메뉴 건너뛰기




Volumn 25, Issue 5, 2003, Pages 443-451

Pattern formation in the Drosophila wing: The development of the veins

Author keywords

[No Author keywords available]

Indexed keywords

TRANSCRIPTION FACTOR;

EID: 0038218021     PISSN: 02659247     EISSN: None     Source Type: Journal    
DOI: 10.1002/bies.10258     Document Type: Review
Times cited : (176)

References (79)
  • 1
    • 0001240840 scopus 로고
    • New York: Cold Spring Harbor Laboratory Press
    • Pankratz MJ, Jackle H. Blastoderm segmentation. New York: Cold Spring Harbor Laboratory Press. 1993. Vol 1: p 467-516.
    • (1993) Blastoderm Segmentation , vol.1 , pp. 467-516
    • Pankratz, M.J.1    Jackle, H.2
  • 2
    • 0001085592 scopus 로고
    • New York: Cold Spring Harbor Laboratory Press
    • Cohen SM. Imaginal disc development. New York: Cold Spring Harbor Laboratory Press. 1993. Vol 2: p 747-841.
    • (1993) Imaginal Disc Development , vol.2 , pp. 747-841
    • Cohen, S.M.1
  • 3
    • 0025870987 scopus 로고
    • The embryonic origin of imaginal discs in Drosophila
    • Bate CM, Martinez-Arias A. The embryonic origin of imaginal discs in Drosophila. Development 1991;112:755-761.
    • (1991) Development , vol.112 , pp. 755-761
    • Bate, C.M.1    Martinez-Arias, A.2
  • 4
    • 0031020324 scopus 로고    scopus 로고
    • Specification of the embryonic limb primordium by graded activity of Decapentaplegic
    • Goto S, Hayashi S. Specification of the embryonic limb primordium by graded activity of Decapentaplegic. Development 1997;124:125-132.
    • (1997) Development , vol.124 , pp. 125-132
    • Goto, S.1    Hayashi, S.2
  • 5
    • 0027530340 scopus 로고
    • Pattern formation in a secondary field: A hierarchy of regulatory genes subdivides the developing Drosophila wing disc into discrete subregions
    • Williams JA, Paddock SW, Carroll SB. Pattern formation in a secondary field: a hierarchy of regulatory genes subdivides the developing Drosophila wing disc into discrete subregions. Development 1993;117: 571-584.
    • (1993) Development , vol.117 , pp. 571-584
    • Williams, J.A.1    Paddock, S.W.2    Carroll, S.B.3
  • 6
    • 0034518324 scopus 로고    scopus 로고
    • The developmental and molecular biology of genes that subdivide the body of Drosophila
    • Mann RS, Morata G. The developmental and molecular biology of genes that subdivide the body of Drosophila. Annu Rev Cell Dev Biol 2000; 16;243-271.
    • (2000) Annu Rev Cell Dev Biol , vol.16 , pp. 243-271
    • Mann, R.S.1    Morata, G.2
  • 7
    • 0030986188 scopus 로고    scopus 로고
    • The hardwiring of development: Organization and function of genomic regulatory systems
    • Arnone MI, Davidson EH. The hardwiring of development:organization and function of genomic regulatory systems Development 1997;124: 1851-1864.
    • (1997) Development , vol.124 , pp. 1851-1864
    • Arnone, M.I.1    Davidson, E.H.2
  • 8
    • 0027070516 scopus 로고
    • Developmental genetics of the venation pattern of Drosophila
    • Garcia-Bellido A, de Celis JF. Developmental genetics of the venation pattern of Drosophila. Annu Rev Gen 1992;26:275-302.
    • (1992) Annu Rev Gen , vol.26 , pp. 275-302
    • Garcia-Bellido, A.1    De Celis, J.F.2
  • 10
    • 0029819666 scopus 로고    scopus 로고
    • The Drosophila Serum Response Factor gene is required for the formation of intervein tissue of the wing and is allelic to blistered
    • Montagne J, Groppe J, Guillemin K, Krasnow MA, Gehring WJ, Affolter M. The Drosophila Serum Response Factor gene is required for the formation of intervein tissue of the wing and is allelic to blistered. Development 1996;122:2589-2597.
    • (1996) Development , vol.122 , pp. 2589-2597
    • Montagne, J.1    Groppe, J.2    Guillemin, K.3    Krasnow, M.A.4    Gehring, W.J.5    Affolter, M.6
  • 11
    • 0031747906 scopus 로고    scopus 로고
    • Genetic interactions and cell behaviour in blistered mutants during proliferation and differentiation of the Drosophila wing
    • Roch F, Baonza A, Martin-Blanco E, Garcia-Bellido A. Genetic interactions and cell behaviour in blistered mutants during proliferation and differentiation of the Drosophila wing. Development 1998;125:1823-1832.
