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31.
Evapotranspiration predictions of CERES-Sorghum model in Southern Italy   总被引:1,自引:0,他引:1  
The purpose of this study was to modify and calibrate the CERES-Sorghum water balance model for the dry, high radiation and windy conditions in an area in Southern Italy.

The equation for estimating potential evapotranspiration (E0) was substituted by another one, calibrated in the study site and expressed as a function of equilibrium evaporation and maximum vapour pressure deficit (defined as the difference between the saturation vapour pressure at maximum and at minimum temperatures).

To calibrate the E0 equation included in CERES-Sorghum, two drainage lysimeters, located at the Istituto Sperimentale Agronomico experimental farm, Foggia (Italy), were used to measure weekly evapotranspiration of well-watered, irrigated fescue grass, from 1976 to 1986.

A further drainage lysimeter, located in the same farm and cropped with well-watered grain sorghum (cv. NK 121) was used to calibrate the genetic coefficients input to the modified CERES-Sorghum model during the cropping seasons 1979 and 1980.

Simulated phenological dates (anthesis and maturity), grain yield, LAI, biomass and crop evapotranspiration were then compared with the measured ones in a fourth drainage lysimeter cropped with sorghum.

The modified model simulated grain yield accurately, but simulated daily evapotranspiration did not always match well the observed value, especially early in the crop cycle. Improvements are needed to the model in its simulation of soil evaporation and in the crop response function to temperature.  相似文献   

32.
Treated industrial effluents have high levels of nutrients and dissolved organic matter. The irrigation of rice by flooding can increase nutrient uptake and grain yield. Therefore, this study evaluated the nutrient contents in the shoots and grain of the rice crop and also the chemical of the soil after irrigation of the crop with leachate of the treated industrial effluent. A greenhouse experiment was conducted using pots filled with 20 kg of soil in a randomized block design with three replications. The treatments consisted of control (irrigation with distilled water) and four concentrations of the leachate (25, 50, 75, and 100 %) for irrigation. At the end of the experiment, the nutrient contents in tissues of rice plants, sterility of spikelets, and grain mass were evaluated. Results showed that irrigation with the leachate at 25 % content increased the macro- and micronutrients’ concentrations in the shoot biomass and grain, except for potassium and iron. Irrigation with the industrial leachate decreased tillering and grain yield; however, it increased chlorophyll content, sterility of spikelets, and sodium intake at this leachate concentration. The potassium and sodium levels and the electrical conductivity values of soils irrigated with treated industrial leachate were increased. The use of the treated leachate from industrial effluents is an alternative that reuses the nutritional load, but the volume of leachate should be limited and monitored to prevent the sodicity in the soil and problemsdue to eutrophication.  相似文献   
33.
Buma  B.  Harvey  B. J.  Gavin  D. G.  Kelly  R.  Loboda  T.  McNeil  B. E.  Marlon  J. R.  Meddens  A. J. H.  Morris  J. L.  Raffa  K. F.  Shuman  B.  Smithwick  E. A. H.  McLauchlan  K. K. 《Landscape Ecology》2019,34(1):17-33
Context

Predicting ecosystem resilience is a challenge, especially as climate change alters disturbance regimes and conditions for recovery. Recent research has highlighted the importance of spatially-explicit disturbance and resilience processes to long-term ecosystem dynamics. “Neoecological” approaches characterize resilience mechanisms at relatively fine spatio-temporal resolutions, but results are difficult to extrapolate across broad temporal scales or climatic ranges. Paleoecological methodologies can consider the effects of climates that differ from today. However, they are often limited to coarse-grained spatio-temporal resolutions.

Methods

In this synthesis, we describe implicit and explicit examples of studies that incorporate both neo- and paleoecological approaches. We propose ways to build on the strengths of both approaches in an explicit and proactive fashion.

Results

Linking the two approaches is a powerful way to surpass their respective limitations. Aligning spatial scales is critical: Paleoecological sampling design should incorporate knowledge of the spatial characteristics of the disturbance process, and neoecological studies benefit from a longer-term context to their conclusions. In some cases, modeling can incorporate non-spatial data from paleoecological records or emerging spatial paleo-data networks with mechanistic disturbance/recovery processes that operate at fine spatiotemporal scales.

Conclusions

Linking these two complementary approaches is a powerful way to build a complete understanding of ecosystem disturbance and resilience.

