Phenotypic and fitness consequences of plasticity in the rhythmic replication of malaria parasites.

Jacob G Holland, Aidan J O'Donnell, Alejandra Herbert-Mainero, Sarah E Reece
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Abstract

The environments that parasites experience within hosts change dramatically over 24 h. How rhythms shape host-parasite-vector interactions is poorly understood owing to the challenges of disentangling the roles of rhythms of multiple interacting species in the context of the complex lifecycles of parasites. Using canonical circadian clock-disrupted hosts, we probe the limits of flexibility in the rhythmic replication of malaria (Plasmodium) parasites and quantify the consequences for fitness proxies of both parasite and host. We reveal that parasites alter the duration of their replication rhythm to resonate with host rhythms that have short (21 h) daily T-cycles as accurately as when infecting hosts with 24 h cycles, but appear less capable of extending their replication rhythm in hosts with long (27 h) cycles. Despite matching the period of short T-cycle hosts, parasites are unable to lock to the correct phase, likely leading to lower within-host productivity and a reduction in transmission potential. However, parasites in long T-cycle hosts do not experience substantial fitness costs. Furthermore, T-cycle duration does not affect disease severity in clock-disrupted hosts. Understanding the rhythmic replication of malaria parasites offers the opportunity to interfere with parasite timing to improve health and reduce transmission.This article is part of the Theo Murphy meeting issue issue 'Circadian rhythms in infection and immunity'.

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疟原虫节律性复制中可塑性的表型和适应性后果。
寄生物在宿主体内所经历的环境在24小时内发生了巨大的变化。由于在寄生物复杂的生命周期背景下,解开多个相互作用物种的节律作用的挑战,人们对节律如何塑造寄生物-寄生虫-媒介相互作用知之甚少。使用典型的生物钟紊乱的宿主,我们探索了疟疾(疟原虫)寄生虫有节奏复制的灵活性的限制,并量化了寄生虫和宿主的适应性代理的后果。我们发现,寄生虫改变其复制节律的持续时间,以与具有短(21小时)每日t周期的宿主产生共鸣,就像感染24小时周期的宿主一样准确,但在具有长(27小时)周期的宿主中,寄生虫似乎无法延长其复制节律。尽管与短t周期宿主的周期相匹配,但寄生虫无法锁定到正确的阶段,这可能导致宿主内生产力降低和传播潜力降低。然而,在长t周期宿主中的寄生虫不会经历大量的适应成本。此外,t周期持续时间并不影响生物钟紊乱宿主的疾病严重程度。了解疟疾寄生虫的节律性复制,就有机会干预寄生虫的时间,以改善健康和减少传播。这篇文章是西奥·墨菲会议议题“感染和免疫中的昼夜节律”的一部分。
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来源期刊
CiteScore
11.80
自引率
1.60%
发文量
365
审稿时长
3 months
期刊介绍: The journal publishes topics across the life sciences. As long as the core subject lies within the biological sciences, some issues may also include content crossing into other areas such as the physical sciences, social sciences, biophysics, policy, economics etc. Issues generally sit within four broad areas (although many issues sit across these areas): Organismal, environmental and evolutionary biology Neuroscience and cognition Cellular, molecular and developmental biology Health and disease.
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