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91.
The consistent appropriate selection of environment-stable varieties, the range of plant without ear up to maximal ripeness ratio of grain to residual plant are the cardinal question in maize cultivation respecting the ripeness, growing and environmental conditions. By permanent control of the ripening process in the pre-harvest period up to ripeness maximum possible ratio of grain to rest plant (real time of harvest) and its detection by the Silage maize Ripeness Index (SRI) as phenological performance, selection and stress indicator the environmental performance potential of all varieties can be exploited, in all years, as well as each location and in all directions of use. The plant without ear as a concrete expression of the reduction of biomass production caused by drought stress and the careless cultivation of unstable varieties provide the base inevitably for drastic, estimated losses with regard to quality, yield, as well as extensive risks in environmental, consumer and animal welfare. Ripe different maize with green, vital and active photosynthesis residual plant with 22?% dry matter is in the field of physiological ripeness of grain by 63?% up to the agro-eco-efficient ripeness point and the interface of all use directions. Silage and energy maize with the SRI of 2.8 and still green residual plant should be continued in the interest of the effectiveness of the high-performance feeding up to the maximum possible ripeness ratio. The establishment of the plant architecture in the form of high maize high of about 225 cm is better for improve the yield potential compared to compact. Such differences were indifferent and not pronounced at the quality indicators. By phenotyping of the production levels in maize, also the risks of all kinds are estimated preventable in addition to the appraisal of quality and yield. In addition an assessment of ripeness, growing and environmental conditions of the crop year can be on the other hand same range based on the SRI retroactively. Interfaces, as the agro-eco-efficient ripeness point, for the coupling of other crop models, a selection index for breeding objectives of all use directions (performance, resistance and food value) as an environmental variable and standard for trial basis have been created with this Dynamic Ripeness and Analysissystem (DRA). The efficiency of the entire production branch is also ecologically to justify itself according to maximize success in each direction of use maize.  相似文献   
92.
Background: Whole blood platelet aggregometry (impedance) is an important method to investigate platelet function disorders. Examination of hemostatic function in sheep is important with respect to their role as an animal model of human disease. Objective: The aim of this study was to evaluate and optimize selected methodological aspects (anticoagulant, agonist concentration) of impedance aggregometry in ovine blood using the new Multiplate 5.0 analyzer. Methods: Blood samples were collected in hirudin anticoagulant from 40 clinically healthy sheep. Samples from selected sheep were collected in citrate, with or without the addition of calcium chloride. The agonists adenosine diphosphate (ADP), collagen, ristocetin, arachidonic acid, and thrombin receptor‐activating peptide (TRAP) were added in several concentrations to induce aggregation. Results: Based on maximum aggregation values and internal precision, no significant difference was found between ADP concentrations of 3–10 μmol/L and collagen concentrations of 3–5 μg/mL (P>.05). The lowest interindividual variation of approximately 3–4‐fold was seen with 4 and 5 μmol/L ADP and 4 and 5 μg/mL collagen. Ristocetin, arachidonic acid, and TRAP did not induce significant aggregation at any concentration. Aggregation results were significantly lower when measured in citrate‐ vs hirudin‐anticoagulated blood, regardless of the presence of calcium chloride. Conclusions: Our results indicate that the multiplate impedance aggregometer is suitable for the measurement of platelet aggregation in sheep using optimal agonist concentrations of 4–5 μmol/L ADP and 4–5 μg/mL collagen. Hirudin‐anticoagulated blood is the preferred sample material.  相似文献   
93.
