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Ðåäîêñ-ìåòàáîëèçì: ÀÔÊ â æèçíè ðàñòåíèé
Íàó÷íûé ðåäàêòîð òåìàòè÷åñêîãî
âûïóñêà: ä.á.í.,
Ô.Â. Ìèíèáàåâà
(Êàçàíü), |
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1. |
ÐÅÄÎÊÑ-ÌÅÒÀÁÎËÈÇÌ: ÀÊÒÈÂÍÛÅ ÔÎÐÌÛ ÊÈÑËÎÐÎÄÀ Â ÆÈÇÍÈ
ÐÀÑÒÅÍÈÉ
REDOX METABOLISM: ACTIVE OXYGEN FORMS IN PLANT LIFE |
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2. |
ÂËÈßÍÈÅ ÏÐÅÄÏÎÑÅÂÍÎÉ ÎÁÐÀÁÎÒÊÈ ÑÅÌßÍ ÑÀËÈÖÈËÀÒÎÌ
ÍÀÒÐÈß ÍÀ ÓÑÒÎÉ×ÈÂÎÑÒÜ ÏÐÎÐÎÑÒÊΠÏØÅÍÈÖÛ Ê ÇÀÑÎËÅÍÈÞ NaCI è Na2SO4
THE EFFECT OF PRESOWING SEED TREATMENT WITH SODIUM
SALICYLATE ON THE RESISTENCE OF WHEAT SEEDLINGS TO SALINE NaÑl
AND Na2SO4 |
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3. |
ÂËÈßÍÈÅ ÀÑÊÎÐÁÀÒÀ È ÃËÓÒÀÒÈÎÍÀ ÍÀ ÐÎÑÒÎÂÓÞ ÔÓÍÊÖÈÞ
ÊÎÐÍÅÉ ÃÎÐÎÕÀ
THE INFLUENCE OF ASCORBATE AND GLUTATHIONE ON THE PEA
ROOT GROWTH FUNCTION |
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4. |
ÏÅÐÅÊÈÑÍÎÅ ÎÊÈÑËÅÍÈÅ ËÈÏÈÄÎÂ Â ÔÎÒÎÑÈÍÒÅÇÈÐÓÞÙÈÕ
ÎÐÃÀÍÀÕ ÐÀÇÍÛÕ ÒÈÏÎÂ ÃÀËÎÔÈÒÎÂ
LIPID PEROXIDATION IN PHOTOSYNTHESIS ORGANS OF
DIFFERENT TYPES OF HALOPHYTES |
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5. |
ÎÑÎÁÅÍÍÎÑÒÈ ÐÅÃÓËßÖÈÈ ÐÅÄÎÊÑ-ÃÎÌÅÎÑÒÀÇÀ ÐÀÑÒÅÍÈÉ Â
ÓÑËÎÂÈßÕ ÂÎËÃÎ-ÓÐÀËÜÑÊÎÃÎ ÐÅÃÈÎÍÀ
FEATURES OF PLANT REDOX HOMEOSTASIS REGULATION UNDER
THE VOLGO-URAL REGION CONDITIONS |
|
6. |
ÑÍÈÆÅÍÈÅ ÓÐÎÂÍß ÎÊÈÑËÈÒÅËÜÍÎÃÎ ÑÒÐÅÑÑÀ Â ÐÀÑÒÅÍÈßÕ
ÏØÅÍÈÖÛ ÏÎÄ ÂËÈßÍÈÅÌ ÝÍÄÎÔÈÒÍÛÕ ÁÀÊÒÅÐÈÉ Â ÓÑËÎÂÈßÕ ÇÀÑÓÕÈ –
Îáçîð
ALLEVIATION OF DROUGHT-INDUCED OXIDATIVE STRESS IN
WHEAT PLANTS UNDER THE INFLUENCE OF ENDOPHYTIC BACTERIA – Review |
|
7. |
ÐÅÄÎÊÑ-ÑÎÑÒÎßÍÈÅ ÃËÓÒÀÒÈÎÍÀ, ÀÑÊÎÐÁÈÍÎÂÎÉ ÊÈÑËÎÒÛ È
NAD
 ÂÀÊÓÎËßÕ ÊÎÐÍÅÏËÎÄΠÑÒÎËÎÂÎÉ ÑÂÅÊËÛ Â ÏÅÐÈÎÄ ÔÈÇÈÎËÎÃÈ×ÅÑÊÎÃÎ
ÏÎÊÎß
REDOX STATE OF GLUTATHIONE, ASCORBIC ACID AND NAD IN
VACUOLES OF DORMANT RED BEETROOTS |
|
8. |
Ó×ÀÑÒÈÅ ÀÊÒÈÂÍÛÕ ÔÎÐÌ ÊÈÑËÎÐÎÄÀ È ÔÈÒÎÃÎÐÌÎÍΠÂ
ÈÍÄÓÖÈÐÎÂÀÍÍÎÉ ÝÍÄÎÔÈÒÍÛÌÈ ÌÈÊÐÎÎÐÃÀÍÈÇÌÀÌÈ ÓÑÒÎÉ×ÈÂÎÑÒÈ ÐÀÑÒÅÍÈÉ
ÊÀÐÒÎÔÅËß Ê ÊÎËÎÐÀÄÑÊÎÌÓ ÆÓÊÓ
