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1.
由吡喹酮和克螨特组成的复配制剂对小球藻、轮虫、蚤状溞、水蚯蚓和卤虫的毒性实验结果显示:复配制剂对轮虫的半致死浓度(LC50)为13.9mg/dm^3(24h)和3.03mg/dm^3(48h).安全浓度(SC)为0.0432mg/dm^3;对蚤状溞的LC50为345.14mg/dm^3(24h)和17.5mg/dm^3(48h),SC为0.0135mg/dm^3;对水蚯蚓的LC50为636.80mg/dm^3(24h)和79.07mg/dm^3(48h),SC为0.366mg/dm^3;对卤虫无节幼虫的LC50为201.84mg/dm^3(24h)和8.91mg/dm^3(48h).SC为0.00519mg/dm^3,复配制剂对水环境生物的破坏作用小. 相似文献
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本文提出延边地层区的晚石炭世地层有两种类型:一是原地系统的天宝山组;二是外来岩块,包括原山秀岭组。并建议停止使用山秀岭组一名。 相似文献
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Makarkinia kerneri sp. nov. is described from the Lower Cretaceous Crato Formation of Brazil, based on an incomplete but very well-preserved hind wing (Neuroptera: Kalligrammatidae). The previously presumed attribution of the genus is confirmed, based on the diagnostic characters of its wing venation (e.g., dense crossvenation; the anteriorly directed branches of MP) and the presence of a distinct eye-spot on the wing. Makarkinia is the only American representative and youngest known genus of Kalligrammatidae. With an estimated wing length of 100–160 mm, it has the largest wings amongst all fossil and extant Neuroptera. 相似文献
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昆虫植食是昆虫与植物相互作用关系中最重要的组成部分。探索地史时期陆地生态系统中昆虫植食行为的起源与演化是探究古环境重建及古气候变化的重要切入点,其结果将更好地揭示现生昆虫取食行为背后的生物学及生态学意义。本文梳理了昆虫植食的研究历史;阐述了植物化石上的生物损伤与非生物损伤的主要区别;介绍了昆虫植食研究的化石证据以及功能性取食组 损伤类型研究体系(Functional feeding group damage type, FFG DT)。昆虫植食多样性在地质历史时期的演化过程分为8个阶段:① 志留纪—泥盆纪(444~359 Ma)为昆虫植食的起源时期;② 石炭纪(359~299 Ma)为昆虫植食的扩张时期;③ 二叠纪(299~252 Ma)为昆虫植食的稳定时期;④ 三叠纪(252~201 Ma)晚期,昆虫植食再次多样化;⑤ 侏罗纪(201~145 Ma)昆虫植食程度进一步加强;⑥ 白垩纪(145~66 Ma)裸子植物逐渐为被子植物所替代,昆虫植食大幅度增加;白垩纪末期,昆虫植食水平下降;⑦ 古近纪(66~23 Ma)昆虫植食水平提高;⑧ 新近纪(23~26 Ma)昆虫植食与现代基本相似。影响昆虫植食的主要因素包括气候环境、昆虫和植被多样性、昆虫口器类型、植物群落组成和微生物等。目前,统一昆虫植食研究体系和方法、填补各历史阶段的缺失信息等问题在昆虫植食研究中亟待解决。 相似文献
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Although the evidence of insect oviposition on plant organs has been reported from the late Paleozoic to the Miocene, record from the middle Jurassic is still blank. This paper reports a significant evidence of insect oviposition on plant leaf from the middle Jurassic for the first time. The ovipositional scar is distributed on the abaxial surface of Sphenobaiera leaf(Ginkgoales) from the middle Jurassic Daohugou Formation of Inner Mongolia, China. A new ichnospecies Paleoovoidus venustus sp. nov. is described. The scar is elliptic to oval, arranged in longitudinal rows between leaf veins with almost regular distance, with its long axis paralleling to the leaf venation. This discovery adds new information to the morphology of insect endophytic oviposition probably produced by Odonata existed in a terrestrial ecosystem ~165 Ma ago. The new materials also provide important data for the study of insect reproductive biology, plant-insect interaction and coevolution, as well as understanding the paleoclimate and palaeoenvironment during that time in northeast China. 相似文献
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K. P. Paaijmans A. F. G. Jacobs W. Takken B. G. Heusinkveld A. K. Githeko M. Dicke A. A. M. Holtslag 《水文研究》2008,22(24):4789-4801
