Inner Mongolia Key Laboratory of Grassland Ecology & Ministry of Education Key Laboratory of Ecology and Resource Use of the Mongolian Plateau, School of Ecology and Environment, Inner Mongolia University, Hohhot 010021, China.
School of Fundamental Sciences, College of Sciences, Massey University, Palmerston North 4442, New Zealand.
Genes (Basel). 2020 Mar 18;11(3):322. doi: 10.3390/genes11030322.
is a xerophytic shrub endemic to desert regions in Inner Mongolia. This species has evolved distinct survival strategies that allow it to adapt to hyper-drought and heterogeneous habitats. Simple sequence repeats (SSRs) may provide a molecular basis in plants for fast adaptation to environmental change. Thus, identifying SSRs and their possible effects on gene behavior has the potential to provide valuable information for studies of adaptation. In this study, we sequenced six individual transcriptomes of from heterogeneous habitats, focused on SSRs located in genes, and identified 811 polymorphic SSRs. Of the identified SSRs, 172, 470, and 76 were located in 5' UTRs, CDSs, and 3' UTRs in 591 transcripts; and AG/CT, AAC/GTT, and AT/AT were the most abundant repeats in each gene region. Functional annotation showed that many of the identified polymorphic SSRs were in genes that were enriched in several GO terms and KEGG pathways, suggesting the functional significance of these genes in the environmental adaptation process. The identification of polymorphic genic SSRs in our study lays a foundation for future studies investigating the contribution of SSRs to regulation of genes in natural populations of and their importance for adaptive evolution of this species.
是一种旱生灌木,仅分布于内蒙古荒漠地区。该物种进化出了独特的生存策略,使其能够适应极度干旱和异质生境。简单重复序列(SSR)可能为植物快速适应环境变化提供分子基础。因此,鉴定 SSR 及其对基因行为的可能影响,有可能为适应性研究提供有价值的信息。在这项研究中,我们对来自异质生境的 6 个个体的转录组进行了测序,重点关注位于基因中的 SSR,并鉴定了 811 个多态性 SSR。在所鉴定的 SSR 中,172、470 和 76 个位于 591 个转录本的 5'UTR、CDS 和 3'UTR 中;在每个基因区域中,AG/CT、AAC/GTT 和 AT/AT 是最丰富的重复类型。功能注释表明,所鉴定的多态性基因 SSR 富集在几个 GO 术语和 KEGG 途径中,这表明这些基因在该物种的环境适应过程中具有重要的功能意义。本研究中多态性基因 SSR 的鉴定为未来研究 SSR 对自然种群中基因调控的贡献以及该物种适应性进化的重要性奠定了基础。