4.7 Article

Establishment of a Novel and Efficient Agrobacterium-Mediated in Planta Transformation System for Passion Fruit (Passiflora edulis)

期刊

PLANTS-BASEL
卷 10, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/plants10112459

关键词

Passiflora edulis; dark incubation; parafilm wrapping; in planta; Agrobacterium-mediated transformation

资金

  1. Science and Technology Department of Fujian Province [2020N0004, 2020S0056]
  2. Basic Sci-tech Project of Provincial Public Welfare Scientific Research Institution of Fujian Province [2019R1028-7]

向作者/读者索取更多资源

Passion fruit is an important fruit crop, and genetic engineering plays a key role in crop improvement. A simple and efficient Agrobacterium-mediated in planta transformation system for passion fruit was successfully established in this study. The system achieved a regeneration efficiency of 86% and a transformation efficiency of 29%, contributing to genetic improvement of passion fruit breeding.
Passion fruit (Passiflora edulis) is an important fruit crop with high economic value. Genetic engineering plays an important role in crop improvement with desired traits and gene functional studies. The lack of a simple, efficient, and stable transformation system for passion fruit has greatly limited gene functional studies. In this study, a simple and efficient Agrobacterium-mediated in planta transformation system for passion fruit was established, using Agrobacterium virulent strain EHA105 harboring the binary vectors pCAMBIA1301 and pCAMBIA1302 with GUS and GFP reporter genes. The system requires less time and labor costs than conventional transformation systems, and no additional phytohormones and sterile conditions are required. Regeneration efficiency of 86% and transformation efficiency of 29% were achieved, when the wounds were wrapped with Parafilm and the plants were kept in darkness for 15 days. Approximately 75% of the regenerated plants had a single shoot and 26% multiple shoots. The transformation was confirmed at the DNA and RNA levels as well as by GUS staining and GFP fluorescent measurements. The developed protocol will contribute to the genetic improvement of passion fruit breeding.

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