Results 201 to 210 of about 94,396 (256)
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?????? ?????? ?????????????????? ?????????????????? ?????????????????????????? ???? ???????????????????? ???????????????? ?????????????????????? Solanum tuberosum, ?????????????????????? ???? ???????????? ?????????????????????? ??????????????????????????????????

2021
Aims. To study the potential metabolic consequences of DNA import into mitochondria we investigated the effect of 200 bp length DNA on the permeability of inner membrane of tuber mitochondria in Solanum tuberosum in comparison with such an effect of adenine nucleotides (ADP, ATP), palmitic acid, palmitoyl-CoA and highly specific inhibitors of adenine ...
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The biosynthesis of sterols in Solanum tuberosum

Archives of Biochemistry and Biophysics, 1964
The incorporation of mevalonic acid-2-C 14 into the Katahdin variety of Solanum tuberosum was studied for an extended period of growth. The largest incorportion into the major sterols, stigmasterol and β-sitosterol, occurred in 1 week. Incorporation into β-sitosterol started sooner and occurred to a greater degree than in the case of stigmasterol.
D F, JOHNSON   +2 more
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Potato (Solanum tuberosum L.)

2014
Agrobacterium-mediated transformation is the most common method for the incorporation of foreign genes into the genome of potato as well as many other species in the Solanaceae family. This chapter describes protocols for the genetic transformation of three species of potato: Solanum tuberosum subsp. tuberosum (Desiréé), S. tuberosum subsp.
Venkateswari J, Chetty   +2 more
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Solanum tuberosum (potato)

Trends in Genetics, 2022
Ling, Kui   +6 more
openaire   +3 more sources

Potato (Solanum tuberosum L.)

2006
Potato (Solanum tuberosum L.) is a globally important crop plant producing high yields of nutritionally valuable food in the form of tubers. It has been the focus of substantial study because of its use both as a staple food crop and as a potentially significant source of compounds of interest.
openaire   +2 more sources

Solanum tuberosum aegrotans

Zeitschrift für Klassische Homöopathie, 1986
Das ziemlich in Vergessenheit geratene AMB von Solanum tuberosum aegrotans, der pilzerkrankten Kartoffel, wird ausführlich dargestellt und zwei Beispiele der praktischen Anwendung angeführt, einmal die Anwendung bei einem herzerkrankten älteren Mann und dann die mit einer Psychoanamnese verbundene Therapie bei einer jungen von vielerlei Ängsten ...
openaire   +1 more source

Immunolocalisation of spermidine synthase in Solanum tuberosum

Phytochemistry, 2013
Spermidine synthase (SPDS) catalyses the formation of spermidine, which is an essential polyamine and widespread in living organisms. Spermidine is formed from putrescine by transfer of an aminopropyl group from decarboxylated S-adenosylmethionine. Spermidine is also a precursor to further polyamines, such as spermine and thermospermine, most of which ...
Yvonne, Sichhart, Birgit, Dräger
openaire   +2 more sources

Intra-specific fusions in Solanum tuberosum

Theoretical and Applied Genetics, 1985
Plants were regenerated from callus arising from protoplast fusion of two S. tuberosum diploids. Tetraploid progeny from the fusion of the two diploid partners had increased vigor. Isozyme analysis confirmed the presence of proteins from both partners in the fusion progeny.
S, Austin   +4 more
openaire   +2 more sources

Microtuberization in potato ( Solanum tuberosum L.)

Plant Cell Reports, 1998
Twenty-two genotypes of potato (Solanum tuberosum L.) were induced to form microtubers under six in vitro culture conditions. Cultures maintained under a short photoperiod (10 h of 6-12 μmol m-2 s-1) and low temperatures (day 20°±2°C and night 18°±2°C) had both a higher yield (255 mg/plantlet) and a greater number (2/plantlet) of microtubers than those
J, Gopal, J L, Minocha, H S, Dhaliwal
openaire   +2 more sources

Phosphofructokinase of Solanum tuberosum tuber

Phytochemistry, 1973
Abstract Potato tuber phosphofructokinase was purified 19·.6-fold by a combination of ethanol fractionation and DEAE-cellulose column chromatography. The enzyme was very unstable; its pH optimum was 8·0. Km for fructose-6-phosphate, ATP and Mg2+ was 2·1 × 10−4 M, 4·5 × 10−5 M and 4·0 × 10−4 M respectively.
Takashi Sasaki   +2 more
openaire   +1 more source

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