dev. Cell. 26:616–628.

Kleine-vehn, J., Ding, Z., Jones, A. R., Tasaka, M., Morita, M. T. (2010). Gravity-Induced PIN Transcytosis for Polarization of Auxin Fluxes in Gravity-Sensing Root Cells. Proc. Natl .Acad. Sci. USA.

107:22344–22349.

<ƵďĞƓ͕ D͕͘ zĂŶŐ͕ ,͕͘ ZŝĐŚƚĞƌ͕ '͘ >͕͘ ŚĞŶŐ͕ z͕͘ DųŽĚnjŝŶƐŬĂ͕ ͕͘ tĂŶŐ͕ y͘ ;ϮϬϭϭͿ͘ dŚĞ ƌĂďŝĚŽƉƐŝƐ

Concentration-Dependent Influx/Efflux Transporter ABCB4 Regulates Cellular Auxin Levels in the Root Epidermis. Plant J. 69:640–654.

Lampugnani, E. R., Kilinc, A., Smyth, D. R. (2013). Auxin Controls Petal Initiation in Arabidopsis.

Development. 140:185–194.

Lewis, D. R., Miller, N. D., Splitt, B. L., Wu, G. S., Spalding, E. P. (2007). Separating the Roles of Acropetal and Basipetal Auxin transport on Gravitropism with Mutations in Two Arabidopsis Multidrug Resistance-Like ABC Transporter Genes. Plant Cell. 19:1838-1850.

Laurenzio, L. D., Wysocka-Diller, J., Malamy, J. E., Pysh, L., Helariutta, Y., Freshour, G., Hahn, M. G., Feldmann, K. A., Benfey, P. N. (1996). The SCARECROW Gene Regulates an Asymmetric Cell Division That is Essential for Generating the Radial Organization of the Arabidopsis Root. Cell. 86:423–433.

Levesque, M.P., Vernoux, T., Busch, W., Cui, H., Wang, J.Y., Blilou, I., Hassan, H., Nakajima, K., Matsumoto, N., Lohmann, J.U., Scheres, B., Benfey, P.N. (2006). Whole-Genome Analysis of the SHORTROOT Developmental Pathway in Arabidopsis. PLoS Biol. 4:e143.

Leyser, O. (2010). The Power of Auxin in Plants. Plant Physiol. 154:501–505.

Lin, R. and Wang, H. (2005). Two Homologous ATP-binding Cassette Transporter Proteins, AtMDR1 and AtPGP1, Regulate Arabidopsis Pphotomorphogenesis and Root Development by Mediating Polar Auxin Transport. Plant Physiol. 138:949-964.

Liu, H., Wang, S., Yu, X., Yu, J., He, X., Zhang, S., Shou, H., Wu, P. (2005). ARL1, a LOB-Domain Protein Required for Adventitious Root Formation in Rice. Plant J. 43:47–56.

Liu, S., Wang, J., Wang, L., Wang, X., Xue, Y., Wu, P., Shou, H. (2009). Adventitious Root Formation in Rice Requires OsGNOM1 and is Mediated by the OsPINs Family. Cell Res. 19:1110–1119.

Lu, C. A., Ho, T. H., Ho, S. L., Yu, S. M. (2002). Three Novel MYB Proteins with One DNA Binding Repeat Mediate Sugar and Hormone Regulation of Alpha-Amylase Gene Expression. Plant Cell. 14:1963–1980.

Luschnig, C., Gaxiola, R. A., Grisafi, P., Fink, G. R. (1998). EIR1, a Root Specific Protein Involved in Auxin Transport, is Required for gGavitropism in Arabidopsis thaliana. Genes Dev. 12:2175-2187.

Mattsson, J., Ckurshumova, W., Berleth, T. (2003). Auxin Signaling in Arabidopsis Leaf Vascular Development. Plant Physiol. 131:1327–1339.

Mattsson, J., Sung, Z. R. Berleth, T. (1999). Responses of Plant Vascular Systems to Auxin Transport Inhibition. Development. 126:2979–2991.

McAinsh, M. R., Brownlee, C., Hetherington, A. M. (1990). Abscisic Acid-Induced Elevation of Guard

Cell Cytosolic Ca2+ Precedes Stomatal Closure. Nature. 343:186-8.

