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91.
草地贪夜蛾是入侵我国的重大农业害虫,严重威胁我国粮食安全。为明确该虫在不同寄主植物上的适合度,本文系统研究了草地贪夜蛾取食花生、荞麦和生姜3种寄主生长发育和繁殖情况,组建了实验种群生命表。结果表明:草地贪夜蛾在3种寄主植物上的繁殖力高低为花生(771.73粒)>荞麦(477.13粒)>生姜(209.22粒),卵的孵化率无显著差异,幼虫和蛹重均是花生>荞麦>生姜。草地贪夜蛾取食花生、荞麦和生姜后的净增殖率(R 0)分别为226.36、102.45和20.75,内禀增长率(r m)分别为0.16、0.13和0.06。研究发现,草地贪夜蛾在花生、荞麦和生姜3种寄主植物上均能实现种群繁殖,其中,花生是最适宜的寄主,荞麦次之,生姜相对较不适宜。  相似文献   
92.
重大入侵害虫草地贪夜蛾的研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
草地贪夜蛾Spodoptera frugiperda是一种杂食性检疫害虫,原产于美洲热带和亚热带地区,寄主超过350种,尤其喜欢禾本科作物,特别是玉米,具有迁飞能力强、繁殖能力强、暴食性和抗药性进化快的特点。该虫最初于2019年1月由缅甸入侵我国云南省,现已蔓延至我国26个省份。为全面了解和有效防治草地贪夜蛾,本文对其分布范围、扩散途径和原因、生活习性、危害特点以及防治措施等进行了总结和整理,并对未来的研究方向进行了讨论。  相似文献   
93.
2019年在广东湛江、江门调查了玉米上草地贪夜蛾Spodoptera frugiperda (Smith)发生为害动态,分析了不同生育期玉米上该虫发生为害差异规律。发现各个地区草地贪夜蛾的虫口数量与玉米受害程度存在较大差异,呈现不均衡性;该虫对玉米苗期为害最严重,其次为大喇叭口期;建立了2个地区玉米6个生育期受害率与虫口数量之间的线性回归模型。研究结果可为草地贪夜蛾监测预警及防控提供参考。  相似文献   
94.
本研究通过评价诱芯、诱捕器和诱芯组合的诱集效果,筛选出对草地贪夜蛾雄蛾诱捕效果最佳的诱芯和诱捕器组合,为草地贪夜蛾综合防控提供技术支持。诱芯优化筛选试验中,9种诱芯中编号为3-4、4-2、4-3的3种诱芯对草地贪夜蛾雄蛾诱捕效果最好,专一性强。诱捕器筛选试验中,5种市面上常见诱捕器里,桶型诱捕器是其他型诱捕器的诱捕效果2倍以上,效果最佳。诱芯筛选试验中,在使用桶型诱捕器及小夜蛾诱捕器的条件下,翔林3-3诱芯对草地贪夜蛾雄蛾的诱虫效果都为最佳。此研究为我国草地贪夜蛾的综合防治提供新途径。  相似文献   
95.
本研究明确了乙基多杀菌素和氯虫苯甲酰胺丸粒化包衣后对玉米种子的安全性和玉米幼苗对草地贪夜蛾的防治效果,为玉米苗期草地贪夜蛾防治提供新技术。首先在室内验证了乙基多杀菌素和氯虫苯甲酰胺拌土后对草地贪夜蛾的防治效果,又进行了种子丸粒化包衣处理,测定了丸粒化包衣方式下药剂对种子萌发的影响和对草地贪夜蛾的防治效果。结果表明,250 mg/kg的乙基多杀菌素和氯虫苯甲酰胺拌土处理后,草地贪夜蛾对14天的玉米苗的取食率分别为1.67%、5.01%,与对照组取食率27.02%差异显著。药种比为1:100和1:200的乙基多杀菌素和氯虫苯甲酰胺丸粒化包衣处理组与对照组的发芽率之间无显著差异。乙基多杀菌素和氯虫苯甲酰胺丸粒化包衣处理组在播种后第7天对草地贪夜蛾广州种群防治效果显著,其中药种比为1:100的乙基多杀菌素丸粒化包衣处理组致死率最高为89%;两药剂丸粒化包衣处理组在播种后第21天对草地贪夜蛾云南种群仍有较好防治效果,两个浓度的乙基多杀菌素丸粒化包衣处理对草地贪夜蛾的致死率均达100%。本研究表明玉米种子丸粒化包衣技术可有效防控玉米苗期草地贪夜蛾的危害。  相似文献   
96.
