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491.
The paper discusses the use of natural products and biological control agents in crop protection from an industrial viewpoint. The criteria which must be satisfied are noted. Examples are given from the genetic engineering of baculoviruses and proteins. The final section considers the utility of natural products as a source of leads for conventional agrochemicals, and the screens needed. © 1998 SCI. 相似文献
492.
Brendon G. Welten Stewart F. Ledgard Amanda A. Judge Mike S. Sprosen Alec W. McGowan Moira M. Dexter 《Soil Use and Management》2019,35(4):653-663
A soil lysimeter field study assessed the efficacy of different pasture species to reduce nitrogen (N) leaching loss from cow urine deposited in different seasons. A single application of cow urine (15N‐labelled; equivalent to 622 kg N ha?1) was applied in three different seasons (summer, autumn or winter) to three pasture species monocultures (perennial ryegrass, plantain or lucerne) on a free‐draining volcanic soil and monitored over 362 days. Leachate analyses revealed consistently large leaching losses of inorganic‐N from lucerne (>200 kg N ha?1) across different urine application times due to the relatively low plant growth rates during winter (<15 kg DM ha?1 day?1) that led to low total recovery of urine‐N by lucerne plants (<20% of the applied urine‐15N). Conversely, plant uptake of the urine‐N was higher by plantain (ranging from 30% to 45% of that applied) driven by moderately higher winter plant growth rates (30 to 60 kg DM ha?1 day?1). Plantain exhibited large seasonal variation in its efficacy to reduce urine‐N leaching relative to ryegrass (ranging from 15% to 50% reduction for summer or winter urine applications, respectively) with an overall reduction of 39% in the total amount of inorganic‐N leached across the three seasons (53 vs. 87 kg N ha?1 leached relative to ryegrass). This study has demonstrated the potential benefit of using plantain to reduce N leaching losses from urine deposited in the summer to winter grazing period. However, further research is required to quantify the effects of plantain on annual N leaching losses from grazed pastoral systems. 相似文献
493.
Henry Charles Van Ham Mike Grey Mark Cowley Neil Harrison Robert 《Water, air, and soil pollution》2000,117(1-4):123-131
A new technique was developed for field determination of N mineralization from biosolids, which provides a simple, inexpensive test that yields accurate results. A residuals technique was used; mineralization was defined as the difference between the original and final mass of organic nitrogen. Biosolids were collected from a number of British Columbia wastewater treatment plants (WWTPs), placed in porous ceramic tubes and incubated under controlled conditions. Variables studied included wet versus dry biosolids, application rate, tube size, inoculation solution, and the effect of a soil addition mixed with biosolids. There was little difference in N mineralization between wet and dried biosolids, however variability was reduced using dried biosolids. No difference was observed using different amounts of biosolids. When dried biosolids were inoculated with supernatant obtained from a soil and biosolids mixture, decomposition was higher than with supernatant from the individual mediums alone. However, mineralization was fairly close with all inoculates. The addition of soil had little effect on biosolids decomposition other than resulting in a higher variability. 相似文献
494.
Molecular Basis and Regulation of Ammonium Transporter in Rice 总被引:4,自引:0,他引:4
LI Bao-zhen Mike MERRICK LI Su-mei LI Hong-ying ZHU Shu-wen SHI Wei-ming SU Yan-hua 《水稻科学》2009,16(4):314-322
Rice grows in flooded paddy fields and takes up ammonium as the preferred nitrogen (N) source. Ammonium uptake is facilitated by a family of integral membrane proteins known as ammonium transporters found in all domains of life. However, the molecular mechanism and functional characteristics of the ammonium transporters (AMT) in rice have not been determined in detail yet. In this review, we report a genome-wide search for AMT genes in rice, resulting in the increase of the number of potential AMT proteins to at least 12, including members of both the alpha and beta sub-groups. Analysis of the predicted protein sequences for the 12 OsAMT proteins identified many conserved phosphorylation sites in both the alpha and beta group members, which could potentially play a role in controlling the activity of the transporters. Present knowledge of the expression of rice AMT genes is also summarized in detail. Future studies should focus on the structural and functional characteristics of OsAMT proteins to provide insight into the mechanism of ammonium uptake and its regulation in rice. Such research could improve utilization and decrease wastage of N fertilizer in rice cultivation. 相似文献
495.