McIntire, S. L., Reimer, R. J., Schuske, K., Edwards, R. H., Jorgensen, E. M. (1997). Identification and Characterization of the Vesicular GABA Transporter. Nature. 389:870-876.

Miyoshi, K., Nakata, E. Nagato, Y. (2000). Characterization of Viviparous Mutants in Rice. Breed. Sci.

50:207–213.

Miyoshi, K., Nakata, E., Nagato, Y. Hattori, T. (1999). Differential in situ Expression of Three ABA-Responsive Genes of Rice, Rab16A, REG2 and OSBZ8 During Seed Development. Plant Cell Physiol.

40:443–447.

Mockaitis, K., and Estelle, M. (2008). Auxin Receptors and Plant Development: A New Signaling Paradigm. Annu. Rev. Cell Dev. Biol.24:55–80.

Moller, B., and Weijers, D. (2009). Auxin Control of Embryo Patterning. Cold Spring Harb. Perspect. Biol.

1:a001545.

Mravec, :͕͘ <ƵďĞƐ͕ D͕͘ ŝĞůĂĐŚ͕ ͕͘ 'ĂLJŬŽǀĂ͕ s͕͘ WĞƚƌĄƐĞŬ͕ :͕͘ ^ŬƽƉĂ͕ W͕͘ ŚĂŶĚ͕ ^͕͘ ĞŶŬŽǀĄ͕ ͕͘

Zazímalová, E., Friml, J. (2008). Interaction of PIN and PGP Transport Mechanisms in Auxin Distribution-Dependent Development. Development. 135:3345-3354.

Mravec, j.͕^ŬƽƉĂ͕W͕͘ĂŝůůLJ͕͕͘<ƎĞēĞŬ͕W͕͘,ŽLJĞƌŽǀĄ͕<͕͘ŝĞůĂĐŚ͕͕͘WĞƚƌĄƓĞŬ͕:͕͘ŚĂŶŐ͕:͕͘'ĂLJŬŽǀĂ͕s͕͘

^ƚŝĞƌŚŽĨ͕ z͘ ͕͘ ^ĐŚǁĂƌnjĞƌŽǀĄ͕ <͕͘ ZŽůēşŬ͕ :͕͘ ŽďƌĞǀ͕ W͕͘ ^ĞŝĨĞƌƚŽǀĄ͕ ͕͘ >ƵƐĐŚŶŝŐ͕ ͕͘ ĞŶŬŽǀĄ͕ ͕͘

ĂǎşŵĂůŽǀĄ͕ ͕͘ 'ĞŝƐůĞƌ͕ D͕͘ &ƌŝŵů͕ :͘ ;ϮϬϬϵͿ͘ Z-localizedPIN5 Auxin Transporter Mediates Subcellular Homeostasis of Phytohormone Auxin. Nature. 439:1136-1140.

Muller, D. and Leyser, O. (2011). Auxin, cytokinin and the Control of Shoot Branching. Ann. Bot.

107:1203–1212.

Müller, A., Guan, C., Gälweiler, L., Tänzler, P., Huijser, P., Marchant, A., Parry, G., Bennett, M., Wisman, E., Palme, K. (1998). AtPIN2 Defines a Locus of Arabidopsis for Root Gravitropism Control. EMBO J.

17:6903-6911.

Müller, B. and Sheen, J. (2008). Cytokinin and Auxin Interplay in Root Stem-Cell Specification During Early Embryogenesis. Nature. 453(7198):1094 – 1097.

Murphy, A. S., Hoogner, K. R., Peer, W. A. Taiz, L. (2002). Identification, Purification, and Molecular

Cloning of N-1-Naphthylphthalmic Acid-Binding Plasma Membrane-Associated Aminopeptidases from Arabidopsis. Plant Physiol. 128:935–950.

Nagashima, A., Suzuki, G., Uehara, Y., Saji, K., Furukawa, T., Koshiba, T., Sekimoto, M., Fujioka, S., Kuroha, T., Kojima, M. (2008a). Phytochromes and Cryptochromes Regulate the Differential Growth of Arabidopsis Hypocotyls in both a PGP19-Dependent and a PGP19-Independent Manner. Plant J.

53:516-529.

Nagashima, A., Uehara, Y. Sakai, T. (2008b). The ABC Subfamily B Auxin Transporter AtABCB19 is Involved in the Inhibitory Effects of N-1-Naphthyphthalamic Acid on the Phototropic and Gravitropic Responses of Arabidopsis Hypocotyls. Plant Cell Physiol. 49:1250-1255.

