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Titlebook: Responses of Plants to UV-B Radiation; Jelte Rozema,Yiannis Manetas,Lars-Olof Björn Book 2001 Springer Science+Business Media Dordrecht 20

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书目名称Responses of Plants to UV-B Radiation
编辑Jelte Rozema,Yiannis Manetas,Lars-Olof Björn
视频video
丛书名称Advances in Vegetation Science
图书封面Titlebook: Responses of Plants to UV-B Radiation;  Jelte Rozema,Yiannis Manetas,Lars-Olof Björn Book 2001 Springer Science+Business Media Dordrecht 20
描述The research in this book covers papers on a great number ofresearch projects on the responses of plants and crops of naturalterrestrial ecosystems, of agro-ecosystems, and of aquatic ecosystems,to enhanced solar UV-B as a result of stratospheric ozone depletion.Some introductory chapters deal with general aspects of how plantsrespond to UV-B radiation. .Photosynthetically Active Radiation (PAR) is a primary energy resourcefor terrestrial plants, necessary for plant growth. Inevitablyterrestrial plants absorb UV-B when exposed to solar radiation. Thespectral balance between PAR and UV-B is discussed in severalchapters. The responses of plants and ecosystems from the Antarcticand Arctic to enhanced solar UV-B radiation as a consequence of thehole in the ozone layer are considered in some detail. In addition thepapers in the book discuss the problem of how responses of plants toUV-B radiation interact with other environmental factors. .The book is of great importance for those who are involved in globalchange topics: biologists, ecologists, earth scientists, agronomists,environmental scientists, and those who develop environmental policy.
出版日期Book 2001
关键词Assimilat; algae; bean; ecosystem; ecosystems; environment; pea; phytoplankton; plankton; terrestrial ecosyst
版次1
doihttps://doi.org/10.1007/978-94-017-2892-8
isbn_softcover978-90-481-5353-4
isbn_ebook978-94-017-2892-8
copyrightSpringer Science+Business Media Dordrecht 2001
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The growth, flower properties and demography of , exposed to enhanced UV-B radiationdue to structural changes of the floret surface, since microscopic examination under SEM revealed the papillae of the adaxial epidermal cells to be swollen. The above ground dry mass measured at plant harvest was not affected but a significant increase in root biomass (and accordingly in root/shoot
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UV-B and PAR in single and mixed canopies grown under different UV-B exclusions in the field) in combination with the planophile leaves..In the grass species, both UV-B and PAR penetrated much deeper into the canopy due to the erectophile structure. The difference between UV-B and PAR penetration was generally quite small except in very tall canopies..The mixed species canopies showed resu
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The response of , to enhanced UV-B radiation under low and near ambient PAR levelsd plant height and internode length. Moreover, the concentration of UV-B absorbing compounds was increased. We conclude that in this study effects of enhanced UV-B were mainly photomorphogenic effects, which were also induced by radiation in the PAR region.
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