[1] Mitchell J W,Mandava N B,Worley J F.Brassins-a new family of plant hormones from rape pollen[J].Nature,1970,225:1065-1066.
[2] Grove M D,Spencer G F,Rohwedder W K.Brassinolide,a plant growth promoting steroid isolated from Brassica napus pollen[J].Nature,1979,281:216-217.
[3] Abdelaty Saleh,Victoria Lumbreras,Cristina Lopez,et al.Maize DBF1-interactor protein 1 containing an R3H domain is a potential regulator of DBF1 activity in stress responses[J].Plant Journal,2006:747-757.
[4] Altmann T.Recent advances in brassinosteroid molecular genetics[J].Current Opinion Plant Biology,1998,1:378-383.
[5] Fujioka S.Natural occurrence of brassinosteroids in the plant kingdom[M].Brassinosteroids:Steroidal Plant Hormones,1999:21-46.
[6] Bajguz A,Tretyn A.The chemical characteristic and distribution of brassinosteroids in plants[J].Phytochemistry,2003,62:1027-1046.
[7] Takatauto S.Brassinosteroids.Distribution in plants,bioassays and microanalysis by gas chromatography mass spectrometry[J].J Chromatography,1994,658:3-15.
[8] Ikekawa N,Zhao Y J.Synthesis of brassinolide analogues[C].Washington DC:American Chemical Society,1991.
[9] Fujioka S,Li J M,Choi Y H,et al.The Arabidopsis deetiolated2 mutant is blocked early in Brassinosteroid biosynthesis[J].Plant Cell 1997,9:1951-1962.
[10] Choi Y H,Fujioka S,Nomura T,et al.An alternative brassinolide biosynthetic pathway via late C-6 oxidation[J].Phytochemistry,1997,44:609-613.
[11] Noguchi T,Fujioka S,Choe S,et al.Biosynthetic pathways of brassinolide in Arabidopsis[J].Plant Physiology 2000,124:201-209.
[12] Choe S W,Dilkes B P,Fujioka S,et al.The DWF4 gene of Arabidopsis encodes a cytochrome P450 that mediates multiple 22 alpha-hydroxylation steps in brassinosteroid biosynthesis[J].Plant Cell,1998,10:231-243.
[13] Steven D,Clouse S.Brassinosteroid signal transduction:Clarifying the pathway from ligand perception to gene expression[J].Molecular Cell,2002,10:973-982.
[14] Benveniste P.Sterol biosynthesis[J].Annu Rev Plant Physiol,1986,37:275-308.
[15] Nakai K,Kanehisam S.A knowledge base for predicting protein localization sites in eukaryotic cells[J].Genomics,1992,14:897-911.
[16] Nomura T,Kitasaka Y,Takatsuto S,et al.Brassinosteroid/sterol synthesis and plant growth as affected by lka and lkb mutations of pea[J].Plant Physiology,1999,119:1517-1526
[17] Li J,Chory J.A putative leucine-rich repeat receptor kinase involved in brassinosteroid signal transduction[J].Cell,1997,90:929-938.
[18] Lachance Y,Luurthev D,Labrie C.Characterization of human 3β-hydroxysteroid dehydrogenase P52 isomerase gene and its expression in mammalian cells[J].J Biology Chemistry,1990,265:20469-20475.
[19] Ephritikhine G,Pagant S,Fujioka S,et al.The sax1 mutation defines a new locus involved in the brassinosteroid biosynthesis pathway in Arabidopsis thaliana[J].Plant Journal 1999,18:315-320.
[20] Noguchi T,Fujioka S,Takatsuto S,et al.Arabidopsis det2 is defective in the conversion of(24R)-24-methylcholest-4-En-3-One to(24R)-24-methyl-5 alpha-cholestan-3-one in brassinosteroid biosynthesis[J].Plant Physiology,1999,120:833-839.
[21] Yokota T,Nomura T,Kitasaka Y.Biosynthetic lesions in brassinosteroids deficient pea mutants[C] //The 24th proceedings of America.Edited by America:the plant growth regulation society of America;1997:94.
