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1.
曲纹紫灰蝶指名亚种的生物学特性及防治   总被引:1,自引:0,他引:1  
韦启元 《昆虫知识》2006,43(6):870-872
曲纹紫灰蝶指名亚种Chilades pandava pandava(Horsfield),在广西贺州市1年发生5代,世代重叠,每代历期:1~4代30~31d,越冬代234d,以第5代蛹于11月上旬越冬,翌年6月中旬成虫出现,下旬第1代幼虫开始为害。幼虫5龄。防治方法以营林措施为主。其危害苏铁情况以及形态特征和生物学特性作了描述。  相似文献   

2.
福建省发现为害苏铁害虫——曲纹紫灰蝶   总被引:3,自引:0,他引:3  
曲纹紫灰蝶 Chilades pandava( Horsfield)属灰蝶科紫灰蝶属 ,也称苏铁小灰蝶 ,是一种专门为害苏铁的检疫性害虫。国外主要分布于缅甸、马来西亚、斯里兰卡 ;国内分布于台湾、香港、广东、广西、海南。目前在福建福州、漳洲两地发现该虫发生为害苏铁。为了加强对该虫的检疫工作 ,本文描述其为害特点和形态特征以供参考。1 为害症状苏铁隶苏铁科 ,苏铁属 ,适应性强 ,在我国各地都有栽培 ,是一种观赏性较强的观叶花卉品种。曲纹紫灰蝶幼虫的盛发期适逢苏铁新叶抽发期 ,幼虫啃食叶肉或咬短小叶 ,造成叶片缺损 ,严重时芽叶全部吃光 ,导致苏铁…  相似文献   

3.
张彦静  陈菁  王晨彬  斯琴  谢锐  马方舟 《生态学报》2023,43(14):5850-5862
曲纹紫灰蝶(Chilades pandava)是一种以幼虫危害苏铁(Cycas revolute)嫩枝嫩叶的园林害虫,对苏铁的生长繁殖、生产者的经济效益以及城市园林的美观造成严重影响。基于曲纹紫灰蝶和苏铁的现存分布点,利用最大熵模型(MaxEnt)、ArcGIS、R软件对当前和未来气候条件下曲纹紫灰蝶在中国的潜在适生区分布及当前气候条件下寄主苏铁在中国的潜在适生区分布进行了预测,其中当前气候数据基于1970—2000年的历史数据,未来气候数据(2021—2040年、2041—2060年和2061—2080年)选择第六次国际耦合模式比较计划(CMIP6)中中国北京气候中心中等分辨率气候系统模式(BCC-CSM2-MR)下的3种共享社会经济路径(SSP126(属于低强迫情景), SSP370(属于中等至高等强迫情景), SSP585(属于高强迫情景))。结果表明:(1)模型预测结果非常好,各组模型的受试者工作特征(ROC)曲线下面积(AUC)值均高于0.95,昼夜温差月均值(bio2)、等温性(bio3)、最热季平均温度(bio10)、最湿月份降水量(bio13)是影响曲纹紫灰蝶分布的主导...  相似文献   

4.
苏铁的危险性害虫——曲纹紫灰蝶   总被引:11,自引:0,他引:11  
曲纹紫灰蝶[Chilades pandava (Horsfield)]是苏铁的危险性害虫。幼虫为害新芽嫩叶。一年中以夏、秋叶受害最烈。  相似文献   

5.
通过野外观察、室内饲养等方法研究了酢浆灰蝶Pseudozizeeria maha(Kollar)的生活史及生物学特性。在南京地区,该蝶幼虫以酢浆草科Oxalidaceae的黄花酢浆草(Oxalis corniculataL.)为食,1年5代,世代交替发生。酢浆灰蝶在10月末以蛹在枯枝落叶或土壤表层浅洞中越冬,越冬代成虫次年5月始见、中旬为高峰期,5月中旬始见第1代卵及幼虫,6—10月间各月各虫态均同时发生,期间每月中下旬为成虫活动高峰期。幼虫共4龄,野外2~4龄幼虫具迁移、避热与适蚁行为。在室内饲养条件下,卵期为3~4d,幼虫期为22~26d,蛹期为6~7d。  相似文献   

