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vicia/szójabab

A hivatkozás a vágólapra kerül
CikkekKlinikai vizsgálatokSzabadalmak
Oldal 1 tól től 79 eredmények

Deoxyribonucleotide synthesis and DNA polymerase activity in plant cells (Vicia faba and Glycine max).

Csak regisztrált felhasználók fordíthatnak cikkeket
Belépés Regisztrálás
Enzymes of deoxyribonucleotide and DNA biosynthesis, which are little known in plants, were studied in root tips of germinating broad beans (Vicia faba) and in fast-growing cultures of soybean cells (Glycine max). The plant cells contain a ribonucleoside 5'-diphosphate reductase which is detected in

[cDNA cloning and sequence analysis of leginsulin gene in broad bean (Vicia faba)].

Csak regisztrált felhasználók fordíthatnak cikkeket
Belépés Regisztrálás
In order to elucidate the relationship between the structural features of leginsulin gene in legume plants and their phylogenetic significance, we have cloned the cDNA sequence of leginsulin gene from radicles of broad bean (Vicia faba) via RT-PCR techniques according to the leginsulin gene sequence

Two classes of cortical neurones labelled with Vicia villosa lectin in the guinea-pig.

Csak regisztrált felhasználók fordíthatnak cikkeket
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Cell surface substance(s) containing terminal N-acetylgalactosamine (GaINAc) was localized in the cerebral cortex of the guinea-pig. Vicia villosa and Glycine max, both specific to GaINAc, labelled the surface of the cell body of multipolar and triangular neurones. The labelling extended to the

The nodulin vfENOD18 is an ATP-binding protein in infected cells of Vicia faba L. nodules.

Csak regisztrált felhasználók fordíthatnak cikkeket
Belépés Regisztrálás
Recently we described the novel nodulin gene VfENOD18, whose corresponding transcripts were restricted to the nitrogen-fixing zone III of broad bean root nodules. To characterize VfENOD18 on the protein level, polyclonal antibodies were generated using the purified recombinant VfENOD18 protein

Narbonin, a novel 2S protein from Vicia narbonensis L. seeds: cDNA, gene structure and developmentally regulated formation.

Csak regisztrált felhasználók fordíthatnak cikkeket
Belépés Regisztrálás
cDNA and genomic clones encoding narbonin, a 2S globulin from the seed of narbon bean (Vicia narbonensis L.), were obtained using the polymerase chain reaction (PCR) and sequenced. The full-length cDNA as well as genomic clones contain a single open reading frame (ORF) of 873 bp that encodes a
Vicia villosa isolectin B4 (VVLB4) recognizes the Tn antigen (GalNAc-O-Ser/Thr) exposed in certain human carcinomas. We have produced anti-VVLB4 monoclonal antibodies (MAbs), and their lectin recognition selectivity was assessed by ELISA and Western blot against the purified Gal/GalNAc-specific
A cDNA coding for a 54 kDa signal sequence containing protein has been isolated from a faba bean cotyledonary library and characterized. The deduced protein is designated Vicia faba SBP-like protein (VfSBPL) since it shares 58% homology to a 62 kDa soybean (Glycine max) protein (GmSBP) which has
CONCLUSIONS We report for the first time that expression of potato PR10a gene in faba bean causes enhanced tolerance to drought and salinity. Grain legumes such as soybean (Glycine max L. Merrill), pea (Pisum sativum L.) and faba bean (Vicia faba L.) are staple sources of protein for human and
P-proteins are structural phloem proteins discussed to be involved in the rapid sealing of injured sieve elements. P-proteins are found in all dicotyledonous and some monocotyledonous plants, but additional crystalloid P-proteins, known as forisomes, have evolved solely in the Fabaceae. Both types
Glycine max (soybean) is one angiosperm which lends itself to the study of somatic crossing over. This is made possible because some varieties have gene combinations Y(11)Y(11), Y(11)y(11) and y(11)y(11) in the segregating populations from Y(11)y(11) plants. The gene in question is responsible for

First Report of Clover yellow vein virus on Glycine max in Korea.

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Belépés Regisztrálás
Glycine max (Soybean) is the most important edible crop in Korea. In Korea, eight viruses have been reported to infect soybean, including Alfalfa mosaic virus (AMV), Cowpea mosaic virus (CPMV), Cucumber mosaic virus (CMV), Soybean dwarf virus (SbDV), Soybean mosaic virus (SMV), Soybean yellow common

Immunological methods for the agglutination of protoplasts from cell suspension cultures of different genera.

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Protoplasts from cell suspension cultures of Vicia hajastana Grossh., soybean (Glycine max L.) and brome grass (Bromus inermis Leyss.) were tightly agglutinated by immune sera prepared against them in rabbits. After incubation, the aggregated protoplasts became adpressed over a considerable area of

A method for high-frequency intergeneric fusion of plant protoplasts.

Csak regisztrált felhasználók fordíthatnak cikkeket
Belépés Regisztrálás
Protoplasts of Vicia hajastana Grossh. obtained from suspension-culture cells and Pisum sativum L. obtained from leaves adhered tightly to each other in concentrated solutions of high-molecular-weight polyethylene glycol (PEG). The adhesion occurred non-specifically between the free protoplasts from
Over 80 taxa of mostly agriculturally important legumes were surveyed as sources of the metabolites, genistein and daidzein. Remarkably high concentrations (over 2 g.kg-1 dry weight) of the anticancer metabolite, genistein, were found in the leaves of Psoralea corylifolia (Indian bread root). All

HPLC profile analysis of oleanene-glucuronides in several edible beans.

Csak regisztrált felhasználók fordíthatnak cikkeket
Belépés Regisztrálás
HPLC analysis and yield of oleanene-glucuronide (OG) was done on some commercially available edible beans: seeds of Glycine max, Glycine max cv. Kuromame, Phaseolus vulgaris cv. Torosuku, Phaseolus vulgaris cv. Toramame, Phaseolus vulgaris cv. Taishokintoki, Phaseolus coccineus cv. Ooshirobana,
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A legteljesebb gyógynövény-adatbázis, amelyet a tudomány támogat

  • Működik 55 nyelven
  • A tudomány által támogatott gyógynövényes kúrák
  • Gyógynövények felismerése kép alapján
  • Interaktív GPS térkép - jelölje meg a gyógynövényeket a helyszínen (hamarosan)
  • Olvassa el a keresésével kapcsolatos tudományos publikációkat
  • Keresse meg a gyógynövényeket hatásuk szerint
  • Szervezze meg érdeklődését, és naprakész legyen a hírkutatással, a klinikai vizsgálatokkal és a szabadalmakkal

Írjon be egy tünetet vagy betegséget, és olvassa el azokat a gyógynövényeket, amelyek segíthetnek, beírhat egy gyógynövényt, és megtekintheti azokat a betegségeket és tüneteket, amelyek ellen használják.
* Minden információ publikált tudományos kutatáson alapul

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