Quantification of the effects of architectural traits on dry mass production and light interception of tomato canopy under different temperature regimes using a dynamic functional-structural plant model

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Chen, Tsu-Wei; Thi My Nguyet Nguyen; Kahlen, Katrin; Stuetzel, Hartmut: Quantification of the effects of architectural traits on dry mass production and light interception of tomato canopy under different temperature regimes using a dynamic functional-structural plant model. In: Journal of Experimental Botany 65 (2014), S. 6399-6410. DOI: http://dx.doi.org/10.1093/jxb/eru356

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To cite the version in the repository, please use this identifier: https://doi.org/10.15488/447

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Sum total of downloads: 249




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Abstract: 
There is increasing interest in evaluating the environmental effects on crop architectural traits and yield improvement. However, crop models describing the dynamic changes in canopy structure with environmental conditions and the complex interactions between canopy structure, light interception, and dry mass production are only gradually emerging. Using tomato (Solanum lycopersicum L.) as a model crop, a dynamic functional-structural plant model (FSPM) was constructed, parameterized, and evaluated to analyse the effects of temperature on architectural traits, which strongly influence canopy light interception and shoot dry mass. The FSPM predicted the organ growth, organ size, and shoot dry mass over time with high accuracy (>85%). Analyses of this FSPM showed that, in comparison with the reference canopy, shoot dry mass may be affected by leaf angle by as much as 20%, leaf curvature by up to 7%, the leaf length: width ratio by up to 5%, internode length by up to 9%, and curvature ratios and leaf arrangement by up to 6%. Tomato canopies at low temperature had higher canopy density and were more clumped due to higher leaf area and shorter internodes. Interestingly, dry mass production and light interception of the clumped canopy were more sensitive to changes in architectural traits. The complex interactions between architectural traits, canopy light interception, dry mass production, and environmental conditions can be studied by the dynamic FSPM, which may serve as a tool for designing a canopy structure which is 'ideal' in a given environment.
License of this version: CC BY 3.0 Unported
Document Type: Article
Publishing status: publishedVersion
Issue Date: 2014-12
Appears in Collections:Naturwissenschaftliche Fakultät

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pos. country downloads
total perc.
1 image of flag of Germany Germany 204 81.93%
2 image of flag of United States United States 22 8.84%
3 image of flag of China China 12 4.82%
4 image of flag of Russian Federation Russian Federation 3 1.20%
5 image of flag of Indonesia Indonesia 2 0.80%
6 image of flag of Vietnam Vietnam 1 0.40%
7 image of flag of Korea, Republic of Korea, Republic of 1 0.40%
8 image of flag of Spain Spain 1 0.40%
9 image of flag of Czech Republic Czech Republic 1 0.40%
10 image of flag of Brazil Brazil 1 0.40%
    other countries 1 0.40%

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