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利用比较转录组分析鉴定杜仲中性别偏倚的基因表达和可能的性别相关基因。

Identification of the Sex-Biased Gene Expression and Putative Sex-Associated Genes in Eucommia ulmoides Oliver Using Comparative Transcriptome Analyses.

机构信息

Institute of Clinical Pharmacology, Guangzhou University of Chinese Medicine, Guangzhou 510000, China.

Department of Forestry Protection, College of Forestry, Northwest A&F University, Yangling 712100, China.

出版信息

Molecules. 2017 Dec 18;22(12):2255. doi: 10.3390/molecules22122255.

Abstract

is a model representative of the dioecious plants with sex differentiation at initiation. Nevertheless, the genetic mechanisms of sexual dimorphism and sex determination in remain poorly understood. In this study transcriptome sequencing on Illumina platform generated >45 billion high-quality bases from fresh leaves of six male and female individuals of . A total of 148,595 unigenes with an average length of 801 base-pairs (bp) were assembled. Through comparative transcriptome analyses, 116 differentially expressed genes (DEGs) between the males and the females were detected, including 73 male-biased genes and 43 female-biased genes. Of these DEGs, three female-biased genes were annotated to be related with the sexually dimorphic gutta content in . One male-biased DEG was identified as putative MADS box gene APETALA3, a B class floral organ identity gene in the flowering plants. SNPs calling analyses further confirmed that the APETALA3-like gene was probably involved in the sex determination in . Four other male-biased DEGs were potential sex-associated genes as well with segregated SNPs in accord with sex type. In addition, the SNPs density was 1.02 per kilobase (kb) in the expressed genes of , implying a relatively high genetic diversity.

摘要

是雌雄异株植物中性别分化启动的典型代表。然而,雌雄异株植物中性别二态性和性别决定的遗传机制仍知之甚少。本研究利用 Illumina 平台对新鲜叶片进行转录组测序,从 6 个雌雄个体中产生了超过 450 亿个高质量碱基。共组装了 148595 个平均长度为 801 个碱基对 (bp) 的非冗余基因。通过比较转录组分析,在雌雄个体之间检测到 116 个差异表达基因 (DEGs),包括 73 个雄性偏性基因和 43 个雌性偏性基因。这些 DEGs 中的三个雌性偏性基因被注释为与 雌雄异株的 gutta 含量相关。一个雄性偏性 DEG 被鉴定为假定的 MADS 框基因 APETALA3,它是开花植物中 B 类花器官身份基因。SNP 调用分析进一步证实,APETALA3 样基因可能参与 中的性别决定。其他四个雄性偏性 DEG 也是潜在的性别相关基因,与性别类型分离的 SNP 一致。此外,在 的表达基因中,SNP 密度为每千碱基 (kb)1.02,表明遗传多样性相对较高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/438a/6149867/c1ad329d2f44/molecules-22-02255-g001a.jpg

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