Silicon induces hormetic dose-response effects on growth and concentrations of chlorophylls, amino acids and sugars in pepper plants during the early developmental stage

Author:

Trejo-Téllez Libia Iris1,García-Jiménez Atonaltzin2,Escobar-Sepúlveda Hugo Fernando3,Ramírez-Olvera Sara Monzerrat2,Bello-Bello Jericó Jabín4,Gómez-Merino Fernando Carlos1ORCID

Affiliation:

1. Department of Soil Science. Laboratory of Plant Nutrition, College of Postgraduates in Agricultural Sciences Campus Montecillo, Texcoco, State of Mexico, Mexico

2. Department of Plant Physiology, College of Postgraduates in Agricultural Sciences Campus Montecillo, Texcoco, State of Mexico, Mexico

3. Institute of Biological Sciences, University of Talca, Talca, Maule, Chile

4. Department of Biotechnology, CONACYT-College of Postgraduates in Agricultural Sciences Campus Córdoba, Amatlán de los Reyes, Veracruz, Mexico

Abstract

BackgroundSilicon (Si) is a beneficial element that has been proven to influence plant responses including growth, development and metabolism in a hormetic manner.MethodsIn the present study, we evaluated the effect of Si on the growth and concentrations of chlorophylls, total amino acids, and total sugars of pepper plants (Capsicum annuumL.) during the early developmental stage in a hydroponic system under conventional (unstressed) conditions. We tested four Si concentrations (applied as calcium silicate): 0, 60, 125 and 250 mg L−1, and growth variables were measured 7, 14, 21 and 28 days after treatment (dat), while biochemical variables were recorded at the end of the experiment, 28 dat.ResultsThe application of 125 mg L−1Si improved leaf area, fresh and dry biomass weight in leaves and stems, total soluble sugars, and concentrations of chlorophyllsaandbin both leaves and stems. The amino acids concentration in leaves and roots, as well as the stem diameter were the highest in plants treated with 60 mg L−1Si. Nevertheless, Si applications reduced root length, stem diameter and total free amino acids in leaves and stems, especially when applied at the highest concentration (i.e., 250 mg L−1Si).ConclusionThe application of Si has positive effects on pepper plants during the early developmental stage, including stimulation of growth, as well as increased concentrations of chlorophylls, total free amino acids and total soluble sugars. In general, most benefits from Si applications were observed in the range of 60–125 mg L−1Si, while some negative effects were observed at the highest concentration applied (i.e., 250 mg L−1Si). Therefore, pepper is a good candidate crop to benefit from Si application during the early developmental stage under unstressed conditions.

Funder

National Council of Science and Technology

Mexican Agency for International Development Cooperation

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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