[22] Li J M,Biswas M G,Chao A,et al.Conservation of function between mammalian and plant steroid 5 alpha-reductases[C] //Proceedings of the National Academy of Sciences of the United States of America,1997,94:3554-3559.
[23] Suzuki H,Inoue T,Fujioka S,et al.Conversion of 24-methylcholesterol to 6-Oxo-24-methylcholestanol,a putative intermediate of the biosynthesis of Brassinosteroids,in cultured-cells of Catharanthus roseus[J].Phytochemistry,1995,40:1391-1397.
[24] Fujioka S,Inoue T,Takatsuto S,et al.Identification of a new brassinosteroid,cathasterone,in cultured-cells of Catharanthus-roseus as a biosynthetic precursor of teasterone[J].Bioscience Biotechnology and Biochemistry,1995,59:1543-1547.
[25] Suzuki H,Fujioka S,Takatsuto S.Biosynthesis of brassinolide fromteasterone via typhasterol and castasterone in cultured cells of Catharanthus roseus[J].J Plant Growth Regulation,1994,13:21-26.
[26] Suzuki H,Fujioka S,Takatsuto S.Possible involvement of 3-dehydroteasterone in the conversion of teasterone to typhasterol in cultured cells of Catharanthus roseus[J].Bioscience Biotechnology Biochemistry,1994b,58:1186-1188.
[27] Yokota T,Nakayama M,Wakisaka T,et al.3-Dehydroteasterone,a 3,6-diketobrassinosteroid as a possible biosynthetic intermediate of brassinolide form wheat-grain[J].Bioscience Biotechnology and Biochemistry,1994,58:1183-1185.
[28] Tomoaki,Sakamoto,Makoto,et al.Characterization of constitutivep hotomorphogenesis and dwareism homologs in rice (Oryza sativa L.)[J].J Plant Growth Regulation,2006,25:245-251.
[29] Clouse S D,Sasse J M.BRASSINOSTEROIDS:Essential regulators of plant growth and development[J].Annu Rev Plant Physiol Plant Mol Biol,1998,49:427-451.
[30] Shimada Y,Goda H,Nakamura A,et al.Organ-specific expression of brassinosteroid-biosynthetic genes and distribution of endogenous brassinosteroids in Arabidopsis[J].Plant Physiology,2003,131:287-297.
[31] Symons G M,Reid J B.Brassinosteroids do not undergo longdistance transport in pea.Implications for the regulation of endogenous brassinosteroid levels[J].Plant Physiology,2004,135:2196-2206.
[32] Bishop G J,Koncz C.Brassinosteroids and plant steroid hormone signaling[J].Plant Cell,2002,14(Suppl):S97-110.
[33] Asami T,Min Y K,Nagata N et al.Characterization of brassinazole,a triazole-type brassinosteroid biosynthesis in-hibitor[J].Plant Physiology,2000,123:93-99.
[34] Sekimata K,Kimura T,Kaneko I,et al.A specific brassinosteroid biosynthesis inhibitor,Brz2001:evaluation of its effects on Arabidopsis,cress,tobacco,and rice[J].Planta,2001,213:716-721.
[35] Feldmann K A,Marks M D,Christianson M L,et al.A dwarf mutant of Arabidopsis generated by T-DNA insertion mutage-nesis[J].Science,1989,243:1351-1354.
[36] Choe S W,Noguchi T,Fujioka S,et al.The Arabidopsis dwf7/stel mutant is defective in the Delta(7) sterol C-5 desaturation step leading to brassinosteroid biosynthesis[J].Plant Cell,1999,11:207-221.
[37] Choe S W.Tanaka A,Noguchi T,et al.Lesions in the sterol Delta(7) reductase gene of Arabidopsis cause dwarGsm due to a block in brassinosteroid biosynthesis[J].Plant Journal,2000,21:431 -443.
