Song Huali, Tang Xiangyou, Lan Lan, Zhang Xin, Zhang Xiaoyan
Laboratory of Animal Biology, Chongqing Normal University, Chongqing, 401331, China.
Chongqing Key Laboratory of Vector Insects, College of Life Sciences, Chongqing Normal University, Chongqing, 401331, China.
Acta Parasitol. 2020 Mar;65(1):193-202. doi: 10.2478/s11686-019-00153-6. Epub 2019 Dec 12.
Microsporidia Nosema bombycis is the destructive pathogen in the production of sericulture. The Tc1/mariner elements belong to important component of DNA transposon.
The genomic data of N. bombycis and related Nosema species were screened to identify the Tc1-like elements and analyzed the phylogenetic relationship, based on bioinformational analysis. High-throughput data of transcriptomes and small RNAs were used to evaluate the expressed level and potential rasiRNAs for the Tc1-like elements of N. bombycis.
Twelve complete Tc1-like elements belonging to DD34,E clade is confirmed in the whole genome of N. bombycis, and divided into two branches. Six of them are sole in N. bombycis and thereby would be the molecular marker to differentiate this species from others Nosema spp. Most of the elements have the transcriptional active and are the source of sRNAs.
Abundant Tc1-like elements in N. bombycis reflect the expansion of transposons for this genomic characters, comparing with others Nosema spp. The finding of distribution, phylogeny and potential functional activity for Tc1Nbs in N. bombycis will help understanding the role of the DNA transposon in genomic evolution of microsporidia.
微孢子虫家蚕微孢子虫是养蚕生产中的毁灭性病原体。Tc1/水手元件属于DNA转座子的重要组成部分。
基于生物信息学分析,筛选家蚕微孢子虫及相关微孢子虫物种的基因组数据以鉴定类Tc1元件,并分析其系统发育关系。利用转录组和小RNA的高通量数据评估家蚕微孢子虫类Tc1元件的表达水平和潜在的重复相关小干扰RNA(rasiRNA)。
在家蚕微孢子虫全基因组中确认了12个属于DD34、E进化枝的完整类Tc1元件,并分为两个分支。其中6个在家蚕微孢子虫中是独特的,因此将成为区分该物种与其他微孢子虫属物种的分子标记。大多数元件具有转录活性,是小RNA的来源。
与其他微孢子虫属物种相比,家蚕微孢子虫中丰富的类Tc1元件反映了该基因组特征中转座子的扩张。在家蚕微孢子虫中发现类Tc1元件(Tc1Nbs)的分布、系统发育和潜在功能活性将有助于理解DNA转座子在微孢子虫基因组进化中的作用。