Abstract. The effects of Bacillus thuringiensis (Bt) Cry1C toxin on the metabolic rate of Cry1C resistant and susceptible Spodoptera exigua (Hübner) (Lepidoptera: Noctuidae) are investigated using closed‐system respirometry. Mechanisms of resistance to the Bt toxin may be associated with an energetic cost that can be measured as an increase in metabolic rate compared with Bt‐susceptible insects. This hypothesis is tested using third‐ and fifth‐instar larvae and 1–7‐day‐old pupae. Metabolic rate is measured as the amount of O2 consumed and CO2 produced. V?O2 and V?CO2 (mL g?1 h?1) of third‐instar Cry1C resistant larvae reared continuously on a diet containing 320 µg Cry1C toxin per g diet (CryonT) are significantly greater than third‐instar Cry1C resistant larvae reared on toxin for 5 days and reared thereafter on untreated diet (Cry5dT), Cry1C resistant larvae reared on untreated diet (CryReg) and the susceptible parental strain (SeA) reared on untreated diet. There are no differences in V?O2 and V?CO2 (mL g?1 h?1) among treatment groups for fifth‐instar larvae. CryonT larvae and pupae weigh significantly less than larvae and pupae receiving other treatments. Smaller body mass may be an important biological cost to individuals exposed continuously to Bt toxin. One‐day‐old pupae of all treatment groups exhibit a high V?O2 (mean approximately 0.174 mL g?1 h?1) with CryonT having a significantly greater value than all other treatments; there are no differences among the other treatments. Pupal metabolic rates of all treatment groups decline to a minimum between days 2 and 4 then increase linearly between days 4 and 7 until adult emergence. These results demonstrate no difference in metabolic rates, and possibly fitness costs, between resistant (CryReg and Cry5dT) and susceptible (SeA) S. exigua except when larvae were reared continuously on toxin (CryonT).  相似文献   
97.
Abstract.  1. The fungus Neotyphodium lolii forms a symbiotic relationship with its grass host Lolium perenne (perennial ryegrass). The fungus benefits from access to plant nutrients and photosynthate, whereas the plant benefits from acquired chemical defence against herbivory.
2. This study examined the potential for endophyte-mediated plant defences to influence interactions between fall armyworm Spodoptera frugiperda , and the entomopathogenic nematode Steinernema carpocapsae and clarified biological mechanisms underlying the observations made.
3. In laboratory and greenhouse experiments, S. frugiperda larvae were fed endophytic or non-endophytic L. perenne then exposed to S. carpocapsae or injected with the nematodes' symbiotic bacteria Xenorhabdus nematophila .
4. In all instances, S. frugiperda larvae fed endophyte-infected grass suffered significantly lower mortality than those fed non-endophytic plants. Although larvae fed endophyte-infected grass often had significantly lower biomass than those fed uninfected grass, these differences did not account for altered susceptibility to S. carpocapsae .
5. Endophyte-mediated reductions in herbivore susceptibility to the nematode pathogen represent a herbivore adaptation that effectively turns the tables on both plant and natural enemy by reducing the virulence of the nematodes' symbiotic bacteria while expanding the temporal window of herbivory.  相似文献   
98.
