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mevalonic acid/zea mays

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Developmental regulation of sterol biosynthesis in Zea mays.

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Sixty-one sterols and pentacyclic triterpenes have been isolated and characterized by chromatographic and spectral methods from Zea mays (corn). Several plant parts were examined; seed, pollen, cultured hypocotyl cells, roots, coleoptiles (sheaths), and blades. By studying reaction pathways and

Hepatic 3-hydroxy-3-methylglutaryl coenzyme-a reductase of rats fed semipurified and stock diets.

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Rat hepatic 3-hydroxy-3-methylglutaryl coenzyme-A reductase (HMG-CoA reductase) was found to be lower in rats fed a semipurified diet of sucrose, casein, and cellulose with a mixture of safflower oil and stripped lard than those fed a stock diet: 0.115 versus 0.447 nmoles mevalonic acid
Light-stimulated carotenoid biosynthesis associated with the transformation of etioplasts to chloroplasts was investigated after dark-grown maize (Zea mays) seedlings were transferred into light. These studies focused on the enzymes of the pathway to detect those enzyme activities that were

Light-induced inhibitors from intact and cultured caps of Zea roots.

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Growth inhibitors were assayed from extracts of intact (attached) and of excised (cultured) root caps of Zea mays L., cv. Merit, the roots of which show a positive geotropic response only after exposure to light. If caps are intact at the time of illumination, at least two inhibitory substances are
9beta, 19-Cyclopropyl sterols such as 24-methyl pollinastanol accumulate dramatically in maize (Zea mays L. var LG 11) seedlings treated with Tridemorph (2,6-dimethyl-N-tridecyl-morpholine), a systemic fungicide (M. Bladocha, P. Benveniste, Plant Physiol 1983 41: 756-762). In contrast to the
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