PARTICIPATION OF REACTIVE OXYGEN SPECIES AND
PHYTOGHORMONES IN THE RESISTANCE OF POTATO PLANTS TO COLORADO POTATO
BEETLES INDUCED BY ENDOPHYTIC MICROORGANISMS |
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9. |
β-ÑÈÒÎÑÒÅÐÈÍ
– ÏÐÈÐÎÄÍÛÉ ÀÍÒÈÎÊÑÈÄÀÍÒ – Îáçîð
β-SITOSTERIN
– NATURAL ANTIOXIDANT – Review |
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10. |
ÎÊÑÈËÈÏÈÍÛ. ÄÈÍÀÌÈÊÀ ÝÊÑÏÐÅÑÑÈÈ ÃÅÍÎÂ
ËÈÏÎÊÑÈÃÅÍÀÇÍÎÃÎ ÊÀÑÊÀÄÀ ÌÕÀ PHYSCOMITRELLA PATENS ÏÐÈ
ÈÍÔÈÖÈÐÎÂÀÍÈÈ
OXYLIPINS. DYNAMICS GENE EXPRESSION OF THE
LIPOXYGENASE CASCADE OF MOSS PHYSCOMITRELLA PATENS DURING
INFECTION http://doi.org/10.31163/2618-964X-2020-3-2-157-165 [0.98 MB] |
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11. |
ÐÎËÜ ÝÔÔÅÊÒÎÐÎÂ STAGONOSPORA NODORUM Â
ÏÎÄÀÂËÅÍÈÈ ÇÀÙÈÒÍÎÃÎ ÎÒÂÅÒÀ ÐÀÑÒÅÍÈÉ ÏØÅÍÈÖÛ ÇÀ Ñ×ÅÒ ÐÅÃÓËßÖÈÈ
ÐÀÁÎÒÛ ÊÎÌÏÎÍÅÍÒÎÂ ÏÐÎ-/ÀÍÒÈÎÊÑÈÄÀÍÒÍÎÉ ÑÈÑÒÅÌÛ
THE ROLE OF STAGONOSPORA NODORUM EFFECTORS IN
SUPPRESSING THE DEFENSE RESPONSE OF WHEAT PLANTS BY REGULATING THE
WORK OF PRO-/ANTIOXIDANT SYSTEM COMPONENTS |
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12. |
TROUBLESHOOTING OF CLASS III PEROXIDASE GENE FROM THE
MOSS Dicranum scoparium
ÏÎÈÑÊ È ÓÑÒÐÀÍÅÍÈÅ ÍÅÈÑÏÐÀÂÍÎÑÒÅÉ ÃÅÍÀ ÏÅÐÎÊÑÈÄÀÇÛ
ÊËÀÑÑÀ
III
ÈÇ ÌÕÀ
Dicranum scoparium |
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13. |
ÑÍÈÆÅÍÈÅ ÑÒÅÏÅÍÈ ÈÍÄÓÖÈÐÓÅÌÛÕ ÇÀÑÓÕÎÉ ÎÊÈÑËÈÒÅËÜÍÛÕ
ÏÎÂÐÅÆÄÅÍÈÉ Â ÐÀÑÒÅÍÈßÕ ÏØÅÍÈÖÛ ÏÐÈ ÎÁÐÀÁÎÒÊÅ ÄÎÍÎÐÎÌ
NO
NO-INDUCED REDUCTION OF OXIDATIVE STRESS LEVEL IN
WHEAT PLANTS UNDER DROUGHT CONDITIONS |
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14. |
Ó×ÀÑÒÈÅ ÖÈÒÎÊÈÍÈÍΠ ÐÅÃÓËßÖÈÈ ÐÅÄÎÊÑ-ÌÅÒÀÁÎËÈÇÌÀ
ÈÍÔÈÖÈÐÎÂÀÍÍÛÕ
STAGONOSPORA NODORUM
ÐÀÑÒÅÍÈÉ ÏØÅÍÈÖÛ
ROLE OF CYTOKININS IN THE REGULATION OF REDOX
METABOLISM OF WHEAT PLANTS INFECTED WITH STAGONOSPORA NODORUM |
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15. |
ÑÒÐÅÑÑ-ÈÍÄÓÖÈÐÎÂÀÍÍÛÅ ÈÇÌÅÍÅÍÈß ÐÅÄÎÊÑ-ÑÒÀÒÓÑÀ ÌÕÀ
DICRANUM SCOPARIUM HEDW.
