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首页> 外文期刊>Journal of Experimental Botany >The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon
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The multi-allelic APRR2 gene is associated with fruit pigment accumulation in melon and watermelon

机译:多等位基因APRR2基因与甜瓜和西瓜的水果颜料积累有关

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摘要

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.
机译:颜色和颜料含量是水果质量和消费者接受葫芦作物的重要方面。在这里,我们描述了甜瓜和西瓜常见的致病APRR2基因调节颜料积累的独立测绘和克隆。我们最初表明APRR2转录因子对两种作物中的黑暗和浅绿色外皮之间的定性差异导致了造就作。进一步分析建立CMAPRR2基因的序列或表达水平变化与成熟甜瓜果实的皮肤和肉体中的颜料含量之间的链接。在由177个不同的甜瓜附加过程中组成的面板中的幼果外皮颜色的基因组关联研究(Gwas)没有导致任何重要关联,导致较早的假设多种基因参与塑造这种特征的整体表型变异。通过重新排列的25个代表性的摘录和升性载体之间的等位性测试,我们表明CMAPRR2基因中的多种独立单核苷酸多态性是造成轻质皮下表型。该基因的多重单型性质解释了通过基于测序的GWA通过基因分型获得的缺乏检测能力,并确认该基因在甜瓜中塑造果实颜色变化中的枢转作用。本研究表明,由于高单位多样性和低等位基因频率,将缺乏功率组合的双级和多个等位基因设计结合的力量。由于其核心作用对色素积累的核心作用和广泛影响,APRR2基因是Cacurbot作物的类胡萝卜素生物强化的吸引力。

著录项

  • 来源
    《Journal of Experimental Botany》 |2019年第15期|共14页
  • 作者单位

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Volcani Ctr Agr Res Org Plant Sci Inst POB 15159 IL-7507101 Rishon Leziyyon Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Volcani Ctr Agr Res Org Plant Sci Inst POB 15159 IL-7507101 Rishon Leziyyon Israel;

    USDA ARS US Vegetable Lab 2700 Savannah Highway Charleston SC 29414 USA;

    Cornell Univ Plant Breeding &

    Genet Sect Ithaca NY 14853 USA;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

    Newe Yaar Res Ctr Agr Res Org Plant Sci Inst POB 1021 IL-3009500 Ramat Yishay Israel;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    APRR2; BSA-Seq; carotenoids; chlorophyll; fruit quality; GWAS; melon; QTL; RNA-Seq; watermelon;

    机译:APRR2;BSA-SEQ;类胡萝卜素;叶绿素;水果质量;GWAS;甜瓜;QTL;RNA-SEQ;西瓜;

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