A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis

Tobacco is a popular model plant used for studying gene function. The generation of transgenic tobacco is tremendously essential in functional genomics. The generated transgenic plants must undergo careful selection and analysis before being used. However, most published protocols for generating tra...

وصف كامل

التفاصيل البيبلوغرافية
الحاوية / القاعدة:PERTANIKA JOURNAL OF TROPICAL AGRICULTURAL SCIENCE
المؤلفون الرئيسيون: Hilman, Mohamad Shafek; Nawawi, Omar; Azhari, Mohd Farhan; Bai, Tianqi; Zhang, Cuixian; Abdullah, Mohd Puad; Masani, Mat Yunus Abdul; Yusuf, Chong Yu Lok
التنسيق: مقال
اللغة:English
منشور في: UNIV PUTRA MALAYSIA PRESS 2025
الموضوعات:
الوصول للمادة أونلاين:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001443170200003
author Hilman
Mohamad Shafek; Nawawi
Omar; Azhari
Mohd Farhan; Bai
Tianqi; Zhang
Cuixian; Abdullah
Mohd Puad; Masani
Mat Yunus Abdul; Yusuf
Chong Yu Lok
spellingShingle Hilman
Mohamad Shafek; Nawawi
Omar; Azhari
Mohd Farhan; Bai
Tianqi; Zhang
Cuixian; Abdullah
Mohd Puad; Masani
Mat Yunus Abdul; Yusuf
Chong Yu Lok
A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
Agriculture
author_facet Hilman
Mohamad Shafek; Nawawi
Omar; Azhari
Mohd Farhan; Bai
Tianqi; Zhang
Cuixian; Abdullah
Mohd Puad; Masani
Mat Yunus Abdul; Yusuf
Chong Yu Lok
author_sort Hilman
spelling Hilman, Mohamad Shafek; Nawawi, Omar; Azhari, Mohd Farhan; Bai, Tianqi; Zhang, Cuixian; Abdullah, Mohd Puad; Masani, Mat Yunus Abdul; Yusuf, Chong Yu Lok
A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
PERTANIKA JOURNAL OF TROPICAL AGRICULTURAL SCIENCE
English
Article
Tobacco is a popular model plant used for studying gene function. The generation of transgenic tobacco is tremendously essential in functional genomics. The generated transgenic plants must undergo careful selection and analysis before being used. However, most published protocols for generating transgenic tobacco for functional genomics are not comprehensive and involve sophisticated equipment. This study demonstrates an efficient and comprehensive method for developing and selecting transgenic tobacco lines without involving sophisticated equipment. Transgene was delivered into the genome of a tobacco plant via Agrobacterium tumefaciens. Polymerase Chain Reaction (PCR) was performed to verify the integration of transgenes in the putative primary transformants. Reverse Transcription-Polymerase Chain Reaction (RTPCR) examined transgene expressions. The number of transgene integration loci (TIL) was determined by transgene segregation analysis. PCR results revealed that approximate to 97% of the primary transformants were positive. The transgene was highly expressed in the transgenic plants. Segregation analysis showed that 47.6%-66.7% of the transgenic plants contained a single TIL, and the T1 and T2 progenies inherited the transgene. Homozygous transgenic lines with a single TIL were successfully developed by using our method. This manuscript encompasses detailed guidance on genetic transformation, molecular analysis, seed production, and transgene segregation analysis. It serves as a guideline for the researchers to produce transgenic tobacco lines that can be used for functional analysis. The procedures described here can be conducted in standard laboratories as they require no high-end equipment. This comprehensive and efficient method for generating transgenic tobacco will foster functional genomics.
UNIV PUTRA MALAYSIA PRESS
1511-3701
2231-8542
2025
48
1
10.47836/pjtas.48.1.03
Agriculture
gold
WOS:001443170200003
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001443170200003
title A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
title_short A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
title_full A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
title_fullStr A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
title_full_unstemmed A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
title_sort A Comprehensive Method to Generating and Identifying Transgenic Tobacco Lines with a Single Transgene Integration Locus for Functional Analysis
container_title PERTANIKA JOURNAL OF TROPICAL AGRICULTURAL SCIENCE
language English
format Article
description Tobacco is a popular model plant used for studying gene function. The generation of transgenic tobacco is tremendously essential in functional genomics. The generated transgenic plants must undergo careful selection and analysis before being used. However, most published protocols for generating transgenic tobacco for functional genomics are not comprehensive and involve sophisticated equipment. This study demonstrates an efficient and comprehensive method for developing and selecting transgenic tobacco lines without involving sophisticated equipment. Transgene was delivered into the genome of a tobacco plant via Agrobacterium tumefaciens. Polymerase Chain Reaction (PCR) was performed to verify the integration of transgenes in the putative primary transformants. Reverse Transcription-Polymerase Chain Reaction (RTPCR) examined transgene expressions. The number of transgene integration loci (TIL) was determined by transgene segregation analysis. PCR results revealed that approximate to 97% of the primary transformants were positive. The transgene was highly expressed in the transgenic plants. Segregation analysis showed that 47.6%-66.7% of the transgenic plants contained a single TIL, and the T1 and T2 progenies inherited the transgene. Homozygous transgenic lines with a single TIL were successfully developed by using our method. This manuscript encompasses detailed guidance on genetic transformation, molecular analysis, seed production, and transgene segregation analysis. It serves as a guideline for the researchers to produce transgenic tobacco lines that can be used for functional analysis. The procedures described here can be conducted in standard laboratories as they require no high-end equipment. This comprehensive and efficient method for generating transgenic tobacco will foster functional genomics.
publisher UNIV PUTRA MALAYSIA PRESS
issn 1511-3701
2231-8542
publishDate 2025
container_volume 48
container_issue 1
doi_str_mv 10.47836/pjtas.48.1.03
topic Agriculture
topic_facet Agriculture
accesstype gold
id WOS:001443170200003
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001443170200003
record_format wos
collection Web of Science (WoS)
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