Metarhizium 战斗俱乐部:宿主内部的竞争排斥和资源分配。

IF 5.5 1区 医学 Q1 MICROBIOLOGY PLoS Pathogens Pub Date : 2024-11-07 eCollection Date: 2024-11-01 DOI:10.1371/journal.ppat.1012639
Huiyu Sheng, Raymond J St Leger
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引用次数: 0

摘要

Metarhizium robertsii ARSEF 2575(Mr2575)和 Metarhizium anisopliae ARSEF 549(Ma549)都会感染一系列昆虫,同时也会与植物发生相互作用;然而,人们对影响不同菌株竞争能力的特性知之甚少。我们研究了Mr2575和Ma549在培养过程中以及在植物(拟南芥)和昆虫共同感染过程中的相互作用。在营养限制条件(包括根部渗出物)下,Mr2575的竞争能力优于Ma549,这使其在拟南芥根部具有优先优势。然而,在与拟南芥或黑腹果蝇共同感染时,Ma549 的囊孢产量更高,这增强了它在宿主体内的竞争能力。在大型六角曼珠沙华(五龄幼虫)中,囊孢有利于传播,抑制宿主黑化,阻止 Mr2575 从感染部位扩散,减少分生孢子的产生。然而,由于分生孢子的产生依赖于对分生孢子菌丝萌发的角质层的控制,因此在较小的宿主(如初生六分体M. sexta和D. melanogaster)上定殖并不能为Ma549提供竞争优势。意想不到的是,Ma549和Mr2575在宿主体内发生分离,这表明资源分配存在差异,Mr2575主要分布在果蝇的胸部,尤其是雌果蝇,而Ma549则分布在腹部。尽管 Ma549 和 Mr2575 对缺氧的敏感性相似,但在第五龄的六角果蝇中,Mr2575 在螺距和节的前端最为普遍。将分生孢子均匀地散布到第五龄六分体的半肠道中消除了产生胚泡孢子的优势,使 Ma549 和 Mr2575 具有同样的竞争力,Mr2575 严格分区在节的前端,Ma549 严格分区在节的后端。由于梅塔里兹菌在自然生态系统和农业生态系统中具有多重作用,这些发现对于了解它们对维持生物多样性的影响以及利用它们提高粮食安全具有重要意义。
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Metarhizium fight club: Within-host competitive exclusion and resource partitioning.

Both Metarhizium robertsii ARSEF 2575 (Mr2575) and Metarhizium anisopliae ARSEF 549 (Ma549) infect a range of insects whilst also interacting with plants; however, little is known about the traits that affect the competitive ability of different strains. We examined the interactions between Mr2575 and Ma549 in culture and during co-infection of plants (Arabidopsis thaliana) and insects. Mr2575 outcompetes Ma549 under nutrient-limiting conditions, including root exudates, giving it a priority advantage on Arabidopsis roots. However, during co-infection of Manduca sexta or Drosophila melanogaster, Ma549's higher blastospore production enhanced its competitive ability within the host. In large M. sexta (fifth instar), blastospores facilitate dispersal, suppress host melanization and prevent Mr2575 from spreading from infection sites, reducing conidia production. However, colonization of smaller hosts such as first instar M. sexta and D. melanogaster did not provide Ma549 with a competitive advantage, as conidial production was dependent on retaining control of the cuticle through which conidiating hyphae emerge. Unexpectedly, Ma549 and Mr2575 segregate within hosts, suggesting resource partitioning with Mr2575 predominating in the thoraxes of Drosophila, especially in females, and Ma549 in the abdomen. In fifth instar M. sexta, Mr2575 was most prevalent around spiracles and the front end of segments, despite Ma549 and Mr2575 having similar susceptibility to hypoxia. Dispersing conidia homogeneously into the hemocoel of fifth instar M. sexta eliminated the blastospore production advantage, making Ma549 and Mr2575 equally competitive, with strict partitioning of Mr2575 at the anterior and Ma549 at the posterior ends of segments. As Metarhizium species have multiple roles in natural ecosystems and agroecosystems these discoveries are relevant to understanding their impact on maintaining biodiversity and for exploiting them to enhance food security.

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PLoS Pathogens
PLoS Pathogens MICROBIOLOGY-PARASITOLOGY
自引率
3.00%
发文量
598
期刊介绍: Bacteria, fungi, parasites, prions and viruses cause a plethora of diseases that have important medical, agricultural, and economic consequences. Moreover, the study of microbes continues to provide novel insights into such fundamental processes as the molecular basis of cellular and organismal function.
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