Pea, Pisum sativum, and its anticancer activity

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Pea, Pisum sativum, and Its Anticancer Activity

Pisum sativum (Family: Fabaceae), as known as green pea or garden pea, has long been important in diet due to its content of fiber, protein, starch, trace elements, and many phytochemical substances. It has been shown to possess antibacterial, antidiabetic, antifungal, anti-inflammatory, antihypercholesterolemia, and antioxidant activities and also shown anticancer property. Its nonnutritive bi...

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DNA Strand-Transfer Activity in Pea (Pisum sativum L.) Chloroplasts.

The occurrence of DNA recombination in plastids of higher plants is well documented. However, little is known at the enzymic level. To begin dissecting the biochemical mechanism(s) involved we focused on a key step: strand transfer between homologous parental DNAs. We detected a RecA-like strand transfer activity in stromal extracts from pea (Pisum sativum L.) chloroplasts. Formation of joint m...

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DNA Strand - Transfer Activity in Pea ( Pisum sativum 1 . ) Chloroplasts ’

The occurrence of DNA recombination in plastids of higher plants is well documented. However, little is known at the enzymic level. To begin dissecting the biochemical mechanism(s) involved we focused on a key step: strand transfer between homologous parenta1 DNAs. We detected a RecA-like strand transfer activity in stromal extracts from pea (Pisum sativum 1.) chloroplasts. Formation of joint m...

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Polyadenylate-Binding Protein from Pea (Pisum sativum)'

A polyadenylate-binding protein (PABP) was purified from cellfree extracts prepared from pea seedlings (Pisum sativum) by ammonium sulfate precipitation and Affi-Gel Blue and polyadenylate-Sepharose 4B affinity chromatography. The final preparation from polyadenylate-Sepharose 4B columns contained a single 70-kilodalton polypeptide with high polyadenylate-binding activity. The purified protein ...

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Pea (Pisum sativum L.) Growth Mutants

This review is devoted to the Pisum sativum L. growth mutants. These mutants are presented by several groups of plants. The first group is characterized by short internodes (dwarf mutants le, na, lk, la, lh, ls) or by elongated internodes (slender mutant sln). The stem growth of mutants of both types (dwarf and slender) is controlled by hormones (GA and IAA) in the stem or in seeds. Mutants cha...

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ژورنال

عنوان ژورنال: Pharmacognosy Reviews

سال: 2017

ISSN: 0973-7847

DOI: 10.4103/phrev.phrev_57_16