1000 resultados para Nomenclatura botànica
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The experiment was conducted at UNESP-Jaboticabal during the 2001-2002 winter-spring-summer periods to evaluate the herbage mass, botanical composition, dry matter production of mix pastures, and leaf: sheat-stem ration of Tifton 85 or overseeding with annual winter or summer species. The treatments were: pearl millet (Pennisetum americanum (L.) Leeke) plus bristeal oat (Avena strigosa Schreb); sorghum sudan grass (Sorghum bicolor (L.) Moench x Sorghum sudanense (Piper) Stapf) (SS AG2501 C) plus bristeal oat, overseeded on Tifton 85 area on 06/19/02/04, or 07/02/02, and Tifton 85, conducted in a randomized block design. The AG2501 contributed with a small participation in the botanical composition and the presence of millet in the experiment was not observed. Highest herbage mass at first and second evaluations related to first seeding time was 63% higher compared to the second seeding time. The herbage mass were similar he production in the other evaluations were similar. on the second seeding time, it was observed highest oat species in relation to the first seeding time. The leaf: sheat-stem ration decreased during the experiment due to the pasture botanical composition changes.
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Molecular markers have recently been incorporated into genetic improvement programs. They are already considered as powerful tools with several different uses, for instance the monitoring of genetic variability in tree populations. The main objectives of this study were to evaluate genetic variability in Eucalyptus urophylla progenies and together with silvicultural and botanical information, provide assistance to the improvement program. The Eucalypts population is located at the Experimental Forestry Sciences Station, Anhembi, SP, which belongs to the College of Agriculture Luiz de Queiroz. Sixty-nine progenies were analysed representing one individual by family in open pollinated Eucalyptus urophylla trees. The RAPD technique allowed the identification of 72 loci that were analysed using Jaccard's Coefficient generating a genetic similarity matrix to permit estimation of genetic distances. The results obtained showed genetic distance between individuals of 0.40 with 12 groups of genetic variability using a standardised distance of 40%. The progenies showed different bark patterns, allowing the establishment of bark groups. The groups formed based on genetic distances obtained using DNA analysis did not correspond to those based on bark pattern. Genetic selection was simulated in which silvicultural and genetic variability data were linked, thus avoiding excessive variability losses. The simulation of controlled crossings allowed the maximum genetic difference to be obtained linked with height and individual bark roughness.
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