Paulownia Witches’ Broom Disease: A Comprehensive Review
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Published:2024-04-28
Issue:5
Volume:12
Page:885
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ISSN:2076-2607
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Container-title:Microorganisms
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language:en
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Short-container-title:Microorganisms
Author:
Zhang Yajie12, Qiao Zesen1, Li Jidong13ORCID, Bertaccini Assunta3ORCID
Affiliation:
1. College of Forestry, Henan Agricultural University, Zhengzhou 450000, China 2. Henan Provincial Institute of Scientific and Technical Information, Zhengzhou 450003, China 3. Department of Agriculture and Food Science, Alma Mater Studiorum—University of Bologna, 40127 Bologna, Italy
Abstract
Phytoplasmas are insect-transmitted bacterial pathogens associated with diseases in a wide range of host plants, resulting in significant economic and ecological losses. Perennial deciduous trees in the genus Paulownia are widely planted for wood harvesting and ornamental purposes. Paulownia witches’ broom (PaWB) disease, associated with a 16SrI-D subgroup phytoplasma, is a destructive disease of paulownia in East Asia. The PaWB phytoplasmas are mainly transmitted by insect vectors in the Pentatomidae (stink bugs), Miridae (mirid bugs) and Cicadellidae (leafhoppers) families. Diseased trees show typical symptoms, such as branch and shoot proliferation, which together are referred to as witches’ broom. The phytoplasma presence affects the physiological and anatomical structures of paulownia. Gene expression in paulownia responding to phytoplasma presence have been studied at the transcriptional, post-transcriptional, translational and post-translational levels by high throughput sequencing techniques. A PaWB pathogenic mechanism frame diagram on molecular level is summarized. Studies on the interactions among the phytoplasma, the insect vectors and the plant host, including the mechanisms underlying how paulownia effectors modify processes of gene expression, will lead to a deeper understanding of the pathogenic mechanisms and to the development of efficient control measures.
Funder
Natural Science Foundation of Henan China Scholarship Council
Reference110 articles.
1. Bertaccini, A. (2022). Plants and phytoplasmas: When bacteria modify plants. Plants, 11. 2. Phytoplasma: A plant pathogen that cannot be ignored in agricultural production—Research progress and outlook;Wang;Mol. Plant Pathol.,2024 3. Bertaccini, A., Arocha-Rosete, Y., Contaldo, N., Duduk, B., Fiore, N., Montano, H.G., Kube, M., Kuo, C.-H., Martini, M., and Oshima, K. (2022). Revision of the ‘Candidatus Phytoplasma’ species description guidelines. Int. J. Syst. Evol. Microbiol., 72. 4. Wei, W., and Zhao, Y. (2022). Phytoplasma taxonomy: Nomenclature, classification, and identification. Biology, 11. 5. Dżugan, M., Miłek, M., Grabek-Lejko, D., Hęclik, J., Jacek, B., and Litwińczuk, W. (2021). Antioxidant activity, polyphenolic profiles and antibacterial properties of leaf extract of various Paulownia spp. clones. Agronomy, 11.
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