Productivity of Clonal Ilex paraguariensis Genotypes in a Semi-Hydroponic System Is Reduced by Shading

Author:

de Aguiar Natália Saudade1ORCID,Moreno Gabira Mônica1ORCID,de Cássia Tomasi Jéssica1ORCID,Mendes Duarte Manoela2ORCID,Marcolino Vieira Leandro3ORCID,José Lavoranti Osmir2ORCID,Wendling Ivar2ORCID

Affiliation:

1. Federal University of Paraná (UFPR), Department of Forest Sciences , Prefeito Lothário Meissner Av. 632, Jardim Botânico, Curitiba, Paraná, 80210-170 , Brazil

2. Embrapa Florestas , Estrada da Ribeira km 111, Parque Monte Castelo, Colombo, Paraná, 83411-000 , Brazil

3. Federal University of Paraná (UFPR), Department of Plant Sciences , Rua dos Funcionários 1540, Cabral, Curitiba, Paraná, 80035-060 , Brazil

Abstract

Abstract Yerba mate (Ilex paraguariensis A. St.-Hil.) is a South American tree cultivated in systems with or without shading at different intensities; however, there is no consensus about shading effect on leaf biomass production. Therefore, we evaluated yerba mate clones under different shading levels over one year to determine the influence of shading and genotype on biomass production. Two yerba mate genotypes (EC22 and EC40), cultivated in a semi-hydroponic system, were subjected to five shading levels (0%, 40%, 51%, 76%, and 82%) in a greenhouse. We determined total fresh biomass (branches and leaves) and fresh biomass of young and mature leaves on six harvests. Biomass production was influenced by harvest season, genotype, and shading levels. Spring and summer harvests provided higher biomass production than the other seasons. EC40 genotype produced higher total fresh and young leaf biomass than EC22. Although we observed differences among genotypes and harvest seasons, shading was the factor that most influenced biomass production. Total fresh biomass productivity was reduced 6.8 times between 0% and 82% shading for the EC40 genotype. Thus, we do not recommend high levels of shade, such as 76% and 82%, in this new yerba mate cultivation system.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior—Brasil

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Oxford University Press (OUP)

Subject

Ecological Modeling,Ecology,Forestry

Reference36 articles.

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3. Effect of cover on the development and production of secondary compounds of Maytenus ilicifolia and Ilex paraguariensisin agroforestry systems;Borges;Ciência Florest.,2019

4. Ilex paraguariensis as a healthy food supplement for the future world;Bracesco;Biomedical Journal of Scientific & Technical Research,2019

5. Quantitative genetic analysis of methylxanthines and phenolic compounds in mate progenies;Cardozo Junior;Pesqui. Agropecuária Bras.,2010

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