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Integrated control of wood destroying basidiomycetes combining Cu-based wood preservatives and Trichoderma spp.

机译:结合控制基于木材的防腐剂铜基木材防腐剂和木霉属。

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摘要

The production of new generation of wood preservatives (without addition of a co-biocide) in combination with an exchange of wood poles on identical sites with high fungal inoculum, has resulted in an increase of premature failures of wood utility poles in the last decades. Wood destroying basidiomycetes inhabiting sites where poles have been installed, have developed resistance against wood preservatives. The objective of the in vitro studies was to identify a Trichoderma spp. with a highly antagonistic potential against wood destroying basidiomycetes that is capable of colonizing Cu-rich environments. For this purpose, the activity of five Trichoderma spp. on Cu-rich medium was evaluated according to its growth and sporulation rates. The influence of the selected Trichoderma spp. on wood colonization and degradation by five wood destroying basidiomycetes was quantitatively analyzed by means of dry weight loss of wood specimens. Furthermore, the preventative effect of the selected Trichoderma spp. in combination with four Cu-based preservatives was also examined by mass loss and histological changes in the wood specimens. Trichoderma harzianum (T-720) was considered the biocontrol agent with higher antagonistic potential to colonize Cu-rich environments (up to 0.1% CuSO4 amended medium). T. harzianum demonstrated significant preventative effect on wood specimens against four wood destroying basidiomycetes. The combined effect of T. harzianum and Cu-based wood preservatives demonstrated that after 9 months incubation with two wood destroying basidiomycetes, wood specimens treated with 3.8 kg m-3 copper-chromium had weight losses between 55–65%, whereas containers previously treated with T. harzianum had significantly lower weight losses (0–25%). Histological studies on one of the wood destroying basidiomycetes revealed typical decomposition of wood cells by brown-rot fungi in Cu-impregnated samples, that were notably absent in wood specimens previously exposed to T. harzianum. It is concluded that carefully selected Trichoderma isolates can be used for integrated wood protection against a range of wood destroying basidiomycetes and may have potential for integrated wood protection in the field.
机译:在过去的几十年中,新一代木材防腐剂的生产(不添加杀菌剂)与在高真菌接种量的相同地点更换木杆相结合,导致了木实用杆的过早失效。破坏木材的担子菌栖息在已安装杆子的地方,对木材防腐剂产生了抵抗力。体外研究的目的是鉴定木霉属。具有对木材破坏的担子菌的高度拮抗潜力,能够在富含铜的环境中定殖。为此,有五个木霉属的活性。根据其生长和孢子形成率评估富铜培养基上的铜离子。所选木霉属的影响。通过木材样品的干失重定量分析了五种破坏木材的担子菌对木材定殖和降解的影响。此外,所选木霉属的预防作用。还通过木材样品的质量损失和组​​织学变化检查了与四种铜基防腐剂合用的情况。哈茨木霉(T-720)被认为具有较高的拮抗潜力,可以在富含铜的环境中定殖(最多0.1%的CuSO4改良培养基)。哈茨木霉(T. harzianum)对木材标本显示出明显的预防作用,可预防四种破坏木材的担子菌。哈茨木霉和铜基木材防腐剂的共同作用表明,在与两种破坏木材的担子菌共孵育9个月后,经3.8 kg m -3 铜铬处理的木材标本的重量减轻了55- 65%,而以前用哈茨木霉处理过的容器的重量损失要低得多(0-25%)。对一种破坏木材的担子菌的组织学研究表明,在浸有铜的样品中,褐腐真菌会典型地分解木质细胞,而先前暴露于哈茨木霉的木材样品中则没有这种分解。结论是,精心挑选的木霉分离物可用于针对一系列破坏木材的担子菌进行综合木材保护,并且在野外可能具有综合木材保护的潜力。

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