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首页> 外文期刊>Scientia horticulturae >High resolution melting analysis for early identification of citrus hybrids: A reliable tool to overcome the limitations of morphological markers and assist rootstock breeding
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High resolution melting analysis for early identification of citrus hybrids: A reliable tool to overcome the limitations of morphological markers and assist rootstock breeding

机译:用于柑橘杂种早期鉴定的高分辨率熔解分析:克服形态标志物局限性并协助砧木育种的可靠工具

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摘要

Citrus rootstocks are highly polyembryonic. Seeds usually produce many nucellar seedlings that are identical to the mother plant and sometimes one zygotic plant. Nucellar seedlings hamper the identification of hybrids if the morphological markers that distinguish sexual and nucellar plants are missing, and competition among embryos might impair zygotic embryo viability. Accurate morphological and/or molecular screening methods are needed to identify and discard the nucellar plants, which is labor-intensive and increases the costs of rootstock breeding programs. This study describes an affordable and reliable method for an early identification of hybrids in progenies derived from highly polyembryonic female parents based on DNA isolation from pooled leaf samples (2 to 4 plants per sample) coupled with a high resolution melting (HRM) analysis at two SNP loci. The method was validated on more than one thousand progeny derived from the crosses alemow (Citrus macrophylla Wester) x Swingle citrumelo [Citrus paradisi Macf. x Poncirus trifoliata (L.) Raf.].(A x S), and Cleopatra mandarin (Citrus reshni Hort. ex Tan) x Swingle citrumelo (C x S). Bulking reduced the number of DNA isolations for population genotyping, while HRM unequivocally identified, in a single step, the bulks containing the unifoliate hybrids. A consistent difference was found between A x S and C x S populations in the frequency of uni- and multi-foliate hybrids (69% unifoliate in A x S vs. 10% in C x 5), suggesting that the combination of parents, rather than just the male parent carrying the trifoliate character, influenced the early multifoliate leaf expression. Moreover, several multifoliate nucellar seedlings were found among the C x S progenies, making the multifoliate leaf character inappropriate for the early identification of all hybrids. (C) 2014 Elsevier B.V. All rights reserved.
机译:柑橘砧木是高度多胚的。种子通常会产生许多与母本植物相同的核仁幼苗,有时也与一种合子植物相同。如果缺少区分有性植物和成核植物的形态学标记,核种幼苗会妨碍杂种的鉴定,并且胚间的竞争可能会损害合子胚的活力。需要准确的形态学和/或分子筛选方法来鉴定和丢弃细胞核植物,这是劳动密集型的并且增加了砧木育种计划的成本。这项研究描述了一种经济实惠且可靠的方法,可基于从合并的叶片样品(每个样品2至4株植物)中分离DNA并在两个样品处进行高分辨率熔解(HRM)分析,来早期鉴定高度多胚雌性父母的后代中的杂种SNP基因座。该方法已在来自杂种马齿((Citrus macrophylla Wester)x Swingle citrumelo [Citrus paradisi Macf。 x(A.S)的Poncirus trifoliata(L.)Raf。]和Cleopatra普通话(Citrus reshni Hort。ex Tan)x Swingle citrumelo(C x S)。大块减少了用于群体基因分型的DNA分离次数,而HRM一步一步明确地确定了含有单叶杂种的大块。在单叶和多叶杂种的频率上发现了A x S和C x S种群之间的一致性差异(A x S中69%的单叶杂种与C x 5中的10%的杂种),这表明父母,不仅是带有三叶形特征的雄性亲本影响了早期多叶叶子的表达。此外,在C x S后代中发现了几片多核的核苗,这使得多叶的叶片特性不适用于所有杂种的早期鉴定。 (C)2014 Elsevier B.V.保留所有权利。

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