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利用果实特征和叶绿体微卫星揭示甜樱桃(L.)与酸樱桃(L.)之间的遗传关系。

Genetic relationships between sweet cherry ( L.) and sour cherry ( L.) as revealed using fruit characterizations and chloroplast microsatellites.

作者信息

Khadivi Ali, Goodarzi Somayeh, Shams Mostafakamal

机构信息

Department of Horticultural Sciences, Faculty of Agriculture and Natural Resources Arak University Arak Iran.

Department of Plant Physiology and Biotechnology, Faculty of Biology University of Gdansk Gdansk Poland.

出版信息

Food Sci Nutr. 2023 Nov 23;12(3):1647-1654. doi: 10.1002/fsn3.3858. eCollection 2024 Mar.

Abstract

In the present study, the genetic diversity as well as the relationship between sweet cherry ( L.) and sour cherry ( L.) genotypes were investigated based on fruit traits and chloroplast microsatellites (cpSSRs). Analysis of variance showed that the studied genotypes have significant differences in the studied traits. In sweet cherries, the average fruit weight was 4.49 g with a coefficient of variation (CV) of 15.62%, the average stone weight was 0.34 g with a CV of 15.67%, and the average total soluble solids was 11.90% with a CV of 22.06%. Also, in sour cherries, the average fruit weight was 2.65 g with a coefficient of variation (CV) of 14.27%, the average stone weight was 0.28 g with a CV of 12.27%, and the average total soluble solids was 10.90% with a CV of 19.80%. Principal component analysis (PCA) showed that 83.80% of the observed variance was explained by the first three components. The cluster analysis separated genotypes of sweet and sour cherries and put them into two main groups. Four cpSSR primers produced distinct and different alleles among sweet and sour cherries. The cpSSR loci separated sweet and sour cherries from each other, which confirms the theory that chloroplast genome of sour cherry is not derived from sweet cherry. The present results provided new insights regarding the extent of diversity of individuals and also determined the relatedness and obtained information on genetic diversity of sweet and sour cherries.

摘要

在本研究中,基于果实性状和叶绿体微卫星(cpSSR)对甜樱桃(L.)和酸樱桃(L.)基因型之间的遗传多样性及关系进行了研究。方差分析表明,所研究的基因型在研究性状上存在显著差异。在甜樱桃中,平均单果重为4.49克,变异系数(CV)为15.62%,平均核重为0.34克,CV为15.67%,平均总可溶性固形物含量为11.90%,CV为22.06%。同样,在酸樱桃中,平均单果重为2.65克,变异系数(CV)为14.27%,平均核重为0.28克,CV为12.27%,平均总可溶性固形物含量为10.90%,CV为19.80%。主成分分析(PCA)表明,前三个成分解释了83.80%的观测变异。聚类分析将甜樱桃和酸樱桃的基因型分开,并将它们分为两个主要组。四个cpSSR引物在甜樱桃和酸樱桃之间产生了不同的等位基因。cpSSR位点将甜樱桃和酸樱桃彼此分开,这证实了酸樱桃叶绿体基因组并非源自甜樱桃的理论。目前的结果为个体多样性的程度提供了新的见解,同时也确定了甜樱桃和酸樱桃的亲缘关系并获得了有关其遗传多样性的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78c7/10916583/f232a49eeb15/FSN3-12-1647-g001.jpg

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