Influence of salicylic acid pretreatment on seeds germination and some defence mechanisms of Zea mays plants under copper stress

2018
journal article
article
73
cris.lastimport.wos2024-04-09T18:58:56Z
dc.abstract.enThe study was focused on the influence of salicylic acid (SA) on maize seeds germination and on some physiological and biochemical processes in maize plants growing in the hydroponic culture under copper (Cu) stress. A significant influence of SA pretreatment on the advanced induction of the maize seeds metabolic activity and the level of the endogenous SA in germinated seeds and developing roots have been stated. Although, the ability of maize seeds to uptake SA and accumulate it in the germinated roots was confirmed, the growth inhibition of Cu-stressed maize seedlings was not ameliorated by SA seeds pretreatment. Cu-stressed plants exhibited a decrease in the photosynthetic pigment concentration and the increase in non-photochemical quenching (NPQ) - an indicator of an excess energy in PSII antenna assemblies lost as a heat. The amelioration effect of SA application was found only for carotenoids content which increased in stressed plants. It was also shown that maize roots growing in stress conditions significantly differed in the chemical composition in comparison to the roots of control plants, but the SA pretreatment did not affect these differences. On the other hand, it was found that SA seed pretreatment significantly influenced the ability of stressed plants to accumulate copper in the roots. It was stated that a higher level of exogenous SA application led to a lower accumulation of Cu ions in maize roots. Custressed plants exhibited higher oxidative stress in roots than in leaves which was manifested as an increase in the concentration of hydrogen peroxide due to stress factor application. We observed an increase in catalase (CAT) activity in leaves of Cu-stressed plants which corresponded with a lower H_{2}O_{2} content when compared with roots where the hydrogen peroxide level was higher, and the inhibition of the CAT activity was found. Furthermore, we found that the SA seed pretreatment led to a decrease in the H_{2}O_{2} content in the roots of the Custressed plants, but it did not influence the H_{2}O_{2} level in leaves. The increase in hydrogen peroxide content in the roots of Cu-stressed plants correlated with a higher activity of the MnSODI and MnSODII isoforms. It was found that SA pretreatment caused a decrease in MnSODII activity accompanied by the decrease in H_{2}O_{2} concentration. Achieved results indicated also that the changes in the chemical composition of the root tissue under copper stress constituted protection mechanisms of blocking copper flow into other plant organs. However, it might be assumed that the root tissue remodelling under Cu stress did not only prevent against the Cu ions uptake but also limited the absorption of minerals required for the normal growth leading to the inhibition of the plant development.pl
dc.affiliationWydział Biologii : Instytut Botanikipl
dc.contributor.authorMoravcová, Šárkapl
dc.contributor.authorTůma, Jiřípl
dc.contributor.authorKovalíková Dučaiová, Zuzanapl
dc.contributor.authorWaligórski, Piotrpl
dc.contributor.authorKula, Monikapl
dc.contributor.authorSaja, Dianapl
dc.contributor.authorSłomka, Aneta - 145327 pl
dc.contributor.authorBąba, Wojciech - 160065 pl
dc.contributor.authorLibik-Konieczny, Martapl
dc.date.accessioned2017-12-06T11:29:22Z
dc.date.available2017-12-06T11:29:22Z
dc.date.issued2018pl
dc.description.physical19-30pl
dc.description.volume122pl
dc.identifier.doi10.1016/j.plaphy.2017.11.007pl
dc.identifier.eissn1873-2690pl
dc.identifier.issn0981-9428pl
dc.identifier.urihttps://ruj.uj.edu.pl/xmlui/handle/item/47249
dc.languageengpl
dc.language.containerengpl
dc.rightsDodaję tylko opis bibliograficzny*
dc.rights.licenceBez licencji otwartego dostępu
dc.source.integratorfalse
dc.subject.enmaizepl
dc.subject.enheavy metalspl
dc.subject.enantioxidantspl
dc.subject.enamelioration of oxidative stresspl
dc.subtypeArticlepl
dc.titleInfluence of salicylic acid pretreatment on seeds germination and some defence mechanisms of Zea mays plants under copper stresspl
dc.title.journalPlant Physiology and Biochemistrypl
dc.typeJournalArticlepl
