Results 151 to 160 of about 601 (174)
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INTERACTION BETWEEN CHLOROPLAST BIOGENESIS and PHOTOREGULATION OF AMYLASES IN Pennisetum americanum LEAVES*

Photochemistry and Photobiology, 1991
AbstractIn pearl millet (Pennisetum americanum) seedlings, light acting via phytochrome stimulates amylase activity in the leaves. The maximum photostimulation of amylase is observed in the segment proximal to the leaf base. This photostimulation mainly results from an enhancement in β‐amylase activity (EC 3.2.1.2.), which constitutes80–90% of leaf ...
K. J. M. Vally, R. Sharma
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Floral development of pearl millet [Pennisetum americanum (L.) K. Schum.]

Field Crops Research, 1980
Several field-grown pearl millet genotypes [Pennisetum americanum (L.)] were dissected and sampled at various growth stages to determine floral development. The scanning electron microscope (SEM) was used to observe and to help identify floral parts. The growth sequence, the direction of growth, and morphology of the earhead (panicle) were noted and ...
D. Powers   +3 more
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Localization and Properties of Inorganic Pyrophosphatase of Pennisetum americanum Mesophyll Protoplasts

1984
Inorganic pyrophosphatase hydrolyzes PPi into Pi thus continuously removing the inhibitory end product of the pyruvate-Pi-dikinase, the major role of which is to convert pyruvate into PEP in C4 mesophyll chloroplasts. Simmons, Butler (1969) studied the enzyme in leaves of maize and sorghum and localized it in non aqueous chloroplasts preparation ...
Daniele Lavergne, Anne Hoarau
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Biparental plastid inheritance in Pennisetum americanum

Journal of Heredity, 1978
M. KRISHNA RAO, PRASAD R. K. KODURU
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Changes in the major constituents of millet (Pennisetum americanum) during germination

Journal of Agricultural and Food Chemistry, 1983
Andy R. Opoku   +2 more
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