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DOI10.1111/nph.15384
Linking variation in intrinsic water-use efficiency to isohydricity: a comparison at multiple spatiotemporal scales
Yi, Koong; Maxwell, Justin T.; Wenzel, Matthew K.; Roman, D. Tyler; Sauer, Peter E.; Phillips, Richard P.; Novick, Kimberly A.
发表日期2019
ISSN0028-646X
EISSN1469-8137
卷号221期号:1页码:195-208
英文摘要Species-specific responses of plant intrinsic water-use efficiency (iWUE) to multiple environmental drivers associated with climate change, including soil moisture (theta), vapor pressure deficit (D), and atmospheric CO2 concentration (c(a)), are poorly u
关键词anisohydricclimate changedendrochronologydroughtisohydricstable carbon isotope composition (delta C-13)vapor pressure deficitwater-use efficiency (WUE)
学科领域Plant Sciences
语种英语
WOS记录号WOS:000451625800021
来源期刊NEW PHYTOLOGIST
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/82769
作者单位Indiana Univ Bloomington, Sch Publ & Environm Affairs, 1315 East Tenth St, Bloomington, IN 47405 USA
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GB/T 7714
Yi, Koong,Maxwell, Justin T.,Wenzel, Matthew K.,et al. Linking variation in intrinsic water-use efficiency to isohydricity: a comparison at multiple spatiotemporal scales[J],2019,221(1):195-208.
APA Yi, Koong.,Maxwell, Justin T..,Wenzel, Matthew K..,Roman, D. Tyler.,Sauer, Peter E..,...&Novick, Kimberly A..(2019).Linking variation in intrinsic water-use efficiency to isohydricity: a comparison at multiple spatiotemporal scales.NEW PHYTOLOGIST,221(1),195-208.
MLA Yi, Koong,et al."Linking variation in intrinsic water-use efficiency to isohydricity: a comparison at multiple spatiotemporal scales".NEW PHYTOLOGIST 221.1(2019):195-208.
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