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Growth Response of Drought-Stressed Pinus sylvestris Seedlings to Single- and Multi-Species Inoculation with Ectomycorrhizal Fungi

机译:干旱胁迫的樟子松幼苗对单菌种和多菌种接种菌根真菌的生长响应

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摘要

Many trees species form symbiotic associations with ectomycorrhizal (ECM) fungi, which improve nutrient and water acquisition of their host. Until now it is unclear whether the species richness of ECM fungi is beneficial for tree seedling performance, be it during moist conditions or drought. We performed a pot experiment using Pinus sylvestris seedlings inoculated with four selected ECM fungi (Cenococcum geophilum, Paxillus involutus, Rhizopogon roseolus and Suillus granulatus) to investigate (i) whether these four ECM fungi, in monoculture or in species mixtures, affect growth of P. sylvestris seedlings, and (ii) whether this effect can be attributed to species number per se or to species identity. Two different watering regimes (moist vs. dry) were applied to examine the context-dependency of the results. Additionally, we assessed the activity of eight extracellular enzymes in the root tips. Shoot growth was enhanced in the presence of S. granulatus, but not by any other ECM fungal species. The positive effect of S. granulatus on shoot growth was more pronounced under moist (threefold increase) than under dry conditions (twofold increase), indicating that the investigated ECM fungi did not provide additional support during drought stress. The activity of secreted extracellular enzymes was higher in S. granulatus than in any other species. In conclusion, our findings suggest that ECM fungal species composition may affect seedling performance in terms of aboveground biomass.
机译:许多树木与外生菌根(ECM)真菌形成共生关系,从而改善了寄主的养分和水分吸收。到目前为止,尚不清楚ECM真菌的物种丰富性是否有利于树木幼苗的生长,无论是在潮湿条件下还是干旱期间。我们进行了一个盆栽实验,使用樟子松幼苗接种了四种选定的ECM真菌(Cenococcum geophilum,Paxillus involutus,Rhizopogon roseolus和Suillus granulatus),以调查(i)这四种ECM真菌在单一培养还是在物种混合物中是否影响P樟子松幼苗,以及(ii)这种影响是否可以归因于物种本身的数量或物种的身份。两种不同的浇水方式(潮湿与干燥)被用来检验结果的背景依赖性。此外,我们评估了根尖中八种细胞外酶的活性。在有S. granulatus的情况下,芽的生长得到了增强,但没有其他任何ECM真菌物种的出现。在潮湿条件下(增长三倍),沙门氏菌对芽生长的积极影响要比在干燥条件下(增长两倍)更为明显,这表明所研究的ECM真菌在干旱胁迫下没有提供额外的支持。沙门氏菌中分泌的细胞外酶的活性高于任何其他物种。总之,我们的发现表明,ECM真菌物种组成可能会影响地上生物量方面的幼苗性能。

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