Compensatory responses of caterpillars fed low quality food include increased consumption and utilization of essential nutrients. Information about an insect's responses to nutritional challenges from their host plants could benefit weed biological control efforts in the selection and establishment of new agents. The target weed, Pistia stratiotes L. (Araceae) is a floating aquatic plant that has relatively low nitrogen levels which are further diluted with high water content. Efforts to establish the insect Spodoptera pectinicornis (Hampson) (Lepidoptera: Noctuidae) for biological control of P. stratiotes could benefit by examining the nutritional responses of a similar widely established lepidopteran species, Samea multiplicalis (Guenèe) (Lepidoptera: Pyralidae). Larvae of this species were fed leaves of P. stratiotes plants that had been fertilized (NPK) at high and low rates. The leaves of the fertilized plants had a 4.3-fold increase in nitrogen (dry weight) and a 1.6-fold increase in water content. The results suggest that no compensatory increases occurred in larvae fed leaves from the low fertilized plants as no changes were found in fresh mass consumption or nitrogen utilization efficiency. Consequently, development time from second-third instars to pupation was delayed about 3 days compared with larvae fed the high nitrogen leaves. Furthermore, consumption of nitrogen was only 30% and its accumulation into larval tissues was only 60% compared with the larvae fed the high fertilized leaves. The resulting larvae had both a final biomass and a growth rate that were reduced by 40%. Regardless of plant fertilizer level, the larvae fed at a rate 5–10 times greater than that of similar lepidopteran species consuming either low or high quality diets, suggesting that the S. multiplicalis larvae may be functioning at their biological limit for ingesting food.  相似文献   
99.
幼虫食物对甜菜夜蛾生长发育、繁殖及飞行的影响   总被引:6,自引:1,他引:5  
江幸福  罗礼智 《昆虫学报》1999,42(3):270-276
报道了人工饲料、圆白菜和玉米苗三种食物对甜菜夜蛾Spodoptera exigua发育历期、蛹重以及成虫产卵和飞行能力的影响。幼虫取食人工饲料时发育历期最短,蛹最重(138 mg),产卵量最高(643粒);在12 h的吊飞测试中,成虫飞行距离最远(25.5 km),飞行时间最长(6.2 h),飞行超过10 km的个体占67.9%,超过5 h的占60.7%。幼虫取食玉米苗时发育历期最长,蛹最轻(52 mg),产卵量最低(416粒),成虫仅能飞行3.3 km,1.7 h,飞行超过10 km或5 h的个体均仅占4.2%,各项指标均显著低于人工饲料组。幼虫取食圆白菜时各项指标与人工饲料组基本相似(幼虫历期和蛹重除外),而显著优于玉米苗组(幼虫历期除外)。这些结果表明,幼虫食物对甜菜夜蛾的生长发育、产卵及飞行能力均有显著的影响,因而是影响其个体发育、种群增长及种群动态的重要因素之一。同时,由于取食本人工饲料的各项指标均优于其它两种食料植物,因而可作为饲养甜菜夜蛾的实用饲料。  相似文献   
100.
Global climatic changes may lead to the arrival of multiple range‐expanding species from different trophic levels into new habitats, either simultaneously or in quick succession, potentially causing the introduction of manifold novel interactions into native food webs. Unraveling the complex biotic interactions between native and range‐expanding species is critical to understand the impact of climate change on community ecology, but experimental evidence is lacking. In a series of laboratory experiments that simulated direct and indirect species interactions, we investigated the effects of the concurrent arrival of a range‐expanding insect herbivore in Europe, Spodoptera littoralis, and its associated parasitoid Microplitis rufiventris, on the native herbivore Mamestra brassicae, and its associated parasitoid Microplitis mediator, when co‐occurring on a native plant, Brassica rapa. Overall, direct interactions between the herbivores were beneficial for the exotic herbivore (higher pupal weight than the native herbivore), and negative for the native herbivore (higher mortality than the exotic herbivore). At the third trophic level, both parasitoids were unable to parasitize the herbivore they did not coexist with, but the presence of the exotic parasitoid still negatively affected the native herbivore (increased mortality) and the native parasitoid (decreased parasitism rate), through failed parasitism attempts and interference effects. Our results suggest different interaction scenarios depending on whether S. littoralis and its parasitoid arrive to the native tritrophic system separately or concurrently, as the negative effects associated with the presence of the parasitoid were dependent on the presence of the exotic herbivore. These findings illustrate the complexity and interconnectedness of multitrophic changes resulting from concurrent species arrival to new environments, and the need for integrating the ecological effects of such arrivals into the general theoretical framework of global invasion patterns driven by climatic change.  相似文献   
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