Cargando…

An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants

Quite a few studies have been conducted to improve the Agrobacterium-mediated transformation of pineapple, which is the second most important commercial tropical fruit crop worldwide. However, pineapple transformation remains challenging, due to technical difficulties, the lengthy regeneration proce...

Descripción completa

Detalles Bibliográficos
Autores principales: Priyadarshani, S. V. G. N., Cai, Hanyang, Zhou, Qiao, Liu, Yanhui, Cheng, Yan, Xiong, Junjie, Patson, Dikoko Lesego, Cao, Shijiang, Zhao, Heming, Qin, Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6843836/
https://www.ncbi.nlm.nih.gov/pubmed/31627353
http://dx.doi.org/10.3390/biom9100617
_version_ 1783468309320040448
author Priyadarshani, S. V. G. N.
Cai, Hanyang
Zhou, Qiao
Liu, Yanhui
Cheng, Yan
Xiong, Junjie
Patson, Dikoko Lesego
Cao, Shijiang
Zhao, Heming
Qin, Yuan
author_facet Priyadarshani, S. V. G. N.
Cai, Hanyang
Zhou, Qiao
Liu, Yanhui
Cheng, Yan
Xiong, Junjie
Patson, Dikoko Lesego
Cao, Shijiang
Zhao, Heming
Qin, Yuan
author_sort Priyadarshani, S. V. G. N.
collection PubMed
description Quite a few studies have been conducted to improve the Agrobacterium-mediated transformation of pineapple, which is the second most important commercial tropical fruit crop worldwide. However, pineapple transformation remains challenging, due to technical difficulties, the lengthy regeneration process, and a high labor requirement. There have not been any studies specifically addressing the introduction of GFP-tagged genes into pineapples through Agrobacterium-mediated transformation, which would enable easy, non-destructive expression detection. It would also allow expression localization at the organelle level, which is not possible with GUS a reporter gene that encodes β-glucuronidase or a herbicide resistance reporter gene. Here, we report a method for the introduction of GFP-tagged genes into pineapples through Agrobacterium-mediated transformation. We used embryonic calli for transformation, and plants were regenerated through somatic embryogenesis. In this study, we optimized the incubation time for Agrobacterium infection, the co-cultivation time, the hygromycin concentration for selection, and the callus growth conditions after selection. Our strategy reduced the time required to obtain transgenic plants from 7.6 months to 6.1 months. The expression of GFP-tagged AcWRKY28 was observed in the nuclei of transgenic pineapple root cells. This method allows easy, non-destructive expression detection of transgenic constructs at the organelle level. These findings on pineapple transformation will help accelerate pineapple molecular breeding efforts to introduce new desirable traits.
format Online
Article
Text
id pubmed-6843836
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68438362019-11-25 An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants Priyadarshani, S. V. G. N. Cai, Hanyang Zhou, Qiao Liu, Yanhui Cheng, Yan Xiong, Junjie Patson, Dikoko Lesego Cao, Shijiang Zhao, Heming Qin, Yuan Biomolecules Article Quite a few studies have been conducted to improve the Agrobacterium-mediated transformation of pineapple, which is the second most important commercial tropical fruit crop worldwide. However, pineapple transformation remains challenging, due to technical difficulties, the lengthy regeneration process, and a high labor requirement. There have not been any studies specifically addressing the introduction of GFP-tagged genes into pineapples through Agrobacterium-mediated transformation, which would enable easy, non-destructive expression detection. It would also allow expression localization at the organelle level, which is not possible with GUS a reporter gene that encodes β-glucuronidase or a herbicide resistance reporter gene. Here, we report a method for the introduction of GFP-tagged genes into pineapples through Agrobacterium-mediated transformation. We used embryonic calli for transformation, and plants were regenerated through somatic embryogenesis. In this study, we optimized the incubation time for Agrobacterium infection, the co-cultivation time, the hygromycin concentration for selection, and the callus growth conditions after selection. Our strategy reduced the time required to obtain transgenic plants from 7.6 months to 6.1 months. The expression of GFP-tagged AcWRKY28 was observed in the nuclei of transgenic pineapple root cells. This method allows easy, non-destructive expression detection of transgenic constructs at the organelle level. These findings on pineapple transformation will help accelerate pineapple molecular breeding efforts to introduce new desirable traits. MDPI 2019-10-17 /pmc/articles/PMC6843836/ /pubmed/31627353 http://dx.doi.org/10.3390/biom9100617 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Priyadarshani, S. V. G. N.
Cai, Hanyang
Zhou, Qiao
Liu, Yanhui
Cheng, Yan
Xiong, Junjie
Patson, Dikoko Lesego
Cao, Shijiang
Zhao, Heming
Qin, Yuan
An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants
title An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants
title_full An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants
title_fullStr An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants
title_full_unstemmed An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants
title_short An Efficient Agrobacterium Mediated Transformation of Pineapple with GFP-Tagged Protein Allows Easy, Non-Destructive Screening of Transgenic Pineapple Plants
title_sort efficient agrobacterium mediated transformation of pineapple with gfp-tagged protein allows easy, non-destructive screening of transgenic pineapple plants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6843836/
https://www.ncbi.nlm.nih.gov/pubmed/31627353
http://dx.doi.org/10.3390/biom9100617
work_keys_str_mv AT priyadarshanisvgn anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT caihanyang anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT zhouqiao anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT liuyanhui anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT chengyan anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT xiongjunjie anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT patsondikokolesego anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT caoshijiang anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT zhaoheming anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT qinyuan anefficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT priyadarshanisvgn efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT caihanyang efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT zhouqiao efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT liuyanhui efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT chengyan efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT xiongjunjie efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT patsondikokolesego efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT caoshijiang efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT zhaoheming efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants
AT qinyuan efficientagrobacteriummediatedtransformationofpineapplewithgfptaggedproteinallowseasynondestructivescreeningoftransgenicpineappleplants