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Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum

Chrysanthemum is one of the most popular flowers worldwide and has high aesthetic and commercial value. However, the cultivated varieties of chrysanthemum are hexaploid and highly heterozygous, which makes gene editing and gene function research difficult. Gojo-0 is a diploid homozygous line bred fr...

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Autores principales: Zhang, Jiali, Zhang, Jing, Li, Peiling, Gao, Yuan, Yu, Qi, Sun, Daojin, Zhang, Lingling, Wang, Siqi, Tian, Jing, Wang, Zhenxing, Jiang, Jiafu, Chen, Fadi, Song, Aiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570430/
https://www.ncbi.nlm.nih.gov/pubmed/36232727
http://dx.doi.org/10.3390/ijms231911426
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author Zhang, Jiali
Zhang, Jing
Li, Peiling
Gao, Yuan
Yu, Qi
Sun, Daojin
Zhang, Lingling
Wang, Siqi
Tian, Jing
Wang, Zhenxing
Jiang, Jiafu
Chen, Fadi
Song, Aiping
author_facet Zhang, Jiali
Zhang, Jing
Li, Peiling
Gao, Yuan
Yu, Qi
Sun, Daojin
Zhang, Lingling
Wang, Siqi
Tian, Jing
Wang, Zhenxing
Jiang, Jiafu
Chen, Fadi
Song, Aiping
author_sort Zhang, Jiali
collection PubMed
description Chrysanthemum is one of the most popular flowers worldwide and has high aesthetic and commercial value. However, the cultivated varieties of chrysanthemum are hexaploid and highly heterozygous, which makes gene editing and gene function research difficult. Gojo-0 is a diploid homozygous line bred from a self-compatible mutant of Chrysanthemum seticuspe and is expected to become a model plant of the genus Chrysanthemum. After assessment of different growth regulator combinations, the optimal concentrations of α-naphthaleneacetic acid (NAA) and 6-benzyladenine (6-BA) in the regeneration system were 1.0 mg·L(−1) and 0.2 mg·L(−1), respectively. In the genetic transformation system, the selected concentrations of kanamycin, hygromycin and glufosinate-ammonium were 10 mg·L(−1), 2.5 mg·L(−)(1) and 0.6 mg·L(−1) for bud generation and 12 mg L(−1), 1.5 mg·L(−1) and 0.5 mg·L(−1) for rooting. The transgenic plants were verified by not only PCR detection and GUS staining, but also identification of the T-DNA insertion locus using high-throughput sequencing. Our results lay the foundation for gene functional research on chrysanthemum and will help with the identification of transgenic plants.
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spelling pubmed-95704302022-10-17 Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum Zhang, Jiali Zhang, Jing Li, Peiling Gao, Yuan Yu, Qi Sun, Daojin Zhang, Lingling Wang, Siqi Tian, Jing Wang, Zhenxing Jiang, Jiafu Chen, Fadi Song, Aiping Int J Mol Sci Article Chrysanthemum is one of the most popular flowers worldwide and has high aesthetic and commercial value. However, the cultivated varieties of chrysanthemum are hexaploid and highly heterozygous, which makes gene editing and gene function research difficult. Gojo-0 is a diploid homozygous line bred from a self-compatible mutant of Chrysanthemum seticuspe and is expected to become a model plant of the genus Chrysanthemum. After assessment of different growth regulator combinations, the optimal concentrations of α-naphthaleneacetic acid (NAA) and 6-benzyladenine (6-BA) in the regeneration system were 1.0 mg·L(−1) and 0.2 mg·L(−1), respectively. In the genetic transformation system, the selected concentrations of kanamycin, hygromycin and glufosinate-ammonium were 10 mg·L(−1), 2.5 mg·L(−)(1) and 0.6 mg·L(−1) for bud generation and 12 mg L(−1), 1.5 mg·L(−1) and 0.5 mg·L(−1) for rooting. The transgenic plants were verified by not only PCR detection and GUS staining, but also identification of the T-DNA insertion locus using high-throughput sequencing. Our results lay the foundation for gene functional research on chrysanthemum and will help with the identification of transgenic plants. MDPI 2022-09-28 /pmc/articles/PMC9570430/ /pubmed/36232727 http://dx.doi.org/10.3390/ijms231911426 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Jiali
Zhang, Jing
Li, Peiling
Gao, Yuan
Yu, Qi
Sun, Daojin
Zhang, Lingling
Wang, Siqi
Tian, Jing
Wang, Zhenxing
Jiang, Jiafu
Chen, Fadi
Song, Aiping
Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum
title Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum
title_full Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum
title_fullStr Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum
title_full_unstemmed Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum
title_short Development of a Transformation System and Locus Identification Pipeline for T-DNA in Chrysanthemum seticuspe, A Model Species for Hexaploid Cultivated Chrysanthemum
title_sort development of a transformation system and locus identification pipeline for t-dna in chrysanthemum seticuspe, a model species for hexaploid cultivated chrysanthemum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570430/
https://www.ncbi.nlm.nih.gov/pubmed/36232727
http://dx.doi.org/10.3390/ijms231911426
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