{"id":{"repo_id":"abertay","oai_identifier":"oai:rke.abertay.ac.uk:studenttheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8"},"canonical_url":"https://search.dev.ndltd.org/etd/abertay/oai:rke.abertay.ac.uk:studenttheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8","repository":{"repo_id":"abertay","name":"Abertay University","base_url":"https://rke.abertay.ac.uk/ws/oai"},"display":{"title":"Biological control of internal decay in creosoted distribution poles","abstract":"The use of biological agents both in the form of the pure cultures of <i>Trichoderms plysporul</i>, <i>T. harzianum</i> and <i>Scytalidium</i> FY strain and a commercial product in which all three are included (Binab FYT pellets) to control <i>Lentinus lepideus</i> both in the laboratory and in the field was investigated. <br/><br/>Autecological studies with the three control organisms show that <i>L. lepideus </i>(identified as a primary decay fungus in creosoted poles from the literature and from studies of poles in Scotland) was overgrown and lysed or lysed from a distance by all control fungi when grown on the same agar plates. Other organisms resident in poles produced either a similar result or produced a stalemate/neutral reaction.<br/><br/>When grown in situation which prohibited soluble metabolite contact, or when control organisms in wood blocks were killed and the blocks thoroughly leached, volatiles produced by <i>Trichoderma </i>spp. caused lysis of <i>L. lepideus </i>and residues of both <i>Trichoderma </i>spp. and <i>Scytalidium </i>FY strain were shown to inhibit growth and decay by <i>L. lepideus. </i>Both <i>Trichoderma </i>spp. and <i>Scytalidium </i>FY strain produced water soluble antibiotics effective against <i>L. lepideus. </i>Volatiles of <i>Trichoderma </i>were shown to be more effective against <i>L. lepideus </i>and<i> Fomes annosus </i>but not against other decay fungi which were tested.<br/><br/>Field studies undertaken over a three year period on more than 200 poles showed that <i>Trichoderma </i>was easily established in poles and that this was not limited by pole moisture contents. Nutrient transfer was not found to take place from soils to poles. Pole age, decay status and presence of previous remedial treatment did not seem to prohibit <i>Trichoderma </i>establishment which was shown to be present in over 90% of poles inoculated with FYT pellets. <i>Scytalidium </i>was never isolated from either pellets or poles.<br/><br/>Extensive sectioning of poles showed that the spread of <i>Trichoderma </i> within poles was variable and was linked to the quantity o other organisms resident in the poles. The incidence of <i>L. lepideus </i> in poles was reduced by 45% by either prior or subsequent inoculation with Binab FYT pellets.<br/><br/>Microbiological and storage conditions of the commercial product were monitored during the project and the potential use of biological control as one other form of preservation which may protect creosoted wood in service as distribution poles is discussed.","abstract_html":"The use of biological agents both in the form of the pure cultures of &lt;i&gt;Trichoderms plysporul&lt;/i&gt;, &lt;i&gt;T. harzianum&lt;/i&gt; and &lt;i&gt;Scytalidium&lt;/i&gt; FY strain and a commercial product in which all three are included (Binab FYT pellets) to control &lt;i&gt;Lentinus lepideus&lt;/i&gt; both in the laboratory and in the field was investigated. &lt;br/&gt;&lt;br/&gt;Autecological studies with the three control organisms show that &lt;i&gt;L. lepideus &lt;/i&gt;(identified as a primary decay fungus in creosoted poles from the literature and from studies of poles in Scotland) was overgrown and lysed or lysed from a distance by all control fungi when grown on the same agar plates. Other organisms resident in poles produced either a similar result or produced a stalemate/neutral reaction.&lt;br/&gt;&lt;br/&gt;When grown in situation which prohibited soluble metabolite contact, or when control organisms in wood blocks were killed and the blocks thoroughly leached, volatiles produced by &lt;i&gt;Trichoderma &lt;/i&gt;spp. caused lysis of &lt;i&gt;L. lepideus &lt;/i&gt;and residues of both &lt;i&gt;Trichoderma &lt;/i&gt;spp. and &lt;i&gt;Scytalidium &lt;/i&gt;FY strain were shown to inhibit growth and decay by &lt;i&gt;L. lepideus. &lt;/i&gt;Both &lt;i&gt;Trichoderma &lt;/i&gt;spp. and &lt;i&gt;Scytalidium &lt;/i&gt;FY strain produced water soluble antibiotics effective against &lt;i&gt;L. lepideus. &lt;/i&gt;Volatiles of &lt;i&gt;Trichoderma &lt;/i&gt;were shown to be more effective against &lt;i&gt;L. lepideus &lt;/i&gt;and&lt;i&gt; Fomes annosus &lt;/i&gt;but not against other decay fungi which were tested.