References: Caulimoviridae


Blevins, T., R. Rajeswaran, M. Aregger, B. K. Borah, M. Schepetilnikov, L. Baerlocher, L. Farinelli, F. Meins, Jr., T. Hohn and M. M. Pooggin (2011). Massive production of small RNAs from a non-coding region of Cauliflower mosaic virus in plant defense and viral counter-defense. Nucleic Acids Res 39: 5003-5014. [PubMed]

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Chabannes, M., F. C. Baurens, P. O. Duroy, S. Bocs, M. S. Vernerey, M. Rodier-Goud, V. Barbe, P. Gayral and M. L. Iskra-Caruana (2013). Three infectious viral species lying in wait in the banana genome. J Virol 87: 8624-8637. [PubMed]

Cheng, C. P., B. E. Lockhart and N. E. Olszewski (1996). The ORF I and II proteins of Commelina yellow mottle virus are virion-associated. Virology 223: 263-271. [PubMed]

Cheng, C. P., I. Tzafrir, B. E. Lockhart and N. E. Olszewski (1998). Tubules containing virions are present in plant tissues infected with Commelina yellow mottle badnavirus. J Gen Virol 79: 925-929. [PubMed]

Diop, S. I., A. D. W. Geering, F. Alfama-Depauw, M. Loaec, P. Y. Teycheney and F. Maumus (2018). Tracheophyte genomes keep track of the deep evolution of the Caulimoviridae. Sci Rep 8: 572. [PubMed]

Fütterer, J., I. Potrykus, Y. Bao, L. Li, T. M. Burns, R. Hull and T. Hohn (1996). Position-dependent ATT initiation during plant pararetrovirus rice tungro bacilliform virus translation. J Virol 70: 2999-3010. [PubMed]

Geering, A. D., F. Maumus, D. Copetti, N. Choisne, D. J. Zwickl, M. Zytnicki, A. R. McTaggart, S. Scalabrin, S. Vezzulli, R. A. Wing, H. Quesneville and P. Y. Teycheney (2014). Endogenous florendoviruses are major components of plant genomes and hallmarks of virus evolution. Nat Commun 5: 5269. [PubMed]

Geering, A. D., M. M. Pooggin, N. E. Olszewski, B. E. Lockhart and J. E. Thomas (2005). Characterisation of Banana streak Mysore virus and evidence that its DNA is integrated in the B genome of cultivated Musa. Arch Virol 150: 787-796. [PubMed]

Geering, A. D., T. Scharaschkin and P. Y. Teycheney (2010). The classification and nomenclature of endogenous viruses of the family Caulimoviridae. Arch Virol 155: 123-131. [PubMed

Guerra-Peraza, O., D. Kirk, V. Seltzer, K. Veluthambi, A. C. Schmit, T. Hohn and E. Herzog (2005). Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol 86: 1815-1826. [PubMed]

Hoh, F., M. Uzest, M. Drucker, C. Plisson-Chastang, P. Bron, S. Blanc and C. Dumas (2010). Structural insights into the molecular mechanisms of cauliflower mosaic virus transmission by its insect vector. J Virol 84: 4706-4713. [PubMed]

Hohn, T. and K. R. Richert-Pöggeler (2006). Replication of plant pararetroviruses. In Recent Advances in DNA Virus Replication, pp. 289-319. Edited by K. L. Hefferson. Kerala, India: Research Signpost 37/661.

Hohn, T. and H. Rothnie (2013). Plant pararetroviruses: replication and expression. Curr Opin Virol 3: 621-628. [PubMed]

Karsies, A., T. Merkle, B. Szurek, U. Bonas, T. Hohn and D. Leclerc (2002). Regulated nuclear targeting of cauliflower mosaic virus. J Gen Virol 83: 1783-1790. [PubMed]

Krupovic, M., J. Blomberg, J. M. Coffin, I. Dasgupta, H. Fan, A. D. Geering, R. Gifford, B. Harrach, R. Hull, W. Johnson, J. F. Kreuze, D. Lindemann, C. Llorens, B. Lockhart, J. Mayer, E. Muller, N. E. Olszewski, H. R. Pappu, M. M. Pooggin, K. R. Richert-Pöggeler, S. Sabanadzovic, H. Sanfacon, J. E. Schoelz, S. Seal, L. Stavolone, J. P. Stoye, P. Y. Teycheney, M. Tristem, E. V. Koonin and J. H. Kuhn (2018). Ortervirales: New Virus Order Unifying Five Families of Reverse-Transcribing Viruses. J Virol 92: doi: 10.1128/jvi.00515-00518. [PubMed

Krupovic, M. and E. V. Koonin (2017). Homologous capsid proteins testify to the common ancestry of retroviruses, caulimoviruses, pseudoviruses, and metaviruses. J Virol 91: dpo: 10.1128/jvi.00210-00217. [PubMed]

Kuriyama, K., M. Tabara, H. Moriyama, A. Kanazawa, H. Koiwa, H. Takahashi and T. Fukuhara (2020). Disturbance of floral colour pattern by activation of an endogenous pararetrovirus, petunia vein clearing virus, in aged petunia plants. Plant J 103: 497-511. [PubMed]

