Trichilia americana Sesse & Moc.

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Main Authors: García-Gómez, A., Figueroa-Brito, R., García Serrano, L. A., Jiménez-Pérez, A.
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Published: Zenodo 2018
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author García-Gómez, A.
Figueroa-Brito, R.
García Serrano, L. A.
Jiménez-Pérez, A.
author_facet García-Gómez, A.
Figueroa-Brito, R.
García Serrano, L. A.
Jiménez-Pérez, A.
contents <p><b>EFFECT OF EXTRACTS OF <i>TRICHILIA AMERICANA</i>, <i>TRICHILIA HIRTA</i>, AND <i>TRICHILIA HAVANENSIS</i> AT 1,500 PPM ON <i>COPITARSIA</i> <i>DECOLORA</i> LARVAL SURVIVAL</b></p><p>The mean larval survival time of the larvae fed with the hexane extract of <i>T. americana</i> bark was significantly shorter than the other treatments (Log-Rank Test = 151.205; df = 15; <i>P</i> <0.001; Table 4). No differences in mean larval survival time were detected among those containing hexane or aqueous <i>T. hirta</i> extracts or the ethyl acetate <i>T. americana</i> extract, but all those were different from the control diet treatment. All other treatments were not significantly different from the control diet treatment. The reduction in survival time, relative to the control diet treatment, was 72 and 52% for <i>T. americana</i> hexane and <i>T. hirta</i> aqueous extracts treatments, respectively.</p><p>EFFECT OF EXTRACTS OF <i>TRICHILIA AMERICANA</i>, <i>TRICHILIA HIRTA</i>, AND <i>TRICHILIA HAVANENSIS</i> AT 1,500 PPM ON THE WEIGHT OF <i>COPITARSIA DECOLORA</i> LARVAE AND PUPAE</p><p>The weights of 7-d-old larvae were not analyzed because the larvae were too small to weigh accurately. Larval weights at 14 d were significantly affected by the species (<i>F</i> = 143.61; df = 3,265; <i>P</i> <0.0001), the solvent (<i>F</i> = 5.77; df = 4,265; <i>P</i> <0.0002), and the species-solvent interaction (<i>F</i> = 2.93; df = 8,265; <i>P</i> <0.003).The largest weight inhibition was recorded with ethyl acetate extraction of <i>T. americana</i>, a reduction in weight of 99% relative to the control diet treatment. This was followed by hexane and aqueous extracts of <i>T. hirta</i> treatments and the hexane extract of <i>T. americana</i>, with a 98, 97, and 97% reduction, respectively, in relation to the control diet treatment. All other treatments were significantly different from the control diet treatment, with about 64% larval weight inhibition (Table 5).</p><p>At 21 d, larvae fed with the <i>T. americana</i> ethyl acetate extract displayed a 99% reduction in weight in relation to the control diet treatment, and weighed the least of all the treatments (Table 5). A reduction of 98 and 96% in relation to the control diet treatment was recorded for larvae with the <i>T. hirta</i> and <i>T. americana</i> hexane treatments. Only the <i>T. hirta</i> hexane treatment and <i>T. americana</i> ethyl acetate extract were significantly lighter than the control (<i>H</i> = 201.330; df = 14; <i>P</i> <0.001).</p><p>At 28 d, statistically significant 99 and 98% reductions in weight were recorded for the larvae fed with ethyl acetate extract of <i>T. americana</i> and hexane extract of <i>T. hirta</i> (<i>H</i> = 240.041; df = 13; <i>P</i> <0.001) (Table 5). The methanol extract of <i>T. hirta</i> and the ethyl acetate, methanol, and aqueous extracts of <i>T. havanensis</i> were similar to the control diet treatment. A 25 to 65% significant reduction in larval weight related to the control diet treatment were obtained with the acetone, methanol, and aqueous extract of <i>T. americana</i>, the ethyl acetate and acetone extract of <i>T. hirta</i>, and the hexane and acetone extract of <i>T. havanensis</i>.