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91.
《Soil Science and Plant Nutrition》2013,59(3):408-416
Abstract The root parasitic plants Orobanche spp. (broomrapes) seriously affect agricultural production. A visualization and quantitative analytical method for the interception of nutrients was established using a positron-emitting tracer imaging system and 13NO? 3. By using this analytical method that involves volume normalization with 18F? images, the nitrogen nutrient interception ratio of the Orobanche spp. was calculated to be 73.6 ± 3.9% in a host–parasite system of red clover (Trifolium pratense L.). 相似文献
92.
方聪娜 《厦门水产学院学报》2012,(4):297-300
利用指数型二分性理论及相关分析技巧,研究了一类具有有限时滞的非算子型的中立型泛函微分方程的概周期解问题,得到了方程存在唯一稳定的概周期解的新结果. 相似文献
93.
It is widely accepted that pest infestations elicit a change in plant physiology, which cause detectable changes in crop leaf reflectance. In this study, we test the hypothesis that crop leaf reflectance may also be used to forecast the risk of pest infestation before they actually occur. We collected reflectance data in 160 spectral bands from 405 to 907 nm from excised leaf pieces from field grown maize plants under 3 irrigation regimes. Leaf material was collected at weekly intervals in two growing seasons. The same leaf pieces were used in choice bioassays with carmine spider mites to assess attractiveness to mites (spider mite “bio-response”) across irrigation regimes. In one growing season, we also obtained nutritional element data (lipid, protein, soluble sugar, starch, lignin, Ca, P, Mg, K, S, and Cl) from whole maize plants. Principal component analysis showed that potassium content (K) was highly negatively correlated with spider mite bio-response. Relative reflectance at 740 nm showed a highly significant and positive trend across spider mite bio-response classes, and that potassium content showed a highly significant and negative trend across the same classes. Thus, we argue that relative reflectance at 740 nm may be used to predict both potassium content and risk of spider mite infestation. Based on extensive reviews, potassium leaf content is known to reduce susceptibility of crops to pests. The results presented provide encouraging support for remotely sensed risk assessment of pest infestations through reflectance-based monitoring of maize leaf attractiveness and highlight that reflectance based monitoring of crop susceptibility may be possible through careful management of macro element crop properties, such as potassium content. 相似文献
94.
95.
以双歧杆菌完整肽聚糖为模型药物,胆固醇和卵磷脂为脂质体的成膜材料,纳米Fe3O4为磁性材料,采用薄膜法、逆向蒸发法和高压均质法制备磁性脂质体,比较三种方法制备的磁性脂质体的优劣,并对其经口饲喂小鼠的血液生化进行分析.结果表明,采用薄膜法制备的磁性脂质体密度较高,逆向蒸发法制备的磁性脂质体密度较低,高压均质法制备的磁性脂... 相似文献
96.
《Journal of Sustainable Forestry》2013,32(3):83-93
Abstract Mineralization is the dominant process controlling soil-solution P in the Spodosols of the southeastern United States. Pine trees growing in these soils are typically colonized by ectomycorrhizal (EM) fungi that are known to produce phosphatases. Little, however, is known of the dynamics of EM short roots or phosphatase activity in tree plantations. To address this question, short root densities, EM morphotypes, and associated surface acid phosphomonoesterase in a 12-year-old Pinus elliottii plantation in northern Florida were evaluated. The density of total (living and dead) short roots changed little from February through June, with a mean of 7.6 cm3 soil. The majority of the short roots, however, were inactive or dead with only 14 to 38% appearing viable upon visual inspection. The majority of the viable short roots were mycorrhizal. The most abundant morphotypes were formed by Cenococcum and Thelephora but these had low phosphatase activity. In contrast, less frequently observed morphotypes had substantially higher rates of enzyme production and these may play an important role in sustainable P nutrition of plantation trees. 相似文献
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98.
试验温度25℃条件下,室内测定我国农作物害虫的常用生物防治剂—巴氏新小绥螨Neoseiulus barkeri Hughes和尼氏真绥螨Euseius nicholsi Ehara et Lee的耐饥能力,以及定量分析不同饥饿程度对两种捕食螨捕食朱砂叶螨的功能反应和捕食速度的影响。研究结果表明:两种捕食螨各螨态的耐饥时间与发育历期呈显著正相关(P﹤0.05)。各螨态的阶段存活率与存活时间之间的关系均可用二次抛物线拟合。根据饥饿半致死和致死时间(T50和T95),巴氏新小绥螨的耐饥能力明显强于尼氏真绥螨。除巴氏新小绥螨雌成螨的耐饥性存活曲线呈拱形外,两种捕食螨其它螨态的耐饥性存活曲线均呈凹形。不同饥饿程度的两种捕食螨雌成螨捕食朱砂叶螨若螨的功能反应均为HollingⅡ型,饥饿程度不能改变它们的捕食功能反应类型,但可使功能反应模型的各参数值发生较大改变。饥饿24 h的巴氏新小绥螨和尼氏真绥螨雌成螨对朱砂叶螨若螨的捕食作用主要集中在取食的前8 h阶段,而未经饥饿处理的两种捕食螨雌成螨在开始捕食的24 h内各阶段的捕食速度变化不大。因此,饥饿处理对两种捕食螨雌成螨的捕食作用有明显影响。 相似文献
99.
回顾了近十五年来国内外对各科植物查尔酮合酶基因CHS分子进化的研究成果,并结合作者近年来对兰科植物CHS基因分子进化的研究结果,对兰科植物CHS基因分子进化和功能趋异的机制展开综述,揭示了植物中普遍存在的CHS基因分子进化以及伴随的功能趋异的现象和机制,初步探讨了CHS基因分子进化与生物进化和自然选择的关系。 相似文献
100.
木材表面非极性化原理的研究 Ⅱ.木材与苯乙烯接枝共聚过程中化学官能团和表面极性的变化 总被引:2,自引:0,他引:2
通过对杉木、杨木木材及其主要成分在与苯乙烯接枝共聚反应过程中化学官能团及临界表面张力变化的研究,探讨了木材各化学组成在接枝共聚过程中的反应性能和对木材表面极性的影响。研究表明:木材可与苯乙烯发生接枝共聚反应,反应只在木素和苯乙烯之间进行。木材与苯乙烯接枝共聚可降低木材临界表面张力,即降低木材表面自由能,从而有效地改善木材的极性。 相似文献