The effect of 15N-labelled litter of different quality (Luzula sylvatica, a grass species, Vaccinium gaultheroides, a deciduous dwarf shrub, and Calluna vulgaris, a hardy dwarf shrub) and the presence of macro-decomposers (Lumbricus rubellus, Lumbricidae, and Enantiulus nanus, Diplopoda) on the growth of Dactylis glomerata (Poaceae), a grass species abundant on alpine pastureland, was investigated. After 4 months, the presence of soil animals significantly increased litter mass loss of L. sylvatica, V. gaultheroides and C. vulgaris by 27%, 11% and 40%, respectively. Soil animals generally reduced microbial biomass but significantly increased it in treatments where either L. sylvatica or C. vulgaris was present. The presence of soil animals significantly increased shoot and root biomass of D. glomerata by 48% and 64%, respectively. L. rubellus increased the transfer of 15N from the litter into plants. We conclude that macro-decomposers increased nutrient mobilization and plant uptake of nutrients mineralized from recalcitrant litter materials. Litter of L. sylvatica contributed most to the 15N uptake by D. glomerata, suggesting that litter quality is crucial for the cycling of nutrients on abandoned alpine pastureland.  相似文献   
94.
Nutrient-poor, sandy soils form the prevailing substrate at post-mining sites of the Lusatian region(Brandenburg, Germany) and present a challenge for vegetation development. We studied the organic acid quantity and composition of three commonly occurring pioneer plant species, the legumes Lotus corniculatus L. and Trifolium arvense L. and the grass Calamagrostis epigeios(L.) Roth, to determine if plant growth and exudation differed with(non-sterilized soil) and without(sterilized soil) an indigenous soil microbial community. We investigated whether organic acids were found in the rhizosphere and surrounding soil and whether this influenced nutrient mobilization. This study consists of linked field investigations and a greenhouse experiment. Plants were grown in the greenhouse in either sterilized or non-sterilized sandy soil from a reclamation site in the Lusatian mining landscape(Welzow Su¨d, East Germany). After seven months, the plant biomass, root morphology, organic acids, and water-soluble nutrients and root colonization with arbuscular mycorrhizal fungi(AMF) and dark septate endophytes(DSE) were analyzed. Roots of all three plants in the field and greenhouse experiments were highly colonized with AMF. Calamagrostis epigeios and T. arvense had a significantly higher colonization frequency with DSE than L. corniculatus. The quantity and composition of organic acids strongly differed among plant species, with the highest number of organic acids found for L. corniculatus and lowest for C. epigeios. The quantity of organic acids was greatly reduced in all plants under sterilized soil conditions. However, the composition of organic acids and plant growth in sterilized soil were reduced for both legumes, but not for C. epigeios, which had a higher biomass under sterilized conditions. Changes in nutrient concentrations in the field rhizosphere soil relative to those in the control were measurable after seven months. While the spectrum of organic acids and the growth of legumes seemed to be dependent on a highly diverse soil microbial community and a symbiotic partner, the grass C. epigeios appeared capable of mobilizing enough nutrients without an indigenous microbial community, and might be more competitive on sites where soil microbial diversity and activity are low.  相似文献   
95.
The present case study, deals with a recently built aquaculture facility using 80–120 L s−1 spring water for trout production. The farm consists of six raceways, discharging in a common outflow channel, leading to a drum filter equipped with 80 μm gauze. About 120 L s−1 of the microscreen effluent is pumped back in the inflow channel of the six raceways. The remaining effluent is oxygenated with pure oxygen in gravity oxygenation units and led to two U-shaped raceways. The farm effluent is finally filtered by a drum filter with 63 μm mesh size. The microscreen backwash sludge is treated in a cone settler, where the sediments are extracted for agricultural manure application. The sedimentation supernatant is further led in a sub surface flow (SSF) constructed wetland prior to discharge.Due to the advanced effluent treatment within the farm, the total farm effect on the receiving effluent is kept to a minimum. The nutrient increase produced by the farm is only 0.03 mg L−1 total phosphorous (TP), 1.09 mg L−1 biological oxygen demand (BOD5) and, 0.57 mg L−1 total suspended solids (TSS) in the brook. Especially the incorporation of an intermediate microscreen prior to water recirculation, prevents leaching of dissolved nutrients from particulate matter, as large particles are effectively and as fast as possible removed from the water flow.At the pumping station, needed for water recirculation, the particle size distribution (PSD) was monitored with the previous microscreen in use and by-passed. When the screen was by-passed a significant crushing effect on PSD through pumping action was found. Through the removal of large particles, the crushing effect of the pumping station on the particles is prevented, as revealed by particle size distribution (PSD) measurement. Thus, leaching of dissolved nutrients is prevented twice.In consequence, the farm configuration can be recommended as an effective possibility for intensive trout production at sites with a small freshwater source and stringent effluent thresholds, even with the unexpected low treatment efficiencies measured for the microscreens. Both drum filters showed relative low treatment efficiencies of 33–53% for total suspended solids, respectively, while an efficiency of 70% should be expected from the measured PSD. With this impact, the farm still emitted a low nutrient amount, especially due to the highly effective offline microscreen backwash sludge treatment, where the SSF wetland efficiently reduced dissolved and particulate nutrients as nitrite (NO2-N), nitrate (NO3-N) and TSS. Thus this SSF wetland application might be suitable as a denitrification step in a closed recirculating trout farm.  相似文献   
96.