    • (1998) Development , vol.125 , pp. 1823-1832
    • Roch, F.1    Baonza, A.2    Martin-Blanco, E.3    Garcia-Bellido, A.4
  • 12
    • 0033375113 scopus 로고    scopus 로고
    • Repression of the wing vein development in Drosophila by the nuclear matrix protein Plexus
    • Matakatsu H, Tadokoro R, Gamo S, Hayashi S. Repression of the wing vein development in Drosophila by the nuclear matrix protein Plexus. Development 1999;126:5207-5216.
    • (1999) Development , vol.126 , pp. 5207-5216
    • Matakatsu, H.1    Tadokoro, R.2    Gamo, S.3    Hayashi, S.4
  • 13
    • 0033678762 scopus 로고    scopus 로고
    • Regulation of Drosophila wing vein patterning: Netencodes a bHLH protein repressing rhomboid and is repressed by rhomboid-dependent Egfr signalling
    • Brentrup D, Lerch HP, Jackle H, Noll M. Regulation of Drosophila wing vein patterning: netencodes a bHLH protein repressing rhomboid and is repressed by rhomboid-dependent Egfr signalling. Development 2000; 127:4729-4741.
    • (2000) Development , vol.127 , pp. 4729-4741
    • Brentrup, D.1    Lerch, H.P.2    Jackle, H.3    Noll, M.4
  • 14
    • 0029919934 scopus 로고    scopus 로고
    • Araucan and caupolican, two members of the novel Iroquois complex, encode homeoproteins that control proneural and vein-forming genes
    • Gómez-Skarmeta JL, Díez del Corral R, de la Calle E, Ferrer-Marcó D, Modolell J. Araucan and caupolican, two members of the novel Iroquois complex, encode homeoproteins that control proneural and vein-forming genes. Cell 1996;85:95-105.
    • (1996) Cell , vol.85 , pp. 95-105
    • Gómez-Skarmeta, J.L.1    Díez del Corral, R.2    De la Calle, E.3    Ferrer-Marcó, D.4    Modolell, J.5
  • 15
    • 0031735144 scopus 로고    scopus 로고
    • The knirps and knirps-related genes organize development of the second wing vein in Drosphila
    • Lunde K, Biehs B, Neuber U, Bier E. The knirps and knirps-related genes organize development of the second wing vein in Drosphila. Development 1998;125:4145-4154.
    • (1998) Development , vol.125 , pp. 4145-4154
    • Lunde, K.1    Biehs, B.2    Neuber, U.3    Bier, E.4
  • 16
    • 0033998418 scopus 로고    scopus 로고
    • Function of the spalt/spalt-related gene complex in positioning the veins in the Drosophila wing
    • de Celis JF, Barrio R. Function of the spalt/spalt-related gene complex in positioning the veins in the Drosophila wing. Mech Dev 2000;91:31-41.
    • (2000) Mech Dev , vol.91 , pp. 31-41
    • De Celis, J.F.1    Barrio, R.2
  • 17
    • 0027176294 scopus 로고
    • The Drosophila rhomboid gene mediates the localized formation of wing veins and interacts genetically with components of the EGF-R signalling pathway
    • Sturtevant MA, Roark M, Bier E. The Drosophila rhomboid gene mediates the localized formation of wing veins and interacts genetically with components of the EGF-R signalling pathway. Genes Dev 1993;7:961-973.
    • (1993) Genes Dev , vol.7 , pp. 961-973
    • Sturtevant, M.A.1    Roark, M.2    Bier, E.3
  • 18
    • 0028343745 scopus 로고
    • The sevenless signalling cassette mediates Drosophila EGF receptor function during epidermal development
    • Diaz-Benjumea F, Hafen E. The sevenless signalling cassette mediates Drosophila EGF receptor function during epidermal development. Development 1994;120:569-578.
    • (1994) Development , vol.120 , pp. 569-578
    • Diaz-Benjumea, F.1    Hafen, E.2
  • 19
    • 0030992779 scopus 로고    scopus 로고
    • Notch signalling regulates veinlet expression and establishes boundaries between veins and interveins in the Drosophila wing
    • de Celis JF, Bray SJ, Garcia-Bellido A. Notch signalling regulates veinlet expression and establishes boundaries between veins and interveins in the Drosophila wing. Development 1997;124:1919-1928.
    • (1997) Development , vol.124 , pp. 1919-1928
    • De Celis, J.F.1    Bray, S.J.2    Garcia-Bellido, A.3
  • 20
    • 0030804540 scopus 로고    scopus 로고
    • Feedback regulation is central to Delta-Notch signalling required for Drosophila wing vein morphogenesis
    • Huppert S, Jacobsen T, Muskavitch MAT. Feedback regulation is central to Delta-Notch signalling required for Drosophila wing vein morphogenesis. Development 1997;124:3283-3291.
