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Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population

Phytoene synthase (PSY) is one of the key regulatory enzyme on the biosynthesis and accumulation of carotenoid in citrus fruits. The transcriptional diversity of PSY is mainly attributed to the structural variation in promoter region among PSY alleles. In aim to clarify how this transcriptional dive...

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Autores principales: Sugiyama, Aiko, Ikoma, Yoshinori, Fujii, Hiroshi, Endo, Tomoko, Nesumi, Hirohisa, Shimada, Takehiko, Omura, Mitsuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society of Breeding 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5654466/
https://www.ncbi.nlm.nih.gov/pubmed/29085248
http://dx.doi.org/10.1270/jsbbs.17033
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author Sugiyama, Aiko
Ikoma, Yoshinori
Fujii, Hiroshi
Endo, Tomoko
Nesumi, Hirohisa
Shimada, Takehiko
Omura, Mitsuo
author_facet Sugiyama, Aiko
Ikoma, Yoshinori
Fujii, Hiroshi
Endo, Tomoko
Nesumi, Hirohisa
Shimada, Takehiko
Omura, Mitsuo
author_sort Sugiyama, Aiko
collection PubMed
description Phytoene synthase (PSY) is one of the key regulatory enzyme on the biosynthesis and accumulation of carotenoid in citrus fruits. The transcriptional diversity of PSY is mainly attributed to the structural variation in promoter region among PSY alleles. In aim to clarify how this transcriptional diversity is regulated among them, PSY alleles responsible for carotenoid biosynthesis in the fruits are characterized and their promoter sequences were compared. Based on gene structure and expression pattern of PSY homologues on the clementine mandarin genome sequence, PSY alleles responsible for carotenoid biosynthesis are derived from a single locus in the scaffold 6. AG mapping population possessed four PSY alleles derived from parent lines of A255 and G434, and their F(1) individuals with PSY-g2 allele tended to have low transcription level. From sequence comparison of their promoter regions, the cis-motif alternation from MYBPZM to RAV1AAT might be a candidate to influence the transcription level. Among the ancestral pedigree varieties of AG mapping population, the transcription level of PSY correlated with genotypes of MYBPZM and RAV1AAT motifs in the promoter region of PSY alleles, so that homozygous genotype of MYBPZM showed higher transcription level while heterozygous genotype of MYBPZM and RAV1AAT showed lower transcription level.
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spelling pubmed-56544662017-10-30 Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population Sugiyama, Aiko Ikoma, Yoshinori Fujii, Hiroshi Endo, Tomoko Nesumi, Hirohisa Shimada, Takehiko Omura, Mitsuo Breed Sci Research Paper Phytoene synthase (PSY) is one of the key regulatory enzyme on the biosynthesis and accumulation of carotenoid in citrus fruits. The transcriptional diversity of PSY is mainly attributed to the structural variation in promoter region among PSY alleles. In aim to clarify how this transcriptional diversity is regulated among them, PSY alleles responsible for carotenoid biosynthesis in the fruits are characterized and their promoter sequences were compared. Based on gene structure and expression pattern of PSY homologues on the clementine mandarin genome sequence, PSY alleles responsible for carotenoid biosynthesis are derived from a single locus in the scaffold 6. AG mapping population possessed four PSY alleles derived from parent lines of A255 and G434, and their F(1) individuals with PSY-g2 allele tended to have low transcription level. From sequence comparison of their promoter regions, the cis-motif alternation from MYBPZM to RAV1AAT might be a candidate to influence the transcription level. Among the ancestral pedigree varieties of AG mapping population, the transcription level of PSY correlated with genotypes of MYBPZM and RAV1AAT motifs in the promoter region of PSY alleles, so that homozygous genotype of MYBPZM showed higher transcription level while heterozygous genotype of MYBPZM and RAV1AAT showed lower transcription level. Japanese Society of Breeding 2017-09 2017-08-04 /pmc/articles/PMC5654466/ /pubmed/29085248 http://dx.doi.org/10.1270/jsbbs.17033 Text en Copyright © 2017 by JAPANESE SOCIETY OF BREEDING http://creativecommons.org/licenses/by-nc-nd/3.0 This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Sugiyama, Aiko
Ikoma, Yoshinori
Fujii, Hiroshi
Endo, Tomoko
Nesumi, Hirohisa
Shimada, Takehiko
Omura, Mitsuo
Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population
title Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population
title_full Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population
title_fullStr Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population
title_full_unstemmed Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population
title_short Allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus F(1) hybrid population
title_sort allelic diversity of phytoene synthase gene influences the transcription level in citrus fruit among a citrus f(1) hybrid population
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5654466/
https://www.ncbi.nlm.nih.gov/pubmed/29085248
http://dx.doi.org/10.1270/jsbbs.17033
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