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菌根介导植物对大气变化的响应:空气质量概念与研究考量

Mycorrhizal mediation of plant response to atmospheric change: Air quality concepts and research considerations.

作者信息

Shafer S R, Schoeneberger M M

机构信息

USDA-ARS Air Quality Program, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

Environ Pollut. 1991;73(3-4):163-77. doi: 10.1016/0269-7491(91)90048-2.

Abstract

The term 'global climate change' encompasses many physical and chemical changes in the atmosphere that have been induced by anthropogenic pollutants. Increases in concentrations of CO2 and CH4 enhance the 'greenhouse effect' of the atmosphere and may contribute to changes in temperature and precipitation patterns at the earth's surface. Nitrogen oxides and SO2 are phytotoxic and also react with other pollutants to produce other phytotoxins in the troposphere such as O3 and acidic substances. However, release of chlorofluorocarbons into the atmosphere may cause depletion of stratospheric O3, increasing the transmittance of ultraviolet-B (UV-B) radiation to the earth's surface. Increased intensities of UV-B could affect plants and enhance photochemical reactions that generate some phytotoxic pollutants. The role of mycorrhizae in plant responses to such stresses has received little attention. Although plans for several research programs have acknowledged the importance of drought tolerance and soil fertility in plant responses to atmospheric stresses, mycorrhizae are rarely targeted to receive specific investigation. Most vascular land plants form mycorrhizae, so the role of mycorrhizae in mediating plant responses to atmospheric change may be an important consideration in predicting effects of atmospheric changes on plants in managed and natural ecosystems.

摘要

“全球气候变化”一词涵盖了由人为污染物引发的大气中许多物理和化学变化。二氧化碳和甲烷浓度的增加增强了大气的“温室效应”,并可能导致地球表面温度和降水模式的变化。氮氧化物和二氧化硫具有植物毒性,还会与其他污染物发生反应,在对流层中产生其他植物毒素,如臭氧和酸性物质。然而,向大气中释放氯氟烃可能会导致平流层臭氧消耗,增加紫外线B(UV-B)辐射到达地球表面的透过率。增强的UV-B强度可能会影响植物,并加剧产生一些植物毒性污染物的光化学反应。菌根在植物对这类胁迫的响应中的作用很少受到关注。尽管几个研究项目的计划已经认识到耐旱性和土壤肥力在植物对大气胁迫响应中的重要性,但菌根很少成为具体研究的对象。大多数维管陆地植物都会形成菌根, 因此菌根在介导植物对大气变化的响应中的作用,可能是预测大气变化对人工管理和自然生态系统中植物影响时的一个重要考量因素。

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