Spectroscopy can predict key leaf traits associated with source-sink balance and carbon-nitrogen status

被引:74
作者
Ely, Kim S. [1 ]
Burnett, Angela C. [1 ]
Lieberman-Cribbin, Wil [1 ]
Serbin, Shawn P. [1 ]
Rogers, Alistair [1 ]
机构
[1] Brookhaven Natl Lab, Environm & Climate Sci Dept, Upton, NY 11973 USA
基金
美国能源部;
关键词
Amino acids; carbohydrates; carbon; leaf traits; metabolites; nitrogen; PLSR; remote sensing; source-sink; spectroscopy; ELEVATED ATMOSPHERIC CO2; BIOCHEMICAL TRAITS; OPTICAL-PROPERTIES; PLANT; PHOTOSYNTHESIS; REFLECTANCE; SUCROSE; METABOLISM; DIOXIDE; SUGAR;
D O I
10.1093/jxb/erz061
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Successful prediction of a range of leaf structural and functional traits associated with plant carbon and nitrogen pools was accomplished using a multispecies spectral model. Abstract Approaches that enable high-throughput, non-destructive measurement of plant traits are essential for programs seeking to improve crop yields through physiological breeding. However, many key traits still require measurement using slow, labor-intensive, and destructive approaches. We investigated the potential to retrieve key traits associated with leaf source-sink balance and carbon-nitrogen status from leaf optical properties. Structural and biochemical traits and leaf reflectance (500-2400 nm) of eight crop species were measured and used to develop predictive spectra-trait' models using partial least squares regression. Independent validation data demonstrated that the models achieved very high predictive power for C, N, C:N ratio, leaf mass per area, water content, and protein content (R-2>0.85), good predictive capability for starch, sucrose, glucose, and free amino acids (R-2=0.58-0.80), and some predictive capability for nitrate (R-2=0.51) and fructose (R-2=0.44). Our spectra-trait models were developed to cover the trait space associated with food or biofuel crop plants and can therefore be applied in a broad range of phenotyping studies.
引用
收藏
页码:1789 / 1799
页数:11
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