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1994 Journal Article Cell differentiation and morphogenesis are uncoupled in Arabidopsis raspberry embryosYadegari, R., de Paiva, G. R., Laux, T., Koltunow, A. M., Apuya, N., Zimmerman, J. L., Fischer, R. L., Harada, J. J. and Goldberg, R. B. (1994). Cell differentiation and morphogenesis are uncoupled in Arabidopsis raspberry embryos. Plant Cell, 6 (12), 1713-1729. doi: 10.1105/tpc.6.12.1713 |
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1994 Book Chapter Apomixis — other pathways for reproductive development in angiospermsKoltunow, Anna M. (1994). Apomixis — other pathways for reproductive development in angiosperms. Genetic control of self-incompatibility and reproductive development in flowering plants. (pp. 486-512) edited by Elizabeth G. Williams, Adrienne E. Clarke and R. Bruce Knox. Dordrecht, Netherlands: Springer. doi: 10.1007/978-94-017-1669-7_23 |
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1993 Journal Article Apomixis: Embryo sacs and embryos formed without meiosis or fertilization in ovulesKoltunow, A. M. (1993). Apomixis: Embryo sacs and embryos formed without meiosis or fertilization in ovules. Plant Cell, 5 (10), 1425-1437. doi: 10.1105/tpc.5.10.1425 |
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1990 Journal Article Different temporal and spatial gene expression patterns occur during anther developmentKoltunow, Anna M., Truettner, Jessie, Cox, Kathleen H., Wallroth, Marco and Goldberg, Robert B. (1990). Different temporal and spatial gene expression patterns occur during anther development. Plant Cell, 2 (12), 1201-1224. doi: 10.2307/3869340 |
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1989 Journal Article A scheme for viroid classificationKoltunow, A. M. and Rezaian, M. A. (1989). A scheme for viroid classification. Intervirology, 30 (4), 194-201. doi: 10.1159/000150093 |
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1989 Journal Article Two related viroids cause grapevine yellow speckle disease independentlyKoltunow, A. M., Krake, L. R., Johnson, S. D. and Rezaian, M. A. (1989). Two related viroids cause grapevine yellow speckle disease independently. Journal of General Virology, 70 (12), 3411-3419. doi: 10.1099/0022-1317-70-12-3411 |
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1989 Journal Article Grapevine viroid 1B, a new member of the apple scar skin viroid group contains the left terminal region of tomato planta macho viroidKoltunow, Anna M. and Ali Rezaian, M. (1989). Grapevine viroid 1B, a new member of the apple scar skin viroid group contains the left terminal region of tomato planta macho viroid. Virology, 170 (2), 575-578. doi: 10.1016/0042-6822(89)90450-9 |
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1988 Journal Article Hop stunt viroid in Australian grapevine cultivars: potential for hop infectionKoltunow, A. M., Krake, L. R. and Rezaian, M. A. (1988). Hop stunt viroid in Australian grapevine cultivars: potential for hop infection. Australasian Plant Pathology, 17 (1), 7-10. doi: 10.1071/APP9880007 |
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1988 Journal Article Grapevine yellow speckle viroid: Structural features of a new viroid groupKoltunow, Anna M. and Rezaian, M.Ali (1988). Grapevine yellow speckle viroid: Structural features of a new viroid group. Nucleic Acids Research, 16 (3), 849-864. doi: 10.1093/nar/16.3.849 |
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1988 Journal Article Isolation of three viroids and a circular RNA from grapevinesRezaian, M. A., Koltunow, A. M. and Krake, L. R. (1988). Isolation of three viroids and a circular RNA from grapevines. The Journal of general virology, 69 ( Pt 2), 413-422. doi: 10.1099/0022-1317-69-2-413 |
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1987 Journal Article Promoter efficiency depends upon intragenic sequencesKoltunow, A. M., Gregg, K. and Rogers, G. E. (1987). Promoter efficiency depends upon intragenic sequences. Nucleic Acids Research, 15 (19), 7795-7807. doi: 10.1093/nar/15.19.7795 |
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1986 Journal Article Intron sequences modulate feather keratin gene transcription in Xenopus oocytesKoltunow, A. M., Gregg, K. and Rogers, G. E. (1986). Intron sequences modulate feather keratin gene transcription in Xenopus oocytes. Nucleic Acids Research, 14 (16), 6375-6392. doi: 10.1093/nar/14.16.6375 |
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1983 Journal Article Cycloheximide inhibition of cytokinin-dependent protein synthesis: correlation with betacyanin synthesisElliott, D.C and Koltunow, A. (1983). Cycloheximide inhibition of cytokinin-dependent protein synthesis: correlation with betacyanin synthesis. Functional Plant Biology, 10 (2), 145-151. doi: 10.1071/pp9830145 |