Metabolism by Rhizobacteria of Abscisic Acid Deuterated in the Cyclohexene PartYermekkaliyev T.S.,
Gogoleva N.E.,
Gogolev Y.V.,
Konnova T.A.,
Shevchenko V.P.,
Nagaev I.Y.,
Shaposhnikov A.I.,
Shevchenko K.V.,
Belimov A.A.,
Syrova D.S.,
Yuzikhin O.S.,
Myasoedov N.F. ethylamine. The yield of labeled compound was 45 – 80%.
A complex of biological studies was carried out using
Comparative Study of the Abscisic Acid Metabolism Using Analogue Tritium-Labeled in the Cyclohexene or Side MoietyShevchenko V.P.,
Nagaev I.Y.,
Shaposhnikov A.I.,
Shevchenko K.V.,
Belimov A.A.,
Yuzikhin O.S.,
Ismailov T.T.,
Ermekkaliev T.S.,
Gogoleva N.E.,
Gogolev Y.V.,
Myasoedov N.F. © 2020, Pleiades Publishing, Ltd. Abstract:
A procedure was developed for introducing tritium
Rhizosphere bacterium rhodococcus sp. P1y metabolizes ab-scisic acid to form dehydrovomifoliolYuzikhin O.S.,
Gogoleva N.E.,
Shaposhnikov A.I.,
Konnova T.A.,
Osipova E.V.,
Syrova D.S.,
Ermakova E.A.,
Shevchenko V.P.,
Nagaev I.Y.,
Shevchenko K.V.,
Myasoedov N.F.,
Safronova V.I.,
Shavarda A.L.,
Nizhnikov A.A.,
Belimov A.A.,
Gogolev Y.V. Rhodococcus sp. P1Y was described as
a rhizosphere bacterium assimilat-ing ABA as
a sole carbon source
Complete genome sequence of the abscisic acid-utilizing strain Novosphingobium sp. P6W was isolated from the rhizosphere of rice (Oryza sativa L.) seedlings using
a selective ABA-supplemented medium
Complete genome sequence of the abscisic acid-utilizing strain Novosphingobium sp. P6W of rice (Oryza sativa L.) seedlings using
a selective ABA-supplemented medium. The genome of strain P6W