Plant Virus Impacts on Yield and Plant-Pollinator Interactions Are Phylogenetically Modulated Independently of Domestication in Cucurbita spp.

IF 2.6 2区 农林科学 Q2 PLANT SCIENCES Phytopathology Pub Date : 2024-09-01 Epub Date: 2024-09-16 DOI:10.1094/PHYTO-08-23-0270-R
Chauncy Hinshaw, Margarita M López-Uribe, Cristina Rosa
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Abstract

Plant defenses are conserved among closely related species, but domestication can alter host genotypes through artificial selection with potential losses in host defenses. Therefore, both domestication and host phylogenetic structure may influence plant virus infection outcomes. Here, we examined the association of phylogeny and domestication with the fitness of infected plants. We inoculated three pairs of domesticated and wild/noncultivated squash (Cucurbita spp.) with a combination of two viruses commonly found to coinfect cucurbits, zucchini yellow mosaic virus and squash mosaic virus, and recorded fitness traits related to flowers, pollination, fruit, and seed viability in the field over 2 separate years. In an additional field experiment, we recorded the relative abundance of both viruses via RT-qPCR. We found a gradient of susceptibility across the six tested lineages, and phylogenetic structure, but not domestication, contributed to differences in infection outcomes and impacts on several fitness traits, including fruit number, fruit weight, and germination. Plant virus infection also impacted the quantity and quality of floral rewards and visitation rates of specialist bee pollinators. There were no detectable differences in viral load between the six host taxa for either virus individually or the ratio of zucchini yellow mosaic virus to squash mosaic virus. Our results highlight the importance of phylogenetic structure in predicting host susceptibility to disease across wild and domesticated plants and the ability of several hosts to maintain fitness in the field despite infection. Broader consequences of plant pathogens for beneficial insects, such as pollinators, should also be considered in future research.

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植物病毒对产量的影响以及植物与传粉者之间的相互作用在系统发育上的调节与葫芦属植物的驯化无关。
植物的防御能力在近缘物种之间是保守的,但驯化可通过人工选择改变宿主基因型,从而导致宿主防御能力的潜在损失。因此,驯化和宿主系统发育结构都可能影响植物病毒感染的结果。在此,我们研究了系统发育和驯化与受感染植物的适应性之间的关系。我们给三对驯化南瓜和野生/非驯化南瓜(葫芦属)接种了两种通常会共同感染葫芦科植物的病毒--西葫芦黄花叶病毒(ZYMV)和南瓜花叶病毒(SqMV),并分别记录了两年中田间与花、授粉、果实和种子活力相关的适应性特征。在另一项田间试验中,我们通过 RT-qPCR 记录了这两种病毒的相对丰度。我们发现,6 个受测品系的易感性存在梯度,系统发育结构(而非驯化)导致了感染结果的差异,并影响了果实数量、果实重量和发芽率等多个性状。植物病毒感染还影响了花卉奖励的数量和质量以及专性蜜蜂授粉者的造访率。在 6 个宿主类群之间,无论是病毒个体还是 ZYMV:SqMV 的比例,都没有检测到病毒载量的差异。我们的研究结果凸显了系统发育结构在预测寄主对野生和驯化植物疾病易感性方面的重要性,以及几种寄主在田间受到感染后仍能保持健康的能力。未来的研究还应考虑植物病原体对授粉昆虫等益虫造成的更广泛影响。
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来源期刊
Phytopathology
Phytopathology 生物-植物科学
CiteScore
5.90
自引率
9.40%
发文量
505
审稿时长
4-8 weeks
期刊介绍: Phytopathology publishes articles on fundamental research that advances understanding of the nature of plant diseases, the agents that cause them, their spread, the losses they cause, and measures that can be used to control them. Phytopathology considers manuscripts covering all aspects of plant diseases including bacteriology, host-parasite biochemistry and cell biology, biological control, disease control and pest management, description of new pathogen species description of new pathogen species, ecology and population biology, epidemiology, disease etiology, host genetics and resistance, mycology, nematology, plant stress and abiotic disorders, postharvest pathology and mycotoxins, and virology. Papers dealing mainly with taxonomy, such as descriptions of new plant pathogen taxa are acceptable if they include plant disease research results such as pathogenicity, host range, etc. Taxonomic papers that focus on classification, identification, and nomenclature below the subspecies level may also be submitted to Phytopathology.
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