Nakajima, K., Sena, G., Nawy, T., Benfey, P. N. (2001), Intercellular Movement of the Putative Transcription Factor SHR in Root Patterning. Nature. 413:307–311.

Neljubov, D. (1901). Uber die Horizontale Nutation der Stengel von Pisum sativum und Einiger Anderen Pflanzen. Beih Bot Zentralbl. 10: 128–139.

Nishimura, A., Ito, M., Kamiya, N., Sato, Y. and Matsuoka, M. (2002). OsPNH1 Regulates Leaf Development and Maintenance of the Shoot Apical Meristem in Rice. Plant J. 30:189–201.

Noh, B., Murphy, A. S. Spalding, E. P. (2001). Multidrug Resistance-Like Genes of Arabidopsis Required for Auxin Transport and Auxin-Mediated Development. Plant Cell. 13:2441–2454.

Ohashi-Ito, K., Fukuda, H. (2010). Transcriptional Regulation of Vascular Cell Fates. Curr. Opin. Plant Biol. 13:670-676.

Ohashi-Ito, K., Oguchi, M., Kojima, M., Sakakibara, H., Fukuda, H. (2013). Auxin-Associated Initiation of Vascular Cell Differentiation by LONESOME HIGHWAY. Development. 140(4):765-9.

Paal, A. (1918). "Uber Phototropische Reizleitung". Jahrb. Wiss. Bot. 58:406-458.

Perata, P., Matsukura, C., Vernieri, P., Yamaguchi, J. (1997). Sugar Repression of Gibberellin-Dependent Signalling Pathway in Barley Embryos. Plant Cell. 9:2197–2208.

Péret, B., Swarup, K., Ferguson, A., Seth, M., Yang, Y., Dhondt, S. (2012). AUX/LAX Genes E ncode a Family of Auxin Influx Transporters That Perform Distinct Functions during Arabidopsis Development.

Plant Cell. 24:2874–2885.

Petrásek, J. and Friml, J. (2009). Auxin Transport Routes in Plant Development. Development.

136(16):2675-88.

Petrásek, J., Mravec, J., Bouchard, R., Blakeslee, J. J., Abas, M., Seifertová, D., Wisniewska, J., Tadele, Z., Kubes, M., Covanová, M., Dhonukshe, P., Skupa, P., Benková, E., Perry, L., Krecek , P., Lee, O. R., Fink, G.

R., Geisler, M., Murphy, A. S., Luschnig, C., Zazímalová, E., Friml, J. (2006). PIN Proteins Perform a Rate-Limiting Function in Cellular Auxin Efflux. Science. 312:914- 918.

Poethig, R.S. (1990). Phase Change and the Regulation of Shoot Morphogenesis in Plants. Science.

250:923–929.

Ramos, J. A., Zenser, N., Leyser, O., Callis, J. (2001). Rapid Degradation of Auxin/Indoleacetic Acid Proteins Requires Conserved Amino Acids of Domain II and is Proteasome Dependent. Plant Cell.

13:2349–2360.

Reinhardt, D., Pesce, E. R., Stieger, P., Mandel, T., Baltensperger, K., Bennett, M., Traas, J., Friml, J., Kuhlemeier, C. (2003). Regulation of Phyllotaxis by Polar Auxin Transport. Nature. 426:255-260.

Rentsch, D., Hirner, B., Schmeizer, E., Frommer, W. B. (1996). Salt Stress-Induced Proline Transporters and Salt Stress-Repressed Broad Specificity Amino Acid Permeases Identified by Suppression of A Yeast Amino Acid Permease-Targeting Mutant. Plant Cell. 8:1437-1446.

Robert, H. S., Grunewald, W., Sauer, M., Cannoot, B., Soriano, M., Swarup, R., Weijers, D., Bennett, M., Boutilier, K., Friml, J. (2015). Plant Embryogenesis Requires AUX/LAX-Mediated Auxin Influx.

Development. 142:702-711.

Rosquete, M. R., von Wangenheim, D., Marhavý, P., Barbez, E., Stelzer, E. H. K., Benková, E. (2013). An Auxin Transport Mechanism Restricts Positive Orthogravitropism in Lateral Roots. Curr. Biol.

