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Copper enzymes in isolated chloroplasts. polyphenoloxidase in beta vulgaris

Daniel I. Arnon
- 01 Jan 1949 - 
- Vol. 24, Iss: 1, pp 1-15
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TLDR
Evidence that a copper enzyme, polyphenoloxidase (otherwise known as tyrosinase or catecholase), is localized in the chloroplasts of spinach beet (chard), Beta vu?garis is presented.
Abstract
The chloroplast, as the seat of chlorophyll pigments in plants, occupies a unique position in the economy of the green cell. In recent years there has been a renewed interest in the reactions and properties of chloroplasts as a result of the work of Hill (11, 12) and Hill and Scarisbrick (13, 14) who demonstrated that the reaction characteristic of photosynthesis in green plants, the evolution of oxygen, occurs in appreciable quantities in isolated chloroplasts under the influence of light and in the presence of suitable oxidants (2, 7, 8, 26). In the course of an investigation of oxygen evolution by isolated chloroplasts it was deemed important to explore their enzymatic composition. Of special interest were considered enzymes capable of participating in oxidation-reduction reactions, and more particularly, those localized principally, if not entirely, in the chloroplasts. This paper presents evidence that a copper enzyme, polyphenoloxidase (otherwise known as tyrosinase or catecholase), is localized in the chloroplasts of spinach beet (chard), Beta vu?garis.

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Journal ArticleDOI

Toc64, a new component of the protein translocon of chloroplasts.

TL;DR: It is proposed that Toc64 functions early in preprotein translocation, maybe as a docking protein for cytosolic cofactors of the protein import into chloroplasts.
Journal ArticleDOI

Response of Chlorophyll, Carotenoid and SPAD-502 Measurement to Salinity and Nutrient Stress in Wheat (Triticum aestivum L.)

TL;DR: It is demonstrated that the SPAD-502 readings and plant photosynthetic pigment content per-leaf area are profoundly affected by salinity and nutrient stress, but that the general form of their relationship remains largely unaffected by the stress.
Journal ArticleDOI

Interaction between photosystem I and ferredoxin. Identification by chemical cross-linking of the polypeptide which binds ferredoxin.

TL;DR: It can be inferred that the polypeptide of 20 kDa is the photosystem I subunit which interacts with ferredoxin during the photosynthetic electron transport.
Journal ArticleDOI

Changes of photosynthetic parameters in cucumber leaves under Cu, Cd, and Pb stress

M. Burzyński, +1 more
- 01 Dec 2004 - 
TL;DR: In this paper, the effects of metal toxicity on cucumber leaves (Cucumis sativus L.) were studied by the measurements of gas exchange characteristics, chlorophyll (Chl) fluorescence parameters, and Chl content.
References
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Journal ArticleDOI

Absorption of light by chlorophyll solutions

TL;DR: This paper deals with the estimation of chlorophyll in plant extracts by application of absorption coefficients of the isolated solid chlorophylla components, and the question of artifacts is automatically clarified.
Journal ArticleDOI

Microelements in culture-solution experiments with higher plants

TL;DR: This paper is a report on the observed responses from a group of elements not generally credited with a function in plant nutrition, which suggested that these and other elements, if present in minute quantity, may favorably influence the growth of plants.
Journal ArticleDOI

Cytochrome and Respiratory Enzymes

TL;DR: The results of this study will enable to determine the nature of the relationship between the oxidising enzymes and the intracellular haematin compounds, and this will help to elucidate at least one portion of the complicated respiratory mechanism, of the cell.
Journal ArticleDOI

Oxygen Evolved by Isolated Chloroplasts

Robert Hill
- 01 May 1937 - 
TL;DR: The hæmoglobin method, originally used by Hoppe-Seyler to demonstrate oxygen from green plants, has been applied to study the oxygen evolution of isolated chloroplasts exposed to light.
Journal ArticleDOI

Oxygen Produced by Isolated Chloroplasts

TL;DR: Inman (1935) brought further evidence as to the enzymic nature of the process, and showed also that fresh green extracts of many phanerogams will evolve oxygen in light, using the bacterial mathod.
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