[38] Szekeres M,Nemeth K,KonczKalman Z,et al.Brassinosteroids rescue the deficiency of CYP90,a cytochrome P450,controlling cell elongation and de-etiolation in Arabidopsis[J].Cell,1996,85:171-182.
[39] Chory J,Nagpal P,Peto C A.Phenotypic and genetic analysis of det2,a new mutant that affects light-regulated seedling development in Arabidopsis[J].Plant Cell,1991,3:445 -459.
[40] Clouse S D,Langford M,Mcmorris T C.A Brassinosteroid-insensitive mutant in Arabidopsis thaliana exhibits multiple defects in growth and development[J].Plant Physiology,1996,111:671-678.
[41] Li J M,Chory J.A putative leucine-rich repeat receptor ki-nase involved in brassinosteroid signal transduction[J].Cell,1997,90:929-938.
[42] Zhou A,Wang H C,Walker J C,et al.BRL1,a leucine-rich repeat receptor-like protein kinase,is functionally redundant with BRI1 in regulating Arabidopsis Brassinosteroid signaling[J].Plant Journal,2004,40:399-409.
[43] Cano-Delgado A,Yin Y H,Yu C,et al.BRL1 and BRL3 are novel brassinosteroid receptors that function in vascular differentiation in Arabidopsis[J].Development,2004,131:5341-5351.
[44] Clay N K,Nelson T.VH1,a provascular cell-specific receptor kinase that influences leaf cell patterns in Arabidopsis[J].Plant Cell,2002,14:2707 -2722.
[45] Li J,Wen J,Lease K A,et al.BAK1,an Arabidopsis LRR receptor-like protein kinase,interacts with BRI1 and modulates brassinosteroid signaling[J].Cell,2002,110:213 -222.
[46] Li J M,Nam K H,Vafeados D,et al.B1N2,a new brassinosteroid-insensitive locus in Arabidopsis[J].Plant Physiology,2001,127:14-22.
[47] Perez-Perez J M,Ponce M R,Micol J L.The UCU1 Arabidopsis gene encodes a SHAGGY/ GSK3 -like kinase required for cell expansion along the proximodistal axis[J].Developmental Biology,2002,242:161-173.
[48] Li J M,Nam K H.Regulation of brassinosteroid signaling by a GSK3/SHAGGY-like kinase[J].Science,2002,295:1299-1301.
[49] Choe S W,Schmitz R J,Fujioka S,et al.Arabidopsis brassinosteroid-insensitive dwarf 12 mutants are semidominant anddefective in a glycogen synthase kinase 3 beta-like kinase[J].Plant Physiology,2002,130:1506-1515.
[50] Mora-Garcia S,Vert G,Yin Y,et al.Nuclear protein phos-phatases with Kelch-repeat domains modulate the response to Brassinosteroids in Arabidopsis[J].Genes Development,2004,18:448-460.
[51] Wang Z Y,Nakano T,Gendron J,et al.Nuclear-localized BZR1 mediates brassinosteroid-induced growth and feedback suppression of brassinosteroid biosynthesis[J].Developmental Cell,2002,2:505 -513.
[52] Yin Y H,Wang Z Y,Mora-Garcia S,et al.BES1 accumulates in the nucleus in response to brassinosteroids to regulate gene expression and promote stem elongation[J].Cell,2002,109:181-191.
[53] Yin Y H,Cheong H,Friedrichsen D,et al.A crucial role for the putative Arabidopsis topoisomerase VI in plant growth and development[J].Proc Natl Acad Sci U S A,2002,99:10191-10196.
[54] Li J,Lease K A,Tax F E,et al.BRS1,a serine carboxypep-tidase,regulates BRI1 signaling in Arabidopsis thaliana[J].Proceedings of the National Academy of Sciences of the U-nited States of America,2001,98:5916-5921.
[54] Li J,Lease K A,Tax F E,et al.BRS1,a serine carboxypep-tidase,regulates BRI1 signaling in Arabidopsis thaliana[J].Proceedings of the National Academy of Sciences of the U-nited States of America,2001,98:5916-5921.