    • (1997) Development , vol.124 , pp. 3283-3291
    • Huppert, S.1    Jacobsen, T.2    Muskavitch, M.A.T.3
  • 21
    • 0030464160 scopus 로고    scopus 로고
    • The Drosophila decapentaplegic and short gastrulation genes function antagonistically during adult wing vein development
    • Yu K, Sturtevant MA, Biehs B, François V, Padgett RW, Blackman RK, Bier E. The Drosophila decapentaplegic and short gastrulation genes function antagonistically during adult wing vein development. Development 1996;122:4033-4044.
    • (1996) Development , vol.122 , pp. 4033-4044
    • Yu, K.1    Sturtevant, M.A.2    Biehs, B.3    François, V.4    Padgett, R.W.5    Blackman, R.K.6    Bier, E.7
  • 22
    • 0030942867 scopus 로고    scopus 로고
    • Expression and function of decapentaplegic and thick veins during the differentiation of the veins in the Drosophila wing
    • de Celis JF. Expression and function of decapentaplegic and thick veins during the differentiation of the veins in the Drosophila wing. Development 1997;124:1007-1018.
    • (1997) Development , vol.124 , pp. 1007-1018
    • De Celis, J.F.1
  • 23
    • 0027409141 scopus 로고
    • A wingless-dependent polar coordinate system in Drosophila imaginal discs
    • Couso JP, Bate M, Martinez-Arias A. A wingless-dependent polar coordinate system in Drosophila imaginal discs. Science 1993;259: 484-489.
    • (1993) Science , vol.259 , pp. 484-489
    • Couso, J.P.1    Bate, M.2    Martinez-Arias, A.3
  • 24
    • 0036670021 scopus 로고    scopus 로고
    • Dpp signalling is a key effector of the wing-body wall subdivision of the Drosophila mesothorax
    • Cavodeassi F, Rodriguez I, Modolell J. Dpp signalling is a key effector of the wing-body wall subdivision of the Drosophila mesothorax. Development 2002;129:3815-3823.
    • (2002) Development , vol.129 , pp. 3815-3823
    • Cavodeassi, F.1    Rodriguez, I.2    Modolell, J.3
  • 25
    • 0034665738 scopus 로고    scopus 로고
    • Dual role for Drosophila epidermal growth factor receptor signalling in early wing disc development
    • Wang SH, Simcox A, Campbell G. Dual role for Drosophila epidermal growth factor receptor signalling in early wing disc development. Genes Dev 2000;14:2271-2276.
    • (2000) Genes Dev , vol.14 , pp. 2271-2276
    • Wang, S.H.1    Simcox, A.2    Campbell, G.3
  • 26
    • 0036336652 scopus 로고    scopus 로고
    • Subdivision of the Drosophila wing imaginal disc by EGFR-mediated signalling
    • Zecca M, Struhl G. Subdivision of the Drosophila wing imaginal disc by EGFR-mediated signalling. Development 2002;129:1357-1368.
    • (2002) Development , vol.129 , pp. 1357-1368
    • Zecca, M.1    Struhl, G.2
  • 27
    • 0028329349 scopus 로고
    • Compartment boundaries and the control of Drosophila limb pattern by hedgehog protein
    • Basler K, Struhl G. Compartment boundaries and the control of Drosophila limb pattern by hedgehog protein. Nature 1994;368:208-214.
    • (1994) Nature , vol.368 , pp. 208-214
    • Basler, K.1    Struhl, G.2
  • 28
    • 0028178786 scopus 로고
    • Hedgehog is a signalling protein with a key role in patterning Drosophila imaginal discs
    • Tabata T, Kornberg TB. Hedgehog is a signalling protein with a key role in patterning Drosophila imaginal discs. Cell 1994;76:89-102.
    • (1994) Cell , vol.76 , pp. 89-102
    • Tabata, T.1    Kornberg, T.B.2
  • 29
    • 0028864433 scopus 로고
    • Creating a Drosophila wing de novo, the role of engrailed, and the compartment border hypothesis
    • Tabata T, Schwartz C, Kornberg TB. Creating a Drosophila wing de novo, the role of engrailed, and the compartment border hypothesis. Development 1995;121:3359-3369.
    • (1995) Development , vol.121 , pp. 3359-3369
    • Tabata, T.1    Schwartz, C.2    Kornberg, T.B.3
  • 30
    • 0029079881 scopus 로고
    • Sequential organizing activities of engrailed, hedgehog, and decapentaplegic in the Drosophila wing
    • Zecca M, Basler K, Struhl G. Sequential organizing activities of engrailed, hedgehog, and decapentaplegic in the Drosophila wing. Development 1995;121:2265-2278.
