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181.
本研究旨在探究北京地区中国荷斯坦牛干奶期长度(DPL)的变化规律及其变异对奶牛各项生产性能的影响,包括产奶性能、繁殖性能、初乳品质和乳房健康。收集了北京地区34个牧场出生于2009—2018年136 231头中国荷斯坦牛的干奶日期、生产性能记录、繁殖性能记录等。通过整理试验牛群的干奶记录,揭示了北京地区中国荷斯坦牛1胎和2胎DPL的群体规律,利用固定模型分析了胎次、产犊季节、场-产犊年和初产月龄对DPL的影响;此外,利用固定模型分析了DPL的变异对日产奶量、乳脂率、乳蛋白率、首末次配种间隔(interval from first to last insemination,IFL)、产犊至首次配种间隔(interval from calving to first insemination,ICF)和初乳品质的影响,利用Logistic回归过程分析了DPL的变异对首次配种受胎率(conception rate of first insemination,CR)、首次配种56 d不返情率(56-days non-return rate of first insemination,NRR56)、难产率和乳房健康的影响。研究结果显示,北京地区中国荷斯坦牛DPL平均为58.81 d,胎次、产犊季节、场-产犊年和初产月龄均对DPL有显著影响(P<0.05)。DPL的变异对日产奶量、乳蛋白率、ICF、CR、NRR56、难产率和乳房健康有显著影响(P<0.05)。干奶期短的奶牛测定日平均乳蛋白率、CR和NRR56更高;DPL适中的奶牛测定日平均产奶量更高、乳房健康水平更好、ICF更短、难产率更低。本研究在国内利用大规模牛群数据揭示了中国荷斯坦牛DPL的群体规律,可为中国规模化奶牛场提升管理水平提供参考。  相似文献   
182.
介绍了科技查新的内涵、原则及工作要求,通过介绍科技查新的工作流程,分析得出科技查新工作质量控制的措施。  相似文献   
183.
施钾量对超高产早稻品种产量和稻米品质的影响   总被引:2,自引:0,他引:2  
以超高产水稻品种陆两优996和淦鑫203为材料,在大田条件下研究了不同施钾量对其产量和稻米品质的影响。结果表明,施钾显著提高双季早稻有效穗数、每穗粒数和产量,增加生物产量、促进茎鞘物质运转,提高抽穗期剑叶的气-叶温差和颖花伤流量,降低抽穗后的根系活力衰退值。施钾量与倒1节间大维管束数、茎秆抗折力和稻米蛋白质含量显著正相关。施钾提高了陆两优996的垩白粒率和垩白度,但降低了淦鑫203的垩白粒率和垩白度。在本试验条件下,最适施钾量为180 kg/hm2。  相似文献   
184.
2007年4月-2009年4月对上海白莲泾河段水体环境质量进行了调查,取黄浦江南码头上1个断面和白莲泾上的3个断面,于每月大、小潮当日采集各断面水样,获得了该河段的各项水质指标。2007年10月,白莲泾河道断流,泵闸工程实施。根据监测结果,以DO、BOD5、CODMn、TN和TP为指标参数,利用标准类别指数评价法对建闸工程施工活动的环境影响进行评价,结果发现:TN、TP是白莲泾河段的最主要污染指标,TN的权重系数均超过40%,甚至50%,均为劣Ⅴ类;TP的权重系数均超过10%,甚至30%,其含量是地表水Ⅳ类标准的0.8~5.6倍。总体上,白莲泾河段3个站点的水质劣于黄浦江站点,而施工前水质优于施工后。施工前,大潮期白莲泾河道IV类水比例为29%,较小潮期(8%)高出21%。建闸施工后,大小潮期间出现劣V类水的比例分别为87%和88%,潮汐对白莲泾河段并无显著影响。  相似文献   
185.
论网络环境下图书馆采编人员的素质建设   总被引:1,自引:0,他引:1  
文献采集是图书馆工作的起点,文献采编人员整体素质的高低直接影响到馆藏文献采集的方针、原则、计划和标准的理解能力和文献采集质量的优劣。论述了网络环境下,采编人员应具备的七大能力,分析了目前采编队伍存在的问题,并探讨了加强采编队伍建设的几项措施。  相似文献   
186.
陇川坝水稻德优8号(香型)品种优质高产栽培技术   总被引:1,自引:0,他引:1  
通过云南陇川引进水稻德优8号(香型)品种的示范种植,初步提出了德优8号(香型)在陇川坝的优质高产栽培技术措施。  相似文献   
187.
