Literature DB >> 31102278

Improving water use efficiency by changing hydraulic and stomatal characteristics in soybean exposed to drought: the involvement of nitric oxide.

Letícia F de Sousa1, Paulo E de Menezes-Silva1, Lucas L Lourenço1, Jeroni Galmés2, Aline C Guimarães1, Aline F da Silva1, Ana P Dos Reis Lima1, Liliane M M Henning3, Alan C Costa1, Fabiano G Silva1, Fernanda Dos Santos Farnese1.   

Abstract

A variety of cellular responses is needed to ensure the plants survival during drought, but little is known about the signaling mechanisms involved in this process. Soybean cultivars (EMBRAPA 48 and BR 16, tolerant and sensitive to drought, respectively) were exposed to the following treatments: control conditions (plants in field capacity), drought (20% of available water in the soil), sodium nitroprusside (SNP) treatment (plants irrigated and treated with 100-µM SNP [SNP-nitric oxide (NO) donor molecule], and Drought + SNP (plants subjected to drought and SNP treatment). Plants remained in these conditions until the reproductive stage and were evaluated for physiological (photosynthetic pigments, chlorophyll a fluorescence and gas exchange rates), hydraulic (water potential, osmotic potential and leaf hydraulic conductivity) and morpho-anatomical traits (biomass, venation density and stomatal characterization). Exposure to water deficit considerably reduced water potential in both cultivars and resulted in decrease in photosynthesis and biomass accumulation. The addition of the NO donor attenuated these damaging effects of water deficit and increased the tolerance index of both cultivars. The results showed that NO was able to reduce plant's water loss, while maintaining their biomass production through alteration in stomatal characteristics, hydraulic conductivity and the biomass distribution pattern. These hydraulic and morpho-anatomical alterations allowed the plants to obtain, transport and lose less water to the atmosphere, even in water deficit conditions.
© 2019 Scandinavian Plant Physiology Society.

Entities:  

Year:  2019        PMID: 31102278     DOI: 10.1111/ppl.12983

Source DB:  PubMed          Journal:  Physiol Plant        ISSN: 0031-9317            Impact factor:   4.500


  1 in total

1.  Metabolic, physiological and anatomical responses of soybean plants under water deficit and high temperature condition.

Authors:  Roberto Gomes Vital; Caroline Müller; Francisco Bruno Silva Freire; Fábia Barbosa Silva; Priscila Ferreira Batista; David Fuentes; Arthur Almeida Rodrigues; Luciana Minervina Freitas Moura; Danilo Menezes Daloso; Adinan Alves Silva; Andrew Merchant; Alan Carlos Costa
Journal:  Sci Rep       Date:  2022-10-01       Impact factor: 4.996

  1 in total

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