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在甜樱桃(Prunus avium L.)的第 4 连锁群上鉴定到一个与驯化和选育种质有关的果实硬度 QTL。

A fruit firmness QTL identified on linkage group 4 in sweet cherry (Prunus avium L.) is associated with domesticated and bred germplasm.

机构信息

Department of Horticulture, Michigan State University, East Lansing, MI, 48824, USA.

UMR 1332 BFP, INRA, Université de Bordeaux, F-33140, Villenave d'Ornon, France.

出版信息

Sci Rep. 2019 Mar 21;9(1):5008. doi: 10.1038/s41598-019-41484-8.

Abstract

Fruit firmness is an important market driven trait in sweet cherry (Prunus avium L.) where the desirable increase in fruit firmness is associated with landrace and bred cultivars. The aim of this work was to investigate the genetic basis of fruit firmness using plant materials that include wild cherry (syn. mazzard), landrace and bred sweet cherry germplasm. A major QTL for fruit firmness, named qP-FF4.1, that had not previously been reported, was identified in three sweet cherry populations. Thirteen haplotypes (alleles) associated with either soft or firm fruit were identified for qP-FF4.1 in the sweet cherry germplasm, and the "soft" alleles were dominant over the "firm" alleles. The finding that sweet cherry individuals that are homozygous for the "soft" alleles for qP-FF4.1 are exclusively mazzards and that the vast majority of the bred cultivars are homozygous for "firm" alleles suggests that this locus is a signature of selection. Candidate genes related to plant cell wall modification and various plant hormone signaling pathways were identified, with an expansin gene being the most promising candidate. These results advance our understanding of the genetic basis of fruit firmness and will help to enable the use of DNA informed breeding for this trait in sweet cherry breeding programs.

摘要

果实硬度是甜樱桃(Prunus avium L.)的一个重要市场驱动特性,果实硬度的理想增加与地方品种和培育品种有关。本工作旨在利用包括野樱桃(syn. mazzard)、地方品种和培育甜樱桃种质资源的植物材料,研究果实硬度的遗传基础。在三个甜樱桃群体中鉴定到一个以前未报道的与果实硬度相关的主效 QTL,命名为 qP-FF4.1。在甜樱桃种质资源中,与软果或硬果相关的 qP-FF4.1 有 13 个单倍型(等位基因),“软”等位基因对“硬”等位基因占优势。发现甜樱桃个体中 qP-FF4.1 的“软”等位基因纯合的都是野樱桃,而绝大多数培育品种都是“硬”等位基因纯合的,这表明该位点是选择的标志。鉴定到与植物细胞壁修饰和各种植物激素信号通路相关的候选基因,其中扩展蛋白基因是最有希望的候选基因。这些结果加深了我们对果实硬度遗传基础的理解,并将有助于在甜樱桃育种计划中利用 DNA 指导的分子标记辅助选择进行该性状的选择。

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