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An improved ternary vector system for Agrobacterium-mediated rapid maize transformation.
Anand, Ajith; Bass, Steven H; Wu, Emily; Wang, Ning; McBride, Kevin E; Annaluru, Narayana; Miller, Michael; Hua, Mo; Jones, Todd J.
Afiliación
  • Anand A; Corteva Agriscience™, Agriculture Division of DowDuPont™, 8305 NW 62nd Avenue, Johnston, IA, 50131, USA. ajith.anand@pioneer.com.
  • Bass SH; Corteva Agriscience™, Agriculture Division of DowDuPont™, 4010 Point Eden Way, Hayward, CA, 94545, USA.
  • Wu E; Corteva Agriscience™, Agriculture Division of DowDuPont™, 8305 NW 62nd Avenue, Johnston, IA, 50131, USA.
  • Wang N; Corteva Agriscience™, Agriculture Division of DowDuPont™, 8305 NW 62nd Avenue, Johnston, IA, 50131, USA.
  • McBride KE; Corteva Agriscience™, Agriculture Division of DowDuPont™, 4010 Point Eden Way, Hayward, CA, 94545, USA.
  • Annaluru N; Corteva Agriscience™, Agriculture Division of DowDuPont™, 8305 NW 62nd Avenue, Johnston, IA, 50131, USA.
  • Miller M; Corteva Agriscience™, Agriculture Division of DowDuPont™, 8305 NW 62nd Avenue, Johnston, IA, 50131, USA.
  • Hua M; , 1969 West Grand Canyon Drive, Chandler, AZ, 85248, USA.
  • Jones TJ; Corteva Agriscience™, Agriculture Division of DowDuPont™, 8305 NW 62nd Avenue, Johnston, IA, 50131, USA.
Plant Mol Biol ; 97(1-2): 187-200, 2018 May.
Article en En | MEDLINE | ID: mdl-29687284
KEY MESSAGE: A simple and versatile ternary vector system that utilizes improved accessory plasmids for rapid maize transformation is described. This system facilitates high-throughput vector construction and plant transformation. The super binary plasmid pSB1 is a mainstay of maize transformation. However, the large size of the base vector makes it challenging to clone, the process of co-integration is cumbersome and inefficient, and some Agrobacterium strains are known to give rise to spontaneous mutants resistant to tetracycline. These limitations present substantial barriers to high throughput vector construction. Here we describe a smaller, simpler and versatile ternary vector system for maize transformation that utilizes improved accessory plasmids requiring no co-integration step. In addition, the newly described accessory plasmids have restored virulence genes found to be defective in pSB1, as well as added virulence genes. Testing of different configurations of the accessory plasmids in combination with T-DNA binary vector as ternary vectors nearly doubles both the raw transformation frequency and the number of transformation events of usable quality in difficult-to-transform maize inbreds. The newly described ternary vectors enabled the development of a rapid maize transformation method for elite inbreds. This vector system facilitated screening different origins of replication on the accessory plasmid and T-DNA vector, and four combinations were identified that have high (86-103%) raw transformation frequency in an elite maize inbred.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Transformación Genética / Zea mays / Vectores Genéticos Idioma: En Revista: Plant Mol Biol Asunto de la revista: BIOLOGIA MOLECULAR / BOTANICA Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Transformación Genética / Zea mays / Vectores Genéticos Idioma: En Revista: Plant Mol Biol Asunto de la revista: BIOLOGIA MOLECULAR / BOTANICA Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos
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