    • (1995) Development , vol.121 , pp. 2265-2278
    • Zecca, M.1    Basler, K.2    Struhl, G.3
  • 31
    • 0030604688 scopus 로고    scopus 로고
    • Morphogens, compartments, and pattern: Lessons from Drosophila?
    • Lawrence PA, Struhl G. Morphogens, compartments, and pattern: lessons from Drosophila? Cell 1996;85:951-961.
    • (1996) Cell , vol.85 , pp. 951-961
    • Lawrence, P.A.1    Struhl, G.2
  • 32
    • 0015910572 scopus 로고
    • Developmental compartimentalisation of the wing disc of Drosophila
    • Garcia-Bellido A, Ripoll P, Morata G. Developmental compartimentalisation of the wing disc of Drosophila. Nature 1973;245:251-253.
    • (1973) Nature , vol.245 , pp. 251-253
    • Garcia-Bellido, A.1    Ripoll, P.2    Morata, G.3
  • 33
    • 0025283924 scopus 로고
    • Repression of ci-D in posterior compartments by engrailed
    • Eaton S, Kornberg TB. Repression of ci-D in posterior compartments by engrailed. Genes Dev 1990;4:1068-1077.
    • (1990) Genes Dev , vol.4 , pp. 1068-1077
    • Eaton, S.1    Kornberg, T.B.2
  • 34
    • 0029896212 scopus 로고    scopus 로고
    • Sending and receiving the Hedgehog signal: Control by the Drosophila Gil protein Cubitus interruptus
    • Dominguez M, Brunner M, Hafen E, Basler K. Sending and receiving the Hedgehog signal:control by the Drosophila Gil protein Cubitus interruptus. Science 1996;272:1621-1625.
    • (1996) Science , vol.272 , pp. 1621-1625
    • Dominguez, M.1    Brunner, M.2    Hafen, E.3    Basler, K.4
  • 35
    • 0001625080 scopus 로고    scopus 로고
    • Catching a Gli-mpse of Hedgehog
    • Ruiz i Altaba A. Catching a Gli-mpse of Hedgehog. Cell 1997;90:193-196.
    • (1997) Cell , vol.90 , pp. 193-196
    • Ruiz i Altaba, A.1
  • 36
    • 0033230757 scopus 로고    scopus 로고
    • Ci, a complex transducer of the Hedgehog signal
    • Aza-Blanc P, Kornberg TB. Ci, a complex transducer of the Hedgehog signal. TIG 1999;15:458-462.
    • (1999) TIG , vol.15 , pp. 458-462
    • Aza-Blanc, P.1    Kornberg, T.B.2
  • 37
    • 0035577854 scopus 로고    scopus 로고
    • Hedgehog signalling in animal development: Paradigms and principles
    • Ingham PW, McMahon AP. Hedgehog signalling in animal development:paradigms and principles. Genes Dev 2001;15:3059-3087.
    • (2001) Genes Dev , vol.15 , pp. 3059-3087
    • Ingham, P.W.1    McMahon, A.P.2
  • 38
    • 0030970025 scopus 로고    scopus 로고
    • Hedgehog activity, independent of Decapentaplegic, participates in wing disc patterning
    • Mullor JL, Calleja M, Capdevila J, Guerrero I. Hedgehog activity, independent of Decapentaplegic, participates in wing disc patterning. Development 1997;124:1227-1237.
    • (1997) Development , vol.124 , pp. 1227-1237
    • Mullor, J.L.1    Calleja, M.2    Capdevila, J.3    Guerrero, I.4
  • 39
    • 0033582908 scopus 로고    scopus 로고
    • Hedgehog controls limb development by regulating the activities of distinct transcriptional activator and repressor forms of Cubitus interruptus
    • Méthot N, Basler K. Hedgehog controls limb development by regulating the activities of distinct transcriptional activator and repressor forms of Cubitus interruptus. Cell 1999;96:819-831.
    • (1999) Cell , vol.96 , pp. 819-831
    • Méthot, N.1    Basler, K.2
  • 40
    • 0030711589 scopus 로고    scopus 로고
    • Role of knot in wing patterning in Drosophila
    • Nestoras K, Lee H, Mohler J. Role of knot in wing patterning in Drosophila. Genetics 1997;147:1203-1212.
    • (1997) Genetics , vol.147 , pp. 1203-1212
    • Nestoras, K.1    Lee, H.2    Mohler, J.3
  • 41
    • 0033578020 scopus 로고    scopus 로고
    • The COE transcription factor Collier is a mediator of short-range Hedgehog-induced patterning of the Drosophila wing
    • Vervoort M, Crozatier M, Valle D, Vincent A. The COE transcription factor Collier is a mediator of short-range Hedgehog-induced patterning of the Drosophila wing. Current Biology 1999;9:632-639.