6.
云南河口县桔小实蝇生物学特性及防治   总被引:32,自引:4,他引:28  
桔小实蝇Bactroceradorsalis (Hendel)在河口 1年发生 5代 ,世代重叠 ,5~ 8月为害虫发生盛期 ,以第 2和第 3代幼虫发生期对当地果蔬作物的危害最重。室内 1 8~ 30℃条件下 ,成虫日羽化高峰发生在上午 9:0 0~ 1 0 :0 0 ,卵、幼虫和蛹的历期随着温度的升高而缩短。成虫取食喜选成熟芒果的汁液。提出了防治此害虫的主要措施。  相似文献   

7.
贺春玲  嵇保中  刘曙雯 《昆虫知识》2011,48(6):1751-1758
长木蜂Xylocopa tranquebarorum(Swederus)属于多访花性昆虫。本文报道了长木蜂的形态特征、生活史及幼虫和成虫的行为等生物学特性。该蜂在南京地区1年发生1代,以成虫在巢室内越冬。翌年的3月下旬成虫开始外出活动,主要是筑巢、采集粉蜜、酿贮蜂粮和产卵。6月中旬至7月下旬新一代成虫羽化,新羽化的成虫群集在蜜源植物青桐树上补充营养,并在青桐的附近空中婚飞、交配。室内观察长木蜂的卵期9~11d,平均(9.97±0.76)d;幼虫期19~22d,平均(20.30±1.18)d,预蛹期8~9d,平均(8.53±0.51)d,蛹期19~21d,平均(19.67±0.66)d。雌雄比为2.17∶1。雌蜂酿制蜂粮的盛期在5月上旬,采集蜂粮的最佳时期在5月上中旬。该蜂的卵产在块状的蜂粮上,卵长10.06~13.34mm,腊肠形或香蕉形,略弯曲,两端钝圆,头部略窄与尾部,尾部最宽,重(0.0438±0.0122)g。  相似文献   

8.
以野外观察、实验地饲养等方法, 详细记述了中华麝凤蝶 Byasa confusa (Rothschild)各虫态的形态特征、生活史和习性等生物学特性。在南京地区该蝶1 年发生2 代, 幼虫5 龄, 以绵毛马兜铃Aristolochia mollissima 为食, 卵期8-10 d, 幼虫期23-29 d。老熟幼虫在枝条上化蛹。该蝶以蛹滞育越冬。第一代成虫发生高峰期为4 月中旬至5月中旬; 第二代成虫发生高峰期在7 月下旬到9 月上旬, 存在世代重叠现象。  相似文献   

9.
通过野外观察、室内饲养、野外调查等方法研究黑脉蛱蝶Hestina assimilis(L.)的生物学特性以及生境状况。该蝶幼虫以榆科朴属(Celtis spp.)植物为食,在南京地区1年发生3代,10月下旬以4龄或5龄幼虫在寄主植物的落叶中越冬,翌年4月初越冬幼虫眠起活动。越冬代成虫5月上旬始见、中旬为高峰期;第1代7月上旬始见、中旬为高峰期;第2代9月上旬始见、中旬为高峰期。幼虫共5龄,在室内饲养的条件下,卵期为4~5d,幼虫期为28~42d,蛹期为7~8d。  相似文献   

