机械伤害对45种亚热带阔叶木储存库和非储存库挥发物排放速率和组成的影响

IF 4 2区 生物学 Q1 PLANT SCIENCES
Yali Yuan, Yimiao Mao, Hao Yuan, Ming Guo, Guomo Zhou, Ülo Niinemets, Zhihong Sun
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引用次数: 0

摘要

生物源性挥发性有机化合物(BVOCs)显著影响空气质量和气候。机械损伤是影响自然和城市环境中植物的常见胁迫源,对BVOC的排放具有潜在的巨大影响。然而,对伤害引起的BVOC排放的种间变异性仍然知之甚少,特别是对亚热带树木和灌木。研究了45种亚热带阔叶木本植物、26种无BVOC储存结构植物和19种具有BVOC储存结构(油腺、树脂管和用于挥发性化合物储存的腺状毛状体)植物受控机械损伤对类异戊二烯和芳香族化合物排放的影响。非贮藏种的轻质异戊二烯、单萜烯和芳香族化合物的释放量在机械损伤后呈中等和可变的增加,可能反映了损伤对叶片生理的影响。在贮藏物种中,由于贮藏结构的破裂,机械损伤引发了单萜烯和芳香族化合物的大量释放。在不同物种中,机械损伤后单萜烯在总排放量中的比例从40.9%增加到85.4%,其中32.2%的增加归因于未在完整叶片排放中检测到的新释放化合物。相比之下,倍半萜的排放量一般较低,并且在机械损伤后减少。此外,不同功能类群的伤害响应也存在差异,常绿物种和适应高温和阴凉的物种比适应干燥或寒冷环境的落叶物种表现出更强的伤害诱导BVOC排放。这些发现表明,诸如修剪等机械干扰可以显著增加亚热带城市森林中BVOC的排放,在模拟自然和管理生态系统中BVOC通量时应考虑到这些干扰。需要进一步的研究来阐明储存结构特征与BVOC排放之间的关系,以及它们更广泛的生态和大气影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of Mechanical Injury on Volatile Emission Rate and Composition in 45 Subtropical Woody Broad-Leaved Storage and Non-Storage Emitters.

Biogenic volatile organic compounds (BVOCs) significantly impact air quality and climate. Mechanical injury is a common stressor affecting plants in both natural and urban environments, and it has potentially large influences on BVOC emissions. However, the interspecific variability in wounding-induced BVOC emissions remains poorly understood, particularly for subtropical trees and shrubs. In this study, we investigated the effects of controlled mechanical injury on isoprenoid and aromatic compound emissions in a taxonomically diverse set of 45 subtropical broad-leaved woody species, 26 species without and in 19 species with BVOC storage structures (oil glands, resin ducts and glandular trichomes for volatile compound storage). Emissions of light-weight non-stored isoprene and monoterpenes and aromatic compounds in non-storage species showed moderate and variable emission increases after mechanical injury, likely reflecting the wounding impacts on leaf physiology. In storage species, mechanical injury triggered a substantial release of monoterpenes and aromatic compounds due to the rupture of storage structures. Across species, the proportion of monoterpenes in total emissions increased from 40.9% to 85.4% after mechanical injury, with 32.2% of this increase attributed to newly released compounds not detected in emissions from intact leaves. Sesquiterpene emissions, in contrast, were generally low and decreased after mechanical injury. Furthermore, wounding responses varied among plant functional groups, with evergreen species and those adapted to high temperatures and shade exhibiting stronger damage-induced BVOC emissions than deciduous species and those adapted to dry or cold environments. These findings suggest that mechanical disturbances such as pruning can significantly enhance BVOC emissions in subtropical urban forests and should be considered when modeling BVOC fluxes in both natural and managed ecosystems. Further research is needed to elucidate the relationship between storage structure characteristics and BVOC emissions, as well as their broader ecological and atmospheric implications.

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来源期刊
Plants-Basel
Plants-Basel Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.50
自引率
11.10%
发文量
2923
审稿时长
15.4 days
期刊介绍: Plants (ISSN 2223-7747), is an international and multidisciplinary scientific open access journal that covers all key areas of plant science. It publishes review articles, regular research articles, communications, and short notes in the fields of structural, functional and experimental botany. In addition to fundamental disciplines such as morphology, systematics, physiology and ecology of plants, the journal welcomes all types of articles in the field of applied plant science.
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