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Remediation of salt and boron-affected soil by addition of organic matter: An investigation into improving tomato plant productivity

  • Universidad de Tarapacá

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

To mitigate the effect of salt stress and excess B in soil and consequently increase crop yield and improve the behaviour of cv. "Poncho Negro" there are low-cost strategies such as the application of organic amendments. This study aimed at remediating excess salt (150 mM NaCl) and B (20 mg L–1 B) in soil using organic matter treatment (4% and 6%). Stress was supplied by irrigation. The rate of net CO2 assimilation, B, Na+, K and Ca2+ content, soluble sugars and proline were measured. All growth parameters measured were higher with 6% organic matter (OM) in soil than with 4% OM, including salinity treatments and excessive B, while Na+ and B concentrations were reduced in leaves and roots. The photosynthesis rate was maintained at the level of control plants with 6% OM applied in soil in treatments with salinity alone and with excess B. In the salinity alone treatment there was a marked increase in the content of compatible solutes, but with the application of 6% OM their content was reduced by more than 100%. The remediation of salt and boron-affected soil by addition of organic matter (6%) is an effective way to improve the behaviour of tomato.

Translated title of the contributionRemediación a la sal y boro que afecta al suelo, mediante la adición de materia orgánica: Una investigación para mejorar la productividad de plantas de tomate
Original languageEnglish
Pages (from-to)25-32
Number of pages8
JournalIdesia
Volume34
Issue number3
DOIs
StatePublished - Jun 2016

Keywords

  • Boric acid
  • Organic matter
  • Salinity
  • Solanum lycopersicum L

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