[56] Nam K H,Li J M.The Arabidopsis Transthyretin-Like protein is a potential substrate of BRASSINOSTEROID-INSENSITIVE I[J].Plant Cell,2004,16:2406-2417.
[57] Cabreray Poch H L,Peto C A,Chory J.A mutation in the Arabidopsis DET3 gene uncouples photoregulated leaf development from gene expression and chloroplast biogenesis[J].Plant Journal,1993,4:671 -682.
[58] Li J,Nagpal P,Vitart V,et al.A role for Brassinosteroids in light-dependent development of Arabidopsis[J].Science,1996,272:398-401.
[59] Klahre U,Noguchi T,Fujioka S,et al.The Arabidopsis DIMINUTO/DWARF1 gene encodes a protein involved in steroid synthesis[J].Plant Cell,1998,10:1677-1690.
[60] Neff M M,Nguyen S M,Malancharuvil E J,et al.BAS1:A gene regulating Brassinosteroid levels and light responsiveness in Arabidopsis[J].Proc Natl Acad Sci U S A,1999,96:15316-15323.
[61] Hong Z,Ueguchi-Tanaka M,Umemura K,et al.A rice Brassinosteroid-deficient mutant,ebisu dwarf (d2),is caused by a loss of function of a new member of cytochrome P450[J].Plant Cell,2003,15:2900-2910.
[62] Hong Z,Ueguchi-Tanaka M,Fujioka S,et al.The rice Brassinosteroid-deficient dwarf2 mutant,defective in the rice homolog of Arabidopsis DIMINUTO/DWARF 1,is rescued by the endogenously accumulated alternative bioactive Brassinosteroid,dolichosterone[J].Plant Cell,2005,17:2243-2254.
[63] Hong Z,Ueguchi-Tanaka M,Shimizu-Sato S,et al.Loss-of-function of a rice brassinosteroid biosynthetic enzyme,C-6 oxidase,prevents the organized arrangement and polar elongation of cells in the leaves and stem[J].Plant Journal,2002,32:495-508.
[64] Tanabe S,Ashikari M,Fujioka S,et al.A novel cytochrome P450 is implicated in brassinosteroid biosynthesis via the characterization of a rice dwarf mutant,dwarfl 1,with re-duced seed length[J].Plant Cell,2005,17:776-790.
[65] Cerana R,Bonetti A,Marre M T,et al.Effects of a brassi-nosteroid on growth and electrogenic proton extrusion in Azuki bean epicotyls[J].Physiologia Plantarum,1983,59:23 -27.
[66] Cerana R,Lado P,Anastasia M,et al.Regulating effects of brassinosteroids and of sterols on growth and H~+ secretion in maize roots[J].Journal of Plant Physiology,1984,114:221 -225.
[67] Zurek D M.Clouse S D.Molecular cloning and characterization of a brassinosteroid-regulated gene from elongating soybean (Glycine max L.) epicotyls[J].Plant Physiology,1994,104:161-170.
[68] Xu W,Purugganan M M,Polisensky D H,et al.Ambidopsis TCH4,regulated by hormones and the environment,encodes a xyloglucan endotransglycosylase[J].Plant Cell,1995,7:1555-1567.
[69] Koka C V,Cemy R E,Gardner R G,et al.A putative role for the tomato genes DUMPY and CURL-3 in brassinosteroid biosynthesis and response[J].Plant Physiology,2000,122:85-98.
[70] Uozu S,Tanaka-Ueguchi M,Kitano H,et al.Characterization of XET-related genes of rice[J].Plant Physiology,2000,122:853-859.
[71] Catterou M,Dubois F.Schaller H,et al.Brassinosteroids,microtubules and cell elongation in Arabidopsis thaliana.I.Molecular,cellular and physiological characterization of the Arabidopsis bull mutant,defective in the Delta(7)-sterol-C5-desaturation step leading to brassinosteroid biosynthesis[J].Planta,2001,212:659-672.
