Proteomics, metabolomics, and ionomics perspectives of salinity tolerance in halophytes

Протеомные, метаболомные и иономные аспекты солеустойчивости галофитов
Asha Kumari, Paromita Das, Asish Kumar Parida, Pradeep K. Agarwal
2015-07-29

halophytesionomicsmetabolomicsproteomicssalinity tolerance
Halophytes are plants which naturally survive in saline environment. They account for ∼1% of the total flora of the world. They include both dicots and monocots and are distributed mainly in arid, semi-arid inlands and saline wet lands along the tropical and sub-tropical coasts. Salinity tolerance in halophytes depends on a set of ecological and physiological characteristics that allow them to grow and flourish in high saline conditions. The ability of halophytes to tolerate high salt is determined by the effective coordination between various physiological processes, metabolic pathways and protein or gene networks responsible for delivering salinity tolerance. The salinity responsive proteins belong to diverse functional classes such as photosynthesis, redox homeostasis; stress/defense, carbohydrate and energy metabolism, protein metabolism, signal transduction and membrane transport. The important metabolites which are involved in salt tolerance of halophytes are proline and proline analog (4-hydroxy-N-methyl proline), glycine betaine, pinitol, myo-inositol, mannitol, sorbitol, O-methylmucoinositol, and polyamines. In halophytes, the synthesis of specific proteins and osmotically active metabolites control ion and water flux and support scavenging of oxygen radicals under salt stress condition. The present review summarizes the salt tolerance mechanisms of halophytes by elucidating the recent studies that have focused on proteomic, metabolomic, and ionomic aspects of various halophytes in response to salinity. By integrating the information from halophytes and its comparison with glycophytes could give an overview of salt tolerance mechanisms in halophytes, thus laying down the pavement for development of salt tolerant crop plants through genetic modification and effective breeding strategies.
1
Halophyte salinity tolerance depends on coordinated physiological processes, metabolic pathways, and protein or gene networks.
2
Integrating proteomic, metabolomic, and ionomic evidence from halophytes and glycophytes can guide development of salt-tolerant crops through breeding and genetic modification.
3
Key osmoprotective metabolites associated with halophyte salt tolerance include proline, glycine betaine, pinitol, inositols, sugar alcohols, and polyamines.
4
Salinity-responsive proteins span photosynthesis, redox homeostasis, stress defense, carbohydrate and energy metabolism, protein metabolism, signaling, and membrane transport.
5
Specific proteins and osmolytes regulate ion and water fluxes while supporting reactive oxygen species scavenging under salt stress.

Halophytes under saline stress

Proteomic, metabolomic, and ionomic mechanisms of salinity tolerance, including coordinated physiological processes, metabolic pathways, protein networks, ion and water homeostasis, and reactive oxygen species scavenging

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2015-07-29
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Asha Kumari
Paromita Das
Asish Kumar Parida
Pradeep K. Agarwal
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