Literature DB >> 25723474

Productivity, absorbed photosynthetically active radiation, and light use efficiency in crops: implications for remote sensing of crop primary production.

Anatoly A Gitelson1, Yi Peng2, Timothy J Arkebauer3, Andrew E Suyker4.   

Abstract

Vegetation productivity metrics such as gross primary production (GPP) at the canopy scale are greatly affected by the efficiency of using absorbed radiation for photosynthesis, or light use efficiency (LUE). Thus, close investigation of the relationships between canopy GPP and photosynthetically active radiation absorbed by vegetation is the basis for quantification of LUE. We used multiyear observations over irrigated and rainfed contrasting C3 (soybean) and C4 (maize) crops having different physiology, leaf structure, and canopy architecture to establish the relationships between canopy GPP and radiation absorbed by vegetation and quantify LUE. Although multiple LUE definitions are reported in the literature, we used a definition of efficiency of light use by photosynthetically active "green" vegetation (LUE(green)) based on radiation absorbed by "green" photosynthetically active vegetation on a daily basis. We quantified, irreversible slowly changing seasonal (constitutive) and rapidly day-to-day changing (facultative) LUE(green), as well as sensitivity of LUE(green) to the magnitude of incident radiation and drought events. Large (2-3-fold) variation of daily LUE(green) over the course of a growing season that is governed by crop physiological and phenological status was observed. The day-to-day variations of LUE(green) oscillated with magnitude 10-15% around the seasonal LUE(green) trend and appeared to be closely related to day-to-day variations of magnitude and composition of incident radiation. Our results show the high variability of LUE(green) between C3 and C4 crop species (1.43 g C/MJ vs. 2.24 g C/MJ, respectively), as well as within single crop species (i.e., maize or soybean). This implies that assuming LUE(green) as a constant value in GPP models is not warranted for the crops studied, and brings unpredictable uncertainties of remote GPP estimation, which should be accounted for in LUE models. The uncertainty of GPP estimation due to facultative and constitutive changes in LUE(green) can be considered as a critical component of the total error budget in the context of remotely sensed based estimations of GPP. The quantitative framework of LUE(green) estimation presented here offers a way of characterizing LUE(green) in plants that can be used to assess their phenological and physiological status and vulnerability to drought under current and future climatic conditions and is essential for calibration and validation of globally applied LUE algorithms.
Copyright © 2015 Elsevier GmbH. All rights reserved.

Entities:  

Keywords:  Absorbed radiation; Gross primary production; Light use efficiency; Photosynthesis; Remote sensing

Mesh:

Year:  2015        PMID: 25723474     DOI: 10.1016/j.jplph.2014.12.015

Source DB:  PubMed          Journal:  J Plant Physiol        ISSN: 0176-1617            Impact factor:   3.549


  4 in total

1.  Nitrogen and plant population change radiation capture and utilization capacity of sunflower in semi-arid environment.

Authors:  Muhammad Awais; Aftab Wajid; Muhammad Usman Bashir; Muhammad Habib-Ur-Rahman; Muhammad Aown Sammar Raza; Ashfaq Ahmad; Muhammad Farrukh Saleem; Hafiz Mohkum Hammad; Muhammad Mubeen; Umer Saeed; Muhammad Naveed Arshad; Shah Fahad; Wajid Nasim
Journal:  Environ Sci Pollut Res Int       Date:  2017-06-08       Impact factor: 4.223

2.  The effect of nutrients shortage on plant's efficiency to capture solar radiations under semi-arid environments.

Authors:  Hafiz Mohkum Hammad; Farhat Abbas; Ashfaq Ahmad; Shah Fahad; Khalifa Qasim Laghari; Hesham Alharby; Wajid Farhad
Journal:  Environ Sci Pollut Res Int       Date:  2016-07-27       Impact factor: 4.223

3.  Radiation efficiency and nitrogen fertilizer impacts on sunflower crop in contrasting environments of Punjab, Pakistan.

Authors:  Wajid Nasim; Ashfaq Ahmad; Asad Amin; Muhammad Tariq; Muhammad Awais; Muhammad Saqib; Khawar Jabran; Ghulam Mustafa Shah; Syeda Refat Sultana; Hafiz Mohkum Hammad; Muhammad Ishaq Asif Rehmani; Muhammad Zaffar Hashmi; Muhammad Habib Ur Rahman; Veysel Turan; Shah Fahad; Shah Suad; Aziz Khan; Shahzad Ali
Journal:  Environ Sci Pollut Res Int       Date:  2017-11-04       Impact factor: 4.223

4.  Estimating photosynthetic capacity from leaf reflectance and Chl fluorescence by coupling radiative transfer to a model for photosynthesis.

Authors:  Nastassia Vilfan; Christiaan van der Tol; Wouter Verhoef
Journal:  New Phytol       Date:  2019-04-13       Impact factor: 10.151

  4 in total

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