Observations on early fungal infections with relevance for replant disease in fine roots of the rose rootstock Rosa corymbifera 'Laxa'

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OriginalspracheEnglisch
Aufsatznummer22410
FachzeitschriftScientific Reports
Jahrgang10
Ausgabenummer1
PublikationsstatusVeröffentlicht - 29 Dez. 2020

Abstract

Replant disease is a worldwide phenomenon affecting various woody plant genera and species, especially within the Rosaceae. Compared to decades of intensive studies regarding replant disease of apple (ARD), the replant disease of roses (RRD) has hardly been investigated. The etiology of RRD is also still unclear and a remedy desperately needed. In greenhouse pot trials with seedlings of the RRD-sensitive rootstock Rosa corymbifera ‘Laxa’ cultured in replant disease affected soils from two different locations, early RRD symptom development was studied in fine roots. In microscopic analyses we found similarities to ARD symptoms with regards to structural damages, impairment in the root hair status, and necroses and blackening in the cortex tissue. Examinations of both whole mounts and thin sections of fine root segments revealed frequent conspicuous fungal infections in association with the cellular disorders. Particularly striking were fungal intracellular structures with pathogenic characteristics that are described for the first time. Isolated fungi from these tissue areas were identified by means of ITS primers, and many of them were members of the Nectriaceae. In a next step, 35 of these isolates were subjected to a multi-locus sequence analysis and the results revealed that several genera and species were involved in the development of RRD within a single rose plant. Inoculations with selected single isolates (Rugonectria rugulosa and Ilyonectria robusta) in a Perlite assay confirmed their pathogenic relationship to early necrotic host plant reactions, and symptoms were similar to those exhibited in ARD.

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Observations on early fungal infections with relevance for replant disease in fine roots of the rose rootstock Rosa corymbifera 'Laxa'. / Grunewaldt-Stöcker, Gisela; Popp, C.; Baumann, A. et al.
in: Scientific Reports, Jahrgang 10, Nr. 1, 22410, 29.12.2020.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Grunewaldt-Stöcker G, Popp C, Baumann A, Fricke S, Menssen M, Winkelmann T et al. Observations on early fungal infections with relevance for replant disease in fine roots of the rose rootstock Rosa corymbifera 'Laxa'. Scientific Reports. 2020 Dez 29;10(1):22410. doi: 10.1038/s41598-020-79878-8, 10.1038/s41598-021-95182-5
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title = "Observations on early fungal infections with relevance for replant disease in fine roots of the rose rootstock Rosa corymbifera 'Laxa'",
abstract = "Replant disease is a worldwide phenomenon affecting various woody plant genera and species, especially within the Rosaceae. Compared to decades of intensive studies regarding replant disease of apple (ARD), the replant disease of roses (RRD) has hardly been investigated. The etiology of RRD is also still unclear and a remedy desperately needed. In greenhouse pot trials with seedlings of the RRD-sensitive rootstock Rosa corymbifera {\textquoteleft}Laxa{\textquoteright} cultured in replant disease affected soils from two different locations, early RRD symptom development was studied in fine roots. In microscopic analyses we found similarities to ARD symptoms with regards to structural damages, impairment in the root hair status, and necroses and blackening in the cortex tissue. Examinations of both whole mounts and thin sections of fine root segments revealed frequent conspicuous fungal infections in association with the cellular disorders. Particularly striking were fungal intracellular structures with pathogenic characteristics that are described for the first time. Isolated fungi from these tissue areas were identified by means of ITS primers, and many of them were members of the Nectriaceae. In a next step, 35 of these isolates were subjected to a multi-locus sequence analysis and the results revealed that several genera and species were involved in the development of RRD within a single rose plant. Inoculations with selected single isolates (Rugonectria rugulosa and Ilyonectria robusta) in a Perlite assay confirmed their pathogenic relationship to early necrotic host plant reactions, and symptoms were similar to those exhibited in ARD.",
author = "Gisela Grunewaldt-St{\"o}cker and C. Popp and A. Baumann and S. Fricke and Max Menssen and Traud Winkelmann and Edgar Maiss",
note = "Funding Information: The Mathias-Tantau-Stiftung, Uetersen, is appreciated for the financial support. Our thanks go to Mrs. Ewa Schneider for providing in vitro propagated and acclimatised M26 plants, and to Mrs. Birgit Milde for technical support with PCR amplifications and sequencing (members of IGPS Leibniz Universit{\"a}t Hannover). We also thank Dr. Christine Dieckhoff for polishing the written English of this manuscript. Publisher Copyright: {\textcopyright} 2020, The Author(s). Copyright: Copyright 2020 Elsevier B.V., All rights reserved.",
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AU - Grunewaldt-Stöcker, Gisela

AU - Popp, C.

AU - Baumann, A.

AU - Fricke, S.

AU - Menssen, Max

AU - Winkelmann, Traud

AU - Maiss, Edgar

N1 - Funding Information: The Mathias-Tantau-Stiftung, Uetersen, is appreciated for the financial support. Our thanks go to Mrs. Ewa Schneider for providing in vitro propagated and acclimatised M26 plants, and to Mrs. Birgit Milde for technical support with PCR amplifications and sequencing (members of IGPS Leibniz Universität Hannover). We also thank Dr. Christine Dieckhoff for polishing the written English of this manuscript. Publisher Copyright: © 2020, The Author(s). Copyright: Copyright 2020 Elsevier B.V., All rights reserved.

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Y1 - 2020/12/29

N2 - Replant disease is a worldwide phenomenon affecting various woody plant genera and species, especially within the Rosaceae. Compared to decades of intensive studies regarding replant disease of apple (ARD), the replant disease of roses (RRD) has hardly been investigated. The etiology of RRD is also still unclear and a remedy desperately needed. In greenhouse pot trials with seedlings of the RRD-sensitive rootstock Rosa corymbifera ‘Laxa’ cultured in replant disease affected soils from two different locations, early RRD symptom development was studied in fine roots. In microscopic analyses we found similarities to ARD symptoms with regards to structural damages, impairment in the root hair status, and necroses and blackening in the cortex tissue. Examinations of both whole mounts and thin sections of fine root segments revealed frequent conspicuous fungal infections in association with the cellular disorders. Particularly striking were fungal intracellular structures with pathogenic characteristics that are described for the first time. Isolated fungi from these tissue areas were identified by means of ITS primers, and many of them were members of the Nectriaceae. In a next step, 35 of these isolates were subjected to a multi-locus sequence analysis and the results revealed that several genera and species were involved in the development of RRD within a single rose plant. Inoculations with selected single isolates (Rugonectria rugulosa and Ilyonectria robusta) in a Perlite assay confirmed their pathogenic relationship to early necrotic host plant reactions, and symptoms were similar to those exhibited in ARD.

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