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Acclimation to temperature and temperature sensitivity of metabolism by ectomycorrhizal fungi

机译:外生菌根真菌对温度和代谢温度敏感性的适应

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Ectomycorrhizal (ECM) fungi contribute significantly to ecosystem respiration, but little research has addressed the effect of temperature on ECM fungal respiration. Some plants have the ability to acclimate to temperature such that long-term exposure to warmer conditions slows respiration at a given measurement temperature and long-term exposure to cooler conditions increases respiration at a given measurement temperature. We examined acclimation to temperature and temperature sensitivity (Q(10)) of respiration by ECM fungi by incubating them for a week at one of three temperatures and measuring respiration over a range of temperatures. Among the 12 ECM fungal isolates that were tested, Suillus intermedius, Cenococcum geophilum, and Lactarius cf. pubescens exhibited significant acclimation to temperature, exhibiting an average reduction in respiration of 20-45% when incubated at 23 degrees C compared with when incubated at 11 or 17 degrees C. The isolates differed significantly in their Q(10) values, which ranged from 1.67 to 2.56. We also found that half of the isolates significantly increased Q(10) with an increase in incubator temperature by an average of 15%. We conclude that substantial variation exists among ECM fungal isolates in their ability to acclimate to temperature and in their sensitivity to temperature. As soil temperatures increase, ECM fungi that acclimate may require less carbon from their host plants than fungi that do not acclimate. The ability of some ECM fungi to acclimate may partially ameliorate the anticipated positive feedback between soil respiration and temperature.
机译:外生菌根(ECM)真菌对生态系统呼吸有重要贡献,但很少有研究涉及温度对ECM真菌呼吸的影响。一些植物具有适应温度的能力,使得长期暴露于较热条件下会降低给定测量温度下的呼吸,而长期暴露于较冷条件下会增加给定测量温度下的呼吸。我们通过在三个温度之一中将它们孵育一周并在一定温度范围内测量呼吸,来检查ECM真菌对呼吸的温度和温度敏感性(Q(10))的适应性。在测试的12种ECM真菌分离株中,中间肠球菌(Suillus intermedius),嗜水球菌(Cenococcum geophilum)和乳杆菌(Lactarius cf.)。 pubescens表现出对温度的显着适应,与在11或17摄氏度下温育相比,在23摄氏度下温育表现出平均呼吸减少20-45%。分离物的Q(10)值差异很大。 1.67至2.56。我们还发现,随着培养箱温度的平均升高,分离株的一半显着提高了Q(10),平均提高了15%。我们得出的结论是,ECM真菌分离株在适应温度的能力和对温度的敏感性方面存在很大差异。随着土壤温度的升高,适应环境的ECM真菌比不适应环境的真菌从宿主植物中需要的碳更少。一些ECM真菌的适应能力可能会部分改善土壤呼吸和温度之间预期的正反馈。

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