    • (1999) Current Biology , vol.9 , pp. 632-639
    • Vervoort, M.1    Crozatier, M.2    Valle, D.3    Vincent, A.4
  • 42
    • 0033967951 scopus 로고    scopus 로고
    • Activation of knot specifies the 3-4 intervein region in the Drosophila wing
    • Mohler J, Seecoomar M, Agarwal S, Bier E, Hsai J. Activation of knot specifies the 3-4 intervein region in the Drosophila wing. Development 2000;127:55-63.
    • (2000) Development , vol.127 , pp. 55-63
    • Mohler, J.1    Seecoomar, M.2    Agarwal, S.3    Bier, E.4    Hsai, J.5
  • 43
    • 0036746680 scopus 로고    scopus 로고
    • Connecting Hh, Dpp and EGF signalling in patterning of the Drosophila wing: The pivotal role of collier/knot in the AP organiser
    • Crozatier M, Glise B, Vincent A. Connecting Hh, Dpp and EGF signalling in patterning of the Drosophila wing:the pivotal role of collier/knot in the AP organiser. Development 2002;129:4261-4269.
    • (2002) Development , vol.129 , pp. 4261-4269
    • Crozatier, M.1    Glise, B.2    Vincent, A.3
  • 44
    • 0029744895 scopus 로고    scopus 로고
    • Vein is a novel component in the Drosophila epidermal growth factor receptor pathway with similarity to the neuregulins
    • Schnepp B, Grumbling G, Donaldson T, Simcox A. Vein is a novel component in the Drosophila epidermal growth factor receptor pathway with similarity to the neuregulins. Genes Dev 1996;10:2302-2313.
    • (1996) Genes Dev , vol.10 , pp. 2302-2313
    • Schnepp, B.1    Grumbling, G.2    Donaldson, T.3    Simcox, A.4
  • 45
    • 0027984056 scopus 로고
    • Cell interactions in the control of size in Drosophila wings
    • Garcia-Bellido A, Cortes F, Milan M. Cell interactions in the control of size in Drosophila wings. PNAS 1994;91:10222-10226.
    • (1994) PNAS , vol.91 , pp. 10222-10226
    • Garcia-Bellido, A.1    Cortes, F.2    Milan, M.3
  • 46
    • 0029809523 scopus 로고    scopus 로고
    • Araucan and caupolican provide a link between compartment subdivisions and patterning of sensory organs and veins in the Drosophila wing
    • Gómez-Skarmeta JL, Modolell J. Araucan and caupolican provide a link between compartment subdivisions and patterning of sensory organs and veins in the Drosophila wing. Genes Dev 1996;10:2935-2945.
    • (1996) Genes Dev , vol.10 , pp. 2935-2945
    • Gómez-Skarmeta, J.L.1    Modolell, J.2
  • 47
    • 0025666726 scopus 로고
    • Wing formation in Drosophila melanogaster requires decapentaplegic gene function along the anterior-posterior compartment boundary
    • Posakony J, Raftery LA, Gelbart WM. Wing formation in Drosophila melanogaster requires decapentaplegic gene function along the anterior-posterior compartment boundary. Mech Dev 1991;33:69-82.
    • (1991) Mech Dev , vol.33 , pp. 69-82
    • Posakony, J.1    Raftery, L.A.2    Gelbart, W.M.3
  • 48
    • 0025880338 scopus 로고
    • The relationships of decapentaplegic and engrailed expression in Drosophila imaginal discs: Do these genes mark the anterior-posterior compartment boundary?
    • Raftery LA, Sanicola M, Blackman RK, Gelbart WM. The relationships of decapentaplegic and engrailed expression in Drosophila imaginal discs:do these genes mark the anterior-posterior compartment boundary? Development 1991;113:27-33.
    • (1991) Development , vol.113 , pp. 27-33
    • Raftery, L.A.1    Sanicola, M.2    Blackman, R.K.3    Gelbart, W.M.4
  • 50
    • 0033636094 scopus 로고    scopus 로고
    • Dpp gradient formation in the Drosophila wing maginal disc
    • Teleman AA, Cohen SM. Dpp gradient formation in the Drosophila wing maginal disc. Cell 2000;103:971-980.
    • (2000) Cell , vol.103 , pp. 971-980
    • Teleman, A.A.1    Cohen, S.M.2
  • 51
    • 0033580437 scopus 로고    scopus 로고
    • Brinker is a target of Dpp in Drosophila that negatively regulates Dpp-dependent genes
    • Minami M, Kinoshita N, Kamoshida Y, Tanimoto H, Tabata T. Brinker is a target of Dpp in Drosophila that negatively regulates Dpp- dependent genes. Nature 1999;398:242-246.
