Effects of Polyploidy on Physiological Performance of Acclimatized Solanum betaceum Cav. Plants under Water Deficit

Author:

Correia Sandra1ORCID,Braga Ana1,Martins João1ORCID,Correia Barbara2ORCID,Pinto Glória2ORCID,Canhoto Jorge1ORCID

Affiliation:

1. Centre for Functional Ecology, Laboratory Associate Terra, Department of Life Sciences, University of Coimbra, 3000-456 Coimbra, Portugal

2. Centre for Environmental and Marine Studies (CESAM), Department of Biology, University of Aveiro, 3810-193 Aveiro, Portugal

Abstract

The urgent need to identify stress-tolerant genotypes and understand their inherent genetic plasticity is one of the major targets of research and breeding programs. Species that are cultivated in areas that are prone to drought need to be able to tolerate water stress (WS) while still displaying features that are economically valuable. Tamarillo (Solanum betaceum) is a solanaceous fruit crop with increasing agronomic interest due to the nutritional properties of its edible fruits and its biotechnological potential. Several protocols have been established for the in vitro culture of this species and controlled hybridization, as well as for the induction of tetraploidy. Nevertheless, the impact of WS on S. betaceum performance has been poorly studied, and nothing is known about the role of ploidy status on this response. Since no morphological differences were noticed between diploids and tetraploids at the end of the acclimatization period, we hypothesized that ploidy level may have a role in plant drought responses. Thus, micropropagated and acclimatized tamarillo diploid (2n = 2x = 24) and tetraploid (4n = 4x = 48) plants were exposed to WS, and several physiological parameters were evaluated, such as plant growth, water potential, photosynthetic performance, sugars, proline, and MDA levels. Water stress did not affect plant growth in both diploids and tetraploids, but it induced stomatal closure and reduced the net CO2 assimilation rate. Water stress also reduced the photosynthetic efficiency of PSII, but no differences were found in the total chlorophyll content. From all the parameters analyzed, tetraploid plants showed a better response under water shortage conditions when considering water potential (WP). Metabolite analysis indicated no significant differences in the accumulation of soluble sugars and MDA in WS plants but a significant increase in proline accumulation in diploids exposed to WS. These observed differences in parameters such as WP and proline accumulation point to mechanisms of osmoregulation and stress signaling that differ between diploid and tetraploid plants, particularly in WS conditions, demonstrating that tetraploids can adapt better to water shortage conditions than their diploid counterparts.

Funder

BP4PP—Tamarillo breeding: better plants for better products

Foundation for Science and Technology (FCT) and the European Regional Development Fund

the R&D Unit Centre for Functional Ecology—Science for People and the Planet

FCT/MCTES

Publisher

MDPI AG

Subject

Forestry

Reference42 articles.

1. Meadows, L.R. (2021, May 18). Growing Tamarillo Relatives. The New Zealand Home Garden. Available online: www.naturalhub.com.

2. Characterization and thermal lability of carotenoids and vitamin C of tamarillo fruit (Solanum betaceum Cav.);Mertz;Food Chem.,2009

3. Comparison of antioxidant properties of tamarillo (Cyphomandra betacea), cherry tomato (Solanum lycopersicum var. cerasiforme) and tomato (Lycopersicon esculentum);Maisarah;Int. Food Res. J.,2014

4. Integrative comparative analyses of transcript and metabolite profiles from pepper and tomato ripening and development stages uncovers species-specific patterns of network regulatory behavior;Osorio;Plant Physiol.,2012

5. Micropropagation methods for blueberries and tamarillos;Cohen;Comb. Proc. Int. Plant Prop. Soc.,1979

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