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An unexpected role for mixotrophs in the response of peatland carbon cycling to climate warming

机译:混合营养菌在泥炭地碳循环对气候变暖的响应中的出乎意料的作用

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Mixotrophic protists are increasingly recognized for their significant contribution to carbon (C) cycling. As phototrophs they contribute to photosynthetic C fixation, whilst as predators of decomposers, they indirectly influence organic matter decomposition. Despite these direct and indirect effects on the C cycle, little is known about the responses of peatland mixotrophs to climate change and the potential consequences for the peatland C cycle. With a combination of field and microcosm experiments, we show that mixotrophs in the Sphagnum bryosphere play an important role in modulating peatland C cycle responses to experimental warming. We found that five years of consecutive summer warming with peaks of +2 to +8°C led to a 50% reduction in the biomass of the dominant mixotrophs, the mixotrophic testate amoebae (MTA). The biomass of other microbial groups (including decomposers) did not change, suggesting MTA to be particularly sensitive to temperature. In a microcosm experiment under controlled conditions, we then manipulated the abundance of MTA, and showed that the reported 50% reduction of MTA biomass in the field was linked to a significant reduction of net C uptake (-13%) of the entire Sphagnum bryosphere. Our findings suggest that reduced abundance of MTA with climate warming could lead to reduced peatland C fixation.
机译:混合营养的原生生物在碳循环中的重要贡献日益得到认可。作为光养生物,它们有助于光合作用的固色,而作为分解生物的捕食者,它们间接地影响有机物的分解。尽管对碳循环有直接和间接的影响,但对于泥炭地混合营养对气候变化的响应以及泥炭地C循环的潜在后果知之甚少。通过现场和微观实验的结合,我们表明泥炭藓苔藓层中的混合营养菌在调节泥炭地C循环对实验变暖的响应中起着重要作用。我们发现连续5年连续夏季变暖,峰值为+2至+ 8°C,导致占主导地位的混合营养生物,即混合营养的睾丸变形虫(MTA)的生物量减少了50%。其他微生物组(包括分解物)的生物量未发生变化,表明MTA对温度特别敏感。在受控条件下的缩影实验中,我们操纵了MTA的丰度,结果表明,该田地中报告的MTA生物量减少50%与整个泥炭苔藓小球的净C吸收量显着减少(-13%)有关。我们的发现表明,随着气候变暖,MTA的减少会导致泥炭地C固定的减少。

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