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首页> 外文期刊>International Biodeterioration & Biodegradation >Copper tolerance of brown-rot fungi: time course of oxalic acid production
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Copper tolerance of brown-rot fungi: time course of oxalic acid production

机译:褐腐真菌的铜耐受性:草酸产生的时间过程

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The increase in the use of non-arsenical copper-based wood preservatives in response to environmental concerns has been accompanied by interest in copper-tolerant decay fungi. Oxalic acid production by brown-rot fungi has been proposed as one mechanism of copper tolerance. Fifteen brown-rot fungi representing the genera Postia, Wolfiporia, Meruliporia, Gloeophyllum, Laetiporus, Coniophora, Antrodia, Serpula, and Tyromyces were evaluated for oxalic acid production bi-weekly in southern yellow pine (SYP) blocks treated with 1.2% ammoniacal copper citrate (CC). Eleven fungi were designated copper-tolerant based upon weight loss in CC-treated blocks. After 2 weeks, these fungi produced 2-17 times more oxalic acid in CC-treated blocks than in untreated blocks. After 10 weeks, weight loss ranged from 32% to 57% in CC-treated SYP. Four fungi were copper sensitive, producing low levels of oxalic acid and minimal weight loss in CC-treated blocks. Rapid induction of oxalic acid appeared to correlate closely with copper tolerance. We conclude that the brown-rot fungi tested that were able to exceed and maintain an oxalic acid concentration of greater than or equal to 600 mumol/g effectively decayed SYP treated with CC.
机译:随着对环境的关注,非砷铜基木材防腐剂的使用增加,同时引起了对耐铜腐烂真菌的关注。已经提出通过褐腐真菌生产草酸作为铜耐受性的机制之一。每周两次评估了用1.2%氨水柠檬酸铜处理的南部黄松(SYP)的15种褐腐真菌,分别代表Postia,Wolfiporia,Meruliporia,Gloeophyllum,Laetiporus,Coniophora,Antrodia,Serpula和Tyromyces属。 (CC)。根据CC处理块的失重,将11种真菌指定为耐铜的。 2周后,这些真菌在CC处理的块中产生的草酸比未处理的块多2-17倍。 10周后,经CC处理的SYP的体重减轻范围为32%至57%。四种真菌对铜敏感,在CC处理的块中产生的草酸含量低且重量损失最小。草酸的快速诱导似乎与铜的耐受性密切相关。我们得出结论,所测试的褐腐真菌能够超过并维持大于或等于600μmol/ g的草酸浓度,从而有效地减弱了CC处理的SYP。

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