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为掌握滇西南菜区小菜蛾的发生规律和抗药性现状, 2013-2017年进行了田间系统调查幼虫、性信息素诱集成虫和室内毒力测定。结果表明:滇西南菜区小菜蛾田间种群每年早春存在种群激增现象, 3-5月份出现春季高峰期, 6月后种群数量保持较低水平。抗性测定表明, 该地区小菜蛾对丁醚脲、Bt、氯虫苯甲酰胺、虫螨腈、茚虫威均为低水平抗性, 对氟啶脲和多杀霉素为中等水平抗性; 对阿维菌素为中到高抗,对高效氯氰菊酯为高抗水平。建议该区域1-5月放置性信息素诱杀成虫, 3-4月用丁醚脲、Bt制剂、氯虫苯甲酰胺、虫螨腈、茚虫威等进行化学防治, 6-12月小菜蛾的发生虫量在经济阈值下, 可不防治。 相似文献
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为初步明确钩纹皮蠹Dermestes ater De Geer不同虫态的抗寒能力,本文运用智能昆虫过冷却点测定仪及配套软件测定钩纹皮蠹幼虫、蛹和成虫的过冷却点及结冰点,比较不同虫态过冷却点和结冰点的差异,以期为钩纹皮蠹的越冬区划分、发生期预测和虫害防控等提供理论依据。结果表明,钩纹皮蠹3日龄蛹的平均过冷却点最低,为-24.31℃,1龄幼虫平均过冷却点最高,为-16.34℃,其余虫态平均过冷却点依次为老熟幼虫(-24.04℃)5日龄蛹(-23.84℃)1日龄蛹(-23.01℃)7日龄蛹(-19.53℃)7龄幼虫(-19.16℃)5龄幼虫(-18.75℃)3龄幼虫(-18.43℃)成虫(-18.25℃);老熟幼虫的平均结冰点最低,为-18.41℃,5龄幼虫平均结冰点最高,为-10.84℃,其余虫态平均结冰点依次为3日龄蛹(-18.26℃)1日龄蛹(-17.13℃)5日龄蛹(-16.87℃)1龄幼虫(-14.66℃)成虫(-14.55℃)7日龄蛹(-13.20℃)3龄幼虫(-12.96℃)7龄幼虫(-12.38℃)。钩纹皮蠹蛹和老熟幼虫有较强的抗寒能力,但幼虫和成虫的抗寒能力较弱。 相似文献
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The effects of exposure period and phosphine concentration on mortality of susceptible and resistant Sitophilus oryzae (L) were investigated. Although S oryzae is one of the world's most serious pests of stored grain there are few data on the practical significance of phosphine resistance in this species. The strains investigated were an Australian susceptible strain, a homozygous resistant strain exhibiting a level of resistance common in Australia and an unselected field strain from China with a much stronger resistance. Fumigations were carried out at 25 degrees C on adults and mixed-age cultures. For adults of all three strains and mixed-age cultures of the susceptible and resistant Australian strains, the relationship between concentration and time could be described by equations of the form Cnt = k. In all cases n < 1, indicating that time was a more important variable than concentration. In all fumigations of adults the resistant strains were harder to kill than the susceptible strain. However, in fumigations of mixed-age cultures, which contained the tolerant pupal stage, the difference between susceptible and resistant strains was more pronounced at lower concentrations than higher concentrations. For example, at 0.02 mg litre-1 the estimated LT99.9 for mixed-age cultures of the Australian resistant strain (27 days) is 3.4 times that of the susceptible strain (8 days), but at 1 mg litre-1 there is no difference between the two strains (4 days). Limited data on the Chinese resistant strain supported this finding. Twenty-three days exposure at 0.02 mg litre-1 had no effect on mixed-age cultures of this strain, but there were no survivors after 5 days exposure to 1 mg litre-1. 相似文献
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以5种黄瓜主要病原菌作为诱导抗病因子,研究其对黄瓜主要病害的作用,结果发现黄瓜经病原菌诱导后,可以产生对诱导病原菌及其它病原菌引起病害的交互保护作用,并且诱导的交互保护作用与诱导浓度、诱导间隔期、不同品种存在相关性.诱导效果不随诱导接种浓度的升高而升高.在黑星病菌对霜霉病菌的诱导作用中,以浓度为1×102个/ml的黑星病菌孢子悬浮液的诱导效果最好,诱导间隔期为48h黄瓜黑星病菌对霜霉病的交互保护作用最明显,抗性品种的交互保护作用明显好于感病品种;炭疽病菌可诱导黄瓜有效抑制褐斑病的发生,但挑战接种褐斑病菌后,却促进了炭疽病的发生.诱导接种炭疽病菌后再挑战接种褐斑病菌12d,对褐斑病的防效为92.07%. 相似文献
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Population-level impacts of insect herbivory on rare and endangered plants are poorly understood, being frequently suggested but seldom quantified. We compiled 37 studies from the primary literature encompassing 35 rare plant species and at least 63 insect herbivore species, and assessed patterns in the effects of insect herbivores on rare plant populations and vital rates. Only three studies directly quantified effects of insect herbivory on population size or growth rate, with the vast majority instead extrapolating from vital rates to population size. Few studies (eight) studied herbivory experimentally, and feeding guilds other than seed predators have been relatively neglected. Estimates of population-level impacts vary extremely widely, but for many rare plants insect herbivores cause major reductions in survivorship or fecundity or can even drive local extinctions. Four studies documented positive (plant-) density dependence in insect attack, suggesting that herbivores may have a stabilizing influence on plant populations and thus may play a role in regulating rare plant population size. Most reported herbivores of rare plants are oligophagous or polyphagous, but monophagous herbivores of rare plants do exist, and there was no detectable difference in impact among specialization classes. Attack on rare plants by escaped biocontrol agents can sometimes have significant population-level effects, but such cases appear uncommon. Because insect herbivory can strongly suppress rare plant populations or vital rates, we need to know much more about what ecological and evolutionary factors determine the population-level impacts of insect herbivores. We suggest several ways in which the results of such research could inform conservation practices for rare plant species – for example, the possibility of different management regimes for plants under attack by monophagous, oligophagous, and polyphagous herbivores. 相似文献
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