SciELO - Scientific Electronic Library Online

 
vol.15 issue3Identification of agroclimatic suitability in the municipality of Fusagasuga (Cundinamarca) for pea crops (Pisum sativum L.) using participatory mappingCalculation of the thermal units for 13 codes of the BBCH scale of 12 progenies of quinoa in the growing conditions of the Brazilian savanna author indexsubject indexarticles search
Home Pagealphabetic serial listing  

Services on Demand

Journal

Article

Indicators

Related links

  • On index processCited by Google
  • Have no similar articlesSimilars in SciELO
  • On index processSimilars in Google

Share


Revista Colombiana de Ciencias Hortícolas

Print version ISSN 2011-2173

Abstract

CASTILLEJO-MORALES, ANGELA; JARMA-OROZCO, ALFREDO  and  POMPELLI, MARCELO F.. Physiological and morphological features denote that salt stress in Stevia rebaudiana is based on nonstomatic instead of stomatic limitation. rev.colomb.cienc.hortic. [online]. 2021, vol.15, n.3, e12928.  Epub Jan 07, 2023. ISSN 2011-2173.  https://doi.org/10.17584/rcch.2021v15i3.12928.

Stevia rebaudiana is a very widespread plant throughout the world, due to the production of diterpenic steviol glycosides, with high sweetening power, being up to 300 times sweeter than sugar at a concentration of 0.4% (w/v). In the Colombian Caribbean, research has focused on evaluating the adaptation and management of commercial genotypes and experimental lines, however, their behavior against soil salinization is unknown. The objective of this research was to evaluate the response of some physiological and morphological characteristics of two promising genotypes against salt stress. The relationship between gas exchange, chlorophyll a fluorescence, and growth parameters was modulated as a function of the NaCl concentration. Although stomatal conductance and perspiration did not show a response to salt levels, the reduction in net photosynthesis as salinity increased was not associated with stomatal effects, but rather with a drop in the rate of electron transport, which articulates the absorption of light energy and its conversion into photoassimilates. Therefore, it could be inferred that salinity-stressed S. rebaudiana plants are more sensitive to non-stomatal limitation than to stomatal limitation.

Keywords : biomass distribution; disruption between energy input and photosynthesis; gas exchange; salinity; stomatal conductance.

        · abstract in Spanish     · text in English     · English ( pdf )