4.7 Article

Integration of environmental metabolomics and physiological approach for evaluation of saline pollution to rice plant

期刊

ENVIRONMENTAL POLLUTION
卷 286, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2021.117214

关键词

Salinity pollution; Nuclear magnetic resonance; Metabolomics profiling

资金

  1. Fundamental Research Grant Scheme (FRGS) from Ministry of Higher Education Malaysia [UMT/RMC/FRGS/1/14/59342]

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This study investigates the cellular mechanisms of salinity stress recovery in plants by comparing tolerance and susceptible genotypes, revealing upregulation of specific metabolites in the recovered-tolerant genotype. Rice can survive in high saline affected areas with the right selection of salt-tolerant species, showcasing potential for sustainable farming practices.
Salinisation of soil is associated with urban pollution, industrial development and rising sea level. Understanding how high salinity is managed at the plant cellular level is vital to increase sustainable farming output. Previous studies focus on plant stress responses under salinity tolerance. Yet, there is limited knowledge about the mechanisms involved from stress state until the recovery state; our research aims to close this gap. By using the most tolerance genotype (SS1-14) and the most susceptible genotype (SS2-18), comparative physiological, metabolome and post-harvest assessments were performed to identify the underlying mechanisms for salinity stress recovery in plant cells. The up regulation of glutamine, asparagine and malonic acid were found in recovered-tolerant genotype, suggesting a role in the regulation of panicle branching and spikelet formation for survival. Rice could survive up to 150 mM NaCl (-15 ds/m) with declined of production rate 5e20% ranged from tolerance to susceptible genotype. This show that rice farming may still be viable on the high saline affected area with the right selection of salt-tolerant species, including glycophytes. The salt recovery biomarkers identified in this study and the adaption underlined could be empowered to address salinity problem in rice field. 0 2021 Elsevier Ltd. All rights reserved.

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