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71.
A 3 × 3 factorial experiment was conducted on Labeo rohita fingerlings to evaluate the effect of dietary oxidized oil and vitamin E. Nine experimental diets were made, based on three degrees of oil oxidation (fresh oil, low oil oxidation and high oil oxidation), and each level of oxidation was further supplemented with three levels of vitamin E (0, 100 and 1,000 mg/kg). Weight gain% and specific growth rate (SGR) of fish fed fresh fish oil and low oil oxidation level were significantly higher than highly oxidized oil. Moreover, vitamin E supplemented fish also showed better growth performance. Oil oxidation caused a significant reduction in the concentrations of α‐tocopherol and increase in TBARS level and antioxidant enzyme activities in fish liver and muscles. However, increasing the dietary vitamin E abrogated these effects. Dietary vitamin E supplementation improved the fatty acid, more specifically polyunsaturated fatty acids profile of oxidized oil fed fish. In conclusion, dietary oxidized fish oil increased the oxidative stress condition of fish but supplementation of high dose of vitamin E prevented lipid oxidation, improved growth performance and fatty acid profile of L. rohita.  相似文献   
72.
An eight‐week feeding trial was conducted to evaluate the feed intake, growth, feed utilization, body composition and waste output of juvenile hybrid bream at different feeding frequencies (0.5, 1, 2, 3 or 4 meals/day). Fish (initial body weight of 10.6 ± 0.8 g) were fed to satiation at each feeding. The test diet contained 336 g/kg crude protein and 79 g/kg crude lipid. The weight gain significantly increased with increase in feeding frequency from 0.5 to 3 meals/day (p < 0.05) and afterwards did not change with feeding frequency from 3 to 4 meals/day (p > 0.05). The feed intake increased with increase in feeding frequency (p < 0.05). Fish fed at 3 meals/day exhibited the lowest feed conversion ratio and waste output of nitrogen and phosphorus, however, the highest nitrogen retention efficiency (p < 0.05). No significant differences were found in the phosphorus retention efficiency, the body composition of crude protein, ash and phosphorus among all the feeding frequencies (p > 0.05). The body lipid content increased, whereas the content of moisture decreased, with the increase in feeding frequency (p < 0.05). The present study reveals that the optimum feeding frequency is 3 meals/day for hybrid bream.  相似文献   
73.
收集和鉴定了云南省和贵州省共46份灯盏花种质资源,筛选出适合生产不同药品的成分专用型种源,为专用型品种选育提供参考。利用HPLC测定了灯盏花种源10种活性成分含量,相关分析阐明各成分含量间的相关性,聚类分析对种质资源进行分类。结果表明:16份灯盏花种源灯盏乙素(scutellarin, SE)含量在2.5%以上,是培育灯盏花素专用型品种的优良材料,其中4份种源同时含有高含量(>1.0%)的双咖啡酰奎宁酸酯(dicaffeoylquinic acids, diCQAs),是培育灯盏细辛专用型品种的优良材料;同时,筛选出8份总黄酮(total flavonoids, TFs)含量高于3.5%的种源,适合选育总黄酮专用品种。相关性分析表明,SE含量与diCQAs和TFs含量均显著正相关,是灯盏花品质育种的标志性成分。聚类分析将灯盏花种源分为三大类,除1个种源的SE含量和diCQAs含量接近(第Ⅲ类)外,其他种源SE均占总活性成分的60%以上,其中第Ⅰ类为高TFs型种源,TFs占到总活性成分的80%以上,diCQAs占总成分的15%以下;第Ⅱ类为高diCQAs型种源,diCQAs占总成分的16.9%~28.9%,TFs占到总活性成分的80%以下。该结果表明灯盏花种源活性成分组成存在多种类型,为专用型品种选育提供了可能,灯盏乙素含量可以作为专用型种源筛选的首要指标。  相似文献   
74.
The increasing shortage in water resources is a key factor affecting sustainable socio-economic development in the arid region of Northwest China(ARNC). Water shortages also affect the stability of the region's oasis ecosystem. This paper summarizes the hydrological processes and water cycle of inland river basins in the ARNC, focusing on the following aspects: the spatial-temporal features of water resources(including air water vapor resources, runoff, and glacial meltwater) and their driving forces; the characteristics of streamflow composition in the inland river basins; the characteristics and main controlling factors of baseflow in the inland rivers; and anticipated future changes in hydrological processes and water resources. The results indicate that:(1) although the runoff in most inland rivers in the ARNC showed a significant increasing trend, both the glaciated area and glacial ice reserves have been reduced in the mountains;(2) snow melt and glacier melt are extremely important hydrological processes in the ARNC, especially in the Kunlun and Tianshan mountains;(3) baseflow in the inland rivers of the ARNC is the result of climate change and human activities, with the main driving factors being the reduction in forest area and the over-exploitation and utilization of groundwater in the river basins; and(4) the contradictions among water resources, ecology and economy will further increase in the future. The findings of this study might also help strengthen the ecological, economic and social sustainable development in the study region.  相似文献   
75.
