Modeling light below tree canopies overestimates net photosynthesis and radiation use efficiency in understory crops by averaging light in space and time

Author:

Rosati AdolfoORCID,Wolz Kevin J,Murphy Lora,Ponti LuigiORCID,Jose Shibu

Funder

University of Missouri

Horizon 2020

Publisher

Elsevier BV

Subject

Atmospheric Science,Agronomy and Crop Science,Global and Planetary Change,Forestry

Reference60 articles.

1. Advances in knowledge of processes in soil–tree–crop interactions in parkland systems in the West African Sahel: a review;Bayala;Agric. Ecosyst. Environ,2015

2. Brisson, N., M. Launay, B. Mary, and N. Beaudoin (Eds.) 2009. Conceptual Basis, Formalisations and Parameterization of the STICS Crop Model, 304 pp., Ed. Quae, Versailles, France.

3. Impact of alley cropping agroforestry on stocks, forms and spatial distribution of soil organic carbon — a case study in a Mediterranean context;Cardinael;Geoderma,2015

4. Optimizing rubisco and its regulation for greater resource use efficiency;Carmo‐Silva;Plant Cell Environ.,2015

5. Botanical determinants of foliage clumping and light interception in two-year-old coppice poplar canopies: assessment from 3-D plant mockups;Casella;Ann. Forest Sci.,2007

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