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- W2620190187 abstract "Salinity stress negatively impacts agricultural yield throughout the world by effecting crop production. The primary reaction of plants to salinity is the reduction in leaf growth due to the osmotic effects caused by the salt outside the roots. However,physiological mechanisms behind this growth reduction are still not fully understood.Therefore, metabolic and ion concentrations in the apoplastic space of leaves are of interest in several fields of plant biology i.e response to stress, leaf growth and enzyme activities. Proteins present in the plant apoplast also reflect its broad functional diversity. Studies on the dynamic change of apoplastic proteincomposition can reveal new insights into plant responses e.g abiotic stress.A limited number of studies have dealt with the subcellular determination of cations/anions and proteins within the leaves of plants, under salinity. Therefore, we subjected the roots of salt sensitive maize (monocot) with 100 mM NaCl for 16 d andseparated the leaf tissues into apoplastic and symplastic fractions prior to analysis.Similar apoplastic fluid investigation in terms of cations/anions was done in the salt sensitive field bean (dicot) along with silicon application.The aims of the current study were to test the hypotheses that I) growth reduction is related to subcellular ion distribution within the leaves of maize II) apoplastic Na+ concentration is increased only in salt-sensitive dicot (field bean) and is significantlyreduced by silicon application under salinity stress III) which solution performed best for the extraction of apoplastic proteins? IV) changes in apoplastic proteins in maize leaves occur to account for possible roles in the growth reduction during the initialphase of salinity stress." @default.
- W2620190187 created "2017-06-05" @default.
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- W2620190187 date "2012-03-22" @default.
- W2620190187 modified "2023-09-26" @default.
- W2620190187 title "Growth-related changes in subcellular ion and protein patterns in maize and field bean leaves under salt stress" @default.
- W2620190187 hasPublicationYear "2012" @default.
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