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Spiroplasma citri Movement into the Intestines and Salivary Glands of Its Leafhopper Vector, Circulifer tenellus
Abstract:
ABSTRACT Spiroplasma citri, a helical, wall-less prokaryote in the class Molli-cutes, is transmitted by the beet leafhopper, Circulifer tenellus. Invasion of leafhopper tissues and cytopathological effects by S. citri were investigated by transmission electron microscopy. All eight cell types of the principle salivary glands, as well as the adjacent muscle cells and the cells of the accessory salivary glands, were colonized by the spiroplas-mas. In both midgut epithelia and salivary gland cells, spiroplasmas usually occurred in membrane-bound cytoplasmic vesicles that often were located near the cell periphery. In several salivary gland cells, spiroplas-mas were also observed within membranous pockets apparently formed by invagination of the plasmalemma beneath intact basal lamina. These observations are consistent with spiroplasma entry into the insect cells by receptor-mediated endocytosis. Cytopathological effects of spiroplasma infection in salivary cells included loss of membrane and basal lamina integrity, presence in some cells of irregular inclusion-like structures containing dense matrices of filamentous material that labeled with anti S. citri antibodies, and apparent disorganization of the endoplasmic reticulum. Compared to the tightly aligned fiber bundles in healthy muscle cells, bundles in spiroplasma-containing muscle cells appeared fragmented and loosely arranged. Such symptoms could contribute to the reduction in longevity and fecundity that has been previously reported for S. citri-infected C. tenellus.
Insights
Spiroplasma citri invades beet leafhopper salivary glands and muscle cells, causing damage via endocytosis. This pathogen disrupts cellular structures, potentially explaining reduced insect longevity and reproduction.
Area of Science:
- Plant pathology
- Insect microbiology
- Cell biology
Background:
- Spiroplasma citri is a helical, wall-less prokaryote.
- It is transmitted by the beet leafhopper, Circulifer tenellus.
- S. citri infection is known to reduce insect longevity and fecundity.
Purpose of the Study:
- To investigate the invasion mechanisms of Spiroplasma citri within leafhopper tissues.
- To identify cytopathological effects of S. citri infection in Circulifer tenellus cells.
Main Methods:
- Transmission electron microscopy (TEM) was used to examine infected leafhopper tissues.
- Specific cell types, including salivary glands and muscle cells, were analyzed.
- Immunolabeling with anti-S. citri antibodies was employed.
Main Results:
- Spiroplasmas colonized all cell types of the principal salivary glands, accessory salivary glands, and adjacent muscle cells.
- Invasion occurred via membrane-bound cytoplasmic vesicles and membranous pockets, suggesting receptor-mediated endocytosis.
- Cytopathological effects included loss of membrane and basal lamina integrity, inclusion bodies, endoplasmic reticulum disorganization, and fragmented muscle fiber bundles.
Conclusions:
- Spiroplasma citri invades Circulifer tenellus cells through endocytosis.
- The observed cytopathological damage provides a cellular basis for reduced insect longevity and fecundity.
- Understanding these interactions is crucial for managing plant diseases transmitted by leafhoppers.
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