WOS: 000422925800001PubMed ID: 29128610Bienertia sinuspersici performs single cell C-4 photosynthesis without Kranz anatomy. Peripheral and central cytoplasmic compartments in a single chlorenchyma cell act as mesophyll cells and bundle sheath cells. Development of this specialized mechanism is gradual during plant development. Young leaves perform C-3 photosynthesis, while mature leaves have complete C-4 cycle. The aim of this work was to investigate changes in redox regulation and antioxidant defence during transition from C-3 to single cell C-4 photosynthesis in B. sinuspersici leaves. First, we confirmed gradual development of C-4 with protein blot and qRT-PCR analysis of C-4 enzymes. After this activities and isoenzymes of superoxide d...
For the short-day plant Chenopodium rubrum, a 14 h/10 h photoperiod is inductive for flowering, whil...
Bienertia sinuspersici is a single-cell C4 plant species of which chlorenchyma cells have two distin...
The identification of novel herbicides is of crucial importance to modern agriculture. We developed ...
PubMed ID: 29128610Bienertia sinuspersici performs single cell C4 photosynthesis without Kranz anato...
WOS: 000438556000003PubMed ID: 29529246Redox regulation, antioxidant defence, and reactive oxygen sp...
Bienertia sinuspersici is one of four identified terrestrial plants that perform C4 photosynthesis w...
PubMed ID: 29529246Redox regulation, antioxidant defence, and reactive oxygen species (ROS) signalli...
Bienertia sinuspersici is one of four identified terrestrial plants that perform C4 photosynthesis w...
Until recent discovery of single cell C4 (SC-C4) photosynthesis in the family Chenopodiaceae, C4 pho...
WOS: 000329954000008PubMed ID: 23920414In the present study, we aimed to elucidate how strategies of...
Turkan I, Uzilday B, Dietz K-J, Bräutigam A, Ozgur R. Reactive oxygen species and redox regulation i...
Single-cell C4 photosynthesis (SCC4) in terrestrial plants without Kranz anatomy involves three step...
Baier M, Dietz K-J. Chloroplasts as source and target of cellular redox regulation: a discussion on ...
C4 photosynthesis is a biochemical pathway that operates across mesophyll and bundle sheath (BS) cel...
Peroxisomes were isolated by lucrose density gradient centrifugation from mesophyll and bundle sheat...
For the short-day plant Chenopodium rubrum, a 14 h/10 h photoperiod is inductive for flowering, whil...
Bienertia sinuspersici is a single-cell C4 plant species of which chlorenchyma cells have two distin...
The identification of novel herbicides is of crucial importance to modern agriculture. We developed ...
PubMed ID: 29128610Bienertia sinuspersici performs single cell C4 photosynthesis without Kranz anato...
WOS: 000438556000003PubMed ID: 29529246Redox regulation, antioxidant defence, and reactive oxygen sp...
Bienertia sinuspersici is one of four identified terrestrial plants that perform C4 photosynthesis w...
PubMed ID: 29529246Redox regulation, antioxidant defence, and reactive oxygen species (ROS) signalli...
Bienertia sinuspersici is one of four identified terrestrial plants that perform C4 photosynthesis w...
Until recent discovery of single cell C4 (SC-C4) photosynthesis in the family Chenopodiaceae, C4 pho...
WOS: 000329954000008PubMed ID: 23920414In the present study, we aimed to elucidate how strategies of...
Turkan I, Uzilday B, Dietz K-J, Bräutigam A, Ozgur R. Reactive oxygen species and redox regulation i...
Single-cell C4 photosynthesis (SCC4) in terrestrial plants without Kranz anatomy involves three step...
Baier M, Dietz K-J. Chloroplasts as source and target of cellular redox regulation: a discussion on ...
C4 photosynthesis is a biochemical pathway that operates across mesophyll and bundle sheath (BS) cel...
Peroxisomes were isolated by lucrose density gradient centrifugation from mesophyll and bundle sheat...
For the short-day plant Chenopodium rubrum, a 14 h/10 h photoperiod is inductive for flowering, whil...
Bienertia sinuspersici is a single-cell C4 plant species of which chlorenchyma cells have two distin...
The identification of novel herbicides is of crucial importance to modern agriculture. We developed ...