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111.
The study was conducted with the aim of furthering our understanding of seasonality in the population dynamics and infestation rates of the fruit fly Bactrocera spp. in sweet gourd (Cucurbita moschata) during winter and summer in 2017. We also investigated the effects of using methyl eugenol traps on fly abundance and infestation. Two fruit fly species, namely, B. cucurbitae and B. dorsalis, were present in the sweet gourd field, and we observed fluctuations in their abundance. Compared to B. dorsalis, B. cucurbitae was significantly more abundant in both winter and summer. Infestation level was found to be the highest in fields lacking methyl eugenol traps in both seasons. Fruit fly larval population per infested fruit was higher in summer than in winter. Fly abundance was significantly and positively correlated with mean temperature and rainfall but significantly and negatively correlated with light intensity. Relative humidity was insignificantly but positively correlated with fly abundance. The temperature, light intensity, relative humidity, and rainfall individually explained 48.9, 24.1, 0.8, and 1.6% of variation in fruit fly abundance, respectively. The combined effect of the weather parameters on fruit fly abundance was 75.4% and was significant predictor of fruit fly abundance.  相似文献   
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Climate change and competition from invasive species remain two important challenges in restoration. We examined the hypothesis that non‐native tamarisk (Tamarix spp.) reestablishment after aboveground removal is affected by genetics‐based architecture of native Fremont cottonwood (Populus fremontii) used in restoration. As cottonwood architecture (height, canopy width, number of stems, and trunk diameter) is, in part, determined by genetics, we predicted that trees from different provenances would exhibit different architecture, and mean annual maximum temperature transfer distance from the provenances would interact with the architecture to affect tamarisk. In a common garden in Chevelon, AZ, U.S.A. (elevation 1,496 m), with cottonwoods from provenances spanning its elevation distribution, we measured the performance of both cottonwoods and tamarisk. Several key findings emerged. On average, cottonwoods from higher elevations were (1) two times taller and wider, covered approximately 3.5 times more basal area, and were less shrubby in appearance, by exhibiting four times fewer number of stems than cottonwoods from lower elevations; (2) had 50% fewer tamarisk growing underneath, which were two times shorter and covered 6.5 times less basal area than tamarisk growing underneath cottonwoods of smaller stature; and (3) the number of cottonwood stems did not affect tamarisk growth, possibly because the negative relationship between cottonwood stems and basal area. In combination, these findings argue that cottonwood architecture is affected by local conditions that interact with genetics‐based architecture. These interactions can negatively affect the growth of reinvading tamarisk and enhance restoration success. Our study emphasizes the importance of incorporating genetic and environmental interactions of plants used in restoration.  相似文献   
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采用硅胶柱层析及制备型液相色谱仪对红曲米中两种荧光物质进行分离纯化,使用高效液相色谱法(HPLC)检测荧光物质纯度,然后使用高分辨质谱(ESI-HRMS)对两种荧光物质进行分析,得到两种荧光物质的分子量分别为356和384,ESI-MS/MS二级质谱把两者鉴定为monasfluore A (MFA)和monasfluore B (MFB);从金华地区红曲米中分离得到10株红曲菌株,经固态发酵采用HPLC法分析,筛选获得1株高产MFA、MFB的菌株WZWZ,该菌株发酵制得红曲米中MFA含量为3.63 g/kg,MFB含量为7.29 g/kg,对WZWZ菌株进行外观形态学及显微观察、ITS基因序列测定与分析,最终将菌株WZWZ鉴定为紫色红曲霉(Monascus purpureus)。  相似文献   
