Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing Radiation
The proline is an important amino acid that takes part on live cell protection as well as adaptation processes to adverse environment stress factors. The effects of ionizing radiation coupled with salinity or hyperthermia stress factors on pea seedlings were investigated. Different growth reactions...
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International Journal of Secondary Metabolite
2018-07-01
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doaj-406f0d9290c94174b17cb46359aa86c02020-11-25T01:58:27ZengInternational Journal of Secondary MetaboliteInternational Journal of Secondary Metabolite2148-69052018-07-01529410810.21448/ijsm.407285618Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing RadiationOlena NesterenkoNamik RashydovThe proline is an important amino acid that takes part on live cell protection as well as adaptation processes to adverse environment stress factors. The effects of ionizing radiation coupled with salinity or hyperthermia stress factors on pea seedlings were investigated. Different growth reactions and free proline content in root of the Pisum sativum L. seedlings for all treatments were evaluated. The received results of growth parameters show that some doses of ionizing radiation assists to plants in resistance to salt and temperature stressors, however this resistance is short-term. Deviation of plants reactions from additive effect to synergism or antagonism that can represent crosstalk of signal system was observed. This work proves that concentration of proline depends of stressors kind, their combinations and doses. The free proline level is a result of opposite processes of its synthesis and destruction, release and binding. The quantification of this amino acid is useful to assess the physiological status of signal systems crosstalk and more generally to understand stress tolerance of plants.https://dergipark.org.tr/tr/pub/ijsm/issue/34119/407285?publisher=ijateprolinesalt stressheat stressionizing radiationsignal systems crosstalkpeapisum sativum l. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Olena Nesterenko Namik Rashydov |
spellingShingle |
Olena Nesterenko Namik Rashydov Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing Radiation International Journal of Secondary Metabolite proline salt stress heat stress ionizing radiation signal systems crosstalk pea pisum sativum l. |
author_facet |
Olena Nesterenko Namik Rashydov |
author_sort |
Olena Nesterenko |
title |
Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing Radiation |
title_short |
Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing Radiation |
title_full |
Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing Radiation |
title_fullStr |
Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing Radiation |
title_full_unstemmed |
Features of the Proline Synthesis of Pea Seedlings in Depend of Salt and Hyperthermia Treatment Coupled with Ionizing Radiation |
title_sort |
features of the proline synthesis of pea seedlings in depend of salt and hyperthermia treatment coupled with ionizing radiation |
publisher |
International Journal of Secondary Metabolite |
series |
International Journal of Secondary Metabolite |
issn |
2148-6905 |
publishDate |
2018-07-01 |
description |
The
proline is an important amino acid that takes part on live cell protection as
well as adaptation processes to adverse environment stress factors. The effects
of ionizing radiation coupled with salinity or hyperthermia stress factors on
pea seedlings were investigated. Different growth reactions and free proline
content in root of the Pisum sativum L.
seedlings for all treatments were evaluated. The received results of growth
parameters show that some doses of ionizing radiation assists to plants in
resistance to salt and temperature stressors, however this resistance is
short-term. Deviation of plants reactions from additive effect to synergism or
antagonism that can represent crosstalk of signal system was observed. This
work proves that concentration of proline depends of stressors kind, their
combinations and doses. The free proline level is a result of opposite
processes of its synthesis and destruction, release and binding. The
quantification of this amino acid is useful to assess the physiological status
of signal systems crosstalk and more generally to understand stress tolerance
of plants. |
topic |
proline salt stress heat stress ionizing radiation signal systems crosstalk pea pisum sativum l. |
url |
https://dergipark.org.tr/tr/pub/ijsm/issue/34119/407285?publisher=ijate |
work_keys_str_mv |
AT olenanesterenko featuresoftheprolinesynthesisofpeaseedlingsindependofsaltandhyperthermiatreatmentcoupledwithionizingradiation AT namikrashydov featuresoftheprolinesynthesisofpeaseedlingsindependofsaltandhyperthermiatreatmentcoupledwithionizingradiation |
_version_ |
1724969511834091520 |