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UPV Theses and Dissertations

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    The effects of compost produced from rice Oryza sativa straw and sugarcane Saccharum officinarum trash on the growth of pechay Brassica rapa
    Brizuela, Karlyn G. (Division of Biological Sciences, College of Arts and Sciences, University of the Philippines Visayas, 2014-03)
    This study was designed to determine the effects of the application of compost produced from rice Oryza saliva straw and sugarcane Saccharum officinarum trash on the growth of pechay Brassica rapa. Experiments were carried out in a residential lot in Brgy. Punta Taytay, Bacolod City, Negros Occidental. Four set-ups were made with three replicates each. Each set-up corresponded to one compost treatment: treatment (A) was the rice straw compost, treatment (B) was the sugarcane trash compost, treatment (C) was the combination of rice straw and sugarcane trash compost, and treatment (D) served as the control in which no compost was added. The results of the statistical tests showed that there was a significant increase in the growth of pechay plants treated with the three different types of composts as compared to the pechay plants treated with the control. Among all the treatments, pechay plants treated with the combination of rice straw and sugarcane trash compost showed the highest growth yield in terms of the mean plant height (19.61 cm), mean fresh weight (44.95 g), and mean number of leaves per plant (8.99) at the time of harvest. Results also that showed that there was no significant difference in the mean fresh weight and mean number of leaves per plant at the time of harvest in pechay plants treated with the rice straw compost and the sugarcane trash compost.
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    A historical analysis of Pintado (Euphorbia heterophylla)
    Alcarde, Annabelle Z. (Division of Biological Sciences, College of Arts and Sciences, University of the Philippines Visayas, 1994-03)
    A histochemical study on Euphorbia heterophylla, a shrubby plant of the Family Euphorbiaceae was performed to screen the plant for the presence of medically important substances that could be responsible for its curative powers. Results of the analysis showed that aldehydes are highly detectable in the stem (xylem and phloem); moderately detectable in the leaf (xylem), stem (epidermis and vascular cambium), root (phloem) and flower (ovary); and slightly detectable in the flower (calyx). Alkaloids are moderately detectable in the stem (xylem, vascular cambium, and phloem) and slightly detectable in the leaf (xylem, vascular cambium, epidermis, and phloem). Amygdalin is highly detectable in the leaf (xylem) and stem (epidermis); moderately detectable in the root (phloem), and fruit (seed and pericarp); and slightly detectable in the root (xylem) and the flower (ovary). Arbutin is highly detectable in the xylem of the leaf and pericarp of the fruit; moderately detectable in the phloem of the leaf and vascular cambium of the stem; and slightly detectable in the stem (xylem, phloem, and epidermis), root (xylem), and flower (ovary). Saponins are highly detectable in the leaf (xylem, phloem, and epidermis), (xylem), root (xylem and phloem), flower (calyx and ovary) and fruit (seed). Formic acid is moderately detectable in the leaf and stem (epidermis), and slightly detectable in the stem and root (xylem). Oxalic acid is slightly detectable in the stem (phloem). Tannins are highly detectable in the stem (xylem and phloem) and fruit (pericarp); moderately detectable in the leaf (xylem and phloem) and fruit (seed); and slightly detectable in the stem (epidermis).