</p><p>The greatest reduction in pupal weight (21%) was recorded for the larvae fed with <i>T. havanensis</i> acetone extract, and this value was significantly different from the other treatments (<i>F</i> = 210.61; df = 3,137; <i>P</i> <0.0001 for species; <i>F</i> = 308.18; df = 4,137; <i>P</i> <0.0001 for solvent; and <i>F</i> = 74.63; df = 4,137; <i>P</i> <0.0001 for the species-solvent interaction). Larvae fed with <i>T. havanensis</i> hexane extract and <i>T. hirta</i> acetone extract had significant 19% reductions in pupal weights in relation to the control diet treatment (Table 5).</p><p>EFFECT OF BARK EXTRACTS OF <i>TRICHILIA AMERICANA</i>, <i>TRICHILIA HIRTA</i>,>D <i>TRICHILIA HAVANENSIS</i> APPLIED AT 1,500 PPM ON FERTILITY>D FECUNDITY OF <i>COPITARSIA DECOLORA</i></p><p>Because adults were not obtained from all the treatments,the fecundity and fertility were recorded from pairs of the aqueous and methanol extracts of <i>T.americana</i>, the acetone,aqueous,and methanol extracts of <i>T. havanensis</i>, and the ethyl acetate and acetone extracts of <i>T. hirta</i>. Fecundity was significantly affected by the treatments (<i>F</i> = 55.54; df = 7,22; <i>P</i> <0.0001), but female (<i>F</i> = 0.08; df = 1,22; <i>P</i>> 0.05) and male weights (<i>F</i> = 1.06; df = 1,22; <i>P</i>> 0.05, data not shown) were not significantly affected. Fecundity from the controls was highest of the treatments (Fig. 5). Significant reductions of 62 and 57% in fecundity, in relation to the control diet treatment, were recorded from insects fed the aqueous and methanol extracts of <i>T. americana</i>, respectively. The other treatments significantly reduced fecundity by 32 to 44%.</p><p>Fertility was significantly affected by the extracts (<i>F</i> = 194.84; df = 7,22; <i>P</i> <0.001), but female (<i>F</i> = 0.51; df = 1,22; <i>P</i>> 0.05) and male weights (<i>F</i> = 0.47; df = 1,22; <i>P</i>> 0.05, data not shown) were not. The highest fecundity was obtained from the controls and was significantly greater than all other treatments (Fig. 5). Aqueous and methanol extracts of <i>T. americana</i> significantly reduced fertility by 90 and 86%, respectively. All other treatments reduced fertility by 47 to 70%.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_12685723
institution Zenodo
language
publishDate 2018
publisher Zenodo
record_format zenodo
spellingShingle Trichilia americana Sesse & Moc.
García-Gómez, A.
Figueroa-Brito, R.
García Serrano, L. A.
Jiménez-Pérez, A.
Biodiversity
Taxonomy
Plantae
Tracheophyta
Magnoliopsida
Sapindales
Meliaceae
Trichilia
Trichilia americana
<p><b>EFFECT OF EXTRACTS OF <i>TRICHILIA AMERICANA</i>, <i>TRICHILIA HIRTA</i>, AND <i>TRICHILIA HAVANENSIS</i> AT 1,500 PPM ON <i>COPITARSIA</i> <i>DECOLORA</i> LARVAL SURVIVAL</b></p><p>The mean larval survival time of the larvae fed with the hexane extract of <i>T. americana</i> bark was significantly shorter than the other treatments (Log-Rank Test = 151.205; df = 15; <i>P</i> <0.001; Table 4). No differences in mean larval survival time were detected among those containing hexane or aqueous <i>T. hirta</i> extracts or the ethyl acetate <i>T. americana</i> extract, but all those were different from the control diet treatment. All other treatments were not significantly different from the control diet treatment. The reduction in survival time, relative to the control diet treatment, was 72 and 52% for <i>T. americana</i> hexane and <i>T. hirta</i> aqueous extracts treatments, respectively.</p><p>EFFECT OF EXTRACTS OF <i>TRICHILIA AMERICANA</i>, <i>TRICHILIA HIRTA</i>, AND <i>TRICHILIA HAVANENSIS</i> AT 1,500 PPM ON THE WEIGHT OF <i>COPITARSIA DECOLORA</i> LARVAE AND PUPAE</p><p>The weights of 7-d-old larvae were not analyzed because the larvae were too small to weigh accurately. Larval weights at 14 d were significantly affected by the species (<i>F</i> = 143.61; df = 3,265; <i>P</i> <0.0001), the solvent (<i>F</i> = 5.77; df = 4,265; <i>P</i> <0.0002), and the species-solvent interaction (<i>F</i> = 2.93; df = 8,265; <i>P</i> <0.003).The largest weight inhibition was recorded with ethyl acetate extraction of <i>T. americana</i>, a reduction in weight of 99% relative to the control diet treatment. This was followed by hexane and aqueous extracts of <i>T. hirta</i> treatments and the hexane extract of <i>T. americana</i>, with a 98, 97, and 97% reduction, respectively, in relation to the control diet treatment. All other treatments were significantly different from the control diet treatment, with about 64% larval weight inhibition (Table 5).