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异交在[具体内容未提及]中的优势:来自使用荧光标记寄生虫进行遗传杂交的见解。

Advantages of outcrossing in : insights from genetic crosses using fluorescent labelled parasites.

作者信息

Li Xue, Jutzeler Kathrin S, Abatiyow Biley A, Rezakhani Nastaran, Haile Meseret T, Leeb Amanda S, Patel Hardik, Kappe Stefan H I, Nosten François, Cheeseman Ian H, Ferdig Michael T, Anderson Timothy J C, Vaughan Ashley M, Kumar Sudhir

机构信息

Disease Intervention and Prevention Program, Texas Biomedical Research Institute, San Antonio, TX, USA.

Center for Global Infectious Disease Research, Seattle Children's Research Institute, Seattle, WA, USA.

出版信息

bioRxiv. 2025 Jul 31:2025.07.18.665596. doi: 10.1101/2025.07.18.665596.

Abstract

Malaria parasites are obligately sexual hermaphrodite protozoans with gamete fusion occurring in the mosquito midgut, followed by meiosis and recombination. Malaria parasite populations show a spectrum of populations structures ranging from predominantly selfing to highly outcrossed. However, the fitness consequences of selfing and outcrossing for malaria parasites are poorly understood. This project was designed to investigate the dynamics of gamete fusion within the mosquito midgut and the relative fitness of selfed and outcrossed zygotes. We generated florescent-labelled clones of NF54 (mCherry), an African parasite, and NHP4026 (GFP), a Thai parasite, crossed these parasites, and scored genotypes of 8540 oocysts from 435 mosquitoes sampled from 7 to 14 days post infection. We observed decreasing proportions of outcrossed oocysts and increasing levels of inbreeding over the course of the infection in two independently replicated crosses. These results are consistent with the faster maturation of transmissible sporozoites derived from outcrossed compared with selfed oocysts. Our results suggest a substantial outcrossing advantage, perhaps because this allows for the removal of deleterious mutations accumulated during asexual parasite replication in the vertebrate host. We also found that selfed NF54 oocysts were larger than outcrossed or selfed NHP4026 oocysts, which may influence production of sporozoites and onward transmission. We conclude that fluorescent labelled parasites provide clear resolution of mating patterns, temporal dynamics and transmission potential of malaria parasites in mosquitoes. Importantly, faster maturation of outcrossed parasites can maximize levels of recombination in transmitted malaria parasite populations.

摘要

疟原虫是专性有性的雌雄同体原生动物,配子融合发生在蚊子的中肠,随后进行减数分裂和重组。疟原虫种群呈现出一系列的种群结构,从主要自交到高度异交。然而,自交和异交对疟原虫适应性的影响却知之甚少。本项目旨在研究蚊子中肠内配子融合的动态以及自交和异交合子的相对适应性。我们构建了非洲疟原虫NF54(mCherry标记)和泰国疟原虫NHP4026(GFP标记)的荧光标记克隆株,使这些疟原虫杂交,并对感染后7至14天从435只蚊子中采集的8540个卵囊的基因型进行评分。在两个独立重复的杂交实验中,我们观察到在感染过程中,异交卵囊的比例下降,近亲繁殖水平上升。这些结果与异交来源的可传播子孢子比自交卵囊来源的子孢子成熟更快一致。我们的结果表明存在显著的异交优势,可能是因为这有助于清除脊椎动物宿主体内无性疟原虫复制过程中积累的有害突变。我们还发现,自交的NF54卵囊比异交或自交的NHP4026卵囊更大,这可能会影响子孢子的产生和后续传播。我们得出结论,荧光标记的疟原虫能够清晰解析蚊子体内疟原虫的交配模式、时间动态和传播潜力。重要的是,异交疟原虫更快的成熟能够使传播的疟原虫种群中的重组水平最大化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/904f/12324223/dc996398d2cf/nihpp-2025.07.18.665596v2-f0001.jpg

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