Leh, V., E. Jacquot, A. Geldreich, T. Hermann, D. Leclerc, M. Cerutti, P. Yot, M. Keller and S. Blanc (1999). Aphid transmission of cauliflower mosaic virus requires the viral PIII protein. EMBO J 18: 7077-7085. [PubMed]

Lheureux, F., N. Laboureau, E. Muller, B. E. Lockhart and M. L. Iskra-Caruana (2007). Molecular characterization of banana streak acuminata Vietnam virus isolated from Musa acuminata siamea (banana cultivar). Arch Virol 152: 1409-1416. [PubMed

Lockhart, B. E., J. Menke, G. Dahal and N. E. Olszewski (2000). Characterization and genomic analysis of tobacco vein clearing virus, a plant pararetrovirus that is transmitted vertically and related to sequences integrated in the host genome. J Gen Virol 81: 1579-1585. [PubMed]

Mollov, D., B. Lockhart, D. C. Zlesak and N. Olszewski (2013). Complete nucleotide sequence of rose yellow vein virus, a member of the family Caulimoviridae having a novel genome organization. Arch Virol 158: 877-880. [PubMed]

Plisson, C., M. Uzest, M. Drucker, R. Froissart, C. Dumas, J. Conway, D. Thomas, S. Blanc and P. Bron (2005). Structure of the mature P3-virus particle complex of cauliflower mosaic virus revealed by cryo-electron microscopy. J Mol Biol 346: 267-277. [PubMed]

Pooggin, M. M., J. Fütterer, K. G. Skryabin and T. Hohn (1999). A short open reading frame terminating in front of a stable hairpin is the conserved feature in pregenomic RNA leaders of plant pararetroviruses. J Gen Virol 80: 2217-2228. [PubMed

Pooggin, M. M. and L. A. Ryabova (2018). Ribosome shunting, polycistronic translation, and evasion of antiviral defenses in plant pararetroviruses and beyond. Front Microbiol 9: 644. [PubMed]

Rajeswaran, R., V. Golyaev, J. Seguin, A. S. Zvereva, L. Farinelli and M. M. Pooggin (2014). Interactions of Rice tungro bacilliform pararetrovirus and its protein P4 with plant RNA-silencing machinery. Mol Plant-Microbe Interact 27: 1370-1378. [PubMed]

Richert-Pöggeler, K. R. and D. E. Lesemann (2007).  Petunia vein clearing virus: AAB Descriptions of Plant Viruses No. 417.

Richert-Pöggeler, K. R., F. Noreen, T. Schwarzacher, G. Harper and T. Hohn (2003). Induction of infectious petunia vein clearing (pararetro) virus from endogenous provirus in petunia. EMBO J 22: 4836-4845. [PubMed]

Richert-Pöggeler, K. R. and R. J. Shepherd (1997). Petunia vein-clearing virus: a plant pararetrovirus with the core sequences for an integrase function. Virology 236: 137-146. [PubMed

Schoelz, J. E., C. A. Angel, R. S. Nelson and S. M. Leisner (2016). A model for intracellular movement of Cauliflower mosaic virus: the concept of the mobile virion factory. J Exp Bot 67: 2039-2048. [PubMed

Schoelz, J. E. and S. Leisner (2017). Setting up shop: the formation and function of the viral factories of cauliflower mosaic virus. Front Plant Sci 8: 1832. [PubMed

Stavolone, L., E. Herzog, D. Leclerc and T. Hohn (2001). Tetramerization is a conserved feature of the virion-associated protein in plant pararetroviruses. J Virol 75: 7739-7743. [PubMed]

Stavolone, L., M. E. Villani, D. Leclerc and T. Hohn (2005). A coiled-coil interaction mediates cauliflower mosaic virus cell-to-cell movement. Proc Natl Acad Sci USA 102: 6219-6224. [PubMed

Temin, H. M.  (1989). Reverse transcriptases. Retrons in bacteria. Nature 339: 254-255. [PubMed

Teycheney, P.-Y. and A. D. W. Geering (2011). Endogenous viral sequences in plant genomes. In Recent Advances in Plant Virology pp. 347-366. Edited by C. Caranta, M. A. Aranda, M. Tepfer & J. J. Lopez-Moya: Caister Academic Press.

Uzest, M., D. Gargani, M. Drucker, E. Hebrard, E. Garzo, T. Candresse, A. Fereres and S. Blanc (2007). A protein key to plant virus transmission at the tip of the insect vector stylet. Proc Natl Acad Sci USA 104: 17959-17964. [PubMed]

Vo, J. N., P. R. Campbell, N. N. Mahfuz, R. Ramli, D. Pagendam, R. Barnard and A. D. Geering (2016). Characterization of the banana streak virus capsid protein and mapping of the immunodominant continuous B-cell epitopes to the surface-exposed N terminus. J Gen Virol 97: 3446-3457. [PubMed]

Webster, C. G., E. Pichon, M. van Munster, B. Monsion, M. Deshoux, D. Gargani, F. Calevro, J. Jimenez, A. Moreno, B. Krenz, J. R. Thompson, K. L. Perry, A. Fereres, S. Blanc and M. Uzest (2018). Identification of plant virus receptor candidates in the stylets of their aphid vectors. J Virol 92: doi: 10.1128/jvi.00432-00418. [PubMed]