</p><p>At 21 d, larvae fed with the <i>T. americana</i> ethyl acetate extract displayed a 99% reduction in weight in relation to the control diet treatment, and weighed the least of all the treatments (Table 5). A reduction of 98 and 96% in relation to the control diet treatment was recorded for larvae with the <i>T. hirta</i> and <i>T. americana</i> hexane treatments. Only the <i>T. hirta</i> hexane treatment and <i>T. americana</i> ethyl acetate extract were significantly lighter than the control (<i>H</i> = 201.330; df = 14; <i>P</i> <0.001).</p><p>At 28 d, statistically significant 99 and 98% reductions in weight were recorded for the larvae fed with ethyl acetate extract of <i>T. americana</i> and hexane extract of <i>T. hirta</i> (<i>H</i> = 240.041; df = 13; <i>P</i> <0.001) (Table 5). The methanol extract of <i>T. hirta</i> and the ethyl acetate, methanol, and aqueous extracts of <i>T. havanensis</i> were similar to the control diet treatment. A 25 to 65% significant reduction in larval weight related to the control diet treatment were obtained with the acetone, methanol, and aqueous extract of <i>T. americana</i>, the ethyl acetate and acetone extract of <i>T. hirta</i>, and the hexane and acetone extract of <i>T. havanensis</i>.</p><p>The greatest reduction in pupal weight (21%) was recorded for the larvae fed with <i>T. havanensis</i> acetone extract, and this value was significantly different from the other treatments (<i>F</i> = 210.61; df = 3,137; <i>P</i> <0.0001 for species; <i>F</i> = 308.18; df = 4,137; <i>P</i> <0.0001 for solvent; and <i>F</i> = 74.63; df = 4,137; <i>P</i> <0.0001 for the species-solvent interaction). Larvae fed with <i>T. havanensis</i> hexane extract and <i>T. hirta</i> acetone extract had significant 19% reductions in pupal weights in relation to the control diet treatment (Table 5).</p><p>EFFECT OF BARK EXTRACTS OF <i>TRICHILIA AMERICANA</i>, <i>TRICHILIA HIRTA</i>,>D <i>TRICHILIA HAVANENSIS</i> APPLIED AT 1,500 PPM ON FERTILITY>D FECUNDITY OF <i>COPITARSIA DECOLORA</i></p><p>Because adults were not obtained from all the treatments,the fecundity and fertility were recorded from pairs of the aqueous and methanol extracts of <i>T.americana</i>, the acetone,aqueous,and methanol extracts of <i>T. havanensis</i>, and the ethyl acetate and acetone extracts of <i>T. hirta</i>. Fecundity was significantly affected by the treatments (<i>F</i> = 55.54; df = 7,22; <i>P</i> <0.0001), but female (<i>F</i> = 0.08; df = 1,22; <i>P</i>> 0.05) and male weights (<i>F</i> = 1.06; df = 1,22; <i>P</i>> 0.05, data not shown) were not significantly affected. Fecundity from the controls was highest of the treatments (Fig. 5). Significant reductions of 62 and 57% in fecundity, in relation to the control diet treatment, were recorded from insects fed the aqueous and methanol extracts of <i>T. americana</i>, respectively. The other treatments significantly reduced fecundity by 32 to 44%.</p><p>Fertility was significantly affected by the extracts (<i>F</i> = 194.84; df = 7,22; <i>P</i> <0.001), but female (<i>F</i> = 0.51; df = 1,22; <i>P</i>> 0.05) and male weights (<i>F</i> = 0.47; df = 1,22; <i>P</i>> 0.05, data not shown) were not. The highest fecundity was obtained from the controls and was significantly greater than all other treatments (Fig. 5). Aqueous and methanol extracts of <i>T. americana</i> significantly reduced fertility by 90 and 86%, respectively. All other treatments reduced fertility by 47 to 70%.</p>
title Trichilia americana Sesse & Moc.
topic Biodiversity
Taxonomy
Plantae
Tracheophyta
Magnoliopsida
Sapindales
Meliaceae
Trichilia
Trichilia americana
url https://doi.org/10.5281/zenodo.12685723