首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Determination of self-incompatible genotypes in 21 cultivated sweet cherry cultivars in Greece and implications for orchard cultivation.
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Determination of self-incompatible genotypes in 21 cultivated sweet cherry cultivars in Greece and implications for orchard cultivation.

机译:希腊21个栽培甜樱桃品种中自交不亲和基因型的测定及其对果园栽培的影响。

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摘要

Sweet cherry is self-incompatible due to having a gametophytic self-incompatibility system. S alleles in the style and pollen determine possible crossing relationships. Knowledge of the S allele constitution of cultivars is important for sweet cherry growers and breeders. Recently, molecular methods have been developed to distinguish between S alleles in sweet cherry. The S allele genotypes of 21 sweet cherry cultivars widely grown in Greece, including 19 not previously genotyped, were determined based on their S-RNase gene sequences using PCR analysis. Eight different S alleles in ten combinations were distinguished and two new S-genotypes (S1S13 and S4S30) were documented. Four alleles, S1, S3, S4, and S9 were widespread and together were responsible for 85% of the S-haplotypes. Therefore many of the cultivar combinations were semi-compatible. In Greece, semi-compatibility was shown to correlate with low yields. However, the cultivar 'Hybrid Tragana Edessis x Unknown' (S3S13) and the cultivar 'Kapsiotika' (S2S5) carry rare S-haplotypes and are therefore fully cross-compatible with most of the cultivars analysed.
机译:甜樱桃由于具有配子植物的自我不相容性系统而自我不相容。花粉和花粉中的 S 等位基因确定可能的杂交关系。 S 等位基因组成的知识对于甜樱桃种植者和育种者很重要。最近,已开发出分子方法来区分甜樱桃中的 S 等位基因。利用PCR分析,根据其 S-RNase 基因序列,确定了希腊广泛种植的21个甜樱桃品种的 S 等位基因型,其中包括19个以前未进行基因分型。区分了十个组合中的八个不同的 S 等位基因,并确定了两个新的 S 基因型( S 1 < / i> S 13 和 S 4 S 30 )。 S 1 , S 3 四个等位基因, S 4 和 S 9 分布广泛,共同构成了85%的 S -单倍型。因此,许多品种组合都是半兼容的。在希腊,表明半相容性与低产量相关。但是,杂交品种“杂种花旗草x未知”( S 3 S 13 )和品种'Kapsiotika'( S 2 S 5 )携带罕见的 S -单倍型,因此与大多数分析品种完全交叉兼容。

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