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The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon

Color and pigment contents are important aspects of fruit quality and consumer acceptance of cucurbit crops. Here, we describe the independent mapping and cloning of a common causative APRR2 gene regulating pigment accumulation in melon and watermelon. We initially show that the APRR2 transcription...

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Autores principales: Oren, Elad, Tzuri, Galil, Vexler, Lea, Dafna, Asaf, Meir, Ayala, Faigenboim, Adi, Kenigswald, Merav, Portnoy, Vitaly, Schaffer, Arthur A, Levi, Amnon, Buckler, Edward S, Katzir, Nurit, Burger, Joseph, Tadmor, Yaakov, Gur, Amit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6685648/
https://www.ncbi.nlm.nih.gov/pubmed/31175368
http://dx.doi.org/10.1093/jxb/erz182
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author Oren, Elad
Tzuri, Galil
Vexler, Lea
Dafna, Asaf
Meir, Ayala
Faigenboim, Adi
Kenigswald, Merav
Portnoy, Vitaly
Schaffer, Arthur A
Levi, Amnon
Buckler, Edward S
Katzir, Nurit
Burger, Joseph
Tadmor, Yaakov
Gur, Amit
author_facet Oren, Elad
Tzuri, Galil
Vexler, Lea
Dafna, Asaf
Meir, Ayala
Faigenboim, Adi
Kenigswald, Merav
Portnoy, Vitaly
Schaffer, Arthur A
Levi, Amnon
Buckler, Edward S
Katzir, Nurit
Burger, Joseph
Tadmor, Yaakov
Gur, Amit
author_sort Oren, Elad
collection PubMed
description Color and pigment contents are important aspects of fruit quality and consumer acceptance of cucurbit crops. Here, we describe the independent mapping and cloning of a common causative APRR2 gene regulating pigment accumulation in melon and watermelon. We initially show that the APRR2 transcription factor is causative for the qualitative difference between dark and light green rind in both crops. Further analyses establish the link between sequence or expression level variations in the CmAPRR2 gene and pigment content in the rind and flesh of mature melon fruits. A genome-wide association study (GWAS) of young fruit rind color in a panel composed of 177 diverse melon accessions did not result in any significant association, leading to an earlier assumption that multiple genes are involved in shaping the overall phenotypic variation in this trait. Through resequencing of 25 representative accessions and allelism tests between light rind accessions, we show that multiple independent single nucleotide polymorphisms in the CmAPRR2 gene are causative of the light rind phenotype. The multi-haplotypic nature of this gene explains the lack of detection power obtained through genotyping by sequencing-based GWAS and confirms the pivotal role of this gene in shaping fruit color variation in melon. This study demonstrates the power of combining bi- and multi-allelic designs with deep sequencing, to resolve lack of power due to high haplotypic diversity and low allele frequencies. Due to its central role and broad effect on pigment accumulation in fruits, the APRR2 gene is an attractive target for carotenoid bio-fortification of cucurbit crops.
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spelling pubmed-66856482019-08-12 The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon Oren, Elad Tzuri, Galil Vexler, Lea Dafna, Asaf Meir, Ayala Faigenboim, Adi Kenigswald, Merav Portnoy, Vitaly Schaffer, Arthur A Levi, Amnon Buckler, Edward S Katzir, Nurit Burger, Joseph Tadmor, Yaakov Gur, Amit J Exp Bot Research Papers Color and pigment contents are important aspects of fruit quality and consumer acceptance of cucurbit crops. Here, we describe the independent mapping and cloning of a common causative APRR2 gene regulating pigment accumulation in melon and watermelon. We initially show that the APRR2 transcription factor is causative for the qualitative difference between dark and light green rind in both crops. Further analyses establish the link between sequence or expression level variations in the CmAPRR2 gene and pigment content in the rind and flesh of mature melon fruits. A genome-wide association study (GWAS) of young fruit rind color in a panel composed of 177 diverse melon accessions did not result in any significant association, leading to an earlier assumption that multiple genes are involved in shaping the overall phenotypic variation in this trait. Through resequencing of 25 representative accessions and allelism tests between light rind accessions, we show that multiple independent single nucleotide polymorphisms in the CmAPRR2 gene are causative of the light rind phenotype. The multi-haplotypic nature of this gene explains the lack of detection power obtained through genotyping by sequencing-based GWAS and confirms the pivotal role of this gene in shaping fruit color variation in melon. This study demonstrates the power of combining bi- and multi-allelic designs with deep sequencing, to resolve lack of power due to high haplotypic diversity and low allele frequencies. Due to its central role and broad effect on pigment accumulation in fruits, the APRR2 gene is an attractive target for carotenoid bio-fortification of cucurbit crops. Oxford University Press 2019-08-01 2019-04-24 /pmc/articles/PMC6685648/ /pubmed/31175368 http://dx.doi.org/10.1093/jxb/erz182 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Papers
Oren, Elad
Tzuri, Galil
Vexler, Lea
Dafna, Asaf
Meir, Ayala
Faigenboim, Adi
Kenigswald, Merav
Portnoy, Vitaly
Schaffer, Arthur A
Levi, Amnon
Buckler, Edward S
Katzir, Nurit
Burger, Joseph
Tadmor, Yaakov
Gur, Amit
The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon
title The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon
title_full The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon
title_fullStr The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon
title_full_unstemmed The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon
title_short The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon
title_sort multi-allelic aprr2 gene is associated with fruit pigment accumulation in melon and watermelon
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6685648/
https://www.ncbi.nlm.nih.gov/pubmed/31175368
http://dx.doi.org/10.1093/jxb/erz182
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