STRESS INDUCED CHANGES IN THE REDOX STATUS OF MOSS
DICRANUM SCOPARIUM
HEDW. |
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16. |
ÏÐÎÒÅÊÒÎÐÍÛÉ ÝÔÔÅÊÒ 24-ÝÏÈÁÐÀÑÑÈÍÎËÈÄÀ ÍÀ ÏÐÎÒÅÎÌ
ÏÐÎÐÎÑÒÊΠÐÀÇËÈ×ÀÞÙÈÕÑß ÏÎ ÇÀÑÓÕÎÓÑÒÎÉ×ÈÂÎÑÒÈ ÑÎÐÒΠÏØÅÍÈÖÛ Â
ÓÑËÎÂÈßÕ ÎÁÅÇÂÎÆÈÂÀÍÈß
PROTECTIVE EFFECT OF 24-EPIBRASSINOLIDE ON PROTEOME
OF WHEAT CULTIVARS WITH DIFFERING DROUGHT TOLERANCE UNDER
DEHYDRATION |
|
17. |
ÌÎÄÈÔÈÊÀÖÈß ÏÎËÈÑÀÕÀÐÈÄΠÐÀÑÒÈÒÅËÜÍÎÉ ÊËÅÒÎ×ÍÎÉ
ÑÒÅÍÊÈ ÏÐÈ ÈÍÔÅÊÖÈÈ, ÂÛÇÛÂÀÅÌÎÉ ÔÈÒÎÏÀÒÎÃÅÍÎÌ
PECTOBACTERIUM ATROSEPTICUM
MODIFICATION OF POLYSACCHARIDES OF THE PLANT CELL
WALL DURING INFECTION CAUSED BY THE PATHOGEN PECTOBACTERIUM
ATROSEPTICUM |
|
18. |
ËÀÊÊÀÇÛ È ÒÈÐÎÇÈÍÀÇÛ Â ÒÀËËÎÌÀÕ ËÈØÀÉÍÈÊÀ
LOBARIA PULMONARIA
(L.)
HOFFM.
LACCASES AND TYROSINASES IN THE THALLI OF LICHEN
LOBARIA PULMONARIA (L.) HOFFM. |
|
19. |
ÎÊÈÑËÈÒÅËÜÍÛÉ ÑÒÐÅÑÑ ÏÎÄ ÄÅÉÑÒÂÈÅÌ ÐÅÀÝÐÀÖÈÈ È
ÃÅÍÅÐÀÒÎÐÎÂ ÀÔÊ Â ÏÐÎÐÎÑÒÊÀÕ ÏØÅÍÈÖÛ È ÐÈÑÀ
OXIDATIVE STRESS UNDER RE-AERATION AND ROS GENERATORS
IN WHEAT AND RICE SEEDLINGS |
|
20. |
ÂËÈßÍÈÅ ÍÈÒÐÈÒÀ ÍÀ ÄÛÕÀÍÈÅ ÊÎÐÍÅÉ ÏØÅÍÈÖÛ È
ÀÊÒÈÂÍÎÑÒÜ
OXPHOS
ÊÎÌÏËÅÊÑÎÂ ÌÈÒÎÕÎÍÄÐÈÉ
EFFECT OF NITRITE ON THE RESPIRATION OF WHEAT ROOTS
AND THE ACTIVITY OF OXPHOS MITOCHONDRIAL COMPLEXES |
|
21. |
ÎÏÐÅÄÅËÅÍÈÅ ÓÐÎÂÍß ÝÊÑÏÐÅÑÑÈÈ ÃÅÍÎÂ ÔÅÐÌÅÍÒÎÂ
CYP74
ÊÓÊÓÐÓÇÛ ÎÁÛÊÍÎÂÅÍÍÎÉ (ZEA
MAYS
L.)