[72] Yamamuro C,Ihara Y,Wu X,et al.Loss of function of a rice Brassinosteroid insensitivel homolog prevents intemode elongation and bending of the lamina joint[J].Plant Cell,2000,12:1591-1605.
[73] Miyazawa Y,Nakajima N,Abe T,et al.Activation of cell proliferation by brassinolide application in tobacco BY-2 cells:effects of brassinolide on cell multiplication,cell-cycle-related gene expression,and organellar DNA contents[J].Journal of Experimental Botany,2003,54:2669 -2678.
[74] Kauschmann A,Jessop A.Koncz C,et al.Genetic evidence for an essential role of brassinosteroids in plant development[J].Plant Journal,1996,9:701 -713.
[75] Nakaya M,Tsukaya H,Murakami N,et al.Brassinosteroids control the proliferation of leaf cells of Arabidopsis thaliana[J].Plant and Cell Physiology,2002,43:239-244.
[76] Steber C M,McCourt P.A role for brassinosteroids in germination in Arabidopsis[J].Plant Physiology,2001,125:763 -769.
[77] Ullah H,Chen J G,Wang S,et al.Role of a heterotrimeric G protein in regulation of Arabidopsis seed germination[J].Plant Physiology,2002,129:897-907.
[78] Ephritikhine G,Fellner M,Vannini G,et al.The sexl dwarf mutant of Arabidopsis thaliana shows altered sensitivity of growth responses to abscisic acid,auxin,gibberellins and ethylene and is partially rescued by exogenous brassinos-teroid[J].Plant Journal,1999,18:303-314.
[79] Allen G J,Chu S P.Schumacher K.Alteration of stimulus-specific guard cell calcium oscillations and stomatal closing in Arabidopsis del3 mutant[J].Science,2000,289:2338 -2342.
[80] Kamuro Y,Takatsuto S.Capability for and problems of practical uses of Brassinosteroids[J].Acs Symposium Series 1991,474:292-297.
[81] He R Y,Wang G J,Wang X S.Effect of brassinolide on growth and chilling resistance of maize seedlings[M].Washington,DC:American Chemical Society; 1991.
[82] Katsumi M:Physiological modes of brassinolide action[M].Washington,DC:American Chemical Society; 1991.
[83] Wilen R W,Sacco M,Gusta L V,et al.Effects of 24-Epibrassinolide on freezing and thermotolerance of bromegrass (Bromus-Inermis) cell-cultures[J].Physiologia Plantarum,1995,95:195-202.
[84] Kulaeva O N,Burkhanova E A,Fedina A B,et al.Effect of brassinosteroids on protein-synthesis and plant-cell ultra-structure under stress conditions[J].Acs Symposium Series 1991,474:141-155.
[85] Schilling G,Schiller C,Otto S.Influence of brassiosteroids on organ relation and ezyme activities of sugar beet plants[M].Washington,DC:American Chemical Society,1991.
[86] Sairam R K.Effect of homobrassinolide application on plant metabolism and grain yield under irrigated and moisture stress condition of two wheat varieties[J].Plant Growth Regulation,1994,14:173-181.
[87] Sasse J M,Smith R,Hudson I.Effect of 24-epibrassinolide on germination of seeds of Eucalyptus camuldulensis in saline conditions[J].Proc Plant Growth Regulation,1995,22:136-141.
[88] Anuradha S,Rao S.Effect of brassinosteroids on the salinity stress induced inhibition of germination and seedling growth of rice (Oryza saliva)[J].Plant Growth Regulation,2001,33:151-153.
[89] Hong Z,Ueguchi-Tanaka M,Uozu S,et al.Isolation and characterization of a rice brassinosteroid mutant,Osdwarf[J].Plant and Cell Physiology,2002,43:184-184.
[90] Nagata N,Min Y K,Nakano T,et al.Treatment of dark-grown Arabidopsis thaliana with a brassinosteroid-biosynthe-sis inhibitor,brassinazole,induces some characteristics of light-grown plants[J].Planta,2000,211:781 -790.