    • (1999) Nature , vol.398 , pp. 242-246
    • Minami, M.1    Kinoshita, N.2    Kamoshida, Y.3    Tanimoto, H.4    Tabata, T.5
  • 52
    • 0343967010 scopus 로고    scopus 로고
    • Hedgehog creates a gradient of DPP activity in Drosophila wing imaginal discs
    • Tanimoto H, Itoh S, ten Dijke P, Tabata T. Hedgehog creates a gradient of DPP activity in Drosophila wing imaginal discs. Molecular Cell 2000;5: 59-71.
    • (2000) Molecular Cell , vol.5 , pp. 59-71
    • Tanimoto, H.1    Itoh, S.2    Ten Dijke, P.3    Tabata, T.4
  • 53
    • 0035156553 scopus 로고    scopus 로고
    • mtv shapes the activity gradient of the Dpp morphogen through regulation of thickveins
    • Funakoshi Y, Minami M, Tabata T. mtv shapes the activity gradient of the Dpp morphogen through regulation of thickveins. Development 2001; 128:67-74.
    • (2001) Development , vol.128 , pp. 67-74
    • Funakoshi, Y.1    Minami, M.2    Tabata, T.3
  • 54
    • 0029900174 scopus 로고    scopus 로고
    • A gene complex acting downstream of dpp in Drosophila wing morphogenesis
    • de Celis JF, Barrio R, Kafatos F. A gene complex acting downstream of dpp in Drosophila wing morphogenesis. Nature 1996;381:421-424.
    • (1996) Nature , vol.381 , pp. 421-424
    • De Celis, J.F.1    Barrio, R.2    Kafatos, F.3
  • 55
    • 0028107659 scopus 로고
    • Spalt encodes an evolutionarily conserved zinc finger protein of novel structure which provides homeotic gene function in the head and tail region of the Drosophila embryo
    • Kühnlein RP, Frömmer G, Friedrich M, Gonzalez-Gaitán M, Wever A, Wagner-Bernholz JF, Gehring WJ, Jäckle H, Schuh R. Spalt encodes an evolutionarily conserved zinc finger protein of novel structure which provides homeotic gene function in the head and tail region of the Drosophila embryo. EMBO J 1994;13:168-179.
    • (1994) EMBO J , vol.13 , pp. 168-179
    • Kühnlein, R.P.1    Frömmer, G.2    Friedrich, M.3    Gonzalez-Gaitán, M.4    Wever, A.5    Wagner-Bernholz, J.F.6    Gehring, W.J.7    Jäckle, H.8    Schuh, R.9
  • 56
    • 0030463153 scopus 로고    scopus 로고
    • The spalt-related gene of Drosophila melanogaster is a member of an ancient family, defined by the adjacent, region-specific homeotic gene spalt
    • Barrio R, Shea MJ, Carulli J, Lipkow K, Gaul U, Frömmer G, Schuh R, Jäckle H, Kafatos FC. The spalt-related gene of Drosophila melanogaster is a member of an ancient family, defined by the adjacent, region-specific homeotic gene spalt. Dev Genes Evol 206: 315-325.
    • Dev Genes Evol , vol.206 , pp. 315-325
    • Barrio, R.1    Shea, M.J.2    Carulli, J.3    Lipkow, K.4    Gaul, U.5    Frömmer, G.6    Schuh, R.7    Jäckle, H.8    Kafatos, F.C.9
  • 57
    • 0033230824 scopus 로고    scopus 로고
    • Identification of regulatory regions driving the expression of the Drosophila spalt complex at different developmental stages
    • Barrio R, de Celis JF, Bolshakov S, Kafatos F. Identification of regulatory regions driving the expression of the Drosophila spalt complex at different developmental stages. Dev Biol 1999;215:33-47.
    • (1999) Dev Biol , vol.215 , pp. 33-47
    • Barrio, R.1    De Celis, J.F.2    Bolshakov, S.3    Kafatos, F.4
  • 58
    • 0029967209 scopus 로고    scopus 로고
    • Two distinct mechanisms for long-range patterning by Decapentaplegic in the Drosophila wing
    • Lecuit T, Brook WJ, Ng M, Calleja M, Sun H, Cohen SM. Two distinct mechanisms for long-range patterning by Decapentaplegic in the Drosophila wing. Nature 1996;381:387-393.
    • (1996) Nature , vol.381 , pp. 387-393
    • Lecuit, T.1    Brook, W.J.2    Ng, M.3    Calleja, M.4    Sun, H.5    Cohen, S.M.6
  • 59
    • 0033582646 scopus 로고    scopus 로고
    • Transducing the Dpp morphogen gradient in the wing of Drosophila: Regulation of Dpp targets by brinker
    • Campbell G, Tomlinson A. Transducing the Dpp morphogen gradient in the wing of Drosophila: regulation of Dpp targets by brinker. Cell 1999;96:553-562.
