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Effects of warming on ectomycorrhizal colonization and nitrogen nutrition of Picea asperata seedlings grown in two contrasting forest ecosystems

机译:变暖对两种相反森林生态系统中云杉云杉幼苗外生菌根定殖和氮营养的影响

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摘要

Ectomycorrhiza (ECM) plays an important role in plant nitrogen (N) nutrition and regulates plant responded to climate warming. We conducted a field experiment in a natural forest and a plantation in the eastern Tibetan Plateau to estimate the warming effects of open-top chambers (OTC) on ECM and N nutrition of Picea asperata seedlings. Four-year warming significantly decreased ECM colonization, ECM fungal biomass, fine root vigor, and the N concentration of leaf, stem and coarse root, but significantly increased fine root N concentration and N content of leaf, stem, fine root and whole plant in natural forest. Contrarily, warming induced no obvious change in most of these parameters in plantation. Moreover, warming decreased rhizospheric soil inorganic N content in both forests. Our results showed that four-year warming was not beneficial for ECM colonization of P. asperata seedlings in the two forests, and the seedlings in natural forest were more sensitive and flexible to experimental warming than in plantation. The changes of ECM colonization and fine root biomass for effective N uptake would be good for plant growth and remit N leaching under future warming in natural forest.
机译:外生菌根(ECM)在植物氮(N)营养中起重要作用,并调节植物对气候变暖的响应。我们在青藏高原东部的天然林和人工林中进行了田间试验,以评估开放式室(OTC)对云杉云杉幼苗ECM和N营养的增温作用。四年变暖显着降低了ECM的定居,ECM真菌生物量,细根活力以及叶片,茎和粗根的氮含量,但显着提高了细根氮的含量和叶片,茎,细根和整株植物的氮含量。天然森林。相反,变暖在人工林中的大多数这些参数上没有引起明显变化。此外,变暖降低了两种森林的根际土壤无机氮含量。我们的研究结果表明,四年的升温不利于两种森林中曲霉幼苗ECM的定殖,并且天然林的幼苗比人工林对实验升温更敏感和更灵活。为了有效吸收氮,ECM定植和细根生物量的变化将有利于植物生长,并在未来森林变暖的情况下缓解氮的淋溶。

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