[91] Ma L G,Li J,Qu L,et al.Light control of Arabidopsis development entails coordinated regulation of genome expression and cellular pathways[J].Plant Cell,2001,13:2389 -2607.
[92] He Z H,Wang Z Y,Li J,et al.Perception of brassinosteroids by the extracellular domain of the receptor kinase BRI1[J].Science,2000,288:2360-2363.
[93] Wang Z Y,Seto H,Fujioka S,et al.BRI1 is a critical component of a plasma-membrane receptor for plant steroids[J].Nature,2001,410:380-383.
[94] Zhou A F,Li J.Arabidopsis BRS1 is a secreted and active serine carboxypeptidase[J].Journal of Biological Chemistry,2005,280:35554-35561.
[95] Kinoshita T,Cano-Delgado A,Seto H,et al.Binding of brassinosteroids to the extracellular domain of plant receptor kinase BRI1[J].Nature,2005,433:167-171.
[96] Noguchi T,Fujioka S,Choe S,et al.Brassinosteroid-insensitive dwarf mutants of Arabidopsis accumulate brassinosteroids[J].Plant Physiology,1999,121:743-752.
[97] Li J M,Jin H.Regulation of brassinosteroid signaling[J].Trends in Plant Science,2007,12:37-41.
[98] Wang X,Goshe M B,Soderblom E J,et al.Identification and functional analysis of in vivo phosphorylation sites of theArabidopsis BRASSINOSTEROID-INSENSITIVE1 receptor kinase[J].Plant Cell,2005,17:1685-1703.
[99] Wang X F,Goshe M B,Soderblom E J,et al.Identification and functional analysis of in vivo phosphorylation sites of the Arabidopsis BRASSINOSTEROID-INSENSITIVE1 receptor kinase[J].Plant Cell,2005,17:1685-1703.
[100] Nam K H,Li J M.BRI1/BAK1,a receptor kinase pair mediating brassinosteroid signaling[J].Cell,2002,110:203 -212.
[101] Whippo C W,Hangarter R P.A brassinosteroid-hypersensi-tive mutant of BAK1 indicates that a convergence of photo-morphogenic and hormonal signaling modulates pho-totropism[J].Plant Physiology,2005,139:448-457.
[102] Russinovaa E,Borst J W,Kwaaitaal M,et al.Heterodiraer-ization and endocytosis of Arabidopsis Brassinosteroid receptors BRI1 and AtSERK3 (BAK1)[J].Plant Cell,2004,16:3216-3229.
[103] Karlova R,de Vries S C.Advances in understanding brassinosteroid signaling[J].Science Signaling,2006,354:36 -44.
[104] Wang X,Li X,Meisenhelder J,et al.Autoregulation and homodimerization are involved in the activation of the plant steroid receptor BRI1[J].Development Cell 2005,8:855 -865.
[105] Geldner N,Hyman D L,Wang X,et al.Endosomal signaling of plant steroid receptor kinase BRI1[J].Genes Development,2007,21:1598-1602.
[106] Wang X,Chory J.Brassinosteroids regulate dissociation of BKI1,a negative regulator of BRI1 signaling,from the plasma membrane[J].Science,2006,313:1118-1122.
[107] Hirabayashi S,Matsushita Y,Sato M,et al.Two proton pump interactors identified from a direct phosphorylation screening of a rice cDNA library by using a recombinant BRI1 receptor kinase[J].Plant Biotechnology,2004,21:35-45.
[108] Ehsan H,Ray W K,Phinney B,et al.Interaction of Arabidopsis BRASSINOSTEROID-INSENSITIVE 1 receptor kinase with a homolog of mammalian TGF-beta receptor interacting protein[J].Plant Journal,2005,43:251-261.
[109] Peng Peng,Yan Zhenyan,Zhu Yongyou,et al.Regulation of the Arabidopsis GSK3-like kinase BRASSINOSTEROID-INSENSITTVE 2 through proteasome-mediated protein degradation[J].Molecular Plant,2008,1:338-346.
