Role of scalloped in the post-embryonic development of the red flour beetle Tribolium castaneum (Coleoptera: Tenebrionidae)
详细信息    查看全文
  • 作者:Chieka Minakuchi (1)
    Takahiro Ohde (1)
    Ken Miura (1)
    Toshiharu Tanaka (1)
    Teruyuki Niimi (1)

    1. Graduate School of Bio-Agricultural Sciences
    ; Nagoya University ; Nagoya ; 464-8601 ; Japan
  • 关键词:scalloped ; Tribolium castaneum ; Ecdysis ; Wing formation
  • 刊名:Applied Entomology and Zoology
  • 出版年:2015
  • 出版时间:February 2015
  • 年:2015
  • 卷:50
  • 期:1
  • 页码:17-26
  • 全文大小:1,469 KB
  • 参考文献:1. Arakane Y, Specht CA, Kramer KJ, Muthukrishnan S, Beeman RW (2008) Chitin synthases are required for survival, fecundity and egg hatch in the red flour beetle, / Tribolium castaneum. Insect Biochem Mol Biol 38:959鈥?62. doi:10.1016/j.ibmb.2008.07.006 CrossRef
    2. Black BL, Olson EN (1998) Transcriptional control of muscle development by myocyte enhancer factor-2 (MEF2) proteins. Annu Rev Cell Dev Biol 14:167鈥?96. doi:10.1146/annurev.cellbio.14.1.167 CrossRef
    3. Campbell S, Inamdar M, Rodrigues V, Raghavan V, Palazzolo M, Chovnick A (1992) The / scalloped gene encodes a novel, evolutionarily conserved transcription factor required for sensory organ differentiation in / Drosophila. Genes Dev 6:367鈥?79. doi:10.1101/gad.6.3.367 CrossRef
    4. Deng H, Hughes SC, Bell JB, Simmonds AJ (2009) Alternative requirements for Vestigial, Scalloped, and Dmef2 during muscle differentiation in / Drosophila melanogaster. Mol Biol Cell 20:256鈥?69. doi:10.1091/mbc.E08-03-0288 CrossRef
    5. Goulev Y, Fauny JD, Gonzalez-Marti B, Flagiello D, Silber J, Zider A (2008) SCALLOPED interacts with YORKIE, the nuclear effector of the hippo tumor-suppressor pathway in / Drosophila. Curr Biol 18:435鈥?41. doi:10.1016/j.cub.2008.02.034 CrossRef
    6. Hentze JL, Moeller ME, Jorgensen AF, Bengtsson MS, Bordoy AM, Warren JT, Gilbert LI, Andersen O, Rewitz KF (2013) Accessory gland as a site for prothoracicotropic hormone controlled ecdysone synthesis in adult male insects. PLoS One 8:e55131. doi:10.1371/journal.pone.0055131 CrossRef
    7. Huang J, Wu S, Barrera J, Matthews K, Pan D (2005) The Hippo signaling pathway coordinately regulates cell proliferation and apoptosis by inactivating Yorkie, the / Drosophila Homolog of YAP. Cell 122:421鈥?34. doi:10.1016/j.cell.2005.06.007 CrossRef
    8. Koontz LM, Liu-Chittenden Y, Yin F, Zheng Y, Yu J, Huang B, Chen Q, Wu S, Pan D (2013) The Hippo effector Yorkie controls normal tissue growth by antagonizing scalloped-mediated default repression. Dev Cell 25:388鈥?01. doi:10.1016/j.devcel.2013.04.021 CrossRef
    9. Minakuchi C, Namiki T, Yoshiyama M, Shinoda T (2008) RNAi-mediated knockdown of juvenile hormone acid O-methyltransferase gene causes precocious metamorphosis in the red flour beetle / Tribolium castaneum. FEBS J 275:2919鈥?931. doi:10.1111/j.1742-4658.2008.06428.x CrossRef
