Volatile responses of dwarf birch to mimicked insect herbivory and experimental warming at two elevations in Greenlandic tundra.

Q3 Agricultural and Biological Sciences Plant-environment interactions (Hoboken, N.J.) Pub Date : 2023-02-08 eCollection Date: 2023-02-01 DOI:10.1002/pei3.10100
Jolanta Rieksta, Tao Li, Cleo L Davie-Martin, Laurids Christian Brogaard Aeppli, Toke Thomas Høye, Riikka Rinnan
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Abstract

Plants release a complex blend of volatile organic compounds (VOCs) in response to stressors. VOC emissions vary between contrasting environments and increase with insect herbivory and rising temperatures. However, the joint effects of herbivory and warming on plant VOC emissions are understudied, particularly in high latitudes, which are warming fast and facing increasing herbivore pressure. We assessed the individual and combined effects of chemically mimicked insect herbivory, warming, and elevation on dwarf birch (Betula glandulosa) VOC emissions in high-latitude tundra ecosystems in Narsarsuaq, South Greenland. We hypothesized that VOC emissions and compositions would respond synergistically to warming and herbivory, with the magnitude differing between elevations. Warming increased emissions of green leaf volatiles (GLVs) and isoprene. Herbivory increased the homoterpene, (E)-4,8-dimethyl-1,3,7-nonatriene, emissions, and the response was stronger at high elevation. Warming and herbivory had synergistic effects on GLV emissions. Dwarf birch emitted VOCs at similar rates at both elevations, but the VOC blends differed between elevations. Several herbivory-associated VOC groups did not respond to herbivory. Harsher abiotic conditions at high elevations might not limit VOC emissions from dwarf birch, and high-elevation plants might be better at herbivory defense than assumed. The complexity of VOC responses to experimental warming, elevation, and herbivory are challenging our understanding and predictions of future VOC emissions from dwarf birch-dominated ecosystems.

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格陵兰苔原两个海拔高度的矮桦树对模拟昆虫食草和实验性变暖的挥发性反应。
植物会释放出复杂的挥发性有机化合物(VOC)来应对压力。不同环境下的挥发性有机化合物排放量各不相同,并随着昆虫食草和气温升高而增加。然而,人们对食草动物和气候变暖对植物挥发性有机化合物排放的共同影响研究不足,尤其是在高纬度地区,因为这些地区正在迅速变暖,并面临着越来越大的食草动物压力。我们评估了南格陵兰 Narsarsuaq 高纬度苔原生态系统中化学模拟昆虫食草、气候变暖和海拔升高对矮桦树(Betula glandulosa)挥发性有机化合物排放的单独和综合影响。我们假设挥发性有机化合物的排放和组成会对气候变暖和食草动物的影响产生协同作用,不同海拔高度的影响程度不同。气候变暖增加了绿叶挥发性物质(GLVs)和异戊二烯的排放。食草动物增加了同功萜烯--(E)-4,8-二甲基-1,3,7-壬三烯的排放量,高海拔地区的反应更为强烈。变暖和食草对 GLV 排放有协同效应。矮桦树在两个海拔高度排放挥发性有机化合物的速率相似,但不同海拔高度的挥发性有机化合物混合物有所不同。一些与食草动物相关的挥发性有机化合物群对食草动物没有反应。高海拔地区更恶劣的非生物条件可能不会限制矮桦树的挥发性有机化合物排放,而且高海拔植物可能比想象中更善于防御食草动物。挥发性有机化合物对实验升温、海拔高度和食草动物反应的复杂性挑战着我们对矮桦树为主的生态系统未来挥发性有机化合物排放的理解和预测。
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2.70
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0.00%
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审稿时长
15 weeks
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