Trait Estimation in Herbaceous Plant Assemblages from in situ Canopy Spectra

被引:19
作者
Roelofsen, Hans D. [1 ]
van Bodegom, Peter M. [2 ]
Kooistra, Lammert [3 ]
Witte, Jan-Philip M. [1 ,2 ]
机构
[1] KWR Watercycle Res Inst, NL-3430 BB Nieuwegein, Netherlands
[2] Vrije Univ Amsterdam, Dept Ecol Sci, NL-1081 HV Amsterdam, Netherlands
[3] Wageningen Univ, Lab Geoinformat Sci & Remote Sensing, NL-6708 PB Wageningen, Netherlands
关键词
field spectroscopy; plant traits; canopy surface; leaf surface; SLA; LAI; herbaceous plant assemblages; hyperspectral reflectance; LEAST-SQUARES REGRESSION; VEGETATION INDEXES; HYPERSPECTRAL DATA; NATIONAL-PARK; CHLOROPHYLL; NITROGEN; MODEL; LAI; INFORMATION; RANGELANDS;
D O I
10.3390/rs5126323
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Estimating plant traits in herbaceous plant assemblages from spectral reflectance data requires aggregation of small scale trait variations to a canopy mean value that is ecologically meaningful and corresponds to the trait content that affects the canopy spectral signal. We investigated estimation capacities of plant traits in a herbaceous setting and how different trait-aggregation methods influence estimation accuracies. Canopy reflectance of 40 herbaceous plant assemblages was measured in situ and biomass was analysed for N, P and C concentration, chlorophyll, lignin, phenol, tannin and specific water concentration, expressed on a mass basis (mg.g(-1)). Using Specific Leaf Area (SLA) and Leaf Area Index (LAI), traits were aggregated to two additional expressions: mass per leaf surface (mg.m(-2)) and mass per canopy surface (mg.m(-2)). All traits were related to reflectance using partial least squares regression. Accuracy of trait estimation varied between traits but was mainly influenced by the trait expression. Chlorophyll and traits expressed on canopy surface were least accurately estimated. Results are attributed to damping or enhancement of the trait signal upon conversion from mass based trait values to leaf and canopy surface expressions. A priori determination of the most appropriate trait expression is viable by considering plant growing strategies.
引用
收藏
页码:6323 / 6345
页数:23
相关论文
共 61 条
[1]  
Aptroot A., 2009, FLORA VEGETATIEKARTE, P41
[2]   Canopy phylogenetic, chemical and spectral assembly in a lowland Amazonian forest [J].
Asner, Gregory P. ;
Martin, Roberta E. .
NEW PHYTOLOGIST, 2011, 189 (04) :999-1012
[3]   A new technique for extracting the red edge position from hyperspectral data: The linear extrapolation method [J].
Cho, MA ;
Skidmore, AK .
REMOTE SENSING OF ENVIRONMENT, 2006, 101 (02) :181-193
[4]   Development of a framework for fire risk assessment using remote sensing and geographic information system technologies [J].
Chuvieco, Emilio ;
Aguado, Inmaculada ;
Yebra, Marta ;
Nieto, Hector ;
Salas, Javier ;
Pilar Martin, M. ;
Vilar, Lara ;
Martinez, Javier ;
Martin, Susana ;
Ibarra, Paloma ;
de la Riva, Juan ;
Baeza, Jaime ;
Rodriguez, Francisco ;
Molina, Juan R. ;
Herrera, Miguel A. ;
Zamora, Ricardo .
ECOLOGICAL MODELLING, 2010, 221 (01) :46-58
[5]   Using Hyperspectral Remote Sensing Data for Retrieving Canopy Chlorophyll and Nitrogen Content [J].
Clevers, Jan G. P. W. ;
Kooistra, Lammert .
IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS AND REMOTE SENSING, 2012, 5 (02) :574-583
[6]   Estimating canopy water content using hyperspectral remote sensing data [J].
Clevers, J. G. P. W. ;
Kooistra, L. ;
Schaepman, M. E. .
INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND GEOINFORMATION, 2010, 12 (02) :119-125
[7]   REFLECTANCE SPECTROSCOPY OF FRESH WHOLE LEAVES FOR THE ESTIMATION OF CHEMICAL CONCENTRATION [J].
CURRAN, PJ ;
DUNGAN, JL ;
MACLER, BA ;
PLUMMER, SE ;
PETERSON, DL .
REMOTE SENSING OF ENVIRONMENT, 1992, 39 (02) :153-166
[8]   Inversion of a radiative transfer model for estimating vegetation LAI and chlorophyll in a heterogeneous grassland [J].
Darvishzadeh, Roshanak ;
Skidmore, Andrew ;
Schlerf, Martin ;
Atzberger, Clement .
REMOTE SENSING OF ENVIRONMENT, 2008, 112 (05) :2592-2604
[9]   LAI and chlorophyll estimation for a heterogeneous grassland using hyperspectral measurements [J].
Darvishzadeh, Roshanak ;
Skidmore, Andrew ;
Schlerf, Martin ;
Atzberger, Clement ;
Corsi, Fabio ;
Cho, Moses .
ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2008, 63 (04) :409-426
[10]   Estimating corn leaf chlorophyll concentration from leaf and canopy reflectance [J].
Daughtry, CST ;
Walthall, CL ;
Kim, MS ;
de Colstoun, EB ;
McMurtrey, JE .
REMOTE SENSING OF ENVIRONMENT, 2000, 74 (02) :229-239