    10. Minakuchi C, Namiki T, Shinoda T (2009) / Kr眉ppel homolog 1, an early juvenile hormone-response gene downstream of / Methoprene- / tolerant, mediates its anti-metamorphic action in the red flour beetle / Tribolium castaneum. Dev Biol 325:341鈥?50. doi:10.1016/j.ydbio.2008.10.016 CrossRef
    11. Ohde T, Masumoto M, Morita-Miwa M, Matsuura H, Yoshioka H, Yaginuma T, Niimi T (2009) Vestigial and scalloped in the ladybird beetle: a conserved function in wing development and a novel function in pupal ecdysis. Insect Mol Biol 18:571鈥?81. doi:10.1111/j.1365-2583.2009.00898.x CrossRef
    12. Richards S, Gibbs RA, Weinstock GM, Brown SJ, Denell R, Beeman RW, Gibbs R, Bucher G, Friedrich M, Grimmelikhuijzen CJ, Klingler M, Lorenzen M, Roth S, Schroder R, Tautz D, Zdobnov EM, Muzny D, Attaway T, Bell S, Buhay CJ, Chandrabose MN, Chavez D, Clerk-Blankenburg KP, Cree A, Dao M, Davis C, Chacko J, Dinh H, Dugan-Rocha S, Fowler G, Garner TT, Garnes J, Gnirke A, Hawes A, Hernandez J, Hines S, Holder M, Hume J, Jhangiani SN, Joshi V, Khan ZM, Jackson L, Kovar C, Kowis A, Lee S, Lewis LR, Margolis J, Morgan M, Nazareth LV, Nguyen N, Okwuonu G, Parker D, Ruiz SJ, Santibanez J, Savard J, Scherer SE, Schneider B, Sodergren E, Vattahil S, Villasana D, White CS, Wright R, Park Y, Lord J, Oppert B, Brown S, Wang L, Weinstock G, Liu Y, Worley K, Elsik CG, Reese JT, Elhaik E, Landan G, Graur D, Arensburger P, Atkinson P, Beidler J, Demuth JP, Drury DW, Du YZ, Fujiwara H, Maselli V, Osanai M, Robertson HM, Tu Z, Wang JJ, Wang S, Song H, Zhang L, Werner D, Stanke M, Morgenstern B, Solovyev V, Kosarev P, Brown G, Chen HC, Ermolaeva O, Hlavina W, Kapustin Y, Kiryutin B, Kitts P, Maglott D, Pruitt K, Sapojnikov V, Souvorov A, Mackey AJ, Waterhouse RM, Wyder S, Kriventseva EV, Kadowaki T, Bork P, Aranda M, Bao R, Beermann A, Berns N, Bolognesi R, Bonneton F, Bopp D, Butts T, Chaumot A, Denell RE, Ferrier DE, Gordon CM, Jindra M, Lan Q, Lattorff HM, Laudet V, von Levetsow C, Liu Z, Lutz R, Lynch JA, da Fonseca RN, Posnien N, Reuter R, Schinko JB, Schmitt C, Schoppmeier M, Shippy TD, Simonnet F, Marques-Souza H, Tomoyasu Y, Trauner J, Van der Zee M, Vervoort M, Wittkopp N, Wimmer EA, Yang X, Jones AK, Sattelle DB, Ebert PR, Nelson D, Scott JG, Muthukrishnan S, Kramer KJ, Arakane Y, Zhu Q, Hogenkamp D, Dixit R, Jiang H, Zou Z, Marshall J, Elpidina E, Vinokurov K, Oppert C, Evans J, Lu Z, Zhao P, Sumathipala N, Altincicek B, Vilcinskas A, Williams M, Hultmark D, Hetru C, Hauser F, Cazzamali G, Williamson M, Li B, Tanaka Y, Predel R, Neupert S, Schachtner J, Verleyen P, Raible F, Walden KK, Angeli S, Foret S, Schuetz S, Maleszka R, Miller SC, Grossmann D (2008) The genome of the model beetle and pest / Tribolium castaneum. Nature 452:949鈥?55. doi:10.1038/nature06784 CrossRef
    13. Riddiford LM (2012) How does juvenile hormone control insect metamorphosis and reproduction? Gen Comp Endocrinol 179:477鈥?84. doi:10.1016/j.ygcen.2012.06.001 CrossRef