The actual cation exchange capacity (CECact) in sandy mine soils from Tertiary sediments increases with the lignite contents of the substrates. Therefore, lignite is important for nutrient storage and availability in these soils. Base saturation varies over a wide range of 4 — 100% according to soil pH. For the determination of CECact, the high contents of soluble salts typical for these substrates have to be considered for reliable results.  相似文献   
97.
Grapevine (Vitis vinifera L.) is economically very important for the production of wine, table grapes and raisins. However, grapevine is threatened by a brought range of pathogens. A destructive disease worldwide is powdery mildew caused by the ascomycete Erysiphe necator. In the grapevine cultivar `Regent’ a resistance locus against E. necator, Ren3, was previously reported. It spans an interval of approximately seven Mb on chromosome 15. We attempted to delimit this interval to facilitate its further molecular analysis. New simple sequence repeat markers targeted to the Ren3 region were designed. They were applied for fine mapping in the cross populations of ‘Regent’ × ‘Lemberger’ and ‘Regent’ × ‘Cabernet Sauvignon’ that segregate for E. necator resistance. Complementarily we scored E. necator infection levels of ‘Regent’ × ‘Lemberger’ progeny at different time points over the course of the vegetation period in 2015 and 2016. Subsequent QTL analysis revealed a maximum LOD value that shifted during the season from marker GF15-10 located at 2.2 Mb to marker GF15-53 located at 3.5 Mb and to marker ScORA7* located at 9.4 Mb on chromosome 15 (positions according to the grapevine reference genome of PN40024). To investigate the Ren3-encoded resistance mechanism we performed detached leaf infection assays for microscopic studies. These revealed that Ren3 carrying individuals react with a hypersensitive response. Results of detached leaf assays on recombinants in the Ren3 locus indicate that not only one, but two distinct genetic regions on chromosome 15 mediate hypersensitive response against E. necator.  相似文献   
98.
99.
多重聚合酶链反应检测环境中产气荚膜杆菌   总被引:12,自引:0,他引:12  
产气荚膜杆菌根据产生4种主要毒素(α-β、ε、τ-毒素)可分为5种类型A-E型。在该研究中依据产气荚膜杆菌的5种毒素基因的序列,设计了5对PCR引物,建立了多重PCR方法,该方法可以快速区分5种类型的产气荚膜杆菌。并对68份环境样品(生活污水、生物肥料)进行检测和基因分型,共检出55株产气荚膜杆菌,其中A型产气荚膜杆菌50株,占总数的90%以上,B型、C型、D型只占5%,未检出E型产气荚膜杆菌,所有的分离株没有发现带有肠毒素。结果表明,目前环境中主要存在的菌型为A型菌,其他菌型的产气荚膜杆菌很少,而多数是非致病性产气荚膜杆菌。  相似文献   
100.
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