Dai Yueting, Su Wenying, Yang Chentao, Song Bing, Li Yu, Fu Yongping
Engineering Research Center of Chinese Ministry of Education for Edible and Medicinal Fungi, Jilin Agricultural University, Changchun 130118, China.
China National GeneBank, Environmental Genomics, Beijing Genomics Institute, Shenzhen 518083, China.
Genes (Basel). 2017 Nov 17;8(11):325. doi: 10.3390/genes8110325.
Identification of monokaryons and their mating types and discrimination of hybrid offspring are key steps for the crossbreeding of (Bailinggu). However, conventional crossbreeding methods are troublesome and time consuming. Using RNA-seq technology, we developed new expressed sequence tag-simple sequence repeat (EST-SSR) markers for Bailinggu to easily and rapidly identify monokaryons and their mating types, genetic diversity and hybrid offspring. We identified 1110 potential EST-based SSR loci from a newly-sequenced Bailinggu transcriptome and then randomly selected 100 EST-SSRs for further validation. Results showed that 39, 43 and 34 novel EST-SSR markers successfully identified monokaryons from their parent dikaryons, differentiated two different mating types and discriminated F₁ and F₂ hybrid offspring, respectively. Furthermore, a total of 86 alleles were detected in 37 monokaryons using 18 highly informative EST-SSRs. The observed number of alleles per locus ranged from three to seven. Cluster analysis revealed that these monokaryons have a relatively high level of genetic diversity. Transfer rates of the EST-SSRs in the monokaryons of closely-related species var. and were 72% and 64%, respectively. Therefore, our study provides new SSR markers and an efficient method to enhance the crossbreeding of Bailinggu and closely-related species.
单核体及其交配型的鉴定以及杂交后代的判别是(白灵菇)杂交育种的关键步骤。然而,传统的杂交育种方法麻烦且耗时。利用RNA测序技术,我们开发了用于白灵菇的新型表达序列标签-简单序列重复(EST-SSR)标记,以便轻松、快速地鉴定单核体及其交配型、遗传多样性和杂交后代。我们从新测序的白灵菇转录组中鉴定出1110个潜在的基于EST的SSR位点,然后随机选择100个EST-SSR进行进一步验证。结果表明,39、43和34个新型EST-SSR标记分别成功地从其亲本双核体中鉴定出单核体、区分了两种不同的交配型并判别了F₁和F₂杂交后代。此外,使用18个信息丰富的EST-SSR在37个单核体中总共检测到86个等位基因。每个位点观察到的等位基因数范围为3至7个。聚类分析表明这些单核体具有较高水平的遗传多样性。EST-SSR在近缘种变种和变种单核体中的转移率分别为72%和64%。因此,我们的研究提供了新的SSR标记和一种有效的方法来加强白灵菇及其近缘种的杂交育种。