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首页> 外文期刊>The New Phytologist >Drought alters carbon fluxes in alpine snowbed ecosystems through contrasting impacts on graminoids and forbs.
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Drought alters carbon fluxes in alpine snowbed ecosystems through contrasting impacts on graminoids and forbs.

机译:干旱通过对粒状和前缘的影响相反,改变了高山雪床生态系统中的碳通量。

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* Climate change is predicted to increase the frequency of drought events in alpine ecosystems with the potential to affect carbon turnover. * We removed intact turfs from a Nardus stricta alpine snowbed community and subjected half of them to two drought events of 8 d duration under controlled conditions. Leachate dissolved organic carbon (DOC) was measured throughout the 6 wk study period, and a (13)CO(2) pulse enabled quantification of fluxes of recent assimilate into shoots, roots and leachate and ecosystem CO(2) exchange. * The amount of DOC in leachate from droughted cores was 62% less than in controls. Drought reduced graminoid biomass, increased forb biomass, had no effect on bryophytes, and led to an overall decrease in total above-ground biomass compared with controls. Net CO(2) exchange, gross photosynthesis and the amount of (13)CO(2) fixed were all significantly less in droughted turfs. These turfs also retained proportionally more (13)C in shoots, allocated less (13)C to roots, and the amount of dissolved organic (13)C recovered in leachate was 57% less than in controls. * Our data show that drought events can have significant impacts on ecosystem carbon fluxes, and that the principal mechanism behind this is probably changes in the relative abundance of forbs and grasses
机译:*预计气候变化将增加高山生态系统中干旱事件的发生频率,并可能影响碳的周转。 *我们从Nardus stricta高山雪床群落中移除了完整的草皮,并在受控条件下将其中一半进行了两次持续8 d的干旱事件。在整个6周的研究过程中,均测量了渗滤液溶解的有机碳(DOC),并且使用(13)CO(2)脉冲能够量化最近同化物进入枝条,根和渗滤液的通量以及生态系统CO(2)的交换。 *来自干旱岩心的渗滤液中的DOC含量比对照组少62%。与对照相比,干旱减少了类固醇生物量,增加了单反生物量,对苔藓植物没有影响,导致地面上总生物量总体下降。在干旱的草皮中,净CO(2)交换,总光合作用和固定的(13)CO(2)量均显着减少。这些草皮还按比例保留了芽中更多的(13)C,分配给根的更少(13)C,并且从渗滤液中回收的溶解有机(13)C的量比对照少57%。 *我们的数据表明,干旱事件可能会对生态系统的碳通量产生重大影响,其背后的主要机制可能是草和草的相对丰度发生了变化

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