&lt;br/&gt;&lt;br/&gt;Field studies undertaken over a three year period on more than 200 poles showed that &lt;i&gt;Trichoderma &lt;/i&gt;was easily established in poles and that this was not limited by pole moisture contents. Nutrient transfer was not found to take place from soils to poles. Pole age, decay status and presence of previous remedial treatment did not seem to prohibit &lt;i&gt;Trichoderma &lt;/i&gt;establishment which was shown to be present in over 90% of poles inoculated with FYT pellets. &lt;i&gt;Scytalidium &lt;/i&gt;was never isolated from either pellets or poles.&lt;br/&gt;&lt;br/&gt;Extensive sectioning of poles showed that the spread of &lt;i&gt;Trichoderma &lt;/i&gt; within poles was variable and was linked to the quantity o other organisms resident in the poles. The incidence of &lt;i&gt;L. lepideus &lt;/i&gt; in poles was reduced by 45% by either prior or subsequent inoculation with Binab FYT pellets.&lt;br/&gt;&lt;br/&gt;Microbiological and storage conditions of the commercial product were monitored during the project and the potential use of biological control as one other form of preservation which may protect creosoted wood in service as distribution poles is discussed.","abstract_has_math":false,"creators":["Bruce, Alan"],"institution":null,"degree_name":"PhD","degree_level":"Doctoral Thesis","degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":[],"committee_chairs":[],"committee_members":[],"year":1983,"date_issued":"1983-9","date_published":"1983-9","updated_at":"2026-07-24T00:50:23Z","subjects":[],"languages":["eng"],"rights":[],"rights_urls":[],"identifier_entries":[{"key":"dc:identifier","label":"Identifier","values":["oai:rke.abertay.ac.uk:studenttheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8"],"render_values":[{"text":"oai:rke.abertay.ac.uk:studenttheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8","href":null,"code":true}]}]},"links":{"outbound_url":"https://rke.abertay.ac.uk/en/studentTheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:creator","label":"Author","values":["Bruce, Alan"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date","label":"Dc Date","values":["1983-9"]},{"key":"dc:date.issued","label":"Date","values":["1983-9"]},{"key":"dc:publisher.department","label":"Dc Publisher Department","values":["Dundee Institute of Technology"]},{"key":"dc:relation.isreferencedby","label":"Dc Relation Isreferencedby","values":["https://rke.abertay.ac.uk/en/studentTheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8"]},{"key":"dc:type","label":"Dc Type","values":["Thesis"]},{"key":"dc:type.qualificationlevel","label":"Dc Type Qualificationlevel","values":["Doctoral Thesis"]},{"key":"dc:type.qualificationname","label":"Dc Type Qualificationname","values":["PhD"]}]},{"id":"language_rights","label":"Language and Rights","entries":[{"key":"dc:language","label":"Dc Language","values":["eng"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["oai:rke.abertay.ac.uk:studenttheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8","https://rke.abertay.ac.uk/en/studentTheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8"]},{"key":"dc:identifier.uri","label":"Identifier URI","values":["https://rke.abertay.ac.uk/files/15704531/Bruce_1983_Biological_control_of_internal_decay_PhD.pdf"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["The use of biological agents both in the form of the pure cultures of <i>Trichoderms plysporul</i>, <i>T. harzianum</i> and <i>Scytalidium</i> FY strain and a commercial product in which all three are included (Binab FYT pellets) to control <i>Lentinus lepideus</i> both in the laboratory and in the field was investigated. <br/><br/>Autecological studies with the three control organisms show that <i>L. lepideus </i>(identified as a primary decay fungus in creosoted poles from the literature and from studies of poles in Scotland) was overgrown and lysed or lysed from a distance by all control fungi when grown on the same agar plates. Other organisms resident in poles produced either a similar result or produced a stalemate/neutral reaction.<br/><br/>When grown in situation which prohibited soluble metabolite contact, or when control organisms in wood blocks were killed and the blocks thoroughly leached, volatiles produced by <i>Trichoderma </i>spp. caused lysis of <i>L. lepideus </i>and residues of both <i>Trichoderma </i>spp. and <i>Scytalidium </i>FY strain were shown to inhibit growth and decay by <i>L. lepideus. </i>Both <i>Trichoderma </i>spp. and <i>Scytalidium </i>FY strain produced water soluble antibiotics effective against <i>L. lepideus. </i>Volatiles of <i>Trichoderma </i>were shown to be more effective against <i>L. lepideus </i>and<i> Fomes annosus </i>but not against other decay fungi which were tested.