Milani N McLaughlin MJ Stacey SP Kirby JK Hettiarachchi GM Beak DG Cornelis G 《Journal of agricultural and food chemistry》2012,60(16):3991-3998
The solubility of Zn in Zn fertilizers plays an important role in the agronomic effectiveness of the fertilizer. On the basis of thermodynamics, zinc oxide (ZnO) nanoparticles (NPs) should dissolve faster and to a greater extent than bulk ZnO particles (equivalent spherical diameter >100 nm). These novel solubility features of ZnO NPs might be exploited to improve the efficiency of Zn fertilizers. In this study, we compared the Zn solubility and dissolution kinetics of ZnO nanoparticles and bulk ZnO particles coated onto two selected granular macronutrient fertilizers, urea and monoammonium phosphate (MAP). The main Zn species on coated MAP and urea granules were zinc ammonium phosphate and ZnO, respectively. Coated MAP granules showed greater Zn solubility and faster dissolution rates in sand columns compared to coated urea granules, which may be related to pH differences in the solution surrounding the fertilizer granules. The kinetics of Zn dissolution was not affected by the size of the ZnO particles applied for coating of either fertilizer type, possibly because solubility was controlled by formation of the same compounds irrespective of the size of the original ZnO particles used for coating. 相似文献
496.
Emissions of nitrous oxide (N2O) from an Irish arable soil were simulated using the DeNitrification–DeComposition (DNDC) model. The soil chosen was a free-draining
sandy loam typical of the majority of cereal growing land in Ireland, and one that has been previously used to test and validate
DNDC-model. DeNitrification–DeComposition model was considered suitable to estimate N2O fluxes from Irish arable soils however, underestimated the flux by 24%. The objectives of this study were to estimate future
N2O fluxes from a spring barley field under conventional (moulboard plowing) and reduced (chisel plowing) tillage and different
N-fertilzer application rates. Three climate scenarios, a baseline of measured climatic data from the weather station at Kilkenny
and a high- and low-temperature-sensitive scenarios predicted by the Hadley Global Climate Model (HadCM4) based on the AB1 emission scenario of the Intergovernment Panel on Climate Change (IPCC) were investigated. For conventional
tillage under all scenarios, three peaks of N2O emissions were predicted; an early spring peak coinciding mostly with soil plowing, a mid/late spring peak coinciding with
fertilizer application and an early autumn peak coinciding with residue incorporation and onset of autumn rainfall. Under
reduced tillage, due to the less amount of soil disturbance, the early spring peak was not predicted. In all cases, the total
amount of N2O emitted in the late spring peak due to fertilizer application was less than the sum of the other peaks. Under climate change,
using the high-temperature-increase scenario, DNDC predicted an increase in N2O emissions from both conventional and reduced tillage, ranging from 58% to 88% depending upon N application rate. In contrast,
annual fluxes of N2O either decreased or increased slightly in the low temperature increase scenario relative to N application (−26 to +16%).
Outputs from the model indicate that elevated temperature and precipitation increase N mineralization and total denitrification
leading to greater fluxes of N2O. Annual uncertainties due to the use of two different future climate scenarios were significantly high, ranging from 74%
to 95% and from 71% to 90% for the conventional and reduced tillage. 相似文献
497.
Christopher R. S. Barrio Froján Mike A. Kendall Gordon L. J. Paterson Lawrence E. Hawkins Sompoch Nimsantijaroen Chittima Aryuthaka 《水产资源保护:海洋与淡水生态系统》2009,19(7):748-757
- 1. Bare intertidal sedimentary habitats have received relatively little attention compared with their neighbouring vegetated habitats. An ecological comparison of benthic faunal assemblages inhabiting tropical intertidal seagrass beds and bare sediments has been made to assess the faunal similarity between the two habitats in south‐east Asia.