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Coastal systems worldwide deliver vital ecosystem services, such as biodiversity, carbon sequestration, and coastal protection. Effectivity of these ecosystem services increases when vegetation is present. Understanding the mechanisms behind vegetation establishment in bio‐geomorphic systems is necessary to understand their ability to recover after erosive events and potential adaptations to climate change. In this study, we examined how seed availability affects vegetation establishment in the salt marsh–intertidal flat transition zone: the area with capacity for lateral marsh expansion. This requires vegetation establishment; therefore, seed availability is essential. In a 6‐month field experiment, we simulated a before and after winter seed dispersal at two locations, the salt‐marsh vegetation edge and the intertidal flat, and studied seed retention, the seed bank, and the seed viability of three pioneer marsh species: Salicornia procumbens, Aster tripolium, and Spartina anglica. During winter storm conditions, all supplied seeds eroded away with the sediment surface layer. After winter, supplied seeds from all three species were retained, mostly at the surface while 9% was bioturbated downwards. In the natural seed bank, A. tripolium and S. anglica were practically absent while S. procumbens occurred more frequently. The viability of S. procumbens seeds was highest at the surface, between 80% and 90%. The viability quickly decreased with depth, although viable S. procumbens seeds occurred up to 15 cm depth. Only when seeds were supplied after winter, many S. procumbens and some S. anglica individuals did establish successfully in the transition zone. Viable seed availability formed a vegetation establishment threshold, even with a local seed source. Our results suggest that, although boundary conditions such as elevation, inundation, and weather conditions were appropriate for vegetation establishment in spring, the soil surface in winter can be so dynamic that it limits lateral marsh expansion. These insights can be used for designing effective nature‐based coastal protection.  相似文献   
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The neutral exopolysaccharide produced by Lactobacillus delbrueckii ssp. bulgaricus LBB.B26 in skimmed milk was found to be composed of d-glucose and d-galactose in a molar ratio of 2:3. Linkage analysis and 1D/2D NMR ((1)H and (13)C) studies performed on the native polysaccharide, and on an oligosaccharide obtained from a partial acid hydrolysate of the native polysaccharide, showed the polysaccharide to consist of branched pentasaccharide repeating units with the following structure. [structure: see text]  相似文献   
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目的了解新型抗真菌药物米卡芬净(micafungin,MFG)对分离自中国的念珠菌和曲霉临床株的体外抑菌活性。方法参照CLSI(Clinical and Laboratory Standards Institute,以前为NCCLS)制定的M27-A2和M38-A方案测定86株念珠菌和35株曲霉的最低抑菌浓度(MIC)或最低有效浓度(MEC)。结果MFG对大多数念珠菌属和曲霉属均有较好的抑菌作用。对念珠菌属的MIC90从高到低依次为:氟康唑(FLC)敏感的白念珠菌、热带念珠菌、光滑念珠菌为0.125μg/ml,FLC耐药和剂量依赖敏感株为0.25μg/ml,克柔念珠菌为0.5μg/ml,近平滑念珠菌8μg/ml,季也蒙念珠菌>16μg/ml。MFG对烟曲霉的MEC90为≤0.03μg/ml,对非烟曲霉的曲霉属MEC90为0.06μg/ml。MFG与唑类药物、两性霉素B(AMB)不存在交叉耐药,对FLC耐药的念珠菌、伊曲康唑耐药的曲霉、AMB不敏感的曲霉均有好的抑菌活性。结论MFG对多数念珠菌属和曲霉属(包括对唑类耐药和AMB不敏感的菌株)有较好的体外抑菌作用。  相似文献   
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白鹤(Grus leucogeranus)是IUCN极危物种,全球仅存3 500~4 000只,其中约98%的个体在鄱阳湖越冬。以前白鹤在鄱阳湖主要在浅水生境挖掘苦草(Vallisneria spp.)的冬芽为食。然而,近年来农业用地已成为白鹤的重要觅食地。目前对于白鹤在农业用地的食物组成尚不清楚。本研究采用粪便显微镜检法对2017年11月至2018年4月采集的70份白鹤粪便样品进行分析。结果表明,白鹤的食物来源于10科15种植物,其中,水稻(Oryza sativa)、莲藕(Nelumbo nucifera)和紫云英(Astragalus sinicus)为最主要的食物,这3种植物在检测到的食物中的相对密度分别为34.34%、22.99%和10.61%,而白鹤的传统食物苦草冬芽所占的比例极低(2.05%)。由此可见,白鹤的食物组成已经发生变化,农作物已成为白鹤的重要食物来源。白鹤在农业用地中觅食使该物种的保护面临一系列问题,尤其是高强度的人为干扰,对此,提出了相应的保护措施,希望为白鹤提供安全、稳定的觅食环境。  相似文献   
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