Department of Plant Biology and Genome Center, University of California at Davis, UC Davis Genome Center, Davis, CA, 95616, USA.
ANR, Intermountain Research and Extension Center, University of California Cooperative Extension, Tulelake, CA, 96134, USA.
Sci Rep. 2021 Dec 7;11(1):23521. doi: 10.1038/s41598-021-02835-6.
Mint oil is a key source of natural flavors with wide industrial applications. Two unbalanced polyploid cultivars named Native (Mentha Spicata L) and Scotch (M. × gracilis Sole) are the main producers of spearmint type oil, which is characterized by high levels of the monoterpenes (-)-carvone and (-)-limonene. These cultivars have been the backbone of spearmint oil production for decades, while breeding and improvement remained largely unexplored, in part, due to sterility in cultivated lines. Here we show that sexual breeding at the diploid level can be leveraged to develop new varieties that produce spearmint type oil, along with the improvement of other important traits. Using field trials and GC-FID oil analysis we characterized plant materials from a public germplasm repository and identified a diploid accession that exhibited 89.5% increase in oil yield, compared to the industry standard, and another that produces spearmint type oil. Spearmint-type oil was present at high frequency in a segregating F population (32/160) produced from these two accessions. Field-testing of ten of these F lines showed segregation for oil yield and confirmed the production of spearmint-type oil profiles. Two of these lines combined high yield and spearmint-type oil with acceptable analytic and sensory profiles. These results demonstrate that spearmint-type oil can be produced in a diploid background with high yield potential, providing a simpler genetic system for the development of improved spearmint varieties.
薄荷油是天然香料的重要来源,具有广泛的工业应用。两个不平衡的多倍体品种,原生薄荷(Mentha spicata L)和苏格兰薄荷(M. × gracilis Sole),是薄荷型油的主要生产者,其特征是高水平的单萜烯(-)-蒈烯和(-)-柠檬烯。几十年来,这些品种一直是薄荷油生产的支柱,而育种和改良在很大程度上仍未得到探索,部分原因是栽培品种的不育性。在这里,我们展示了在二倍体水平上进行有性繁殖,可以开发生产薄荷型油的新品种,同时还可以改善其他重要特性。我们利用田间试验和 GC-FID 油分析,对公共种质库中的植物材料进行了表征,并鉴定出一个二倍体品系,与行业标准相比,其产油量增加了 89.5%,另一个品系则生产薄荷型油。这两个品系产生的分离 F 群体(32/160)中,薄荷型油的出现频率很高。对这 10 个 F 系进行田间试验表明,产油量存在分离,并证实了薄荷型油谱的产生。其中两条线兼具高产和薄荷型油,以及可接受的分析和感官特征。这些结果表明,在具有高产潜力的二倍体背景下可以生产薄荷型油,为改良薄荷品种的开发提供了一个更简单的遗传系统。