23:817–822.

Saier, M. H. Jr. (2000). Families of Transmembrane Transporters Selective for Amino Acids and Their Derivatives. Microbiology. 146 (Pt 8):1775-1795.

Santelia, D., Vincenzetti, V., Azzarello, E., Bovet, L., Fukao, Y., Düchtig, P., Mancuso, S., Martinoia, E., Geisler, M. (2005). MDR-Like ABC Transporter AtPGP4 is Involved in Auxin-Mediated Lateral Root and Root Hair Development. FEBS Lett. 579:5399-5406.

Sato, E. M., Hijazi, H., Bennett, M. J., Vissenberg, K., Swarup, R. (2015). New Insights into Root Gravitropic Signalling. J. Exp. Bot. 66(8):2155-65.

Satoh, N., Hong, S. K., Nishimura, A., Matsuoka, M., Kitano, H. Nagato, Y. (1999). Initiation of Shoot Apical Meristem in Rice: Characterization of Four SHOOTLESS Genes. Development. 126:3629–3636.

Scarpella, E. and Helariutta, Y. (2010). Vascular Pattern Formation in Plants. Curr. Top. Dev. Biol.

91:221-265.

Scarpella, E., Marcos, D., Friml, J. Berleth, T. (2006). Control of Leaf Vascular Patterning by Polar Auxin Transport. Genes Dev. 20:1015-1027.

Scheres, B., Dilaurenzio, L., Willemsen, V., Hauser, M. T., Janmaat, K., Weisbeek, P., Benfey, P. N. (1995).

Mutations Affecting the Radial Organization of the Arabidopsis Root Display Specific Defects Throughout the Embryonic Axis. Development. 121:53–62.

Schnall, J. A and Quatrano, R. S. (1992). Abscisic Acid Elicits the Water-Stress Response in Root Hairs of Arabidopsis. Plant Physiol. 100:216–218.

Schroeder, J. I., Hagiwara, S. (1989). Cytosolic Calcium Regulates Ion Channels in the Plasma Membrane of Vicia faba Guard Cells. Nature. 338:427-30.

Schroeder, J.I., Kwak, J. M., Allen, G.J. (2001). Guard Cell Abscisic Acid Signalling and Engineering Drought Hardiness in Plants. Nature. 410(6826):327-30.

Schroeder, J. I., Raschke, K., Neher, E. (1987). Voltage Dependence of K+ Channels in Guard Cell Protoplasts. Proc. Natl. Acad. Sci. USA. 84:4108-12.

Sengupta, D., Attipalli, M. K., Reddy, A. R. (2011). A Root Proteomics-Based Insight Reveals Dynamic Regulation of Root Proteins under Progressive Drought Stress and Recovery in Vigna radiata (L.) Wilczek. Planta. 233:1111–1127.

Sharp, R. E., Silk, W. K., Hsiao, T. C. (1988). Growth of the Maize Primary Root at Low Water Potentials:

I. Spatial Distribution of Expansive Growth. Plant Physiol. 87:50–57.

Shen, C., Bai, Y., Wang, S., Zhang, S., Wu, Y., Chen, M. (2010). Expression Profile of PIN, AUX/LAX and PGP Auxin Transporter Gene Families in Sorghum bicolor Under Phytohormone and Abiotic Stress.

FEBS J. 277:2954–2969.

Sieburth, L. E. (1999). Auxin is Required for Leaf Vein Pattern in Arabidopsis. Plant Physiol.

121:1179–1190.

Southall S. M., Simpson P. J., Gilbert H. J., Williamson G., Williamson M. P. (1999) The Starch Binding Domain from Glucoamylase Disrupts the Structure of Starch. FEBS Lett. 447:58–60.

Stepanova, A. N., Robertson-,ŽLJƚ͕ :͕͘ zƵŶ͕ :͕͘ ĞŶĂǀĞŶƚĞ͕ D͘ >͕͘ yŝĞ͕ ͘ z͕͘ ŽůĞǎĂů͕ <͕͘ ^ĐŚůĞƌĞƚŚ͕ ͕͘

Jürgens, G., Alonso, M. J. (2008). TAA1-Mediated Auxin Biosynthesis Is Essential for Hormone Crosstalk and Plant Development. Cell. 133(1):177–191.

