A Functional Characterisation of a Wide Range of Cover Crop Species: Growth and Nitrogen Acquisition Rates, Leaf Traits and Ecological Strategies
暂无分享,去创建一个
Eric Justes | Eric Garnier | Pablo Cruz | Olivier Flores | Raphaël Charles | E. Justes | E. Garnier | R. Charles | O. Flores | P. Cruz | Florian Fort | Hélène Tribouillois | H. Tribouillois | F. Fort
[1] Eric Garnier,et al. Are trait‐based species rankings consistent across data sets and spatial scales? , 2014 .
[2] Marc Dorel,et al. A trait-based characterization of cover plants to assess their potential to provide a set of ecological services in banana cropping systems , 2014 .
[3] D. Hertel,et al. Intraspecific variation in root and leaf traits and leaf-root trait linkages in eight aspen demes (Populus tremula and P. tremuloides) , 2013, Front. Plant Sci..
[4] Guido Brusa,et al. Allocating CSR plant functional types: the use of leaf economics and size traits to classify woody and herbaceous vascular plants , 2013 .
[5] M. Delgado‐Baquerizo,et al. Side-effects of plant domestication: ecosystem impacts of changes in litter quality. , 2013, The New phytologist.
[6] C. L. Bas,et al. Réduire les fuites de nitrate au moyen de cultures intermédiaires : conséquences sur les bilans d'eau et d'azote, autres services écosystémiques , 2012 .
[7] Eric Garnier,et al. A trait-based approach to comparative functional plant ecology: concepts, methods and applications for agroecology. A review , 2012, Agronomy for Sustainable Development.
[8] P. Gambino,et al. Morphological traits and allocation patterns related to stress-tolerance and seed-yield in wild and domesticated evening primrose (Oenothera L. Onagraceae) , 2011 .
[9] S. Higgins,et al. TRY – a global database of plant traits , 2011, Global Change Biology.
[10] J. Araus,et al. Enhancing drought tolerance in C(4) crops. , 2011, Journal of experimental botany.
[11] M. Duru,et al. Leaf Traits as Functional Descriptors of the Intensity of Continuous Grazing in Native Grasslands in the South of Brazil , 2010 .
[12] E. Justes,et al. Dynamic analysis of competition and complementarity for light and N use to understand the yield and the protein content of a durum wheat–winter pea intercrop , 2010, Plant and Soil.
[13] Olivier Gimenez,et al. Litter quality and decomposability of species from a Mediterranean succession depend on leaf traits but not on nitrogen supply. , 2009, Annals of botany.
[14] E. Justes,et al. Quantifying and modelling C and N mineralization kinetics of catch crop residues in soil: parameterization of the residue decomposition module of STICS model for mature and non mature residues , 2009, Plant and Soil.
[15] Eric Garnier,et al. Leaf traits capture the effects of land use changes and climate on litter decomposability of grasslands across Europe. , 2009, Ecology.
[16] Martin Hermy,et al. The LEDA Traitbase: a database of life‐history traits of the Northwest European flora , 2008 .
[17] D. McKey,et al. Photosynthesis and Leaf Structure in Domesticated Cassava (Euphorbiaceae) and a Close Wild Relative: Have Leaf Photosynthetic Parameters Evolved Under Domestication? , 2008 .
[18] K. Mokany,et al. Are traits measured on pot grown plants representative of those in natural communities , 2008 .
[19] Guo-hong Wang. Leaf trait co-variation, response and effect in a chronosequence , 2007 .
[20] B. Cerabolini,et al. Disturbance is the principal α‐scale filter determining niche differentiation, coexistence and biodiversity in an alpine community , 2007 .
[21] F. Pugnaire,et al. Functional Plant Ecology , 2007 .
[22] J. Healey,et al. Tree morphology in seasonally dry montane forest in Argentina: Relationships with shade tolerance and nutrient shortage , 2007 .
[23] C. Violle,et al. Let the concept of trait be functional , 2007 .
[24] Eric Garnier,et al. Assessing the effects of land-use change on plant traits, communities and ecosystem functioning in grasslands: a standardized methodology and lessons from an application to 11 European sites. , 2007, Annals of botany.
[25] F. Lloret,et al. Leaf and shoot water content and leaf dry matter content of Mediterranean woody species with different post-fire regenerative strategies. , 2007, Annals of botany.
[26] J. Pausas,et al. Leaf traits and resprouting ability in the Mediterranean basin , 2006 .
[27] B. Cerabolini,et al. The functional basis of a primary succession resolved by CSR classification , 2006 .
