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烟促种子萌发研究新进展
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作者 许宏力 田亮 +2 位作者 杨晓菲 聂强 曹德昌 《生态学杂志》 CAS CSCD 北大核心 2024年第7期1941-1950,共10页
野火是全球陆地生态系统植被更新的重要驱动力,野火伴生的烟气含有多种活性化合物,可以促进火后植物的种子萌发。传统观点认为,烟气中普遍含有纤维素热解产生的Karrikin类物质,是促进火后种子萌发的主要烟信号化合物。最新研究发现,木... 野火是全球陆地生态系统植被更新的重要驱动力,野火伴生的烟气含有多种活性化合物,可以促进火后植物的种子萌发。传统观点认为,烟气中普遍含有纤维素热解产生的Karrikin类物质,是促进火后种子萌发的主要烟信号化合物。最新研究发现,木质素热解产生的丁香醛也可以促进火后植物的种子萌发。本文综述了烟信号化合物的发现历程,阐释了烟信号化合物与植物火后更新的生态相关性,并对植物烟信号适应性的演化进行了探讨。在此基础上,本文提出了烟促种子萌发研究领域仍待解答的一些科学问题,并对本领域的未来研究方向进行了展望。 展开更多
关键词 烟信号 丁香醛 木质素 火适应性 后萌发
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Delay-induced firing behavior and transitions in adaptive neuronal networks with two types of synapses 被引量:3
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作者 XU Bo GONG YuBing WANG BaoYing 《Science China Chemistry》 SCIE EI CAS 2013年第2期222-229,共8页
In this paper, we study delay-induced firing behavior and transitions in adaptive Newman-Watts networks of thermosensitive neurons with electrical or chemical synapses. It is found that electrical and chemical synapse... In this paper, we study delay-induced firing behavior and transitions in adaptive Newman-Watts networks of thermosensitive neurons with electrical or chemical synapses. It is found that electrical and chemical synapse time delay-induced firing behavior and transitions differ significantly. In the case of electrical synapses, the bursts for a fixed delay involve equal number of spikes in each burst, and for certain time delays the firing can be inhibited. However, in the case of chemical synapses the bursts for a fixed delay involve different numbers of spikes in each burst, and no firing inhibition is observed. It is also shown that larger growth rates of adaptive coupling strength or larger network randomness can enhance the synchronization of bursting in the case of electrical synapses but reduce it in the case of chemical synapses. These results show that electrical and chemical synapses have different effects on delay-induced firing behavior and dynamical evolution. Compared to electrical synapses, chemical synapses might be more beneficial to the generation of firing and abundant firing transitions in adaptive and delayed neuronal networks. These findings can help to better understand different firing behaviors in neuronal networks with electrical and chemical synapses. 展开更多
关键词 NEURON electrical synapse chemical synapse Newman–Watts network adaptive coupling time delay firing transition
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