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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Suitability of four different methods to identify self-compatible seedlings in an almond breeding programme
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Suitability of four different methods to identify self-compatible seedlings in an almond breeding programme

机译:四种不同方法在杏仁育种程序中识别自溶性幼苗的适用性

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摘要

Obtaining self-compatible almond cultivars from controlled crosses has become one of the most important aims in almond breeding programmes. Self-compatible seedlings from such crosses have been identified by different methods. Determination of fruit set in bagged branches and observing self-pollen growth along the pistil by fluorescence microscopy are methods traditionally used. Non-equilibrium pH gradient electro-focusing (NEPHGE) of stylar S-RNases is a more recent method, which reveals self-compatibility by partial or total absence of ribonuclease activity in heterozygous and homozygous self-compatible individuals respectively. To date, the most recent method is S-allele PCR, which identifies the presence of the S_f allele in genomic DNA, In thiswork, reliability, ease of performance, economic cost and time spent in obtaining the results of these four methods were compared in a progeny of 74 seedlings. The results showed that, considering its moderate cost and time spent, NEPHGE of stylar S-RNases was the most convenient method. However, as PCR of S-alleles can be applied in the first year to plantlets in the nursery, an early selection of self-compatible seedlings is possible. On the other hand, bagging is essential in a further stage of theselection process, thus ensuring good yields in single-cultivar almond orchards.
机译:从受控杂交中获得自相容的杏仁品种已成为杏仁育种计划中最重要的目标之一。已经通过不同的方法鉴定了来自此类杂交的自交适合的幼苗。传统上使用的方法是确定袋装树枝中的坐果,并沿着雌蕊观察自花粉的生长。构型S-RNase的非平衡pH梯度电聚焦(NEPHGE)是一种较新的方法,通过在纯合子和纯合子自交配体个体中部分或全部不存在核糖核酸酶活性,揭示了自配性。迄今为止,最新的方法是S-等位基因PCR,它可以识别S_f等位基因在基因组DNA中的存在。在这项工作中,我们比较了可靠性,性能简便性,经济成本和获得这四种方法结果所花费的时间。 74株幼苗的后代。结果表明,考虑到其适度的成本和花费的时间,定型S-RNase的NEPHGE是最方便的方法。但是,由于S-等位基因的PCR可以在第一年应用于苗圃中的小苗,因此有可能提早选择自相容的幼苗。另一方面,套袋对于这些选择过程的进一步阶段至关重要,因此可以确保单品种杏仁果园的高产。

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