    • (1999) Cell , vol.96 , pp. 553-562
    • Campbell, G.1    Tomlinson, A.2
  • 60
    • 0033582753 scopus 로고    scopus 로고
    • The Drosophila gene brinker reveals a novel mechanism of Dpp target gene regulation
    • Jazwinska A, Kirov N, Wieschaus E, Roth S, Rushlow C. The Drosophila gene brinker reveals a novel mechanism of Dpp target gene regulation. Cell 1999;96:563-573.
    • (1999) Cell , vol.96 , pp. 563-573
    • Jazwinska, A.1    Kirov, N.2    Wieschaus, E.3    Roth, S.4    Rushlow, C.5
  • 61
    • 0036080432 scopus 로고    scopus 로고
    • Short-range cell interactions and cell survival in the Drosophila wing
    • Milan M, Perez L, Cohen SM. Short-range cell interactions and cell survival in the Drosophila wing. Dev Cell 2002;2:797-805.
    • (2002) Dev Cell , vol.2 , pp. 797-805
    • Milan, M.1    Perez, L.2    Cohen, S.M.3
  • 62
    • 0030071741 scopus 로고    scopus 로고
    • Cell cycling and patterned cell proliferation in the wing primordium of Drosophila
    • Milan M, Campuzano S, García-Bellido A. Cell cycling and patterned cell proliferation in the wing primordium of Drosophila. PNAS 1996;93: 640-645.
    • (1996) PNAS , vol.93 , pp. 640-645
    • Milan, M.1    Campuzano, S.2    García-Bellido, A.3
  • 63
    • 0028235832 scopus 로고
    • Cell proliferation patterns in the wing imaginal disc of Drosophila
    • González-Gaitan M, Capdevila MP, García Bellido A. Cell proliferation patterns in the wing imaginal disc of Drosophila. Mech Dev 1994;46: 183-200.
    • (1994) Mech Dev , vol.46 , pp. 183-200
    • González-Gaitan, M.1    Capdevila, M.P.2    García Bellido, A.3
  • 64
    • 0028889271 scopus 로고
    • Behavior of extramacrochaetae mutant cells during Drosophila wing morphogenesis
    • de Celis JF, Baonza A, Garcia-Bellido A. Behavior of extramacrochaetae mutant cells during Drosophila wing morphogenesis. Mech Dev 1995; 53:209-222.
    • (1995) Mech Dev , vol.53 , pp. 209-222
    • De Celis, J.F.1    Baonza, A.2    Garcia-Bellido, A.3
  • 65
    • 0345683491 scopus 로고    scopus 로고
    • Dual role of extramacrochaetae in cell proliferation and cell differentiation during wing morphogenesis in Drosophila
    • Baonza A, Garcia-Bellido A. Dual role of extramacrochaetae in cell proliferation and cell differentiation during wing morphogenesis in Drosophila. Mech Dev 1999;80:133-146.
    • (1999) Mech Dev , vol.80 , pp. 133-146
    • Baonza, A.1    Garcia-Bellido, A.2
  • 66
    • 0027416250 scopus 로고
    • Implications of dynamic patterns of Delta and Notch expression for cellular interactions during Drosophila development
    • Kooh PJ, Fehon RG, Muskavitch MAT. Implications of dynamic patterns of Delta and Notch expression for cellular interactions during Drosophila development. Development 1993;117:493-507.
    • (1993) Development , vol.117 , pp. 493-507
    • Kooh, P.J.1    Fehon, R.G.2    Muskavitch, M.A.T.3
  • 67
    • 0029819667 scopus 로고    scopus 로고
    • Functional relationships between Notch, Su(H) and the bHLH genes of the E(spl) complex: The E(spl) genes mediate only a subset of Notch activitie during imaginal development
    • de Celis JF, de Celis J, Ligoxiars P, Preiss A, Delidakis C, Bray S. Functional relationships between Notch, Su(H) and the bHLH genes of the E(spl) complex: the E(spl) genes mediate only a subset of Notch activitie during imaginal development. Development 1996;122:2719-2728.
    • (1996) Development , vol.122 , pp. 2719-2728
    • De Celis, J.F.1    De Celis, J.2    Ligoxiars, P.3    Preiss, A.4    Delidakis, C.5    Bray, S.6
  • 68
    • 0030785165 scopus 로고    scopus 로고
    • Control of EGF receptor activation in Drosophila
    • Wasserman JD, Freeman M. Control of EGF receptor activation in Drosophila. Trens Cell Biol 1997;7:431-436.
