GSTDTAP  > 气候变化
DOI10.1016/j.foreco.2018.02.005
Permanent site characteristics exert a larger influence than atmospheric conditions on leaf mass, foliar nutrients and ultimately aboveground biomass productivity of Salix miyabeana 'SX67'
Fontana, Mario1,2; Labrecque, Michel2; Messier, Christian1,4; Belanger, Nicolas1,3
2018-11-01
发表期刊FOREST ECOLOGY AND MANAGEMENT
ISSN0378-1127
EISSN1872-7042
出版年2018
卷号427页码:423-433
文章类型Article
语种英语
国家Canada
英文摘要

Salix species are widely used for wood production, but the interactive effects of soil types and atmospheric conditions on Salix foliar nutrients and aboveground biomass productivity have not yet been elucidated. The objectives of this study were fourfold: (1) to assess the variation in foliar nutrients and leaf mass of Salix miyabeana 'SX67' grown as short rotation coppice (SRC) across three growing seasons and nine locations in Quebec with different permanent site characteristics and atmospheric conditions, (2) to test if atmospheric conditions and permanent site characteristics could explain the variation in foliar nutrients and leaf mass, (3) to develop models that consider foliar traits and nutrient interactions to produce more robust predictions of annual aboveground biomass yields, and (4) to compare nutritional requirements of 'SX67' to other Salix cultivars used for SRC. Leaf samples were collected over three growing seasons at all sites. For each site, atmospheric conditions were simulated and foliar nutrient levels were measured to perform centered log ratio (clr) transformations for each foliar nutrient. This approach considered foliar nutrient interactions and dealt with clr scores as linearly independent. The clr scores were more largely influenced by permanent site characteristics than by atmospheric conditions, despite large variations in degree-days. However, some foliar nutrients and leaf mass were linearly related to atmospheric variables within sites. Strong relationships between annual aboveground biomass yields and leaf mass were computed (e.g. adjusted 12.2 = 0.62), likely due to a proportional allocation between foliage and wood. Although significant linear relationships between clr scores (i.e. N, Ca and Mn) and annual aboveground biomass yields were detected, yields were more robustly explained non-linearly by thresholds (i.e. N, Ca and P) (e.g. R-2 = 0.85), likely due to permanent characteristics specific to each of the sites and climatic limitations during the growing seasons studied. The thresholds detected by non-linear models suggested high N and P use efficiencies and a large Ca requirement of 'SX67'.


英文关键词Leaf traits Willow Foliar nutrients Partitioning of variance Multivariate regression tree
领域气候变化
收录类别SCI-E
WOS记录号WOS:000440775600045
WOS关键词SHORT-ROTATION COPPICE ; WASTE-WATER SLUDGE ; SUGAR MAPLE ; SOUTHERN QUEBEC ; FIELD PERFORMANCE ; FAGUS-SYLVATICA ; USE EFFICIENCY ; SOIL ; WILLOW ; GROWTH
WOS类目Forestry
WOS研究方向Forestry
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/23407
专题气候变化
作者单位1.Univ Quebec Montreal, Cte Etud Foret, CP 8888,Succ Ctr Ville, Montreal, PQ H3C 3P8, Canada;
2.Inst Rech Biol Vegetale, Jardin Bot Montreal,4101 Rue Sherbrooke Est, Montreal, PQ H1X 2B2, Canada;
3.Univ Quebec, Teluq, Dept Sci & Technol, 5800 Rue St Denis,Bur 1105, Montreal, PQ H2S 3L5, Canada;
4.Univ Quebec Outaouais, Dept Sci Nat, Inst Sci Foret Temperee ISFORT, 58 Rue Principale, Ripon, PQ J0V 1VO, Canada
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GB/T 7714
Fontana, Mario,Labrecque, Michel,Messier, Christian,et al. Permanent site characteristics exert a larger influence than atmospheric conditions on leaf mass, foliar nutrients and ultimately aboveground biomass productivity of Salix miyabeana 'SX67'[J]. FOREST ECOLOGY AND MANAGEMENT,2018,427:423-433.
APA Fontana, Mario,Labrecque, Michel,Messier, Christian,&Belanger, Nicolas.(2018).Permanent site characteristics exert a larger influence than atmospheric conditions on leaf mass, foliar nutrients and ultimately aboveground biomass productivity of Salix miyabeana 'SX67'.FOREST ECOLOGY AND MANAGEMENT,427,423-433.
MLA Fontana, Mario,et al."Permanent site characteristics exert a larger influence than atmospheric conditions on leaf mass, foliar nutrients and ultimately aboveground biomass productivity of Salix miyabeana 'SX67'".FOREST ECOLOGY AND MANAGEMENT 427(2018):423-433.
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