Sodium Chloride Tolerance during Germination and Seedling Stages of Tomato (Solanum lycopersicum L.) Lines Native to Mexico

Author:

López-Méndez Ariadna Goreti1,Rodríguez-Pérez Juan Enrique1ORCID,Mascorro-Gallardo José Oscar1,Sahagún-Castellanos Jaime1,Lobato-Ortiz Ricardo2

Affiliation:

1. Departamento de Fitotecnia, Instituto de Horticultura, Universidad Autónoma Chapingo, Km 38.5 Carretera México-Texcoco, Chapingo 56230, Estado de México, Mexico

2. Colegio de Postgraduados, Campus Montecillo, Km 36.5 Carretera México-Texcoco, Montecillo 56230, Estado de México, Mexico

Abstract

Tomato is considered moderately sensitive to salinity, which detracts from the quality and yield of its fruit; therefore, wild populations have been used as a genetic resource. The aim of this research was to identify lines derived from wild tomato populations with tolerance to salinity during the germination and seedling stages. During germination, 52 wild lines and 2 commercial hybrids (Imperial®, Reserva®) were subjected to treatment with 150 mM and 0 mM NaCl and evaluated. The test was carried out for 20 days in a germination chamber with constant darkness, a temperature of 25 ± 2 °C and relative humidity conditions of 80 ± 4%. At the seedling stage, 22 wild tomato lines with the best performance in the germination test and 2 commercial hybrids (Imperial®, Topanga®) were evaluated for 12 days in a floating raft system. Concentrations of 175 mM and 0 mM of NaCl were used. During germination, the saline condition decreased the germination percentage (65.2%), speed of germination (88.2%), steam length (72.5%), root length (46.56%), number of normal plants (59.5%), stem dry matter (68.78%), root dry matter (61.99%), and total dry matter (67.1%). At the seedling stage, this condition decreased (p < 0.05) the aerial part dry matter (46.37%), leaf area (59.35%), root length (42.43%), final plant height (40.24%), and growth rate (71.42%). Seventeen tolerant genotypes were identified in one of the two developmental stages, while one genotype showed tolerance in both stages. These results indicate that there are different response mechanisms in each developmental stage. Native tomatoes play an important role in the identification of tolerant genotypes since they can be used as genetic resources for obtaining commercial genotypes with salt tolerance.

Funder

Universidad Autónoma Chapingo

Publisher

MDPI AG

Reference69 articles.

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2. Unmanned Aerial Vehicle-Based Phenotyping Using Morphometric and Spectral Analysis Can Quantify Responses of Wild Tomato Plants to Salinity Stress;Johansen;Front. Plant Sci.,2019

3. Secretaría de Agricultura y Desarrollo Rural (2024, April 24). Mapa Agrícola de Afectación por Salinidad en México. Available online: https://www.gob.mx/agricultura/acciones-y-programas/mapa-agricola-de-afectacion-por-salinidad-en-mexico.

4. Beneficial effects of silicon in alleviating salinity stress of tomato seedlings grown under sand culture;Li;Acta Physiol. Plant.,2015

5. Characteristics of Root Cells during In Vitro Rhizogenesis under Action of NaCl in Two Tomato Genotypes Differing in Salt Tolerance;Bogoutdinova;Int. J. Plant Biol.,2023

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