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首页> 外文期刊>Theoretical and Applied Genetics >Resolution of quantitative trait loci for mechanical measures accounting for genetic variation in fruit texture of apple (Malus pumila Mill.)
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Resolution of quantitative trait loci for mechanical measures accounting for genetic variation in fruit texture of apple (Malus pumila Mill.)

机译:机械指标的量化性状基因座解析解决苹果果实质地遗传变异的研究(Malus pumila Mill。)

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摘要

Different attributes of fruit flesh texture contribute to consumer preference for eating quality in apple. We extended previous studies in order to determine whether a range of mechanical measures could resolve further the genetic contribution to variation in the physical attributes of apple fruit flesh. In particular we were interested in accounting for variation of the sensory traits crispness and juiciness. A quantitative genetic analysis of mechanical measures derived from compression and wedge fracture tests was carried out. This was based on segregation in an unselected mapping population which had previously been used to identify QTLs associated with penetrometer readings, stiffness by acoustic resonance, and a range of sensory descriptors. For wedge fracture tests significant QTLs were detected on L16 and L01. Those on L16 corresponded with positions previously determined for sensory measures of crispness and juiciness. Distance at maximum force was accounted for by a single QTL on L16 and correlated well with crispness and juiciness, suggesting that it may be appropriate for the selection of genotypes with fruit posessing desirable texture attributes. We established that the association of the sensory texture QTL on L16 is unlikely to be due to perceptual interactions with the Ma acidity locus. For compression measures, QTLs were detected on L01, L06, L08 and L15. Specific gravity is well-correlated with compression stiffness modulus, and both have a significant QTL on L06. Measures of cell size and shape determined across the population failed to detect any significant QTLs.
机译:果肉质地的不同属性有助于消费者偏爱苹果的食用品质。我们扩展了以前的研究,以便确定一系列机械措施是否可以进一步解决遗传对苹果果肉物理特性变异的影响。尤其是我们对解释感官特性的脆度和多汁性感兴趣。进行了从压缩和楔形断裂试验得出的机械措施的定量遗传分析。这是基于未选择的映射种群中的隔离,该种群先前已用于识别与渗透计读数,通过声共振的刚度以及一系列感觉描述符相关的QTL。对于楔形断裂测试,在L16和L01上检测到了显着的QTL。 L16上的那些对应于先前确定的用于脆性和多汁感官测量的位置。 L16上的单个QTL解释了最大作用力下的距离,并且与脆性和多汁性相关性很强,这表明它可能适合选择具有所需质地属性的水果基因型。我们建立了L16上的感官质感QTL的关联不太可能是由于与Ma酸度基因座的知觉相互作用。对于压缩措施,在L01,L06,L08和L15上检测到QTL。比重与压缩刚度模量具有很好的相关性,并且两者在L06上均具有显着的QTL。在整个群体中确定的细胞大小和形状的度量未能检测到任何重要的QTL。

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  • 来源
    《Theoretical and Applied Genetics》 |2001年第8期|1227-1235|共9页
  • 作者单位

    Horticulture Research International Wellesbourne Warwick CV35 9EF UK e-mail: graham.king@hri.ac.uk;

    Horticulture Research International Wellesbourne Warwick CV35 9EF UK e-mail: graham.king@hri.ac.uk;

    Horticulture Research International East Malling West Malling Kent ME19 6BJ UK;

    Horticulture Research International East Malling West Malling Kent ME19 6BJ UK;

    Horticulture Research International Wellesbourne Warwick CV35 9EF UK e-mail: graham.king@hri.ac.uk;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Keywords Apple; Fruit; Crispness; Texture; QTL analysis; Genes;

    机译:苹果;水果;脆性;质地;QTL分析;基因;

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