Isoform-Aware Expression Analyses in Sugarcane Enhance the Identification of Candidate Genes for Fiber Content (2020)
- Authors:
- USP affiliated authors: MARGARIDO, GABRIEL RODRIGUES ALVES - ESALQ ; CORRER, FERNANDO HENRIQUE - ESALQ ; HOSAKA, GUILHERME KENICHI - BIOENERGIA
- Unidades: ESALQ; BIOENERGIA
- Subjects: CANA-DE-AÇÚCAR; EXPRESSÃO GÊNICA; GENÓTIPOS; RNA; SEQUENCIAMENTO GENÉTICO
- Language: Inglês
- Imprenta:
- Publisher: USDA, Agricultural Research Service
- Publisher place: San Diego, CA
- Date published: 2020
- Source:
- Título do periódico: The Largest Ag-Genomics Meeting in the World
- Conference titles: The International Conference on The Status of Plant & Animal Genome Research
-
ABNT
MARGARIDO, Gabriel Rodrigues Alves et al. Isoform-Aware Expression Analyses in Sugarcane Enhance the Identification of Candidate Genes for Fiber Content. 2020, Anais.. San Diego, CA: USDA, Agricultural Research Service, 2020. Disponível em: https://www.intlpag.org/2020/. Acesso em: 19 abr. 2024. -
APA
Margarido, G. R. A., Correr, F. H., Hosaka, G. K., Barreto, F. Z., Balsalobre, T. W. A., & Carneiro, M. S. (2020). Isoform-Aware Expression Analyses in Sugarcane Enhance the Identification of Candidate Genes for Fiber Content. In The Largest Ag-Genomics Meeting in the World. San Diego, CA: USDA, Agricultural Research Service. Recuperado de https://www.intlpag.org/2020/ -
NLM
Margarido GRA, Correr FH, Hosaka GK, Barreto FZ, Balsalobre TWA, Carneiro MS. Isoform-Aware Expression Analyses in Sugarcane Enhance the Identification of Candidate Genes for Fiber Content [Internet]. The Largest Ag-Genomics Meeting in the World. 2020 ;[citado 2024 abr. 19 ] Available from: https://www.intlpag.org/2020/ -
Vancouver
Margarido GRA, Correr FH, Hosaka GK, Barreto FZ, Balsalobre TWA, Carneiro MS. Isoform-Aware Expression Analyses in Sugarcane Enhance the Identification of Candidate Genes for Fiber Content [Internet]. The Largest Ag-Genomics Meeting in the World. 2020 ;[citado 2024 abr. 19 ] Available from: https://www.intlpag.org/2020/ - Temporal gene expression in apical culms shows early changes in cell wall biosynthesis genes in sugarcane
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