  相似文献   
34.
It is proposed that the standard economist's model of optimum land use is extended to include the interaction with land cover and land condition. Such a model allows consideration of the influence of market factors and government policies and programmes on land use patterns and management practices, and the feedback effect on land cover and land condition. Recent developments in the approach to modelling land condition, which include the joint consideration of economic factors and physical processes, are discussed. Factors affecting the pattern of agricultural land use in Australia are then reviewed. The importance of considering economic and physical interactions when assessing land use patterns is increasingly being recognized in research and policy development. If research is to meet the needs of land managers in the future then economists and physical scientists will need to integrate their data modelling capabilities in order to address natural resource management issues.  相似文献   
35.
Summary The influence of temperature, number of sprouts per tuber and concentration of supplementary inorganic nutrients on sprout growth and intersprout competition for tuber substrates during emergence was investigated in the potato varietyArran Pilot. The rate of sprout growth was found to be a positive function of initial tuber fresh weight. Dry weight data at emergence indicated that individual sprouts on multi-sprout tubers exhibited mutual interference for substrates from the tuber. The intensity of this interference increased with temperature in the range 7 25 C, but interference was reduced, and in some cases eliminated, by supplying inorganic nutrients in the rooting medium. It was concluded that a component of the inorganic nutrient solution used could replace the tuber factor the supply of which limited sprout growth. The effects of temperature and inorganic nutrient concentration on the partitioning of dry matter within the plant are deseribed and diseussed.
Zusammenfassung Die Einflüsse von Temperatur, ursprünglichem Knollengewicht, der Anzahl Keime pro Knolle und der Konzentration zus?tzlicher anorganischer N?hrstoffe auf das Keimwachstum sowie die Konkurrenz zwischen den Keimen um das Knollensubstrat w?hrend des Auflaufens wurden an der KartoffelsorteArran Pilot untersucht. Ween Knollen in ein n?hrstofffreies Medium gepflanzt wurden (Versuch 1), glich die Auflaufrate der Keime einer positiv linearen Funktion der Temperatur über einen Bereich von 7 C bis 25 C, aber sie war nicht signifikant beeinflusst durch die Zahl der Keime pro Knolle (Tabelle 1 und 2). Die einzelnen Keime von Knollen mit vielen Keimen konkurrierten um das Substrat der Mutterknolle, und die St?rke dieser Interferenz nahm mit steigender Temperatur w?hrend des Auflaufens zu (Abb. 1 und 2). In den Versuchen 2 und 3 wurde die Auflaufzeit durch die Beigabe einer anorganischen Volln?hrl?sung zum Wurzeln?hrboden verkürzt, aber sie wurde nicht signifikant beeinflusst durch die Zahl der Keime pro Knolle (Tabelle 4). Eine Erh?hung der N?hrstoffkonzentration in der anorganischen L?sung hatte eine Erh?hung des durchschnittlichen Trockengewichtes der Keime und des durchschnittlichen Trockengewichtes der Keime pro Knolle beim Auflaufen zur Folge (Abb. 4 und 5). In Versuch 2 setzte die Gabe von anorganischen N?hrstoffen die Intensit?t der Konkurrenz zwischen den Keimen um das Substrat aus der Knolle betr?chtlich herab, was darauf hindeutet, dass ein Bestandteil der verwendeten N?hrl?sung den “Knollenfaktor”, der das Keimwachstum begrenzt, ersetzen k?nnte. Im Versuch 3 dagegen wurde die Interferenz um die Substrate aus der Knolle durch die Konzentration der verwendeten N?hrstoffe nicht beeinflusst. Diese Abweichung zwischen den zwei Versuchen dürfte mit dem unterschiedlichen Grad der Interferenz zwischen den Wurzelsystemen der einzelnen Keime für die Zufuhr der verwendeten N?hrstoffe in Zusammenhang stehen (Tabelle 5). Die Temperatur nach dem Auspflanzen übte einen betr?chtlichen Einfluss auf die Verteilung der Trockensubstanz innerhalb des Stengel-systems aus. Anzahl, L?nge und Trockengewicht der Stolonen pro Keim (Abb. 3) und das Verh?ltnis des Stolonentrockengewichtes zum gesamten Trockengewicht der Stengel (Tabelle 3) waren in umgekehrter Bezichung von der Temperatur abh?ngig, in den Versuchen 1 und 3 stand das Verh?ltnis des Stolonentrockengewichtes zum gesamten Stengelgewicht in umgekehrter Bezichung zur Anzahl Keime pro Knolle: in Versuch 3 war diese Beziehung aber nicht signifikant beeinflusst durch die Konzentration der mineralischen N?hrstoffe. Diese Ergebnisse wiesen darauf hin, dass neben der Temperatur ein spezifischer Faktor in der Mutterknolle auf das Stolonenwachstum einwirkte und dass dieser Faktor nicht durch eine den Knollen zur Verfügung stehende mineralischen N?hrstoffl?sung ersetzt werden kann. In den Versuchen 2 und 3 erweiterte sich das Stengel/Wurzel-Verh?ltnis mit der Erh?hung der Konzentration der verwendeten anorganisehen N?hrstoffe, aber es war nicht signifikant beeinflusst durch die Zahl der Keime pro Knolle.

