Engenharia genética de precisão para tolerância à seca em soja e seu efeito na via de morte celular programada do retículo endoplasmático.

In this study, we applied two strategies to suppress senescence induced by the DCD-NRP circuit to increase drought tolerance. Firstly, we investigated the potential of CRISPR/dCas9 system fused with transcription activators (VP64) in positively modulating the expression of GmBiP. For this, the efficiency of three single guide was tested in transient tobacco transformation assays.

Saved in:
Bibliographic Details
Main Authors: BEZERRA L. P. de A. F., MELO, B. P. de, ARRAES, F. B. M., MORGANTE, C. V., LOURENCO, I. T., DOMICIANO, G. P., ANDRADE, R. V., FONTES, E. P. B., SÁ, M. F. G. de
Other Authors: LUANNA PINHEIRO DE ALBUQUERQUE FREITAS BEZERRA, Catholic University of Brasilia; BRUNO PAES DE MELO, LongPing High Tech; FABRÍCIO BARBOSA MONTEIRO ARRAES, Santa Helena de Goiás-GO; CAROLINA VIANNA MORGANTE, CPATSA; ISABELA TRISTAN LOURENCO TESSUTTI, Cenargen; GISELE PEREIRA DOMICIANO, National Institute of Science and Technology, INCT PlantStress Biotech; ROSÂNGELA VIEIRA ANDRADE, Catholic University of Brasilia, DF; ELIZABETH PACHECO BATISTA FONTES, Federal University of Viçosa, MG; MARIA FÁTIMA GROSSI DE SÁ, Catholic University of Brasilia, DF.
Format: Resumo em anais e proceedings biblioteca
Language:Ingles
English
Published: 2023-11-17
Subjects:CRISPR/Cas9, CRISPR/dCas9, GmBiP, GmNAC30, Culturas tolerantes à seca, Soja, Glycine Max, Melhoramento Genético Vegetal, Soybeans, Genetic improvement,
Online Access:http://www.alice.cnptia.embrapa.br/alice/handle/doc/1158482
Tags: Add Tag
No Tags, Be the first to tag this record!