Mougi Akihiko
Institute of Agricultural and Life Sciences Academic Assembly Shimane University Matsue Japan.
Ecol Evol. 2020 Aug 11;10(17):9192-9199. doi: 10.1002/ece3.6586. eCollection 2020 Sep.
Ecosystems comprise living organisms and organic matter or detritus. In earlier community ecology theories, ecosystem dynamics were normally understood in terms of aboveground, green-world trophic interaction networks, or food webs. Recently, there has been growing interest in the role played in ecosystem dynamics by detritus in underground, brown-world interactions. However, the role of decomposers in the consumption of detritus to produce nutrients in ecosystem dynamics remains unclear. Here, an ecosystem model of trophic food chains, detritus, decomposers, and decomposer predators demonstrated that decomposers play a totally different role than that previously predicted, with regard to their relationship between nutrient cycling and ecosystem stability. The high flux of nutrients due to efficient decomposition by decomposers increases ecosystem stability. However, moderate levels of ecosystem openness (with movement of materials) can either greatly increase or decrease ecosystem stability. Furthermore, the stability of an ecosystem peaks at intermediate openness because open systems are less stable than closed systems. These findings suggest that decomposers and the food-web dynamics of brown-world interactions are crucial for ecosystem stability, and that the properties of decomposition rate and openness are important in predicting changes in ecosystem stability in response to changes in decomposition efficiency driven by climate change.
生态系统由生物有机体以及有机物质或碎屑组成。在早期的群落生态学理论中,生态系统动态通常是根据地上的绿色世界营养相互作用网络或食物网来理解的。最近,人们越来越关注碎屑在地下棕色世界相互作用中对生态系统动态所起的作用。然而,分解者在生态系统动态中消耗碎屑以产生养分的作用仍不明确。在此,一个关于营养食物链、碎屑、分解者和分解者捕食者的生态系统模型表明,就营养循环与生态系统稳定性之间的关系而言,分解者所起的作用与先前预测的完全不同。分解者高效分解导致的高养分通量增加了生态系统的稳定性。然而,适度的生态系统开放性(有物质流动)既可能极大地增加也可能降低生态系统稳定性。此外,生态系统的稳定性在中等开放性时达到峰值,因为开放系统比封闭系统更不稳定。这些发现表明,分解者和棕色世界相互作用的食物网动态对生态系统稳定性至关重要,并且分解速率和开放性的特性对于预测气候变化驱动的分解效率变化所引起的生态系统稳定性变化很重要。