5 resultados para ACHIEVABLE YIELD AND ACTUAL YIELD


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El presente artículo investiga algunas respuestas de la sociedad ante el pronóstico de calamidades comunitarias, estableciendo una comparación entre la respuesta de una comunidad antigua y algunas respuestas de la sociedad globalizada del siglo XXI ante los pronósticos científicos concernientes al cambio climático. En el campo disciplinar de la filología, se propone una lectura más compleja del Peán 9 de Píndaro (fr. 52k Maehler = A1 Rutherford), que busca dar cuenta del fenómeno del eclipse de sol, descrito por el poeta como un signo de catástrofes comunitarias, en el marco de los posibles conocimientos astronómicos de la época, y en la red de significados implícita en las formas de pensamiento simbólico propias de la Grecia arcaica. Tanto las actitudes antiguas como las actuales ante el anuncio de calamidades comunitarias se consideran desde una perspectiva antropológica apoyada en la investigación moderna sobre mitología.

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Se analizan condiciones históricas de la conformación de la Región del Noroeste argentino, con sus particulares características, así como incidencias del proceso revolucionario de 1810 y algunas repercusiones del mismo en el futuro de la Región. Se acude para ello al aporte de estudios históricos, lingüísticos y antropológicos regionales, así como al testimonio de pensadores comprometidos con su realidad. La población descendiente de los pueblos originarios aparece sumergida en situaciones de desigualdad y explotación a lo largo del período recorrido, lo que se expresa a través de obras de luchadores como M. A. Tanco, J. L. Torres y el grupo Tarja. En la actualidad, y a pesar de los avances realizados a nivel de Acuerdos y Declaraciones de organismos internacionales, la demanda de su legítimo y efectivo reconocimiento es una deuda pendiente, lo que conlleva connotaciones éticas que cuestionan las bases de nuestro sistema democrático.

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reduce costs and labor associated with predicting the genotypic mean (GM) of a synthetic variety (SV) of maize (Zea mays L.), breeders can develop SVs from L lines and s single crosses (SynL,SC) instead of L+2s lines (SynL). The objective of this work was to derive and study formulae for the inbreeding coefficient (IC) and GM of SynL,SC, SynL, and the SV derived from (L+2s)/2 single crosses (SynSC). All SVs were derived from the same L+2s unrelated lines whose IC is FL, and each parent of a SV was represented by m plants. An a priori probability equation for the IC was used. Important results were: 1) the largest and smallest GMs correspond to SynL and SynL,SC, respectively; 2) the GM predictors with the largest and intermediate precision are those for SynL and SynL,SC, respectively; 3) only when FL=1, or m is large, SynL and SynSC are the same population, but only with SynSC prediction costs and labor undergo the maximum decrease, although its prediction precision is the lowest. To determine the SV to be developed, breeders should also consider the availability of lines, single crosses, manpower and land area; besides budget, target farmers, target environments, etc.

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The aim of this work was to evaluate changes in growth and productivity parameters of different precocious hybrids and a naturalized variety of papaya under both greenhouse and field cultivation in a temperate climate (the center of the province of Santa Fe, Argentina). In view of the aforesaid, the purpose of our research was to identify further genotypes better suited for the cultivation of this species in temperate climates and demonstrate the need for the use of semi-controlled systems to make possible the cultivation of these promising genotypes in middle latitudes. The average yield was 291% higher in greenhouse than in the field. The average productivity for hybrid genotypes compared with the naturalized variety more than doubled in both environments. Considering behavior in height, leaf area index and yield parameters, hybrids H2 (principally), and H4 showed a great adaptation for use in semi-forced systems. The use of greenhouse and short stature papaya hybrids allows its feasible and surely profitable cultivation in non- tropical climates.

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The effect of Bokashi (B, a fermented compost), slow-release fertilizers (SRFs) and their combined application on mycorrhizal colonization (MC), soil invertase, cellulase, acid (AcP) and alkaline (AlP) phosphatases activities and maize (Zea mays L.) yield was investigated in terrace (TS) and valley (VS) soils in Oaxaca, Mexico. A complete randomized design, seven fertilizer treatments and four replications were used: unamended control (C); conventional fertilization (90-46-00 NPK) (CF); B; SRF1 (Multigro 6®, 21-14-10 NPK); SRF2 (Multigro 3®, 24-05-14 NPK); B+SRF1; B+SRF2. Highest root colonization percentage: CF in VS, and SRF2 in TS. Highest extraradical mycelium length: B, B+SRF1, CF in VS, and B+SRF1 in TS. In both soils, B increased the spore number. Highest AcP activity: B, SRF2 in VS, and B+SRF1, B+SRF2 in TS. Highest AlP activity: B+SRF1, CF in VS, and C in TS. Highest invertase activity: B+SRF1, SRF2, CF in VS, and B in TS. Grain yield only increased with B in VS. The significant interaction soil type × fertilizer treatment for the majority of the biological soil properties analyzed suggests that MC and soil enzyme activity response to fertilization was influenced by soil type. Bokashi, alone or combined with SRFs improves biological soil fertility in maize fields.