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111.
Fast and accurate large-scale localization and quantification of harmfully compacted soils in recultivated post-mining landscapes are of particular importance for mining companies and the following farmers. The use of heavy machinery during recultivation imposes soil stress and can cause irreversible subsoil compaction limiting crop growth in the long term. To overcome or guide classical point-scale methods to determine compaction, fast methods covering large areas are required. In our study, a recultivated field of the Garzweiler mine in North Rhine-Westphalia, Germany, with known variability in crop performance was intensively studied using non-invasive electromagnetic induction (EMI) and electrode-based electrical resistivity tomography (ERT). Additionally, soil bulk density, volumetric soil water content and soil textures were analysed along two transects covering different compaction levels. The results showed that the measured EMI apparent electrical conductivity (ECa) along the transects was highly correlated (R2 > .7 for different dates and depths below 0.3 m) to subsoil bulk density. Finally, the correlations established along the transects were used to predict harmful subsoil compaction within the field, whereby a spatial probabilistic map of zones of harmful compaction was developed. In general, the results revealed the feasibility of using the EMI derived ECa to predict harmful compaction. They can be the basis for quick monitoring of the recultivation process and implementation of necessary melioration to return a well-structured soil with good water and nutrient accessibility, and rooting depths for increased crop yields to the farmers.  相似文献   
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The nutrient composition of 15 commercially available microalgae powders of Arthrospira platensis, Chlorella pyrenoidosa and vulgaris, Dunaliella salina, Haematococcus pluvialis, Tetraselmis chuii, and Aphanizomenon flos-aquae was analyzed. The Dunaliella salina powders were characterized by a high content of carbohydrates, saturated fatty acids (SFAs), omega-6-polyunsaturated fatty acids (n6-PUFAs), heavy metals, and α-tocopherol, whereas the protein amounts, essential amino acids (EAAs), omega-3-PUFAs (n3-PUFAs), vitamins, and minerals were low. In the powder of Haematococcus pluvialis, ten times higher amounts of carotenoids compared to all other analyzed powders were determined, yet it was low in vitamins D and E, protein, and EAAs, and the n6/n3-PUFAs ratio was comparably high. Vitamin B12, quantified as cobalamin, was below 0.02 mg/100 g dry weight (d.w.) in all studied powders. Based on our analysis, microalgae such as Aphanizomenon and Chlorella may contribute to an adequate intake of critical nutrients such as protein with a high content of EAAs, dietary fibers, n3-PUFAs, Ca, Fe, Mg, and Zn, as well as vitamin D and E. Yet, the nutritional value of Aphanizomenon flos-aquae was slightly decreased by high contents of SFAs. The present data show that microalgae are rich in valuable nutrients, but the macro- and micronutrient profiles differ strongly between and within species.  相似文献   
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In this field study, three methods for determining soil CO2 evolution rates were compared: (1) a static chamber method and (2) a dynamic chamber method, both with gas chromatographic (GC) analysis of air samples, and (3) a dynamic chamber system using a portable infrared gas analyzer (CIRAS). The mean CO2 evolution rate in the field increased in the order static chamber-GC < dynamic chamber-GC < dynamic chamber-CIRAS by 40%. The CO2 evolution rates obtained using the three methods were significantly correlated. None of the three methods was significantly affected by soil moisture or soil temperature. This has been repeatedly observed by others, but is still not fully understood. The difference between air and soil temperature had strong negative effects on both GC methods, but not on the CIRAS system.  相似文献   
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The results of time-course conditioning trials indicate that there is an optimum conditioning interval during which the proportion of viable gametes is at a maximum. When matings are accomplished before or after this optimum interval, reduced gamete viability results. In this case, spawning and fertilization may appear to be normal, but setting success is substantially reduced.The degree of conditioning required to reach this optimum window is dependent on the stage of gonadal development in the broodstock when conditioning is started, and reflects substantial seasonal variation, which is repeated on an annual cyclic basis.Performance of the larval rearing system, reflected in the proportion of ova which survive to the spat stage, may be substantially improved by managing broodstock conditioning to maximize the proportion of viable gametes. This may be accomplished by empirical observation of the annual gonadal cycle in the area where the broodstock is maintained, and then determining the optimum conditioning interval for the various seasons.  相似文献   
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Barley (Hordeum vulgare L.) that is infested with Fusarium head blight (FHB, ‘scab’) is unsuitable for malting and brewing because it may contain mycotoxins and has unacceptable malting quality. Fungal proteinases are apparently often involved in plant-microbe interactions, where they degrade storage proteins, but very little is known about the enzymes that the fungi produce in the infected grain. We have shown previously that one plant pathogenic fungus, Fusarium culmorum, produced subtilisin- and trypsin-like enzymes when grown in a cereal protein medium. To establish whether these proteinases were also synthesized in FHB-infested barley in vivo, field-grown barley was infested as the heads emerged. Extracts were prepared from the grain as it developed and matured and their proteolytic activities were measured with N-succinyl-Ala-Ala-Pro-Phe p -nitroanilide and N-benzoyl-Val-Gly-Arg p -nitroanilide. The heavily infested barleys contained both subtilisin- and trypsin-like activities. These enzymes reacted with antibodies prepared against each of the two F. culmorum proteinases, indicating that those produced in the laboratory cultures and in the field-infested barley were the same. The presence of these proteinases correlated with the degradation of specific buffer-soluble proteins in the infested grains. These enzymes readily hydrolyzed barley grain storage proteins (C- and D-hordeins) in vitro. The presence of these Fusarium proteinases in the barley indicates that they probably play an important role in the infestation, but exactly how and when they function is not clear.  相似文献   
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The objective of this study was to improve the quality of cryopreserved–thawed equine sperm using single-layer density centrifugation (SLC). Sperm quality was assessed by DNA integrity, motility, morphology, mitochondrial membrane potential, viability, and plasma membrane alteration. The percentage of DNA-damaged sperm (expressed in % COMP) was lower (P = .001) after SLC (1.6 ± 0.5% vs. 6.8 ± 0.5%). Total sperm motility (80 ± 2.4% vs. 41.7 ± 2.4%) and progressive sperm motility (69.5 ± 2.9% vs. 31.5 ± 2.9%) (P < .001), as well as the percentage of morphologically normal sperm (45 ± 3.9% vs. 27.7 ± 3.9%), increased after SLC compared with control sample. In addition, the proportion of sperm with high mitochondrial membrane potential increased (81.6 ± 1.8% vs. 42.1 ± 1.8%), as did the viability of sperm (71.1 ± 2.4% vs. 39.5 ± 2.4%), after SLC compared with the control sperm. The proportion of sperm with alteration in plasma membrane structure was lower after SLC compared with control sample (6.4 ± 1.1% vs. 18.9 ± 1.1%). Overall, sperm recovery was 72.7 ± 3.6% in the control sample compared with 14.8 ± 3.6% after SLC (P < .001). We conclude that based on the sperm parameters evaluated, SLC improves the quality of cryopreserved–thawed equine spermatozoa.  相似文献   
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