- 2. The poorly developed taxonomy of most invertebrate taxa in the region precluded the full identification of many faunal groups. Only the polychaetes — which accounted for 76% of all the macrofaunal organisms collected — were identified to the lowest possible taxonomic level, yielding 177 nominal species belonging to 35 families. Ecological analyses suggested that although each habitat had a distinct polychaete assemblage, there were few differences between habitats based on a range of calculated assemblage diversity metrics.
- 3. Further analyses were applied to the data to test the performance of three strategies for optimizing the selection of sites for inclusion in potential marine protected areas. Strategies were based either on the total number of species, the number of rare or endemic species, or on the level of species richness (used as a surrogate for community structure).
- 4. All three strategies consistently captured above average numbers of species at most levels of conservation intensity. The merits of each strategy are considered in turn.
498.
Louise Cunningham John M. Baxter Ian L. Boyd Callan D. Duck Mike Lonergan Simon E. Moss Bernie McConnell 《水产资源保护:海洋与淡水生态系统》2009,19(4):398-407
- 1. Compliance with conservation legislation requires knowledge on the behaviour, abundance and distribution of protected species. Seal life history is characterized by a combination of marine foraging and a requirement to haul out on a solid substrate for reproduction and moulting. Thus understanding the use of haul out sites, where seals are counted, as well as their at‐sea movements is crucial for designing effective monitoring and management plans.
- 2. This study used satellite transmitters deployed on 24 harbour seals in western Scotland to examine movements and haul‐out patterns.
- 3. The proportion of time harbour seals spent hauled out (daily means of between 11 and 27%) varied spatially, temporally and according to sex. The mean haul‐out duration was 5 h, with a maximum of over 24 h.
- 4. Patterns of movement were observed at two geographical scales; while some seals travelled over 100 km, 50% of trips were within 25 km of a haul‐out site. These patterns are important for the identification of a marine component to designated protected areas for the species.
- 5. On average seals returned to the haul‐out sites they last used during 40% of trips, indicating a degree of site fidelity, though there was wide variation between different haul‐out sites (range 0% to >75%).
- 6. Low fidelity haul‐out sites could form a network of land‐based protected areas, while high fidelity sites might form appropriate management units.
499.
Mike Muller 《Irrigation and Drainage Systems》2010,24(3-4):161-175
Integrated Water Resource Development and Management (IWRM) was the paradigm recommended for water resource management at the UN Conference on Environment and Development (UNCED) in Rio de Janeiro in 1992. Subsequently, however, “development” disappeared from the IWRM lexicon and the Dublin Principles, a preconference lobbying product, were widely promoted instead. A review of case studies suggests that the normative approach of Dublin has constrained infrastructure investments in developing countries, often ignoring the context within which water resources are managed. As a result, its positive outcomes have been limited. Meanwhile, in countries following the Rio approach, water management has made significant contributions to broad development objectives. It is suggested that a return to the UNCED agreement is needed to address effectively the challenges to water management posed by economic transformation, population growth and climate change. 相似文献
500.
Fien Degryse Rodrigo C. da Silva Roslyn Baird Ismail Cakmak Mustafa Atilla Yazici Mike J. McLaughlin 《植物养料与土壤学杂志》2020,183(2):248-259
Total Zn in fertilizer is a poor predictor of Zn availability in granular fertilizers. In this study, we compared different extraction methods using Zn fertilizers for which the agronomic effectiveness had previously been determined. Sixteen fertilizers were extracted by eight different procedures using five extractant solutions: water, 1 M ammonium acetate (pH 7.0), 74 mM EDTA (pH 7.0), 5 mM DTPA + 0.1 M MES (pH 6.2), and 0.12 M bis‐tris (pH 6). Modelling of Zn solubility and speciation was carried out with a chemical speciation program (Visual Minteq). The predicted solubilities were in good agreement with the observations, indicating chemical equilibrium. The three methods using pure water were highly correlated with each other and showed the strongest correlation with agronomic effectiveness (r = 0.81–0.90). The methods using extractants with strong pH buffering or high chelating capacity showed no or weak correlation with the agronomic effectiveness. Thus, water‐only based methods give the best indication of the availability of Zn in granular fertilizers, and are best suited for regulation or labeling of available Zn in fertilizer. 相似文献