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首页> 外文期刊>Biogeosciences >Emissions of BVOC from lodgepole pine in response to mountain pine beetle attack in high and low mortality forest stands
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Emissions of BVOC from lodgepole pine in response to mountain pine beetle attack in high and low mortality forest stands

机译:高低死亡率林分中响应山松甲虫袭击的黑松释放的BVOC

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摘要

In this screening study, biogenic volatile organic compound (BVOC) emissions from intact branches of lodgepole pine (Pinus contorta) trees were measured from trees at two forested sites that have been impacted differently by the mountain pine beetle (MPB), with one having higher mortality and the other with lower mortality. Differences in the amounts and chemical diversity of BVOC between the two sites and from apparently healthy trees versus trees in different stages of MPB attack are presented, as well as (for one site) observed seasonal variability in emissions. A brief comparison is made of geological and climatic characteristics as well as prior disturbances (both natural and man-made) at each site. Trees sampled at the site experiencing high MPB-related tree mortality had lower chemodiversity in terms of monoterpene (MT) emission profiles, while profiles were more diverse at the lower-mortality site. Also at the higher-mortality site, MPB-infested trees in various stages of decline had lower emissions of sesquiterpenes (SQTs) compared to healthy trees, while at the site with lower mortality, MPB-survivors had significantly higher SQT emissions during part of the growing season when compared to both uninfested and newly infested trees. SQT profiles differed between the two sites and, like monoterpene and oxygenated VOC profiles, varied through the season. For the low-mortality site in which repeated measurements were made over the course of the early summer-late fall, higher chemical diversity was observed in early-compared to late-season measurements for all compound classes investigated (MT, oxygenated VOC, and SQT), with the amount of change appearing to correlate to the MPB status of the trees studied. Emissions of 2-methyl-3-buten-2-ol (MBO) had a distinct seasonal signal but were not much different between healthy or infested trees, except in trees with dead needles, from which emissions of this compound were negligible, and in late-season MPB survivors, in which they were higher than in newly infested or uninfested trees. Emissions of SQT were significantly higher in the MPB survivors during both mid-and late-season sampling at the low-mortality site. The changes in emissions could have implications for regional air quality and climate through changes in ozone and aerosol distributions, although this study was designed as a preliminary screening effort and not enough individuals were sampled for all of the observed differences to be statistically demonstrated. Despite this, the compelling differences in emissions observed between the sites and individual trees with differing MPB-infestation statuses and the potential impacts these have on regional atmospheric chemistry argue for further research in this topic.
机译:在这项筛选研究中,从两棵林地的树木中测量了黑松(Pinus contorta)完整分支的生物挥发性有机化合物(BVOC)排放量,其中两处受到山松甲虫(MPB)的影响不同。死亡率和其他死亡率较低。给出了两个站点之间的BVOC数量和化学多样性的差异,以及显然健康的树木与MPB攻击的不同阶段的树木之间的差异,以及(对于一个站点而言)观察到的排放季节性变化。对每个站点的地质和气候特征以及先前的干扰(自然和人为)进行了简要比较。就单萜(MT)排放状况而言,在与MPB相关的树木死亡率较高的地点采样的树木的化学多样性较低,而在死亡率较低的地点,树木的化学多样性更为多样化。同样在死亡率较高的地点,受MPB侵害的树木处于下降的各个阶段的倍半萜烯(SQT)排放量低于健康树木,而在死亡率较低的地点,MPB幸存者在部分死亡率下的SQT排放量明显更高。与未受侵染的树木和新受侵染的树木相比的生长季节。两个站点之间的SQT轮廓有所不同,并且像单萜和含氧VOC轮廓在整个季节中都不同。对于在夏季初至秋末期间进行重复测量的低死亡率站点,在所有调查的化合物类别(MT,含氧VOC和SQT)中,早期观察到的化学多样性均高于早期观察到的后期测量。 ),而变化量似乎与所研究树木的MPB状态相关。 2-甲基-3-丁烯-2-醇(MBO)的排放具有明显的季节性信号,但健康树或受害树之间的排放无显着差异,除了在死针的树中,该化合物的排放可忽略不计。后期MPB幸存者,其存活率高于新受感染或未受感染的树木。在低死亡率站点的中期和后期采样期间,MPB幸存者的SQT排放量显着较高。排放量的变化可能会通过臭氧和气溶胶分布的变化而对区域空气质量和气候产生影响,尽管本研究是作为初步筛查工作而设计的,没有为所有观察到的差异进行抽样以对所有样本进行统计证明。尽管如此,在站点和具有不同MPB侵染状态的单棵树之间观察到的令人信服的排放差异以及这些对区域大气化学的潜在影响要求对此主题进行进一步研究。

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