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1.
在查清天津市园林主要花灌木刺吸口器害虫桃粉蚜、绣线菊蚜、棉蚜和山楂红蜘蛛发生消长规律的基础上 ,确定了防治适期和结合点 ,筛选出 10 %吡虫啉、绿灵、蚧螨灵、 1. 8%齐螨素和花保5种低、无毒药剂 ,防效均达到 90 %以上。查出天敌 13种 ,并对优势种作了取食量调查  相似文献   
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对新疆地区啤酒花上的土耳其斯坦叶螨 Tetranychus turkestani Ugarov et Nik-lski 的生物学、发生特点及防治对策进行了初步探讨。该螨寄丰广,为害啤酒花叶片和球果。在啤酒花的毛蕊期和球果生长期有2个发生高峰。本文以啤酒花越冬期,营养生长期、生殖生长期害螨和天敌发生特点,提出了不同的防治方法和技术关键。  相似文献   
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The establishment of predacious mites in commercial orchards may be accelerated by the transfer of pruned wood in winter and summer from donor orchards to release orchards. Following winter pruning, 3-year-old and older wood is collected and transported as soon as possible in bundles to a release orchard for distribution. If the release orchard is composed of dwarf trees, then one or two bundles of 5 kg each are placed vertically at the base of the trunk of every tree in the block (0.5 to 1 ha); if the trees are of standard size, then four or five bundles used. Following summer pruning, annual shoots and suckers are distributed immediately in a release orchard composed of dwarf trees by placing 12–15 branches on the foliage of fruit-bearing branches; if the release orchard is composed of standard trees, then 50 branches are used. The pruned wood should have 20–25 leaves and not less than one predator per leaf. The release orchard should have a light infestation (two or three mites per leaf) of pest tetranychids. These phytophagous mites would serve as food and help establish the predators. The release orchard grower should develop a pest management program based on the same groups of pesticides used in the donor orchard. http://www.phytoparasitica.org posting Aug. 31, 2005.  相似文献   
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为害新疆伊犁薰衣草的主要是土耳其斯坦叶螨(Tetranychus turkestani),通过(240克/升)螺螨酯(4000倍液)、3.2%阿维菌素乳油(3000倍液)、16%四螨.哒螨灵可湿性粉剂(1600倍液)、73%炔螨特乳油(2500倍液)、0.6%苦参碱水剂(1000倍液)5种药剂防治试验,药后1天、3天,3.2%阿维菌素防效最高,达到80.02%和90.30%;药后7天,螺螨酯防效最高,为91.85%;药后15天,螺螨酯防效较好,为95.23%。螺螨酯、阿维菌素、四螨.哒螨灵、炔螨特在0.05显著水平和0.01极显著水平均无显著差异,且最高防治效果均大于85%,建议交替使用。  相似文献   
9.
Soil food web structure is fundamental to ecosystem process and function; most studies on soil food web structure have focused on agro-ecosystems under different management practices and natural terrestrial ecosystems, but seldom on greenhouses. This study explored the static and temporal variability of soil food structure in two greenhouses of Shandong Province, North China over a two-year period. The static properties were measured directly by surveying functional group composition and a series of parameters portraying the species properties, link properties, chain properties and omnivory properties of the web, as well as indirectly through calculation of nematode indices, enrichment index (EI), structure index (SI), and channel index (CI). The dynamic variability of greenhouse soil food structure was described by the dynamics of functional groups, Bray-Curtis (BC) similarity and cluster analysis. The results showed that the greenhouse soil food web contained 14 functional groups, with microbes having the highest mean biomass, followed by protozoa. Of the three functional groups of protozoa, flagellates were the dominant group on most sampling dates, amoebae only became the dominant group during the summer, while ciliates were the least prevalent group. All nematodes were assigned into one of the four functional groups, bacterivorous, fungivorous, herbivorous and omnivorous, and the fungivorous nematodes had the lowest mean biomass. Mites were assigned into three functional groups and the omnivorous noncryptostigmatic mites were the dominant group. All the functional groups showed significant seasonal changes. The soil food web connectance was 0.15, the maximum food chain length was 5, and the average food chain length was 3.6. The profiles of the EI and SI showed that the food web was resource- depleted with minimal structure. The results of CI indicated that the bacterial decomposition pathway was the dominant pathway in the food web of the greenhouse soils studied and the results of BC similarity showed that the soil food web had higher variability and instability over time. The cluster analysis showed that the functional groups located at high trophic levels with low biomass were in a cluster, whereas those at low trophic levels with high biomass were closer. Compared with the food web structure of agroecosystem and natural terrestrial ecosystem soils, the structure of greenhouse soil food web was simple and unstable, which was likely driven by high agricultural intensification, particularly over application of fertilizers.  相似文献   
10.
乌鲁木齐南山小渠子土壤螨类群落结构研究   总被引:1,自引:0,他引:1  
[目的]研究乌鲁木齐南部山区不同土地利用类型下土壤螨类群落结构特征及季节动态变化规律,为开展人类活动对市郊旅游胜地土壤环境质量影响的生物学评价提供科学依据。[方法]采用常规野外采样方法和改良的Ttdlgren分离法对该山区针叶林、山地草原、阔叶林、山地灌木林、山地耕地及居民点6种不同生境土壤螨类群落结构特征、季节动态及其与环境要素的关系进行分析。[结果]共获得土壤螨类7135只,隶属蜱螨亚纲的4亚目57科87属,其中甲螨亚目5785只54属38科,占总采集量的81.08%:中气门亚目1077只19属14科,占总采集量的15.09%;前气门亚目270只4属4科,占总采集量的3.78%;无气门亚目3只1属1科,占总采集量的0.04%。其中,小奥甲螨属为优势类群,占总捕获量螨类的10.06%,盖头甲螨属和真前翼甲螨属为亚优势属,占总捕获量的12.27%。礼服甲螨属、滑缝甲螨属、珠足甲螨属、洼甲螨属和懒甲螨属等35属为常见类群,占总捕获量的76.73%;优势类群和常见类群共占总数量的98.96%。广缝甲螨属、龙足甲螨属、卷甲螨属、沙足甲螨属和缰板鳃甲螨属等19属均为稀有类群,仅占总捕获量的0.94%。土壤螨类个体数和类群数组成在不同生境、不同土层以及不同季节间具有显著差异(P〈0.05)。其中,个体数的水平分布依次为针叶林〉山地灌木林〉山地草原〉山地耕地〉阔叶林〉居民地;垂直分布具有明显的表聚性,即表层〉中层〉下层。个体数量的季节变化依次为秋季〉冬季〉夏季〉春季。[结论]该山区不同生境土壤螨类群落组成及时空分布动态之间均存在显著差异(P〈0.05).这与植被类型、土壤环境因素及人为干扰程度等有关。  相似文献   
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