ÏÐÈ ÂÇÀÈÌÎÄÅÉÑÒÂÈÈ Ñ ÔÈÒÎÏÀÒÎÃÅÍÎÌ
PANTOEA ANANATIS
LMG
20103
DETERMINATION OF GENE EXPRESSION LEVEL OF CYP74
ENZYMES IN CORN (ZEA MAYS L.) INFECTED BY PHYTOPATHOGEN
PANTOEA ANANATIS LMG 20103 |
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22. |
ÐÎÑÒ ÊËÅÂÅÐÀ È ÁÓÐÀ×ÊÀ IN VITRO  ÑÐÅÄÅ Ñ
ÂÛÑÎÊÈÌ ÑÎÄÅÐÆÀÍÈÅÌ ÒßÆÅËÛÕ ÌÅÒÀËËÎÂ
GROWTH OF CLOVER AND ALISSUM IN VITRO IN MEDIA
WITH HIGH HEAVY METAL CONTENT |
|
23. |
Ó×ÀÑÒÈÅ ÍÅÝÍÇÈÌÀÒÈ×ÅÑÊÈÕ ÀÍÒÈÎÊÑÈÄÀÍÒΠ ÀÄÀÏÒÀÖÈÈ
ÐÅÄÊÎÉ ÎÐÕÈÄÅÈ (LISTERA
OVATA
(L.)
R.BR.)
Ê ÍÅÁËÀÃÎÏÐÈßÒÍÛÌ ÓÑËÎÂÈßÌ ÇÎËÎÎÒÂÀËÀ
THE CONTRIBUTION OF NON-ENZYMATIC ANTIOXIDANTS IN
RARE ORCHID (LISTERA OVATA (L.) R.BR.) ADAPTATION TO ADVERSE
CONDITIONS OF ASH DUMP |
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24. |
ÎÑÎÁÅÍÍÎÑÒÈ ÈÇÌÅÍÅÍÈß ÏÐÎÄÓÊÒÈÂÍÎÑÒÈ ËÅÊÀÐÑÒÂÅÍÍÛÕ
ÂÈÄÎÂ ÐÀÑÒÅÍÈÉ Â ÕÎÄÅ ËÅÑÎÂÎÑÑÒÀÍÎÂËÅÍÈß Â ÑÎÑÍÎÂÎ-ÁÅÐÅÇÎÂÛÕ ËÅÑÀÕ
ÞÆÍÎÃÎ ÓÐÀËÀ
FEATURES OF CHANGE OF PRODUCTIVITY OF SPECIES OF
OFFICINAL PLANTS DURING REFORESTATION IN PINE-BIRCH FORESTS OF THE
SOUTHERN URALS |
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25. |
ÇÀÏÀÑÛ ËÅÊÀÐÑÒÂÅÍÍÛÕ ÂÈÄÎÂ ÐÀÑÒÅÍÈÉ Â
ØÈÐÎÊÎËÈÑÒÂÅÍÍÛÕ ËÅÑÀÕ ÖÅÍÒÐÀËÜÍÎÉ ×ÀÑÒÈ ÞÆÍÎÃÎ ÓÐÀËÀ
STOCK OF OFFICINAL PLANTS IN THE BROADLEAVED FORESTS
OF THE SOUTHERN URALS |
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26. |
ÐÅÄÊÈÅ ÂÈÄÛ ÐÀÑÒÅÍÈÉ ÍÀ ÒÅÐÐÈÒÎÐÈÈ ÏÅÐÑÏÅÊÒÈÂÍÎÃÎ
ÏÀÌßÒÍÈÊÀ ÏÐÈÐÎÄÛ «ÃÎÐÀ ÁÈÊÌÀØ» (ÐÅÑÏÓÁËÈÊÀ ÁÀØÊÎÐÒÎÑÒÀÍ)
RARE PLANTS ON THE TERRITORY OF THE Perspective
MONUMENT OF NATURE «MOUNTAIN BIKMASH» (REPUBLIC OF BASHKORTOSTAN) http://doi.org/10.31163/2618-964X-2020-3-2-280-291 [2.59 MB] |
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27. |
ÍÀÊÎÏËÅÍÈÅ ÖÈÍÊÀ È ÊÀÄÌÈß Â ÐÀÑÒÅÍÈßÕ
ß×ÌÅÍß, ÏÎËÓ×ÅÍÍÛÕ ÌÅÒÎÄÎÌ ÊËÅÒÎ×ÍÎÉ ÑÅËÅÊÖÈÈ
ACCUMULATION OF ZINC AND CADMIUM IN BARLEY PLANTS
OBTAINED BY THE CELLULAR SELECTION METHOD |
Îòïðàâèòü ñîîáùåíèå äëÿ postmaster@ecobiotech-journal.ru ñ âîïðîñàìè è çàìå÷àíèÿìè îá ýòîì âåá-óçëå. |