Ultrastructural study of anther parasitism of Ficus laevigata by Ficophagus laevigatus (Aphelenchoididae).

IF 1.4 4区 生物学 Q2 ZOOLOGY
Journal of nematology Pub Date : 2023-05-18 eCollection Date: 2023-02-01 DOI:10.2478/jofnem-2023-0010
Robin M Giblin-Davis, Natsumi Kanzaki, Donna S Williams
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Abstract

Transmission electron microscopy (TEM) was used to compare the ultrastructural differences between healthy male florets (anthers) and one floret parasitized by Ficophagus laevigatus in late phase C syconia of Ficus laevigata from southern Florida. Previous light-microscopic examination of paraffin-sectioned material showed that F. laevigatus-infested anthers of F. laevigata manifested as malformed, often with aberrant pollen and hypertrophied epidermal cells closest to regions containing propagating nematodes. Female florets or fig wasp-parasitized female florets were not observed to be parasitized by nematodes. Considering that plant-feeding in the Aphelenchoididae is purportedly much less specialized than in certain groups of the Tylenchomorpha, where specialized hypertrophied feeder cells are produced in response to nematode feeding, we examined the putative induced response in this unusual aphelenchoidid system with the higher resolution afforded by TEM. TEM confirmed the expression of significant epidermal cell hypertrophy of the anther and anther filament in the presence of propagating nematodes, which was expressed as cell enlargement (2-5X), fractionation of large electron-dense stores into smaller aggregates, irregularly shaped nuclei enclosed by an elongated nuclear envelope, nucleolus enlargement, increased organelle production, and apparent metabolism with increased numbers of mitochondria, pro-plastids, and endoplasmic reticulum, as well as increased thickening of the cell walls. Pathological effects were observed in adjacent cells/tissue (e.g., anther and anther filament parenchymal cells, pollen tubes, pollen, and endothecium) with apparent diminishment as the distance from propagating nematodes increased (which was also probably affected by number of nematodes). Some TEM sections captured previously undocumented ultrastructural highlights of propagating individuals of F. laevigatus.

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金翅榕花药寄生的超微结构研究。
利用透射电子显微镜(TEM)比较了佛罗里达州南部金翅榕C期晚的健康雄性小花(花药)与金翅榕寄生的一朵小花之间的超微结构差异。先前对石蜡切片材料的光镜检查显示,金翅虫感染的金翅虫花药表现为畸形,通常有异常花粉和肥大的表皮细胞,最靠近含有繁殖线虫的区域。雌性小花或寄生在雌性小花上的无花果黄蜂没有被线虫寄生。考虑到食蚜蝇科的植物取食据称远不如Tylenchomorpha的某些类群的植物取食那么专门,Tylenchomorpha的特定类群产生了专门的肥大饲养细胞来响应线虫的取食,我们用TEM提供的更高分辨率检测了这种不寻常的食蚜蝇系统中假定的诱导反应。TEM证实,在繁殖线虫存在的情况下,花药和花药丝的显著表皮细胞肥大的表达,表现为细胞增大(2-5X),大的电子致密储存被分离成更小的聚集体,被拉长的核膜包围的不规则形状的核,核仁增大,细胞器产量增加,线粒体、质体前体和内质网数量增加以及细胞壁增厚增加的明显代谢。在邻近的细胞/组织(如花药和花药丝实质细胞、花粉管、花粉和内壁)中观察到病理效应,随着与繁殖线虫距离的增加,病理效应明显减弱(这也可能受到线虫数量的影响)。一些TEM切片捕捉到了以前未记录的金翅虫繁殖个体的超微结构亮点。
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来源期刊
Journal of nematology
Journal of nematology 生物-动物学
CiteScore
2.90
自引率
7.70%
发文量
40
审稿时长
14 weeks
期刊介绍: Journal of Nematology is the official technical and scientific communication publication of the Society of Nematologists since 1969. The journal publishes original papers on all aspects of basic, applied, descriptive, theoretical or experimental nematology and adheres to strict peer-review policy. Other categories of papers include invited reviews, research notes, abstracts of papers presented at annual meetings, and special publications as appropriate.
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