    14. Simmonds AJ, Liu X, Soanes KH, Krause HM, Irvine KD, Bell JB (1998) Molecular interactions between Vestigial and Scalloped promote wing formation in / Drosophila. Genes Dev 12:3815鈥?820. doi:10.1101/gad.12.24.3815 CrossRef
    15. Tomoyasu Y, Denell RE (2004) Larval RNAi in / Tribolium (Coleoptera) for analyzing adult development. Dev Genes Evol 214:575鈥?78. doi:10.1007/s00427-004-0434-0 CrossRef
    16. Williams JA, Bell JB, Carroll SB (1991) Control of / Drosophila wing and haltere development by the nuclear vestigial gene product. Genes Dev 5:2481鈥?495. doi:10.1101/gad.5.12b.2481 CrossRef
    17. Williams JA, Paddock SW, Carroll SB (1993) Pattern formation in a secondary field: a hierarchy of regulatory genes subdivides the developing / Drosophila wing disc into discrete subregions. Development 117:571鈥?84
    18. Wu S, Liu Y, Zheng Y, Dong J, Pan D (2008) The TEAD/TEF family protein Scalloped mediates transcriptional output of the Hippo growth-regulatory pathway. Dev Cell 14:388鈥?98. doi:10.1016/j.devcel.2008.01.007 CrossRef
    19. Yokoi K, Koyama H, Minakuchi C, Tanaka T, Miura K (2012) Antimicrobial peptide gene induction, involvement of Toll and IMD pathways and defense against bacteria in the red flour beetle, / Tribolium castaneum. Results Immunol 2:72鈥?2. doi:10.1016/j.rinim.2012.03.002 CrossRef
    20. Zhang L, Ren F, Zhang Q, Chen Y, Wang B, Jiang J (2008) The TEAD/TEF family of transcription factor Scalloped mediates Hippo signaling in organ size control. Dev Cell 14:377鈥?87. doi:10.1016/j.devcel.2008.01.006 CrossRef
  • 刊物主题:Entomology; Agriculture; Applied Ecology; Plant Pathology; Zoology; Environmental Management;
  • 出版者:Springer Japan
  • ISSN:1347-605X
文摘
scalloped (sd) plays a key role in concert with vestigial (vg) in wing development in Drosophila melanogaster Meigen. We previously showed that as well as its conserved role in wing formation in the 28-spotted ladybird beetle Henosepilachna vigintioctopunctata (Fabricius), sd has a novel function in pupal ecdysis. However, the molecular mechanism responsible remains unknown. To determine whether the function of sd in pupal ecdysis was conserved among Coleoptera, we performed expression and functional analyses of sd in the red flour beetle, Tribolium castaneum (Herbst). T. castaneum sd (Tc-sd) mRNA was present continuously from the embryonic stage to the adult. The RNAi-mediated knockdown of Tc-sd in the larval stage resulted in arrest either in the intermolt phase or during larva-to-larva molting. Prepupae injected with Tc-sd dsRNA were arrested as pupae with shorter wings, while its injection in the early pupal stage resulted in arrest as pharate adults. These results suggested that Tc-sd may be involved in growth, molting, and wing formation. The transcript levels of the genes involved in ecdysone biosynthesis, the ecdysone cascade, and chitin biosynthesis were not markedly affected by the knockdown of Tc-sd, which indicated that Tc-sd knockdown did not affect ecdysone biosynthesis or its cascade directly.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700