School of Science, RMIT University, Plenty Road, PO Box 71, Bundoora, Victoria, 3083, Australia.
Griffith Institute for Drug Discovery (GRIDD), Don Young Road, Nathan, Queensland, 4122, Australia.
Sci Rep. 2017 Dec 12;7(1):17454. doi: 10.1038/s41598-017-17448-1.
Breeding strawberry (Fragaria x ananassa) with enhanced fruit flavour is one of the top breeding goals of many strawberry-producing countries. Although several genes involved in the biosynthetic pathways of key aroma compounds have been identified, the development and application of molecular markers associated with fruit flavour remain limited. This study aims to identify molecular markers closely linked to genes controlling strawberry aroma. A purpose-built Subtracted Diversity Array (SDA) known as Fragaria Discovery Panel (FDP) was used for marker screening. Polymorphic sequences associated with key aroma compounds were identified from two DNA bulks with extreme phenotypes, established using 50 F progeny plants derived from Juliette X 07-102-41 cross, two strawberry genotypes differing in aroma profile. A total of 49 polymorphic markers for eight key aroma compounds were detected using genotypic data of the extreme DNA bulks and phenotypic data obtained from gas chromatography-mass spectrometry (GC-MS). A similarity search against the physical maps of Fragaria vesca revealed that FaP1D7 is linked to genes potentially involved in the synthesis of methyl butanoate. A C/T SNP was detected within the feature, which could possibly be converted to a molecular tool for rapid screening of the strawberry accessions for their methyl butanoate production capacity.
培育具有浓郁水果风味的草莓(Fragaria x ananassa)是许多草莓生产国的首要育种目标之一。尽管已经鉴定出参与关键香气化合物生物合成途径的几个基因,但与果实风味相关的分子标记的开发和应用仍然有限。本研究旨在鉴定与控制草莓香气的基因紧密连锁的分子标记。使用专门构建的称为 Fragaria Discovery Panel (FDP) 的消减多样性阵列 (SDA) 进行标记筛选。从使用 Juliette X 07-102-41 杂交产生的 50 个 F 后代植物建立的两个具有极端表型的 DNA 块中,使用 Fragaria vesca 的物理图谱对与关键香气化合物相关的多态性序列进行了鉴定。总共检测到 49 个与八种关键香气化合物相关的多态性标记,这些标记是利用极端 DNA 块的基因型数据和气相色谱-质谱法 (GC-MS) 获得的表型数据获得的。与 Fragaria vesca 的物理图谱的相似性搜索表明,FaP1D7 与可能参与丁酸甲酯合成的基因相关。在该特征内检测到一个 C/T SNP,它可能被转化为一种分子工具,用于快速筛选草莓品种的丁酸甲酯生产能力。