Ac transposable element reactivation from t- dna after 5- azacytidine treatment (1995)
- Authors:
- Autor USP: SLUYS, MARIE ANNE VAN - IB
- Unidade: IB
- Subjects: BIOLOGIA MOLECULAR; BOTÂNICA
- Language: Inglês
- Imprenta:
- Publisher place: Puerto Iguazu
- Date published: 1995
- Source:
- Título: Resumenes
- Conference titles: Encuentro Latinoamericano de Biotecnologia Vegetal
-
ABNT
SCORTECCI, K C e VAN SLUYS, Marie-Anne. Ac transposable element reactivation from t- dna after 5- azacytidine treatment. 1995, Anais.. Puerto Iguazu: Instituto de Biociências, Universidade de São Paulo, 1995. . Acesso em: 07 nov. 2024. -
APA
Scortecci, K. C., & Van Sluys, M. -A. (1995). Ac transposable element reactivation from t- dna after 5- azacytidine treatment. In Resumenes. Puerto Iguazu: Instituto de Biociências, Universidade de São Paulo. -
NLM
Scortecci KC, Van Sluys M-A. Ac transposable element reactivation from t- dna after 5- azacytidine treatment. Resumenes. 1995 ;[citado 2024 nov. 07 ] -
Vancouver
Scortecci KC, Van Sluys M-A. Ac transposable element reactivation from t- dna after 5- azacytidine treatment. Resumenes. 1995 ;[citado 2024 nov. 07 ] - Analysis of the promoter and untranslated leader sequence of the Ac transposable element from maize
- Characterization of the U3 region homologous to the retrotransposon in different species of Lycopersicon
- Analysis of the diversity of transposable elements families expressed in sugarcane's genome
- Padrão de expressão de U3 do retrotransposon Retrolyc1 em Nicotiana tabacum submetido à condições de estresse abiótico
- Analysis of Three Sugarcane Homo/Homeologous Regions Suggests Independent Polyploidization Events of Saccharum officinarum and Saccharum spontaneum
- Retrolyc1 activity revealed by expression analysis and recent polymorphic insertion sites within Lycopersicon genome
- Microcollinearity between autopolyploid sugarcane and diploid sorghum genomes
- Analysis of plant LTR-retrotransposons at the finescale family level reveals individual molecular patterns
- High homologous gene conservation despite extreme autopolyploid redundancy in sugarcane
- Genome sequence and rapid evolution of the rice pathogen Xanthomonas oryzae pv. oryzae PXO99A
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