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首页> 外文期刊>Journal of Chemical Ecology >Selected Ectomycorrhizal Fungi of Black Spruce (Picea mariana) can Detoxify Phenolic Compounds of Kalmia angustifolia
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Selected Ectomycorrhizal Fungi of Black Spruce (Picea mariana) can Detoxify Phenolic Compounds of Kalmia angustifolia

机译:黑云杉(Picea mariana)的外生菌根真菌可解毒卡氏藻中的酚类化合物。

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Allelopathy has been implicated as a factor contributing toward failure of black spruce (Picea mariana) regeneration in Kalmia angustifolia-dominated sites in eastern Canada. Several phenolic acids of Kalmia origin inhibit primary root growth of black spruce. We tested the hypothesis that some well-adapted conifer ectomycorrhizae can degrade and detoxify water-soluble phenolic compounds produced by Kalmia and use the degraded products as a carbon source to stimulate growth. We found that hyphal growth of Paxillus involutus, a common ectomycorrhizal fungus of black spruce, was stimulated by water leachates of Kalmia leaf and litter. An equimolar mixture of three phenolic acids (ferulic, o-coumaric, and o-hydroxyphenylacetic acid), commonly found in Kalmia, had no negative effects on fungal growth at 1 mM concentration. The o-hydroxyphenylacetic (o-HPA) acid, which is known to be toxic to black spruce, was found to stimulate the growth of Laccaria laccata, L. bicolor, and P. involutus (isolates 211804 and 196554) by 38.4, 29.3, 25.0, and 18.9%, respectively, at 1 mM. Pure ferulic, o-coumaric, and o-HPA acids were degraded by 100, 98, and 79.5%, respectively, within 10 d in the presence of P. involutus 211804. However, L. laccata could not tolerate high concentrations of the Kalmia leachates. P. involutus and L. bicolor used o-HPA acid as a carbon source when cultured in noncarbon nutrient medium. The 0.5 and 0.2 mM o-HPA acid inhibited the root growth of black spruce. However, after solutions had been exposed to a culture of P. involutus, they had no significant effect on seedling growth of black spruce. We concluded that some ectomycorrhizal fungi, such as P. involutus and L. bicolor, are able to degrade Kalmia phenolics. Our findings point to a mechanism by which ectomycorrhizal species can control species interactions in higher plants by changing the rhizosphere chemistry.
机译:在加拿大东部由卡尔米亚(Kalmia angustifolia)为主的地点,化感病被认为是导致黑云杉(Picea mariana)再生失败的因素。 Kalmia起源的几种酚酸会抑制黑云杉的初生根生长。我们检验了以下假设:一些适应性很好的针叶树外生菌根能够降解和解毒由卡尔米亚产生的水溶性酚类化合物,并使用降解产物作为碳源刺激生长。我们发现,卡尔米亚叶和凋落物的水浸出液刺激了黑云杉的一种常见的外生菌根真菌-渐开线Paxillus的菌丝生长。常见于Kalmia中的三种酚酸(阿魏酸,邻香豆酸和邻羟基苯乙酸)的等摩尔混合物对浓度为1 mM的真菌生长没有负面影响。发现对黑云杉有毒的邻羟基苯乙酸(o-HPA)酸可以刺激Laccaria laccata,L。bicolor和P. involutus(分离株211804和196554)的生长,其生长速度分别为38.4、29.3,在1 mM处分别为25.0和18.9%。纯种阿魏酸,邻香豆酸和邻HPA酸在存在渐隐线虫211804的情况下,在10天内分别降解了100%,98%和79.5%。但是,L。laccata不能耐受高浓度的卡尔米亚。渗滤液。在非碳营养培养基中培养时,involutus和L. bicolor使用邻-HPA酸作为碳源。 0.5和0.2 mM的o-HPA酸抑制了黑云杉的根部生长。然而,将溶液暴露于渐隐线虫的培养物中后,它们对黑云杉的幼苗生长没有显着影响。我们得出的结论是,一些外生菌根真菌,例如渐隐线虫和双色乳杆菌能够降解Kalmia酚类。我们的发现指出了一种机制,通过这种机制,外生菌根物种可以通过改变根际化学来控制高等植物中的物种相互作用。

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