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首页> 外文期刊>Euphytica >Identification of the fourth allele of the ANS (anthocyanidin synthase) gene and its effect on red color intensity in onions (Allium cepa)
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Identification of the fourth allele of the ANS (anthocyanidin synthase) gene and its effect on red color intensity in onions (Allium cepa)

机译:ANS(原花青素合酶)基因的第四个等位基因的鉴定及其对洋葱红色强度的影响(洋葱)

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摘要

Bulb color in onions (Allium cepa) is an important trait, and homogenous red coloration is desirable in red onion cultivars. The gene encoding anthocyanin synthase (ANS) is required for anthocyanin biosynthesis in onions. We have previously described three different alleles of the ANS gene. Here we report identification of the fourth allele of ANS, ANS-h1, found in a dark red doubled haploid line. ANS-h1 is similar to a non-functional allele found in Brazilian yellow cultivars except that it has several point mutations and indels throughout the promoter and coding regions, none of which are predicted to inactivate enzymatic activity. F2 and backcross populations originating from the crosses between wild-type (ANS-L) allele-containing red and pink (ANS-p) allele-containing white or yellow parents show a discrete segregation ratio of 3 red to 1 light pink, indicating that the wild-type allele is completely dominant over the pink allele. In contrast, segregating populations derived from the crosses between ANS-h1 allele-containing red and the same white or yellow parents show a gradient of red intensity from light pink to dark red, suggesting that other genetic factors may affect expression of ANS-h1. A newly developed PCR-based marker and two previously developed markers for allelic selection of the ANS gene were used to examine allele composition in fifty-six breeding lines and commercial cultivars. Most lines are heterogeneous for the ANS gene with two or three alleles detected. The frequency of the pink allele is low in red breeding lines, but it is predominant in white and yellow lines.
机译:洋葱(葱属)的鳞茎颜色是重要的性状,并且在红洋葱品种中需要均匀的红色。洋葱中花青素生物合成需要编码花青素合酶(ANS)的基因。我们之前已经描述了ANS基因的三个不同等位基因。在这里,我们报告在暗红色双单倍体系中发现的ANS的第四个等位基因ANS-h1的鉴定。 ANS-h1与巴西黄色品种中发现的非功能性等位基因相似,不同之处在于它在整个启动子和编码区均具有多个点突变和插入/缺失,而这些突变均未预期会灭活酶活性。来自含野生型(ANS-L)等位基因的红色和含粉红色(ANS-p)等位基因的白色或黄色亲本之间的杂交的F2 和回交种群显示了3个红光比1个光的离散分离比粉红色,表示野生型等位基因完全优于粉红色等位基因。相反,源自包含ANS-h1等位基因的红色和相同的白色或黄色亲本之间的杂交的分离种群显示红色强度从浅粉红色到深红色的梯度,这表明其他遗传因素可能影响ANS-h1的表达。一种新开发的基于PCR的标记和两个先前开发的用于ANS基因等位基因选择的标记用于检查56个育种系和商业品种的等位基因组成。对于ANS基因,大多数品系是异质的,检测到两个或三个等位基因。在红色育种系中,粉红色等位基因的频率较低,但在白色和黄系中则占优势。

著录项

  • 来源
    《Euphytica》 |2006年第2期|45-51|共7页
  • 作者单位

    Vegetable Fruit Improvement Center Department of Horticultural Sciences Texas AM University;

    Vegetable Fruit Improvement Center Department of Horticultural Sciences Texas AM University;

    Vegetable Fruit Improvement Center Department of Horticultural Sciences Texas AM University;

    Vegetable Fruit Improvement Center Department of Horticultural Sciences Texas AM University;

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

    anthocyanidin synthase (ANS); anthocyanin; molecular marker; onion;

    机译:花青素合酶;花色素苷;分子标记;洋葱;

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