Literature DB >> 32315911

The excess of phosphorus in soil reduces physiological performances over time but enhances prompt recovery of salt-stressed Arundo donax plants.

Claudia Cocozza1, Federico Brilli2, Sara Pignattelli3, Susanna Pollastri3, Cecilia Brunetti3, Cristina Gonnelli4, Roberto Tognetti5, Mauro Centritto3, Francesco Loreto6.   

Abstract

Arundo donax L. is an invasive grass species with high tolerance to a wide range of environmental stresses. The response of potted A. donax plants to soil stress characterized by prolonged exposure (43 days) to salinity (+Na), to high concentration of phosphorus (+P), and to the combination of high Na and P (+NaP) followed by 14 days of recovery under optimal nutrient solution, was investigated along the entire time-course of the experiment. After an exposure of 43 days, salinity induced a progressive decline in stomatal conductance that hampered A. donax growth through diffusional limitations to photosynthesis and, when combined with high P, reduced the electron transport rate. Isoprene emission from A. donax leaves was stimulated as Na+ concentration raised in leaves. Prolonged growth in P-enriched substrate did not significantly affect A. donax performance, but decreased isoprene emission from leaves. Prolonged exposure of A. donax to + NaP increased the leaf level of H2O2, stimulated the production of carbohydrates, phenylpropanoids, zeaxanthin and increased the de-epoxidation state of the xanthophylls. This might have resulted in a higher stress tolerance that allowed a fast and full recovery following stress relief. Moreover, the high amount of ABA-glucose ester accumulated in leaves of A. donax exposed to + NaP might have favored stomata re-opening further sustaining the observed prompt recovery of photosynthesis. Therefore, prolonged exposure to high P exacerbated the negative effects of salt stress in A. donax plants photosynthetic performances, but enhanced activation of physiological mechanisms that allowed a prompt and full recovery after stress.
Copyright © 2020 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  Arundo donax; Biomass production; Phosphorus; Salinity; Stress tolerance

Mesh:

Substances:

Year:  2020        PMID: 32315911     DOI: 10.1016/j.plaphy.2020.04.011

Source DB:  PubMed          Journal:  Plant Physiol Biochem        ISSN: 0981-9428            Impact factor:   4.270


  4 in total

1.  Identification of Known and Novel Arundo donax L. MicroRNAs and Their Targets Using High-Throughput Sequencing and Degradome Analysis.

Authors:  Silvia Rotunno; Claudia Cocozza; Vitantonio Pantaleo; Paola Leonetti; Loris Bertoldi; Giorgio Valle; Gian Paolo Accotto; Francesco Loreto; Gabriella Stefania Scippa; Laura Miozzi
Journal:  Life (Basel)       Date:  2022-04-27

2.  Physiological Adaptation of Three Wild Halophytic Suaeda Species: Salt Tolerance Strategies and Metal Accumulation Capacity.

Authors:  Farag Ibraheem; Ateeq Al-Zahrani; Ahmed Mosa
Journal:  Plants (Basel)       Date:  2022-02-17

3.  Root Exposure to 5-Aminolevulinic Acid (ALA) Affects Leaf Element Accumulation, Isoprene Emission, Phytohormonal Balance, and Photosynthesis of Salt-Stressed Arundo donax.

Authors:  Federico Brilli; Sara Pignattelli; Rita Baraldi; Luisa Neri; Susanna Pollastri; Cristina Gonnelli; Alessio Giovannelli; Francesco Loreto; Claudia Cocozza
Journal:  Int J Mol Sci       Date:  2022-04-13       Impact factor: 6.208

4.  Effects of nitrogen and phosphorus addition on growth and leaf nitrogen metabolism of alfalfa in alkaline soil in Yinchuan Plain of Hetao Basin.

Authors:  Gu Xudong; Zhang Fengju; Wang Teng; Xie Xiaowei; Jia Xiaohui; Xu Xing
Journal:  PeerJ       Date:  2022-04-13       Impact factor: 3.061

  4 in total

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