<br/><br/>Field studies undertaken over a three year period on more than 200 poles showed that <i>Trichoderma </i>was easily established in poles and that this was not limited by pole moisture contents. Nutrient transfer was not found to take place from soils to poles. Pole age, decay status and presence of previous remedial treatment did not seem to prohibit <i>Trichoderma </i>establishment which was shown to be present in over 90% of poles inoculated with FYT pellets. <i>Scytalidium </i>was never isolated from either pellets or poles.<br/><br/>Extensive sectioning of poles showed that the spread of <i>Trichoderma </i> within poles was variable and was linked to the quantity o other organisms resident in the poles. The incidence of <i>L. lepideus </i> in poles was reduced by 45% by either prior or subsequent inoculation with Binab FYT pellets.<br/><br/>Microbiological and storage conditions of the commercial product were monitored during the project and the potential use of biological control as one other form of preservation which may protect creosoted wood in service as distribution poles is discussed."]},{"key":"dc:title","label":"Title","values":["Biological control of internal decay in creosoted distribution poles"]}]}],"canonical_facts":{"dc:creator":["Bruce, Alan"],"dc:date":["1983-9"],"dc:date.issued":["1983-9"],"dc:description.abstract":["The use of biological agents both in the form of the pure cultures of <i>Trichoderms plysporul</i>, <i>T. harzianum</i> and <i>Scytalidium</i> FY strain and a commercial product in which all three are included (Binab FYT pellets) to control <i>Lentinus lepideus</i> both in the laboratory and in the field was investigated. <br/><br/>Autecological studies with the three control organisms show that <i>L. lepideus </i>(identified as a primary decay fungus in creosoted poles from the literature and from studies of poles in Scotland) was overgrown and lysed or lysed from a distance by all control fungi when grown on the same agar plates. Other organisms resident in poles produced either a similar result or produced a stalemate/neutral reaction.<br/><br/>When grown in situation which prohibited soluble metabolite contact, or when control organisms in wood blocks were killed and the blocks thoroughly leached, volatiles produced by <i>Trichoderma </i>spp. caused lysis of <i>L. lepideus </i>and residues of both <i>Trichoderma </i>spp. and <i>Scytalidium </i>FY strain were shown to inhibit growth and decay by <i>L. lepideus. </i>Both <i>Trichoderma </i>spp. and <i>Scytalidium </i>FY strain produced water soluble antibiotics effective against <i>L. lepideus. </i>Volatiles of <i>Trichoderma </i>were shown to be more effective against <i>L. lepideus </i>and<i> Fomes annosus </i>but not against other decay fungi which were tested.<br/><br/>Field studies undertaken over a three year period on more than 200 poles showed that <i>Trichoderma </i>was easily established in poles and that this was not limited by pole moisture contents. Nutrient transfer was not found to take place from soils to poles. Pole age, decay status and presence of previous remedial treatment did not seem to prohibit <i>Trichoderma </i>establishment which was shown to be present in over 90% of poles inoculated with FYT pellets. <i>Scytalidium </i>was never isolated from either pellets or poles.<br/><br/>Extensive sectioning of poles showed that the spread of <i>Trichoderma </i> within poles was variable and was linked to the quantity o other organisms resident in the poles. The incidence of <i>L. lepideus </i> in poles was reduced by 45% by either prior or subsequent inoculation with Binab FYT pellets.<br/><br/>Microbiological and storage conditions of the commercial product were monitored during the project and the potential use of biological control as one other form of preservation which may protect creosoted wood in service as distribution poles is discussed."],"dc:identifier":["oai:rke.abertay.ac.uk:studenttheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8","https://rke.abertay.ac.uk/en/studentTheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8"],"dc:identifier.uri":["https://rke.abertay.ac.uk/files/15704531/Bruce_1983_Biological_control_of_internal_decay_PhD.pdf"],"dc:language":["eng"],"dc:publisher.department":["Dundee Institute of Technology"],"dc:relation.isreferencedby":["https://rke.abertay.ac.uk/en/studentTheses/54e57181-e3b5-4d3f-bfa1-689bdae978f8"],"dc:title":["Biological control of internal decay in creosoted distribution poles"],"dc:type":["Thesis"],"dc:type.qualificationlevel":["Doctoral Thesis"],"dc:type.qualificationname":["PhD"]},"updated_at":"2026-07-24T00:50:23Z"}