Functional genomics of teak

PN de Oliveira, F Matias, E Galeano, H Carrer - The Teak Genome, 2021 - Springer
Teak is known as one of the world's premier hardwood tree species. However, despite the
commercial interest and the large number of scientific investigations, comprehensive …

[HTML][HTML] ANÁLISIS in silico Y EXPRESIÓN GÉNICA DEL FACTOR DE TRANSCRIPCIÓN TgNACO1 IMPLICADO EN XILOGÉNESIS Y ESTRÉS ABIÓTICO EN Tectona …

V Camel Paucar, E Galeano, H Carrer - Acta Biológica Colombiana, 2017 - scielo.org.co
El xilema secundario es el componente más abundante de la biomasa vegetal. Por tanto,
conocer los genes que regulan su formación ayudaría a diseñar estrategias para el …

Identification of the Geranylgeranyl Pyrophosphate Synthase (GGPS) Gene Family in Teak (Tectona grandis).

DS Diningrat, E Marwani - Tropical Journal of Natural …, 2023 - search.ebscohost.com
Abstract Teak (Tectona grandis, Lf) plants are known to have the best quality wood in the
Lamiaceae family but are also known to contain bioactive compounds that are important for …

GENOME-WIDE CHARACTERIZATION OF DROUGHT-RESPONSIVE GENES ACCELERATES FABA BEAN BREEDING PROGRAM

M Ewas, SA Omar, E El-Sarag… - Egyptian Journal of …, 2021 - ejdr.journals.ekb.eg
Drought is an influential environmental stress that limits faba bean growth and development,
leading to a substantial reduction in their productivity in both arid and semi-arid region of the …

In silico analysis and gene expression of TgNAC01 transcription factor involved in xylogenesis and abiotic stress in Tectona grandis.

VC Paucar, E Galeano, H Carrer - Acta Biológica Colombiana, 2017 - search.proquest.com
Secondary xylem is the most abundant component of plant biomass. Therefore, knowing the
genes that regulate its formation would help to design strategies for wood genetic …

[PDF][PDF] Análisis in silico y expresión génica del factor de transcripción TgNAC01 implicado en xilogénesis y estrés abiótico en Tectona grandis.

VC Paucar, E Galeano, H Carrer - Acta Biológica Colombiana, 2017 - redalyc.org
El xilema secundario es el componente más abundante de la biomasa vegetal. Por tanto,
conocer los genes que regulan su formación ayudaría a diseñar estrategias para el …