Genetic changes of Plasmodium vivax tempers host tissue-specific responses in Anopheles stephensi

Q4 Immunology and Microbiology Current research in immunology Pub Date : 2021-01-01 DOI:10.1016/j.crimmu.2021.02.002
Seena Kumari , Charu Chauhan , Sanjay Tevatiya , Deepak Singla , Tanwee Das De , Punita Sharma , Tina Thomas , Jyoti Rani , Deepali Savargaonkar , Kailash C. Pandey , Veena Pande , Rajnikant Dixit
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引用次数: 6

Abstract

Recently, we showed how an early restriction of gut flora proliferation by Plasmodium vivax favors immune-suppression and Plasmodium survival in the gut lumen (Sharma et al., 2020). Here, we asked post gut invasion how P. vivax interacts with individual tissues such as the midgut, hemocyte, and salivary glands, and manages its survival in the mosquito host. Our data from tissue-specific comparative RNA-Seq analysis and extensive temporal/spatial expression profiling of selected mosquito transcripts in the uninfected and P. vivax infected mosquito’s tissues indicated that (i) a transient suppression of gut metabolic machinery by early oocysts; (ii) enriched expression of nutritional responsive proteins and immune proteins against late oocysts, together may ensure optimal parasite development and gut homeostasis restoration; (iii) pre-immune activation of hemocyte by early gut-oocysts infection via REL induction (p ​< ​0.003); and altered expression of hemocyte-encoded immune proteins may cause rapid removal of free circulating sporozoites from hemolymph; (iv) while a strong suppression of salivary metabolic activities, and elevated expression of salivary specific secretory, as well as immune proteins together, may favor the long-term storage and survival of invaded sporozoites. Finally, our RNA-Seq-based discovery of 4449 transcripts of Plasmodium vivax origin, and their developmental stage-specific expression modulation in the corresponding infected mosquito tissues, predicts a possible mechanism of mosquito responses evasion by P. vivax. Conclusively, our system-wide RNA-Seq analysis provides the first genetic evidence of direct mosquito-Plasmodium interaction and establishes a functional correlation.

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间日疟原虫对斯氏按蚊宿主组织特异性反应的遗传变化
最近,我们展示了间日疟原虫对肠道菌群增殖的早期限制如何有利于免疫抑制和肠道内疟原虫的存活(Sharma et al., 2020)。在这里,我们询问肠道入侵后间日疟原虫如何与个体组织如中肠、血细胞和唾液腺相互作用,并管理其在蚊子宿主中的生存。我们从组织特异性比较RNA-Seq分析和广泛的时间/空间表达谱中选择的蚊子转录本在未感染间日疟原虫和感染间日疟原虫的蚊子组织中表明:(i)早期卵囊对肠道代谢机制的短暂抑制;(ii)营养反应蛋白和针对晚期卵囊的免疫蛋白的丰富表达,共同确保寄生虫的最佳发育和肠道稳态的恢复;(iii)通过REL诱导的早期肠卵囊感染对血细胞的免疫前激活(p <0.003);血细胞编码免疫蛋白表达的改变可能导致血淋巴中自由循环的孢子体迅速被清除;(iv)而唾液代谢活动的强烈抑制,以及唾液特异性分泌和免疫蛋白的表达升高,可能有利于入侵孢子的长期储存和存活。最后,我们基于rna - seq发现了4449个间日疟原虫起源转录本,以及它们在相应感染蚊子组织中的发育阶段特异性表达调控,预测了间日疟原虫逃避蚊子应答的可能机制。最后,我们的全系统RNA-Seq分析提供了蚊子-疟原虫直接相互作用的第一个遗传证据,并建立了功能相关性。
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