As a result of global climate change the incidence of drought conditions in Europe is predicted to increase in the future, which also influences plant resistance. Lipids are important plant constituents that protect plants against drought stress and contribute to the intermediate stable carbon (C) pool in soil. However, the extent to which drought influences lipid cycling in the plant–soil system is unknown and, therefore, it remains questionable how the ecosystem recovers after drought. We focused on plant and soil samples from two different plant communities (temperate grassland and heathland) that had been exposed to 5 years of 4.5–6.0 weeks repeated annual drought. They were sampled one year after the last drought to check the recovery of the plant–soil system. Samples were analyzed for their bulk C, stable C and nitrogen (N) isotope (δ13C, δ15N) and lipid composition. Contrary to our expectation, no strong influence of five years of repeated annual drought was observed for above‐ground biomass, roots and soils in the model ecosystems with respect to elemental (C and N concentrations, C : N ratio) bulk isotope (δ13C, δ15N) composition and the total extractable lipid concentration. Thus, plants did not sustain a significant change in their C and lipid concentration as well as their composition after five years of repeated annual drought. This might be related to the comparatively short drought period related to the overall growth season and provides evidence for recovery of the C and lipid dynamics in temperate grassland and heathland model ecosystems exposed to annual drought.  相似文献   
76.
干旱区矿区不同立地类型土壤种子库特征   总被引:1,自引:0,他引:1  
矿区的自然或人工植被恢复是维持生物多样性及生态系统稳定的重要途径。通过室外萌发法对金昌镍铜矿区7种不同立地生境土壤种子库的研究表明:该区域土壤中物种丰富度较高,包括16科47属,共56种植物,分别为:藜科(Chenopodiaceae)、禾本科(Gramineae)、菊科(Compositae)、柽柳科(Tamaricaceae)、苋科(Amaranthaceae)、马齿苋科(Portulacaceae)、豆科(Leguminosae)、十字花科(Cruciferae)、车前科(Plantaginaceae)、胡颓子科(Elaeagnaceae)、蒺藜科(Zygophyllaceae)、莎草科(Cyperaceae)、大戟科(Euphorbiaceae)、紫草科(Boraginaceae)、蔷薇科(Rosaceae)、茄科(Solanaceae);植物组成以一年生草本植物占绝对优势(89.3%),多年生草本植物次之(7.54%),灌木种最少(2.59%)。土壤种子平均储量412粒·m~(-2),不同立地类型土壤种子库储量差异显著,与其他荒漠地区比较,土壤种子库储量偏低;土壤种子库物种Simpson多样性指数为:新尾矿周边自然植被区龙首矿自然植被区龙首矿开采废弃地供暖公司柽柳林地。  相似文献   
77.
通过野外调查和室内不同温度下饲养观察,对油松大蚜(Cinara formosana)生活史、种群动态、有效积温、天敌、物候预测和化学防治进行了研究。结果表明:油松大蚜1年可发生8代,6月中旬分化出有翅孤雌蚜并扩散,10月上旬性蚜交配产卵,以卵越冬;油松大蚜种群数量1年内有2个高峰期,分别在6月上旬和9月上旬,8月上旬—8月中旬种群数量最低;油松大蚜不同虫态的发生与山桃(Prunus davidiana)、连翘(Forsythia suspense)、龙爪槐(Sophora japonica)和火炬树(Rhus typhina)的一些物候相吻合,可通过观察这些植物的物候来预测油松大蚜各虫态发生情况;油松大蚜优势天敌依次为异色瓢虫(Leis axyridis)、七星瓢虫(Coccinella septempunctata)、蚜茧蜂(未鉴定);油松大蚜4个龄期的若虫及全世代的发育起点温度分别为4.5、6.7、5.9、7.7、3.1℃,有效积温分别为48.6、49.3、67.4、62.7、291.7日·度;胶带-药膜法防治油松大蚜效果显著,14 d后处理区校正虫口减退率可达80%以上。  相似文献   
78.