[28] M. B. David,et al. Replacing bare fallows with cover crops in fertilizer-intensive cropping systems: A meta-analysis of crop yield and N dynamics , 2006 .
[29] S. Plantureux,et al. Variation in leaf traits through seasons and N-availability levels and its consequences for ranking grassland species , 2005 .
[30] J. P. Grime,et al. The plant traits that drive ecosystems: Evidence from three continents , 2004 .
[31] Sean C. Thomas,et al. The worldwide leaf economics spectrum , 2004, Nature.
[32] H. Kristensen,et al. Root Growth and Nitrate Uptake of Three Different Catch Crops in Deep Soil Layers , 2004 .
[33] Mark Westoby,et al. A leaf-height-seed (LHS) plant ecology strategy scheme , 1998, Plant and Soil.
[34] M. Werger,et al. Desert succulents and their life strategies , 1990, Vegetatio.
[35] P. Reich,et al. A handbook of protocols for standardised and easy measurement of plant functional traits worldwide , 2003 .
[36] D. Bowman,et al. Leaf attributes in the seasonally dry tropics: a comparison of four habitats in northern Australia , 2003 .
[37] E. Garnier,et al. Do rock endemic and widespread plant species differ under the Leaf–Height–Seed plant ecology strategy scheme? , 2003 .
[38] L. S. Jensen,et al. Catch crops and green manures as biological tools in nitrogen management in temperate zones , 2003 .
[39] M. Westoby,et al. ECOLOGICAL STRATEGIES : Some Leading Dimensions of Variation Between Species , 2002 .
[40] K. Thompson,et al. Leaf traits as indicators of resource-use strategy in floras with succulent species , 2002 .
[41] Bill Shipley,et al. Dry matter content as a measure of dry matter concentration in plants and their parts , 2002 .
[42] E. Garnier,et al. A standardized protocol for the determination of specific leaf area and leaf dry matter content , 2001 .
[43] P. Reich,et al. Strategy shifts in leaf physiology, structure and nutrient content between species of high‐ and low‐rainfall and high‐ and low‐nutrient habitats , 2001 .
[44] I. Noble,et al. On the relationship between the composition, morphology and function of leaves , 1999 .
[45] K. Thompson,et al. Specific leaf area and leaf dry matter content as alternative predictors of plant strategies , 1999 .
[46] Roderick Hunt,et al. Allocating C-S-R plant functional types : a soft approach to a hard problem , 1999 .
[47] F. S. Chapin,et al. The Mineral Nutrition of Wild Plants Revisited: A Re-evaluation of Processes and Patterns , 1999 .
[48] P. Reich,et al. Photosynthesis and respiration rates depend on leaf and root morphology and nitrogen concentration in nine boreal tree species differing in relative growth rate , 1998 .
[49] S. Patiño,et al. Hydraulic architecture and water use of selected species from a lower montane forest in Panama , 1998, Trees.
[50] K. Thompson,et al. Integrated screening validates primary axes of specialisation in plants , 1997 .
[51] Bill Shipley,et al. Structured interspecific determinants of specific leaf area in 34 species of herbaceous angiosperms , 1995 .
[52] P. Lucas,et al. Leaf fracture toughness and sclerophylly: their correlations and ecological implications , 1992 .
[53] P. Reich,et al. Leaf Life‐Span in Relation to Leaf, Plant, and Stand Characteristics among Diverse Ecosystems , 1992 .
[54] H. Poorter,et al. Chemical composition of 24 wild species differing in relative growth rate , 1992 .
[55] Hendrik Poorter,et al. Inherent Variation in Growth Rate Between Higher Plants: A Search for Physiological Causes and Ecological Consequences , 1992 .
[56] M. Karimi,et al. Crop growth and relative growth rates of old and modern wheat cultivars , 1991 .
[57] E. S. Jensen. Nitrogen Accumulation and Residual Effects of Nitrogen Catch Crops , 1991 .
[58] R. C. Muchow,et al. A critical evaluation of traits for improving crop yields in water-limited environments. , 1990 .
[59] J. W. Wilson. Analysis of Growth, Photosynthesis and Light Interception for Single Plants and Stands , 1981 .
[60] J. P. Grime,et al. Evidence for the Existence of Three Primary Strategies in Plants and Its Relevance to Ecological and Evolutionary Theory , 1977, The American Naturalist.
[61] Roderick Hunt,et al. Relative growth-rate: its range and adaptive significance in a local flora. , 1975 .