School of Earth and Environmental Sciences, The University of Manchester, Oxford Road, Manchester, M13 9PT, UK.
Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, PO Box 94240, Amsterdam, 1090 GE, the Netherlands.
New Phytol. 2019 Oct;224(1):132-145. doi: 10.1111/nph.16001. Epub 2019 Jul 24.
Root exudates play an important role in ecosystem response to climate change, but the functional consequences of drought-induced changes in the quality of root exudates are unknown. Here, we addressed this knowledge gap in a unique experimental approach. We subjected two common grassland species that differ widely in their growth strategies and root systems, the grass Holcus lanatus and the forb Rumex acetosa, to 2 wk of drought. We collected root exudates and soils at the end of the drought and after 2 wk of recovery and readded all root exudates to all soils in a fully reciprocal set-up to measure root-exudate-induced respiration. We found that soil treatment was unimportant for determining root-exudate-induced respiration. By contrast, root exudates collected from plants that had experienced drought clearly triggered more soil respiration than exudates from undroughted plants. Importantly, this increased respiration compensated for the lower rates of root exudation in droughted plants. Our findings reveal a novel mechanism through which drought can continue to affect ecosystem carbon cycling, and a potential plant strategy to facilitate regrowth through stimulating microbial activity. These findings have important implications for understanding plant and ecosystem response to drought.
根系分泌物在生态系统对气候变化的响应中起着重要作用,但干旱诱导的根系分泌物质量变化的功能后果尚不清楚。在这里,我们通过一种独特的实验方法解决了这一知识空白。我们将两种在生长策略和根系系统上差异很大的常见草原物种——草 Holcus lanatus 和草本植物 Rumex acetosa——进行了 2 周的干旱处理。我们在干旱结束时和恢复 2 周后收集了根系分泌物和土壤,并在完全互惠的设置中向所有土壤中添加了所有的根系分泌物,以测量根系分泌物诱导的呼吸作用。我们发现,土壤处理对确定根系分泌物诱导的呼吸作用不重要。相比之下,经历过干旱的植物的根系分泌物明显比未受干旱影响的植物的根系分泌物引发了更多的土壤呼吸作用。重要的是,这种增加的呼吸作用补偿了干旱植物中根系分泌率的降低。我们的发现揭示了一种新的机制,通过这种机制,干旱可以继续影响生态系统的碳循环,以及一种通过刺激微生物活性促进植物再生的潜在植物策略。这些发现对理解植物和生态系统对干旱的响应具有重要意义。