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Wednesday, July 22, 2020 | History

3 edition of Non-calvin cycle origins of formate and acetate in the higher plant, Vicia faba found in the catalog.

Non-calvin cycle origins of formate and acetate in the higher plant, Vicia faba

Non-calvin cycle origins of formate and acetate in the higher plant, Vicia faba

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Published .
Written in English


Edition Notes

Statementby Samuel Sherrill Kent, Jr.
Classifications
LC ClassificationsMicrofilm 40050 (Q)
The Physical Object
FormatMicroform
Paginationx, 228 leaves.
Number of Pages228
ID Numbers
Open LibraryOL2162145M
LC Control Number88893396

Each amplification cycle comprised 95 °C for min, annealing temperature (shown in Table S1) and extension at 72 °C for min, with a final single extension cycle at 72 °C for 15 min. Purified products (Illustra™ ExoStar™ 1‐Step; GE Healthcare Life Sciences, Little Chalfont, UK) were sequenced using an ABI DNA analyser. Of the herbicides evaluated pre-em. in dwarf beans (Phaseolus vulgaris) on silty clay loam, very fine sandy loam and sandy clay loam, monolinuron at and pounds per acre appeared the most promising treatment followed by metobromuron at similar rates; dinoseb in oil pounds per acre was satisfactory only where weeds had germinated and were sparse.

  The Calvin cycle is a set of light independent redox reactions that occur during photosynthesis and carbon fixation to convert carbon dioxide into the sugar glucose. These reactions occur in the stroma of the chloroplast, which is the fluid-filled region between the thylakoid membrane and inner membrane of the organelle. Here is a look at the redox reactions that occur during the Calvin cycle. Pp. Weed control in peas. Herbicides were evaluated on fine sandy loam at Thornhaugh and Grantham, silt loam at Hubberts Bridge and an organic fine sandy loam at Turves. Terbacil and prometryne pre-em. gave acceptable weed control, but the former sometimes caused injury where sowing was shallow and rates high. Weed control with aziprotryne at pounds per acre pre-ern. was .

  Direct fixation of CO 2 to formate is known--e.g., S. S. Kent () "Photosynthesis in the higher plant Vicia faba. II. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate," J. Biol. Chem. ; or Ramaswamy et al. () "A novel pathway for the synthesis of solanidine in the. The Calvin cycle (also known as the Benson-Calvin cycle) is the set of chemical reactions that take place in chloroplasts during photosynthesis.. The cycle is light-independent because it takes place after the energy has been captured from sunlight.. The Calvin cycle is named after Melvin C. Calvin, who won a Nobel Prize in Chemistry for finding it in


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Non-calvin cycle origins of formate and acetate in the higher plant, Vicia faba Download PDF EPUB FB2

Kent SS. Photosynthesis in the higher plant Vicia faba. Anomalous distributions of 14 CO 2 -isotope in citrate and glutamate. J Biol Chem. Nov 25; (22)– Kent SS. Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of by: Kent SS.

Photosynthesis in the higher plant Vicia faba. Anomalous Vicia faba book of 14 CO 2 -isotope in citrate and glutamate. J Biol Chem. Nov 25; (22)– Kent SS. Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of by: 9.

Europe PMC is an archive of life sciences journal literature. Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of by: The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate.

J Biol Chem. Nov 25; (22)– Kent SS, Pinkerton FD, Strobel GA. Photosynthesis in the Higher Plant, Vicia faba: III.

Serine, a Precursor of the Tricarboxylic Acid Cycle. Plant Physiol. Mar; 53 (3)–Cited by:   Distribution, physiological considerations, and comparison with P- glycolate phosphatase. Plant Physiol., 48 () 13 S. Kent, Photosynthesis in the higher plant Vicia/hba.

The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate. by: 1. Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate Article.

The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate, J. Biol. Chem. () [ Kent S.S., Pinkerton F.D., Strobel G.A., Photosynthe sis in the higher plant Vicia faba.

Serine, a precursor of the tricarboxylic acid cycle, Plant Physiol. 53 () [43]. Non-Calvin cycle origins of formate and acetate in the higher plant, Vicia faba. Kent Samuel Sherrill Thesis (Ph.D.)--University of Chicago, Dept.

of Biochemistry Includes bibliographical references. Kent, S.S.: Photosynthesis in the higher plant Vicia faba. Anomalous distributions of 14 CO 2-isotope in citrate and glutamate. The non-Calvin-cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate.

biol. Chem. –. S.S. KentPhotosynthesis in the higher plant Vicia faba II. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate.

Photosynthesis in the Higher Plant Vicia faba: II. THE NON-CALVIN CYCLE ORIGIN OF ACETATE AND ITS METABOLIC RELATIONSHIP TO THE PHOTOSYNTHETIC ORIGIN OF FORMATE.

Sherrill Kent; J. Biol. Chem. 1. J Biol Chem. Nov 25;(22) Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate. Plant Physiol. Jan; 49 (1)– [Google Scholar] Kent SS.

Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate. J Biol Chem. Nov 25; (22)– [Google Scholar] Kisaki T, Tolbert NE. Photosynthesis in the higher plant Vicia faba.

The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate. Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate.

Kent SS. Biol. Chem., (22) MED: The effects of mercuric acetate, arsenic chloride, cadmium chloride, and copper acetate on cell division and chromosomal morphology of Vicia faba were studied. The results showed that heavy metals (1) are mitodepressive in higher concentrations, (2) act as mitopromotors at lower concentrations, and (3) induced a variety of chromosomal abnormalities such as adherence, chromatid separation.

Kent, S.S. Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate.

Journal of Biological Chemistry,– PubMed Google Scholar. Kent SS () Photosynthesis in the higher plant Vicia faba. The non-Calvin cycle origin of acetate and its metabolic relationship to the photosynthetic origin of formate. J Biol Chem – PubMed; CAS; Google Scholar.

In Vicia faba and Nicotiana tabacum, toxicity of ZnO nanoparticles was characterized by ROS production, lipid peroxidation, and modulation in activities of antioxidant enzymes (Ghosh et al.

In this study, broad bean (Vicia faba L.) and common onion (Allium cepa L.), two plant species which are commonly used for detecting the genotoxic effects of environmental pollutants, were used to.

Formate dehydrogenase (FDH; EC ) is a NAD-dependent enzyme that catalyzes the oxidation of formate to carbon dioxide in the mitochondria of higher plants. Sequence analyses and other preliminary experiments suggested that FDH might also be targeted to the chloroplasts of Arabidopsis thaliana and other plant species.

Formate dehydrogenase (E.C. ) is a mitochondrial-localized NAD-requiring enzyme in green plants. The enzyme activity and corresponding mRNA in leaves of Arabidopsis thaliana are induced by treatment with one-carbon metabolites.

The cDNA for the Arabidopsis formate dehydrogenase is similar to that of other plants except for the N-terminal region, which is predicted to .A proposed mechanism of Mg-mediated alleviation of Al toxicity in Vicia faba.

Aluminium is taken up into the cells, inducing expression of many genes, such as vha2, vf14–b and a putative MATE.