【目的】本研究基于试验测定的中国荷斯坦牛血液和乳汁中的孕酮浓度表型,探究了影响中国荷斯坦牛体内孕酮分泌的环境因素、孕酮浓度的变化趋势、孕酮浓度与乳成分的关联程度以及血乳中孕酮浓度的预测方法。【方法】试验于2021年8月在北京、山东两个牧场采集不同胎次、泌乳阶段和妊娠状态的中国荷斯坦泌乳牛的奶样、尾根血样,测定孕酮浓度,最终获得402条乳汁孕酮浓度和298条血液孕酮浓度表型用于数据分析。对孕酮浓度进行数据转化使其近似服从正态分布后,采用固定效应模型探究胎次、泌乳阶段、妊娠状态、牧场等固定效应对奶牛孕酮表型的影响,运用R语言cor函数计算孕酮与各乳成分间的关联,并利用偏最小二乘法和个体及乳成分信息对孕酮浓度进行预测,以建立孕酮浓度表型高通量获取手段。【结果】妊娠状态对转化乳汁孕酮浓度存在极显著影响(P<0.01),胎次、场效应对转化乳汁孕酮浓度均有显著影响(P<0.05),而转化血液孕酮浓度只受到妊娠状态影响(P<0.01);全乳固体、乳脂率、乳蛋白率、脂蛋比与转化乳血孕酮浓度均存在显著或极显著的正相关关系(r=0.14~0.37,P<0.05;P<0.01);基于本试验数据,乳成分与个体信息对转化乳血孕酮浓度的预测准确性不高(R2=0.030~0.17),但如果增加血液或乳汁的转化孕酮浓度对乳汁或血液的转化孕酮浓度进行预测,预测效果则有大幅提升(R2=0.40)。【结论】影响泌乳期中国荷斯坦牛转化孕酮浓度的因素除妊娠状态外,可能还包括饲养条件与胎次。此外转化孕酮浓度与乳脂率、乳蛋白率等乳成分呈极显著相关。基于乳成分信息与转化孕酮的关系,获得了对中国荷斯坦牛乳血转化孕酮浓度预测的可用策略,为今后牧场的繁殖辅助管理、奶牛育种新性状研发以及孕酮浓度的高通量获取等提供了新思路。  相似文献   
79.
为明确测土配方技术在泗阳地区玉米生产过程中的实际效果,通过田间试验对玉米生育期、产量构成和效益等进行了对比分析。试验结果显示:采用14.8-9-8的肥料配比能显著提升玉米肥料利用率,提高产量和收益。相较常规施肥,测土配方施肥对玉米生育期影响较小,但玉米穗粒数和千粒重提升效果显著,分别提升了1.88%和3.89%;测土配方施肥的氮、磷、钾肥利用率和养分平均利用率分别为40.77%、28.02%、51.18%,相较常规施肥分别提升了11.55%、4.07%、21.46%,养分平均利用率提升了12.36%;测土配方施肥籽粒产量为9535.04kg/ha,相较常规施肥增产429.99kg,增产率为4.72%,纯收益每公顷提升1269.60元。  相似文献   
80.
孙晓锋  冯健  陈江虹  罗波  赵海祥  赵华林 《水产学报》2011,35(11):1677-1683
通过胃排空试验与养殖试验研究了不同投喂频率对尼罗系吉富罗非鱼幼鱼的胃排空、生长性能以及体组成的影响.在试验开始时,观测尼罗系吉富罗非鱼幼鱼的胃内饲料排空情况,胃排空试验结果表明,胃排空率的最佳描述为平方根函数,胃内饲料在饱食投喂后15 h左右完全排空,达到投喂前水平,80%胃排空为9h,也就是投喂后大约9h恢复食欲.360尾试验鱼(初始体质量3.72 g)以不同的投喂频率(1d4次、1d3次、1d2次、2d4次、2d3次、2d2次)分组,每组设立3个平行组,随机养殖于18个网箱中,每箱养殖20尾鱼,按饱食量投饲膨化饲料.养殖期为6周.尼罗系吉富罗非鱼幼鱼在投喂频率为1d4次、1d3次和1d2次时特定生长率和饲料效率显著高于投喂频率为2d4次、2d3次和2d2次时(P<0.05);投喂频率为1d2次、2d4次、2d3次和2d2次时其摄食量显著低于1d4次和1d3次时(P<0.05).随着投喂频率降低,鱼体水分含量逐步上升,脂肪和蛋白质含量逐步下降,其中1d4次、1d3次组鱼与2d2次组鱼有显著性差异(P<0.05).各投喂频率组间的肝体指数无显著性差异(P>0.05).3.7~48.0 g尼罗系吉富罗非鱼幼鱼的适宜投喂频率为1d2次,较2d2次、2d3次和2d4次时明显提高了生长速度和饲料效率,较1d3次、1d4次摄食量显著降低.2种试验结果较为一致.  相似文献   
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