Mechanisms for water-use efficiency between bean cultivars tolerant to drought are different

Authors

  • Victor Montero Tavera Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias Author
  • César Leobardo Aguirre Mancilla Instituto Tecnológico de Roque Author
  • Jorge Alberto Acosta Gallegos Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias Author
  • Juan Gabriel Rámirez Pimentel Instituto Tecnológico de Roque Author
  • Ana Isabel Mireles Arriaga Universidad de Guanajuato Author
  • Jorge Eric Ruiz Nieto Universidad de Guanajuato Author

DOI:

https://doi.org/10.4025/actasciagron.v40i1.39378

Keywords:

Phaseolus vulgaris, physiological characterization, expression profiles, water regimens, production water cost.

Abstract

 

The water-use efficiency (WUE) has been proposed as an alternative to mitigate the effects of climate change in agriculture and to reduce pressure on water resources, mainly in species with high water requirements which are grown under rainfed conditions. The aim of this study was to characterize the instantaneous, integral and molecular WUE of four bean cultivars contrasting in their response under limiting water conditions to compare the component mechanisms of this trait between drought tolerant and susceptible cultivars. Results indicated that tolerant cultivars increased their instantaneous WUE in comparison to susceptible ones; however, there was a difference between cultivars since Pinto Villa had a higher stomatal conductance and transpiration rate, leading to a higher water cost to produce seed than Pinto Saltillo. Furthermore, ycf2, rrn16, rpoC2, hardy, ndhK, erecta and ycf1 WUE genes were only overexpressed in Pinto Saltillo under limited water conditions, which turned out to be the most WUE efficient cultivar. Therefore, the component mechanisms of WUE are different even between drought tolerant cultivars and the mechanisms by which the tolerant cultivars increased their instantaneous and integral WUE were different.

 

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Author Biographies

  • Victor Montero Tavera, Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias
    Unidad de Biotecnológia
  • César Leobardo Aguirre Mancilla, Instituto Tecnológico de Roque
    Departamento de Estudios de Posgrado e Investigación
  • Jorge Alberto Acosta Gallegos, Instituto Nacional de Investigaciones Forestales, Agrícolas y Pecuarias
    Programa de Mejoramiento Génetico de Frijol
  • Juan Gabriel Rámirez Pimentel, Instituto Tecnológico de Roque
    Departamento de Estudios de Posgrado e Investigación
  • Ana Isabel Mireles Arriaga, Universidad de Guanajuato
    Departamento de Agronomía
  • Jorge Eric Ruiz Nieto, Universidad de Guanajuato
    Departamento de Agronomía

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Published

2018-08-01

Issue

Section

Genetics and Plant Breeding

How to Cite

Tavera, V. M., Aguirre Mancilla, C. L., Acosta Gallegos, J. A., Rámirez Pimentel, J. G., Mireles Arriaga, A. I., & Ruiz Nieto, J. E. (2018). Mechanisms for water-use efficiency between bean cultivars tolerant to drought are different. Acta Scientiarum. Agronomy, 40(1), e39378. https://doi.org/10.4025/actasciagron.v40i1.39378

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