    • (1997) Trens Cell Biol , vol.7 , pp. 431-436
    • Wasserman, J.D.1    Freeman, M.2
  • 69
    • 0033515519 scopus 로고    scopus 로고
    • Negative feedback mechanisms and their roles during pattern formation
    • Perrimon N, McMahon AP. Negative feedback mechanisms and their roles during pattern formation. Cell 1999;97:13-16.
    • (1999) Cell , vol.97 , pp. 13-16
    • Perrimon, N.1    McMahon, A.P.2
  • 70
    • 0030866482 scopus 로고    scopus 로고
    • In situ activation of Drosophila EGF receptor pathway during development
    • Gabay L, Seger R, Shilo BZ. In situ activation of Drosophila EGF receptor pathway during development. Science 1997;277:1103-1106.
    • (1997) Science , vol.277 , pp. 1103-1106
    • Gabay, L.1    Seger, R.2    Shilo, B.Z.3
  • 71
    • 0025059294 scopus 로고
    • Behavior of cells mutant for an EGF receptor homologue of Drosophila in genetics mosaics
    • Diaz-Benjumea F, Garcia-Bellido A. Behavior of cells mutant for an EGF receptor homologue of Drosophila in genetics mosaics. Proc Roy Soc Lond Biol Sci 1990;242:36-44.
    • (1990) Proc Roy Soc Lond Biol Sci , vol.242 , pp. 36-44
    • Diaz-Benjumea, F.1    Garcia-Bellido, A.2
  • 72
    • 0028971682 scopus 로고
    • Ventral veinless, the gene encoding the Cf1a transcription factor, links positional information and cell differentiation during embryonic and imaginal development in Drosophila melanogaster
    • de Celis JF, Llimargas M, Casanova J. Ventral veinless, the gene encoding the Cf1a transcription factor, links positional information and cell differentiation during embryonic and imaginal development in Drosophila melanogaster. Development 1995;121:3405-3416.
    • (1995) Development , vol.121 , pp. 3405-3416
    • De Celis, J.F.1    Llimargas, M.2    Casanova, J.3
  • 74
    • 0025979817 scopus 로고
    • An extensive 3′ cis-regulatory region directs the imaginal disc expression of decapentaplegic, a member of the TGF-β family in Drosophila
    • Blackman RK, Sanicola M, Raferty LA, Gillevet T, Gelbart WM. An extensive 3′ cis-regulatory region directs the imaginal disc expression of decapentaplegic, a member of the TGF-β family in Drosophila. Development 1991;111:657-665.
    • (1991) Development , vol.111 , pp. 657-665
    • Blackman, R.K.1    Sanicola, M.2    Raferty, L.A.3    Gillevet, T.4    Gelbart, W.M.5
  • 75
    • 0022002062 scopus 로고
    • Shortvein, a new component of the decapentaplegic gene complex in Drosophila melanogaster
    • Segal D. Gelbart WM. shortvein, a new component of the decapentaplegic gene complex in Drosophila melanogaster. Genetics 1985;109: 119-143.
    • (1985) Genetics , vol.109 , pp. 119-143
    • Segal, D.1    Gelbart, W.M.2
  • 76
    • 0017374024 scopus 로고
    • Inductive mechanism in the process of wing vein formation in Drosophila
    • Garcia-Bellido A. Inductive mechanism in the process of wing vein formation in Drosophila Roux's Arch Dev Biol 1977;182:93-106.
    • (1977) Roux's Arch Dev Biol , vol.182 , pp. 93-106
    • Garcia-Bellido, A.1
  • 77
    • 0028244967 scopus 로고
    • Roles of the Notch gene in Drosophila wing morphogenesis
    • de Celis JF, Garcia-Bellido A. Roles of the Notch gene in Drosophila wing morphogenesis. Mech Dev 1994;46:109-122.
    • (1994) Mech Dev , vol.46 , pp. 109-122
    • De Celis, J.F.1    Garcia-Bellido, A.2
  • 78
    • 0030780666 scopus 로고    scopus 로고
    • Wing surface interactions in venation patterning in Drosophila
    • Milan M, Baonza A, Garcia-Bellido A. Wing surface interactions in venation patterning in Drosophila. Mech Dev 1997;67:203-213.
    • (1997) Mech Dev , vol.67 , pp. 203-213
    • Milan, M.1    Baonza, A.2    Garcia-Bellido, A.3
  • 79
    • 0027414664 scopus 로고
    • The distribution of PS integrins, laminin A ad F-actin during key stages in Drosophila wing development
    • Fristrom D, Wilcox M, Fristrom J. The distribution of PS integrins, laminin A ad F-actin during key stages in Drosophila wing development. Development 1993;117:509-523.
    • (1993) Development , vol.117 , pp. 509-523
    • Fristrom, D.1    Wilcox, M.2    Fristrom, J.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.