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A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection

In Japan, Japanese cedar pollen dispersal is one of the major causes of pollinosis. Sydowia japonica is an ascomycetous fungus that grows exclusively on the male strobili of Japanese cedar, suggesting a possible mechanism for controlling pollen dispersal. To evaluate this possibility, eleven isolate...

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Autores principales: Hirooka, Yuuri, Akiba, Mitsuteru, Ichihara, Yu, Masuya, Hayato, Takahata, Yoshihiro, Suda, Tomohisa, Yada, Yutaka, Yamamoto, Shigehiro, Kubono, Takanori
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3647035/
https://www.ncbi.nlm.nih.gov/pubmed/23667533
http://dx.doi.org/10.1371/journal.pone.0062875
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author Hirooka, Yuuri
Akiba, Mitsuteru
Ichihara, Yu
Masuya, Hayato
Takahata, Yoshihiro
Suda, Tomohisa
Yada, Yutaka
Yamamoto, Shigehiro
Kubono, Takanori
author_facet Hirooka, Yuuri
Akiba, Mitsuteru
Ichihara, Yu
Masuya, Hayato
Takahata, Yoshihiro
Suda, Tomohisa
Yada, Yutaka
Yamamoto, Shigehiro
Kubono, Takanori
author_sort Hirooka, Yuuri
collection PubMed
description In Japan, Japanese cedar pollen dispersal is one of the major causes of pollinosis. Sydowia japonica is an ascomycetous fungus that grows exclusively on the male strobili of Japanese cedar, suggesting a possible mechanism for controlling pollen dispersal. To evaluate this possibility, eleven isolates of S. japonica were collected from around Japan and used as an inoculum to male strobili of Japanese cedar. The treatment demonstrated that the fungus infected only the pollen and prevented pollen dispersal. The fungus did not cause any additional symptoms to other parts of Japanese cedar, such as needles, stems, and buds. All S. japonica isolates collected around Japan could serve to control pollen dispersal. Periodic observation of the fungal pathogenesis with stereomicroscope and scanning electron microscope showed that hyphal fragments and conidia of S. japonica germinated on the surface of male strobili, and the germ tube entered pollen sacs through opening microsporophylls. Within the pollen sacs, the hyphae penetrated pollen gradually, such that all pollen was infected by the fungus by approximately one month before the pollen dispersal season. The infected pollen was destroyed due to the fungal infection and was never released. Our data suggests a novel approach of preventing pollen dispersal using pollen-specific fungal infection.
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spelling pubmed-36470352013-05-10 A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection Hirooka, Yuuri Akiba, Mitsuteru Ichihara, Yu Masuya, Hayato Takahata, Yoshihiro Suda, Tomohisa Yada, Yutaka Yamamoto, Shigehiro Kubono, Takanori PLoS One Research Article In Japan, Japanese cedar pollen dispersal is one of the major causes of pollinosis. Sydowia japonica is an ascomycetous fungus that grows exclusively on the male strobili of Japanese cedar, suggesting a possible mechanism for controlling pollen dispersal. To evaluate this possibility, eleven isolates of S. japonica were collected from around Japan and used as an inoculum to male strobili of Japanese cedar. The treatment demonstrated that the fungus infected only the pollen and prevented pollen dispersal. The fungus did not cause any additional symptoms to other parts of Japanese cedar, such as needles, stems, and buds. All S. japonica isolates collected around Japan could serve to control pollen dispersal. Periodic observation of the fungal pathogenesis with stereomicroscope and scanning electron microscope showed that hyphal fragments and conidia of S. japonica germinated on the surface of male strobili, and the germ tube entered pollen sacs through opening microsporophylls. Within the pollen sacs, the hyphae penetrated pollen gradually, such that all pollen was infected by the fungus by approximately one month before the pollen dispersal season. The infected pollen was destroyed due to the fungal infection and was never released. Our data suggests a novel approach of preventing pollen dispersal using pollen-specific fungal infection. Public Library of Science 2013-05-07 /pmc/articles/PMC3647035/ /pubmed/23667533 http://dx.doi.org/10.1371/journal.pone.0062875 Text en © 2013 Hirooka et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hirooka, Yuuri
Akiba, Mitsuteru
Ichihara, Yu
Masuya, Hayato
Takahata, Yoshihiro
Suda, Tomohisa
Yada, Yutaka
Yamamoto, Shigehiro
Kubono, Takanori
A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection
title A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection
title_full A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection
title_fullStr A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection
title_full_unstemmed A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection
title_short A Novel Approach of Preventing Japanese Cedar Pollen Dispersal That Is the Cause of Japanese Cedar Pollinosis (JCP) Using Pollen-Specific Fungal Infection
title_sort novel approach of preventing japanese cedar pollen dispersal that is the cause of japanese cedar pollinosis (jcp) using pollen-specific fungal infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3647035/
https://www.ncbi.nlm.nih.gov/pubmed/23667533
http://dx.doi.org/10.1371/journal.pone.0062875
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