Water temperature is an important determinant of the growth and development of malaria mosquito immatures. To gain a better understanding of the daily temperature dynamics of malaria mosquito breeding sites and of the relationships between meteorological variables and water temperature, three clear water pools (diameter × depth: 0·16 × 0·04, 0·32 × 0·16 and 0·96 × 0·32 m) were created in Kenya. Continuous water temperature measurements at various depths were combined with weather data collections from a meteorological station. The water pools were homothermic, but the top water layer differed by up to about 2 °C in temperature, depending on weather conditions. Although the daily mean temperature of all water pools was similar (27·4–28·1 °C), the average recorded difference between the daily minimum and maximum temperature was 14·4 °C in the smallest versus 7·1 °C in the largest water pool. Average water temperature corresponded well with various meteorological variables. The temperature of each water pool was continuously higher than the air temperature. A model was developed that predicts the diurnal water temperature dynamics accurately, based on the estimated energy budget components of these water pools. The air–water interface appeared the most important boundary for energy exchange processes and on average 82–89% of the total energy was gained and lost at this boundary. Besides energy loss to longwave radiation, loss due to evaporation was high; the average estimated daily evaporation ranged from 4·2 mm in the smallest to 3·7 mm in the largest water pool. Copyright © 2008 John Wiley & Sons, Ltd. 相似文献
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In Europe, fossil fruits and seeds of Rhodoleia (Hamamelidaceae) have been described from the Upper Cretaceous to the Miocene, whereas no fossil record of Rhodoleia has been reported in Asia, where the modern species occur. Herein, 21 fossil leaves identified as Rhodoleia tengchongensis sp. nov. are described from the Upper Pliocene of Tengchong County, Yunnan Province, Southwest China. The fossils exhibit elliptic lamina with entire margins, simple brochidodromous major secondary veins, mixed percurrent intercostal tertiary veins, and looped exterior tertiaries. The leaf cuticle is characterized by pentagonal or hexagonal cells, stellate multicellular trichomes, and paracytic stomata. The combination of leaf architecture and cuticular characteristics suggests that the fossil leaves should be classified into the genus Rhodoleia. The fossil distributions indicate that the genus Rhodoleia might originate from Central Europe, and that migrated to Asia prior to the Late Pliocene. Additionally, insect damage is investigated, and different types of damage, such as hole feeding, margin feeding, surface feeding, and galling, are observed on the thirteen fossil leaves. Based on the damage frequencies for the fossil and extant leaves, the specific feeding behavior of insects on Rhodoleia trees appears to have been established as early as the Late Pliocene. The high occurrence of Rhodoleia insect herbivory may attract the insect-foraging birds, thereby increasing the probability of pollination. 相似文献
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Palaeoleptus burmanicus gen. et sp. nov. (Hemiptera: Leptopodomorpha: Palaeoleptidae fam. nov.) is described from Early Cretaceous Burmese amber. The fossil is characterized by nearly completely coreaceous wings with only a small membranous area at the distal tip, and a unique wing venation consisting of eight closed cells, including four obliquely orientated toward the embolar wing margin and two large vertically-positioned cells extending nearly to the apical wing margin. Additional characters are large, compound eyes, three pairs of cephalic trichobothria, four antennal segments all similar in texture, spines on the profemur, ocelli positioned on a tubercle and a rostrum extending to the mesocoxae, with the second segment bearing four pairs of spines. The female fossil contains an asymmetrical subgenital plate orientated toward the left side of the body, indicating a side-by-side mating behavior as occurs in extant Leptopodomorpha. 相似文献