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RNA-seq:泥螺对有孔虫寄生的早期反应。

RNA-seq: The early response of the snail Physella acuta to the digenetic trematode Echinostoma paraensei.

机构信息

Center for Evolutionary and Theoretical Immunology (CETI), Department of Biology, University of New Mexico, Albuquerque, New Mexico 87131.

Department of Molecular, Cellular and Developmental Biology, University of California, Santa Barbara, Santa Barbara, California 93106.

出版信息

J Parasitol. 2020 Aug 1;106(4):490-505. doi: 10.1645/19-36.

Abstract

To analyze the response of the snail Physella acuta to Echinostoma paraensei, a compatible digenetic trematode, Illumina RNA-seq data were collected from snails with early infection (5 snails at 2 days post-exposure [DPE]) and established infection (4 snails, 8 DPE), and 7 control (unexposed) snails. A reference transcriptome (325,563 transcripts, including 98% of eukaryotic universal single-copy orthologs; BUSCO) and a draft P. acuta genome (employing available genomic Illumina reads; 799,945 scaffolds, includes 88% BUSCO genes) were assembled to guide RNA-seq analyses. Parasite exposure of P. acuta led to 10,195 differentially expressed (DE) genes at 2 DPE and 8,876 DE genes at 8 DPE with only 18% of up-regulated and 22% of down-regulated sequences shared between these time points. Gene ontology (GO) analysis yielded functional annotation of only 1.2% of DE genes but did not indicate major changes in biological activities of P. acuta between 2 and 8 DPE. Increased insights were achieved by analysis of expression profiles of 460 immune-relevant DE transcripts, identified by BLAST and InterProScan. Physella acuta has expanded gene families that encode immune-relevant domains, including CD109/TEP, GTPase IMAP, Limulus agglutination factor (dermatopontin), FReD (≥82 sequences with fibrinogen-related domains), and transcripts that combine C-type lectin (C-LECT) and C1q domains, novel among metazoa. Notably, P. acuta expressed sequences from these immune gene families at all time points, but the assemblages of unique transcripts from particular immune gene families differed between 2 and 8 DPE. The shift in profiles of DE immune genes, from early exposure to parasite establishment, suggests that compatible P. acuta initially respond to infection but switch to express immune genes that likely are less effective against E. paraensei but counter other types of (opportunistic) pathogens and parasites. We propose that the latter expression profile is part of an extended phenotype of E. paraensei, imposed upon P. acuta through parasite manipulation of the host, following successful parasite establishment in the snail after 2 DPE.

摘要

为了分析蜗牛 Physella acuta 对适合的复殖吸虫棘口属后尾蚴的反应,我们从感染早期(暴露后 2 天,5 只蜗牛)和建立感染(暴露后 8 天,4 只蜗牛)的蜗牛以及 7 只对照(未暴露)蜗牛中收集了 Illumina RNA-seq 数据。组装了参考转录组(包括 98%真核生物通用单拷贝直系同源物的 325563 个转录本;BUSCO)和 Physella acuta 基因组草案(利用可得的基因组 Illumina reads;包括 88% BUSCO 基因的 799945 个支架),以指导 RNA-seq 分析。棘口属后尾蚴暴露导致 2 天时有 10195 个差异表达(DE)基因,8 天时有 8876 个 DE 基因,但两个时间点之间仅有 18%的上调和 22%的下调序列是共享的。GO 分析仅对 1.2%的 DE 基因进行了功能注释,但并没有表明 2 到 8 天期间 Physella acuta 的生物活性有重大变化。通过对通过 BLAST 和 InterProScan 鉴定的 460 个免疫相关 DE 转录本的表达谱分析,获得了更多的见解。Physella acuta 扩展了编码免疫相关结构域的基因家族,包括 CD109/TEP、GTPase IMAP、鲎凝集因子(真皮蛋白)、FReD(≥82 个具有纤维蛋白原相关结构域的序列)和结合 C 型凝集素(C-LECT)和 C1q 结构域的转录本,这在后生动物中是新颖的。值得注意的是,在所有时间点,Physella acuta 都表达了这些免疫基因家族的序列,但在 2 天和 8 天之间,来自特定免疫基因家族的独特转录本的组合不同。从早期暴露到寄生虫建立,免疫基因 DE 的表达谱发生了变化,这表明相容的 Physella acuta 最初会对感染作出反应,但转而表达可能对棘口属后尾蚴效果较差的免疫基因,但会对抗其他类型(机会性)病原体和寄生虫。我们提出,在后尾蚴成功建立感染后 2 天,寄生虫通过操纵宿主,这种表达谱是棘口属后尾蚴的扩展表型的一部分。

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