Consistent spray coverage that is evenly distributed throughout the canopy is necessary to control pest populations that can negatively affect yield. As applicators are switching to Coarser spray quality nozzles to reduce risk and liability of pesticide spray drift, concerns about efficacy loss are growing. Previous research has indicated that small droplets are the most effective at penetrating through crop canopies, but newer nozzle technologies have improved the effectiveness of larger droplet or Coarser sprays. Research was conducted to assess the canopy penetration of nozzles that produce Coarse, Very-Coarse and Extremely-Coarse spray qualities compared to nozzles that produce Fine and Medium spray qualities. Kromekote collectors were positioned in four configurations in an oat (Avena sativa L.) var. ‘Yarran’ (AusWest Seeds, Forbes, NSW, Australia) crop to quantify the coverage and droplet number densities (droplets cm−2) across three application carrier volume rates: 50, 75 and 100 L ha−1. Applications were made in the field in 30 cm tall, tillering oats, with collectors arranged in a randomised complete block design with three replications. The entire study was repeated on the following day. Results showed that droplet number densities were inversely related to the droplet size produced by the nozzles, yet coverage was increased more by application volume rate than droplet size. Thus, both spray drift reduction and improved canopy penetration can be achieved with proper nozzle selection and operation parameters for the control of agronomic pests.  相似文献   
188.
More than 20 years have passed since the first report on successful genetic transformation of wheat. With the establishment and improvement of transformation platform, great progresses have been made on wheat genetic transformation both on its fundamental and applied studies in China, especially driven by the National Major Project for Transgenic Organism Breeding, China, initiated in 2008. In this review, wheat genetic transformation platform improvement and transgenic research progresses including new techniques applied and functional studies of wheat quality, yield and stress tolerant related genes and biosafety assessment are summarized. The existing problems and the trends in wheat transformation with traditional methods combined with genomic studies and genome editing technology are also discussed.  相似文献   
189.
Emissions of N2O were measured following addition of 15N‐labelled residues of tropical plant species [Vigna unguiculata (cowpea), Mucuna pruriens and Leucaena leucocephala] to a Ferric Luvisol from Ghana at a rate of 100 mg N/kg soil under controlled environment conditions. Residues were also applied in different ratio combinations with inorganic N fertilizer, at a total rate of 100 mg N/kg soil. N2O emissions were increased after addition of residues, and further increased with combined (ratio) applications of residues and inorganic N fertilizer. However, 15N‐N2O production was low and short‐lived in all treatments, suggesting that most of the measured N2O‐N was derived from the applied fertilizer or native soil mineral N pools. There was no consistent trend in magnitude of emissions with increasing proportion of inorganic fertilizer in the application. The positive interactive effect between residue‐ and fertilizer‐N sources was most pronounced in the 25:75 Leucaena:fertilizer and cowpea:fertilizer treatments where 1082 and 1130 mg N2O‐N/g residue were emitted over 30 days. N2O (loge) emission from all residue amended treatments was positively correlated with the residue C:N ratio, and negatively correlated with residue polyphenol content, polyphenol:N ratio and (lignin + polyphenol):N ratio, indicating the role of residue chemical composition in regulating emissions even when combined with inorganic fertilizer. The positive interactive effect in our treatments suggests that it is unlikely that combined applications of residues and inorganic fertilizer can lower N2O emissions unless the residue is of very low quality promoting strong immobilisation of soil mineral N.  相似文献   
190.
Combined effects of temperature and light quality on plants have received little attention. We investigated the single and interactive effects of temperature and light quality on growth and physiological characteristics of four canola (Brassica napus) cultivars – Clearfield 46A76 (cv1), Clearfield 45H72 (cv2), Roundup Ready 45H24 (cv3) and Roundup Ready 45H21 (cv4). Plants were grown under lower (24°/20 °C) and higher (30°/26 °C) temperature regimes at low red/far‐red (R/FR), normal R/FR and high R/FR light ratios in environment‐controlled growth chambers (16 h light/8 h dark). Higher temperature reduced stem height and diameter; leaf number and area; dry matter of all plant parts; and specific leaf weight, but increased leaf area ratio; and chlorophyll (Chl) fluorescence (Y). Low R/FR increased stem height; Y; and ethylene, but decreased stem diameter; Fv/Fm; Chl a; Chl b; and carotenoids. Among cultivars, plants from cv4 were tallest with thickest stems and greatest dry matter. None of the main factors affected gas exchange. Higher temperature at high R/FR caused cv3 to be shortest, whereas lower temperature at low R/FR caused cv4 to be tallest. We conclude that heat and other stress factors will adversely affect sensitive crops, but tolerant genotypes should perform well under future climate.  相似文献   
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