Your browser doesn't support javascript.
loading
Efficient regeneration and genetic transformation platform applicable to five Musa varieties
Liu, Juhua; Gao, Pengzhao; Sun, Xiuxiu; Zhang, Jing; Sun, Peiguang; Wang, Jiashui; Jia, Caihong; Zhang, Jianbin; Hu, Wei; Xu, Biyu; Jin, Zhiqiang.
  • Liu, Juhua; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
  • Gao, Pengzhao; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
  • Sun, Xiuxiu; Hainan University. Haikou. CN
  • Zhang, Jing; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
  • Sun, Peiguang; Chinese Academy of Tropical Agricultural Sciences. Haikou Experimental Station. Haikou. CN
  • Wang, Jiashui; Chinese Academy of Tropical Agricultural Sciences. Haikou Experimental Station. Haikou. CN
  • Jia, Caihong; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
  • Zhang, Jianbin; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
  • Hu, Wei; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
  • Xu, Biyu; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
  • Jin, Zhiqiang; Ministry of Agriculture. Key Laboratory of Tropical Crop Biotechnology. Haikou. CN
Electron. j. biotechnol ; 25: 33-38, ene. 2017. tab, ilus
Article in English | LILACS | ID: biblio-1008414
ABSTRACT

Background:

Banana (Musa spp.) is an important staple food, economic crop, and nutritional fruit worldwide. Conventional breeding has been seriously hampered by their long generation time, polyploidy, and sterility of most cultivated varieties. Establishment of an efficient regeneration and transformation system for banana is critical to its genetic improvement and functional genomics.

Results:

In this study, a vigorous and repeatable transformation system for banana using direct organogenesis was developed. The greatest number of shoots per explant for all five Musa varieties was obtained using Murashige and Skoog medium supplemented with 8.9 µM benzylaminopurine and 9.1 µM thidiazuron. One immature male flower could regenerate 380­456, 310­372, 200­240, 130­156, and 100­130 well-developed shoots in only 240­270 d for Gongjiao, Red banana, Rose banana, Baxi, and Xinglongnaijiao, respectively. Longitudinal sections of buds were transformed through particle bombardment combined with Agrobacterium-mediated transformation using a promoterless ß-glucuronidase (GUS) reporter gene; the highest transformation efficiency was 9.81% in regenerated Gongjiao plantlets in an optimized selection medium. Transgenic plants were confirmed by a histochemical assay of GUS, polymerase chain reaction, and Southern blot.

Conclusions:

Our robust transformation platform successfully generated hundreds of transgenic plants. Such a platform will facilitate molecular breeding and functional genomics of banana.
Subject(s)


Full text: Available Index: LILACS (Americas) Main subject: Musa Language: English Journal: Electron. j. biotechnol Journal subject: Biotechnology Year: 2017 Type: Article / Project document Affiliation country: China Institution/Affiliation country: Chinese Academy of Tropical Agricultural Sciences/CN / Hainan University/CN / Ministry of Agriculture/CN

Similar

MEDLINE

...
LILACS

LIS


Full text: Available Index: LILACS (Americas) Main subject: Musa Language: English Journal: Electron. j. biotechnol Journal subject: Biotechnology Year: 2017 Type: Article / Project document Affiliation country: China Institution/Affiliation country: Chinese Academy of Tropical Agricultural Sciences/CN / Hainan University/CN / Ministry of Agriculture/CN