Résumé L’auteur a recherché, sur la variété de Pomme de terreArran Pilot, l’influence de la température, du poids initial du tubercule, du nombre de germes par tubercule et de la concentration en éléments nutritifs inorganiques supplémentaires sur la croissance du germe et la compétition entre les germes pour les réserves du tubercule pendant la levée. Quand les tubercules sont plantés dans un milieu dépourvu d’éléments nutritifs (expérience 1), la vitesse d’émergence d’un germe est une fonction linéaire positive de la température dans les limites de 7 C à 25 C mais n’est pas significativement influencéc par le nombre de germes par tubercule (tableau 1 et 2). Les germes des tubercules à plusieurs germes rivalisent individuellement pour les réserves du tubercule-mère et il se révèle que l’intensité de cette interférence s’accro?t avec l’augmentation de la température pendant l’émergence (Fig. 1 et 2). Dans les expériences 2 et 3, le temps d’émergence est réduit par l’application au milieu d’enracinement d’une solution nutritive complète inorganique, mais n’est pas significativement influencé par le nombre de germes par tubercule (Tableau 4). Une augmentation de la concentration en éléments nutritifs inorganiques entra?ne, lors de l’émergence, une augmentation du poids sec moyen d’un germe et une augmentation du poids sec moyen de tous les germes du tubercule (Fig. 4 et 5). Dans l’expérience 2 l’application d’éléments nutritifs inorganiques réduit l’intensité de la compétition entre germes pour les réserves du tubercule, ce qui signifie qu’un composant de la solution nutritive utilisée remplace le facteur du tubercule qui limite la croissance du germe. Cependant, dans l’experience 3, la compétition pour les réserves du tubercule n’est pas influencée par la concentration des éléments nutritifs appliqués. La différence dans les deux expériences peut provenir des différences dans le degré d’interaction entre les systèmes radiculaires des germes individuels pour les approvisionnements en éléments nutritifs appliqués (Tableau 5). La température après plantation exerce une influence considérable sur la répartition de la matière sèche dans le système radiculaire. Le nombre, la longucur et le poids sec de stolons par germe (Fig. 3) et le rapport du poids sec des stolons au poids total sec des germes (Tableau 3) sont des fonctions inverses de la température. Dans les expériences 1 et 3 le rapport poids sec des stolons au poids total des germes est inversément relié au nombre de germes par tubercule, mais dans l’expérience 3 ce rapport n’est pas significativement influencé par la concentration externe des éléments minéraux. Ces résultats indiquent qu’en plus des effets de la température, un facteur spécifique provenant du tubercule-mère influe sur la croissance du stolon, et que ce facteur ne peut être remplacé par un apport externe d’éléments nutritifs minéraux. Dans les expériences 2 et 3 le rapport bourgeon/ racine augmente avec l’accroissement de la concentration en éléments nutritifs inorganiques appliqués mais n’est pas significativement influencé par le nombre de germes par tubercule.
  相似文献   
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38.
Samples of Hemiptera were taken in September 1972, from areas of carboniferous limestone grassland which were burnt in April and May 1972, and from adjacent unburnt areas. Significantly larger numbers of species, of both Heteroptera and Auchenorhyncha, were recorded from the unburnt areas, and the species-diversity of the samples was significantly greater. The effects of burning on individual species are considered in relation to their biology and the effects of other kinds of management. The results are discussed in relation to the management of grassland for the conservation of wildlife, and a short review of the effects of burning on populations of invertebrate animals is made.  相似文献   
39.
The loss of water from small bulk samples of five grass species was studied under constant conditions of humidity, temperature and lighting. A logarithmic curve was fitted to the data and the different species compared on the basis of a loss coefficient derived from the fitted curve. The species varied significantly in this aspect; those with high surface-area to dry-weight ratios generally lost water fastest The presence of stem material appeared to increase the rate of water loss considerably. High humidity during drying caused the grasses to lose water more slowly and to retain much more water at equilibrium with the surrounding air. Chemical treatments to speed water loss, using a solvent and a fungal toxin were tested. Both appear to have some promise. Selection for high water loss in grass breeding may also be possible.  相似文献   
40.
A longitudinal observational study of 15 red deer farms was carried out in New Zealand for two years from March 1992. The deer were monitored for performance and health problems, and farm management practices were recorded. Numbers at risk were 4,683 hind-years, 2,459 stag-years and 3,202 weaner-years. The numbers of primiparous and adult hinds at risk of losing their progeny by weaning were 653 and 3,364, respectively. Where possible, postmortem examinations were carried out, and organs were sampled for histological and microbiological investigation. Rates of mortality varied with season with most stag and hind deaths in winter and weaner deaths in autumn and winter. Overall mortality rates were 1.77, 2.60 and 5.87 per 100 deer-years for hinds, stags and weaners, respectively. Malignant catarrhal fever accounted for 0.53 stag and 0.17 hind deaths per 100 deer-years at risk Misadventure, including broken bones, accounted for 15.4 per cent of weaner mortalities, or 0.53 weaner mortalities per 100 weaner-three months in autumn. Yersiniosis was confirmed in 18.6 per cent of weaner deaths, or 1.09 weaners per 100 weaner-years during the first six months after weaning, but was also suspected but unconfirmed in a further 41 per cent of weaner mortalities. Overall, 17 per cent of yearling hinds, and 9.2 per cent of adult hinds lost their progeny between pregnancy diagnosis in June and weaning in March. One outbreak of osteochondrosis was recorded. Mortality rates varied between farms and many mortalities were preventable.  相似文献   
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