Swarup, K., Benková, E., Swarup, R., Casimiro, I., Péret, B., Yang, Y., Parry, G., Nielsen, E., De Smet, I., Vanneste, S. (2008). The Auxin Influx Carrier LAX3 Promotes Lateral Root Emergence. Nat. Cell Biol.

10:946-954.

Swarup, R., Friml, J., Marchant, A., Ljung, K., Sandberg, G., Palme, K., Bennett, M. (2001). Localization of the Auxin Permease AUX1 Suggests Two Functionally Distinct Hormone Transport Pathways Operate in the Arabidopsis Root Apex. Genes Dev. 15:2648-2653.

Swarup, R., Kargul, J., Marchant, A., Zadnik, D., Rahman, A., Mills, R. (2004). Structure- Function Analysis of the Presumptive Arabidopsis Auxin Permease AUX1. Plant Cell 16:3069–3083.

Swarup, R., Marchant, A., Ljung, K., Sandberg, G., Palme, K., Bennett, M. (2001). Localization of the Auxin Permease AUX1 Suggests Two Functionally Distinct Hormone Transport Pathways Operate in the Arabidopsis Root Apex. Genes. Dev. 15:2648–2653.

Szemenyei, H., Hannon, M., Long, J.A. (2008). TOPLESS Mediates Auxin-Dependent Transcriptional Repression during Arabidopsis Embryogenesis. Science. 319:1384–1386.

Tanaka, H., Dhonukshe, P., Brewer, P. B., Friml, J. (2006). Spatiotemporal Asymmetric Auxin Distribution: A Means to Coordinate Plant Development. Cell. Mol. LifeSci. 63:2738–2754.

Tarkowska, D., Novak, O., Flokova, K., Tarkowski, P., Tureekova, V., Gruz, J. (2014). Quo Vadis Plant Hormone Analysis? Planta. 240:55–76.

Telfer, A., Bollman, K.M. and Poethig, R.S. (1997). Phase Change and the Regulation of Trichome Distribution in Arabidopsis thaliana. Development. 124:645–654.

Terasaka, K., Blakeslee, J. J., Titapiwatanakun, B., Peer, W. A., Bandyopadhyay, A., Makam, S. N., Lee, O.

R., Richards, E. L., Murphy, A. S., Sato, F. (2005). PGP4, an ATP Binding Cassette P-Glycoprotein, Catalyzes Auxin Transport in Arabidopsis thaliana Roots. Plant Cell. 17:2922- 2939.

Tromas, A., Paque, S., Stierle, V., Quettier, A. L., Muller, P., Lechner, E., Genschik, P., Perrot- Rechenmann, C. (2013). Auxin-Binding protein 1 is a Negative Regulator of the SCF(TIR1/AFB) Pathway.

Nat. Commun. 4:2496.

Utsuno, K., Shikanai, T., Yamada, Y., Hashimoto, T. (1998). AGR, an Agravitropic Locus of Arabidopsis thaliana, Encodes a Novel Membrane-Protein Family Member. Plant Cell Physiol. 39:1111-1118.

Vinya, R., Yadvinder Malhi, Y., Fisher, J. B., Brown, N., Brodribb, T. J., Aragao, L. E. (2013). Xylem Cavitation Vulnerability Influences Tree Species’ Habitat Preferences in Miombo Woodlands.

Oecologia. 173:711–720.

Wang, J. R., Hu, H., Wang, G. H., Li, J., Chen, J. Y., Wu, P. (2009). Expression of PIN Genes in Rice (Oryzasativa L.): Tissue Specificity and Regulation by Hormones. Mol. Plant. 2:823–831.

Wang, R., and Estelle, M. (2014). Diversity and Specificity: Auxin Perception and Signaling through the TIR1/AFB pathway. Curr. Opin. Plant Biol. 21C:51–58.

Weijers, D., Sauer, M., Meurette, O., Friml, J., Ljung, K., Sandberg, G., Hooykaas, P., Offringa, R. (2005).

Maintenance of Embryonic Auxin Distribution for Apical-Basal Patterning by PIN-FORMED-Dependent Auxin Transport in Arabidopsis. Plant Cell. 17:2517-2526.

Maintenance of Embryonic Auxin Distribution for Apical-Basal Patterning by PIN-FORMED-Dependent Auxin Transport in Arabidopsis. Plant Cell. 17:2517-2526.

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