10.
茶黑刺粉虱蛹和卵的发育分级及与其防治适期的相关性   总被引:3,自引:0,他引:3  
韩宝瑜 《昆虫知识》2002,39(2):130-132
20 0 0年 4~ 6月 ,每 5日在皖南黑刺粉虱Aleurocanthusspiniferus(Quaintance)常发茶园中以平行跳跃法选 5 0个样方。每样方为 1m茶行 ,查其上、中、下层各 2片成叶上各虫态粉虱的数量 ;采回 2 0 0头蛹于立体显微镜下解剖。越冬代蛹期 32~ 38d。据蛹体形态和颜色的显著变化而分为 4级 :体液乳白色( 1 2~ 1 4d)、体液淡黄色 ( 6~ 8d)、体液橙红色 ( 1 1~ 1 2d)和体液淡紫色阶段 ( 3~ 4d)。引入该粉虱于盆载茶苗上 ,观察其生物学习性。第 1代卵期 2 2~ 2 8d ,据卵颜色的显著变化分为 4级 :乳白色 ( 2~ 4d)、淡黄色 ( 2~ 3d)、橙红色 ( 1 5~ 1 7d)和紫黑色阶段 ( 3~ 4d)。第 1代幼虫期 2 5~ 2 8d ,其中 1龄 9~ 1 2d ,2龄 9d ,3龄 7d ,蛹期 7~ 8d。越冬代成虫盛期和第 1代 1龄盛期为防治适期 ,可较好地用蛹或卵的分龄分级法预测。越冬代蛹全部羽化之时 ,又恰是 1龄幼虫盛期 ,易于掌握  相似文献   

11.
温度对丝带凤蝶生长发育的影响   总被引:1,自引:0,他引:1  
温度对丝带凤蝶生长发育的研究。结果表明,丝带凤蝶在武汉地区1年发生6代。在15~35℃范围内,卵孵化率、幼虫和蛹存活率分别在25,25和20℃时最高,卵、幼虫和蛹发育历期随温度升高显著缩短;适宜发育温度范围为20~35℃。丝带凤蝶卵、幼虫和蛹的发育起点温度分别约为(8.7±2.5)℃、(11.9±6.0)℃和(6.9±1.8)℃,有效积温分别约为(82.5±5.1),(222.2±39.5)和(178.7±7.3)日.度。  相似文献   

12.
The sugar-beet fly, Pegomyia mixta Vill., is the most serious insect pest affecting sugar-beet plantations in Egypt. This study wase carried out in field in the El-Nubaria region ofEl-Behare Governorate. Peak numbers of flies were taken in sweep nets in December. Development of the fly appeared to be restricted to the months between November and May. In the hot months, adults were most active early in the morning and late in the afternoon, but in the cold months the peak of activity occurred at about midday. The flies were generally found on the upper surfaces of the leaves at temperatures below 16 °C and on the lower surfaces at temperatures above 24 °C. Females were generally more numerous than males. The eggs were observed from the first week of November to the end of April; the population was three blotches of eggs and 17 larvae/20 plants. The highest infestation of this insect in El-Nubaria was recorded at the end of March in both seasons (10 blotches of eggs, 20 larvae, and five pupae, and 12 blotches of eggs, 22 larvae, 13 pupae, respectively). The eggs are deposited in groups (3–8 eggs). The larvae bore its blotch in the leaf, about 3–7 larvae may be found in one blotch.  相似文献   

13.
Date palm, is a tree of economic importance which is grown around the world, including Saudi Arabia. Its fruit is nutritious and possesses medicinal benefits. Almond moth, is a serious date fruits pest in the field as well as in the storage and causes severe economic losses. In the given research, ultraviolet radiation type B (UV-B, 315 nm) harmful effects were evaluated against all developmental stages of C. cautella. One and 3-d-old eggs, 12 and 18-d-old larvae, 1-d and 6-d-old pupae, and 1-d-old adults, were exposed to UV-B for different intervals. Eggs were exposed for 0–30 min and 0% hatchability was achieved both for 1-d and 3-d-old eggs after 30 min. The larvae were exposed for 6–24 h, and after 24 h, mortality was 100 and 97% for 12 and 18-d-old larvae, respectively. Similarly, the pupae were exposed for 0–30 h, and 100% mortality was achieved after 30 h for 1-d-old pupae. Furthermore, none of the 6-d-old pupae emerged as an adult after 12 h of exposure. When adults were exposed for 1–4 d, no mortality was observed; however, UV-B reduced fecundity and hatchability in the treated adults. The susceptibility order was as follows: eggs > larvae > pupae > adults. Several uncharacteristic behaviors of C. cautella were noted, such as females depositing eggs openly on food items and containers, mature larvae exiting from food, larvae starting to wander for pupation, and pupation occurring typically outside the food. The application of UV-B could be an effective management strategy because all developmental stages of C. cautella were susceptible to UV-B that might be helpful to protect the dates from C. cautella infestation.  相似文献   