dspace.entity.typePublication
cris.lastimport.wos
2024-04-09T18:58:56Z
dc.abstract.enpl
The study was focused on the influence of salicylic acid (SA) on maize seeds germination and on some physiological and biochemical processes in maize plants growing in the hydroponic culture under copper (Cu) stress. A significant influence of SA pretreatment on the advanced induction of the maize seeds metabolic activity and the level of the endogenous SA in germinated seeds and developing roots have been stated. Although, the ability of maize seeds to uptake SA and accumulate it in the germinated roots was confirmed, the growth inhibition of Cu-stressed maize seedlings was not ameliorated by SA seeds pretreatment. Cu-stressed plants exhibited a decrease in the photosynthetic pigment concentration and the increase in non-photochemical quenching (NPQ) - an indicator of an excess energy in PSII antenna assemblies lost as a heat. The amelioration effect of SA application was found only for carotenoids content which increased in stressed plants. It was also shown that maize roots growing in stress conditions significantly differed in the chemical composition in comparison to the roots of control plants, but the SA pretreatment did not affect these differences. On the other hand, it was found that SA seed pretreatment significantly influenced the ability of stressed plants to accumulate copper in the roots. It was stated that a higher level of exogenous SA application led to a lower accumulation of Cu ions in maize roots. Custressed plants exhibited higher oxidative stress in roots than in leaves which was manifested as an increase in the concentration of hydrogen peroxide due to stress factor application. We observed an increase in catalase (CAT) activity in leaves of Cu-stressed plants which corresponded with a lower H_{2}O_{2} content when compared with roots where the hydrogen peroxide level was higher, and the inhibition of the CAT activity was found. Furthermore, we found that the SA seed pretreatment led to a decrease in the H_{2}O_{2} content in the roots of the Custressed plants, but it did not influence the H_{2}O_{2} level in leaves. The increase in hydrogen peroxide content in the roots of Cu-stressed plants correlated with a higher activity of the MnSODI and MnSODII isoforms. It was found that SA pretreatment caused a decrease in MnSODII activity accompanied by the decrease in H_{2}O_{2} concentration. Achieved results indicated also that the changes in the chemical composition of the root tissue under copper stress constituted protection mechanisms of blocking copper flow into other plant organs. However, it might be assumed that the root tissue remodelling under Cu stress did not only prevent against the Cu ions uptake but also limited the absorption of minerals required for the normal growth leading to the inhibition of the plant development.
dc.affiliationpl
Wydział Biologii : Instytut Botaniki
dc.contributor.authorpl
Moravcová, Šárka
dc.contributor.authorpl
Tůma, Jiří
dc.contributor.authorpl
Kovalíková Dučaiová, Zuzana
dc.contributor.authorpl
Waligórski, Piotr
dc.contributor.authorpl
Kula, Monika
dc.contributor.authorpl
Saja, Diana
dc.contributor.authorpl
Słomka, Aneta - 145327
dc.contributor.authorpl
Bąba, Wojciech - 160065
dc.contributor.authorpl
Libik-Konieczny, Marta
dc.date.accessioned
2017-12-06T11:29:22Z
dc.date.available
2017-12-06T11:29:22Z
dc.date.issuedpl
2018
dc.description.physicalpl
19-30
dc.description.volumepl
122
dc.identifier.doipl
10.1016/j.plaphy.2017.11.007
dc.identifier.eissnpl
1873-2690
dc.identifier.issnpl
0981-9428
dc.identifier.uri
https://ruj.uj.edu.pl/xmlui/handle/item/47249
dc.languagepl
eng
dc.language.containerpl
eng
dc.rights*
Dodaję tylko opis bibliograficzny
dc.rights.licence
Bez licencji otwartego dostępu
dc.source.integrator
false
dc.subject.enpl
maize
dc.subject.enpl
heavy metals
dc.subject.enpl
antioxidants
dc.subject.enpl
amelioration of oxidative stress
dc.subtypepl
Article
dc.titlepl
Influence of salicylic acid pretreatment on seeds germination and some defence mechanisms of Zea mays plants under copper stress
dc.title.journalpl
Plant Physiology and Biochemistry
dc.typepl
JournalArticle
dspace.entity.type
Publication
Affiliations

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