首页> 外文期刊>European Journal of Soil Biology >Evidence for the coupling of extraradical mycorrhizal hyphae production to plant C assimilation in Japanese warm-temperate forest of arbuscular mycorrhizal and ectomycorrhizal tree species
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Evidence for the coupling of extraradical mycorrhizal hyphae production to plant C assimilation in Japanese warm-temperate forest of arbuscular mycorrhizal and ectomycorrhizal tree species

机译:刺激性菌根偶联对丛枝菌根和突出菌树种日本温带森林植物C同化植物的证据

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摘要

In temperate and boreal forest, the production of extraradical mycorrhizal hyphae (EMH) is a major pathway for the plant - soil carbon (C) flux. For warm-temperate forest, however, scarcely available field data provide inconclusive evidence for the drivers of EMH production dynamics. In this study, we measured the seasonal variation in EMH production in Japanese warm-temperate Chamaecyparis obtusa (arbuscular mycorrhizal evergreen) and Quercus serrata forest (ectomycorrhizal broad-leaf), and assessed the relationship of EMH production to air temperature, global solar radiation, and soil water content. EMH productions of six consecutive two-month periods were estimated from hyphal lengths (HLs) and hyphal carbon masses (HCs) in 360 hyphal in-growth mesh bags and corrected for non-mycorrhizal HLs and HCs in 72 control bags from root-trenched areas. Seasonal variations in HL and HC productions of EMH were significant in both forest types. HL and HC productions of EMH were significantly related to air temperature which drives plant C assimilation in both forest types. We, thus, present evidence for coupling of EMH production to plant C assimilation in warm-temperate forest, regardless of the dominating mycorrhizal type.
机译:在温带和北方森林中,肌菌菌根(EMH)的生产是植物 - 土壤碳(C)通量的主要途径。然而,对于暖气林,几乎可用的现场数据为EMH生产动态的驱动程序提供了不确定的证据。在这项研究中,我们测量了日本温带Chamaecyparis obtusa(丛枝菌根常绿)和栎肠果植物(EceccoRhizal Broad-Leaf)中的EMH生产中的季节变化,并评估了EMH生产与空气温度,全球太阳辐射的关系,和土壤含水量。连续六个周期的EMH制作估计在360亚酚醛含量网袋中的亚酚长度(HLS)和亚膦碳质量(HCS)估计,并在从根挖区域的72个控制袋中校正非菌根HLS和HCS 。森林类型中,EMH的HL和HC制作的季节变异在显着。 EMH的HL和HC制作与空气温度显着相关,所述气温驱动森林类型的植物C同化。因此,我们提出了EMH生产偶联对植物C同化的综合证据,无论主导的菌根类型如何。

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