[110] Vert G,Chory J.Downstream nuclear events in brassinosteroid signalling[J].Nature,2006,441:96-100.
[111] Yin Y H,Vafeados D,Tao Y,et al.A new class of transcription factors mediates brassinosteroid-regulated gene expression in Arabidopsis[J].Cell,2005,120:249-259.
[112] Wang Z Y,Nakano T,Gendron J,et al.Nuclear-localized BZR1 mediates brassinosteroid-induced growth and feedback suppression of brassinosteroid biosynthesis[J] -Dev Cell,2002,2:505-513.
[113] Zhao J,Peng P,Schmitz R J,et al.Two putative BIN2 substrates are nuclear components of brassinosteroid signaling[J].Plant Physiology,2002,130:1221-1229.
[114] He J X,Gendron J M,Yang Y L,et al.The GSK3-like ki-nase BIN2 phosphorylates and destabilizes BZR1,a positive regulator of the brassinosteroid signaling pathway in Ara-bidopsis[J].Proceedings of the National Academy of Sciences of the United States of America,2002,99:10185 -10190.
[115] Srinivas S Gampala,Tae-Wuk Kim,Jun-Xian He,et al.An essential role for 14-3-3 proteins in brassinosteroid signal transduction in Arabidopsis[J].Developmental Cell,2007,13:177-189.
[116] Vert G,Nemhauser J L,Geldner N,et al.Molecular mechanisms of steroid hormone signaling in plants[J].Annual Review of Cell and Developmental Biology,2005,21:177 -201.
[117] Goda H,Shimada Y,Asami T,et al.Microarray analysis of Brassinosteroid-regulated genes in Arabidopsis[J].Plant Physiology,2002,130:1319-1334.
[118] Mussig C,Fischer S,Altmann T.Brassinosteroid-regulated gene expression[J].Plant Physiology,2002,129:1241 -1251.
[119] He J X,Gendron J M,Sun Y,et al.BZR1 is a transcrip-tional repressor with dual roles in brassinosteroid homeosta-sis and growth responses[J].Science,2005,307:1634 -1638.
[120] He J X.BZR1 is a trancriptional repressor with dual roles in brassinosteroid homeostasis and growth responses[J].Science,2005,308:1743-1743.
[121] Yu Xiaofei,Li Li,Li Lei,et al.Modulation of brassinosteroid-regulated gene expression by jumonji domain-containing proteins ELF6 and REF6 in Arabidopsis[J].Proc Natl Acad Sci U S A,2008.
[122] Wang Lei,Xu Yun-yuan,Li J,et al.Transgenic rice plants ectopically expressing AtBAK1 are semi-dwarfed and hypersensitive to 24-epibrassinolide[J].Journal of Plant Physiology,2007,164:655-664.
[123] Bai M Y,Zhang L Y,Gampala S,et al.Functions of Os-BZR1 and 14-3-3 proteins in brassinosteroid signaling in rice[J].Proc Natl Acad Sci U S A,2007,104:13839 -13844.
[124] Serry Koh,Sang Choon L,Min Kyung K,et al.T-DNA tagged knockout mutation of rice OsGSK1,an orthologue of Arabidopsis BIN2,with enhanced tolerance to various abiotic stresses[J].Plant Molecular Biology,2007,65:453 -466.
[125] Yang G X,Setsuko Komatsu.Molecular cloning and characterization of a novel brassinolide enhanced gene OsBLE1 in Oryza saliva seedlings[J].Plant Physiology and Biochemistry,2004,42:1-6.
[126] Duan K,Li L,Hu P,et al.A brassinolide-suppressed rice MADS-box transcription factor,OsMDP1,has a negative regulatory role in BR signaling[J].Plant Journal,2006,47:519-531.
[127] Shinyoung Lee,Sang Chul Choi,Gynheung An.Rice SVP-group MADS-box proteins,OsMADS22 and OsMADS55,are negative regulators of brassinosteroid responses[J].Plant Journal,2008,54:93-105. |