14.
哈尔滨地区大猿叶虫发育历期与生物学特性   总被引:4,自引:0,他引:4  
在哈尔滨对白菜上的大猿叶虫Colaphellus bowringi Baly的生活史和生物学习性进行观察研究。结果表明,大猿叶虫在哈尔滨地区绝大多数个体1年发生1代,少部分个体1年发生2代。主要以成虫入土在2~27cm土层中滞育越冬。越冬成虫翌年4月下旬开始出土活动。第1代发生在5上旬至7月上旬,第2代发生于6月中旬至7月中旬。所有成虫在7月下旬以后均滞育越冬。在25℃条件下,雌虫产卵期为6~55d,平均为30.95d,单雌平均产卵量为454.9粒。在25℃各虫态的发育历期为:卵(4.46±0.33)d,幼虫(8.22±0.26)d,蛹(4.17±0.22)d。各虫态发育起点温度卵为10.80℃,幼虫为10.95℃,蛹为9.79℃;有效积温卵为64.82日.度,幼虫为117.37日.度,蛹为64.36日.度。  相似文献   

15.
夹竹桃天蛾的生物学特性   总被引:1,自引:0,他引:1  
雷玉兰  林仲桂 《昆虫知识》2010,47(5):918-922,F0004
夹竹桃天蛾Daphnis nerii(Linnaeus)是夹竹桃上的重要害虫,具有间歇性爆发的特点。该虫在湖南省衡阳地区1年发生2~3代,以蛹在寄主附近的枯枝落叶层、表层松土及土壤缝穴中越冬。越冬代成虫于6月上旬出现,6月中下旬产卵。6月下旬第1代幼虫孵化;第1代成虫于7月中旬出现,7月下旬产卵。第2代幼虫8月上旬孵化,8月下旬至9月上旬幼虫危害最历害,9月中旬开始化蛹,化蛹持续到10月中旬。第2代蛹发生分化,一部分成为越冬蛹,另一部分则羽化为成虫。第2代成虫于10月上旬开始产下第3代卵。10月上旬第3代幼虫开始孵化,11月中旬第3代幼虫开始化蛹、越冬。  相似文献   

16.
李建庆  梅增霞  杨忠岐 《生态学报》2016,36(14):4540-4547
云斑白条天牛是我国重要林业害虫,在黄河三角洲地区对白蜡树造成严重危害。利用地统计学方法,通过调查城市行道绿化林、庭院绿化林、公路林和片林4种不同林分类型的白蜡树林地,以产卵刻槽、排粪孔和羽化孔为调查指标,对危害白蜡云斑白条天牛种群卵、幼虫、成虫(蛹)的空间格局进行了研究。结果表明:除片林样点成虫(蛹)的半变异函数模型为指数模型外,危害白蜡云斑白条天牛种群卵、幼虫、成虫(蛹)在不同林分类型下的半变异函数模型均为球形模型,其指明空间分布均为聚集分布,种群的聚集分布习性与林分类型相关性不强。但不同林分类型云斑白条天牛种群的空间相关性地统计学参数存在差异,片林调查样点的卵、幼虫和成虫(蛹)的变程a、块金值C0和基台值C0+C均小于其他3种林分类型的统计值,片林样点成虫(蛹)的半变异函数模型不同于其他林分类型为指数模型。  相似文献   

17.
The drugstore beetle, Stegobium paniceum (L.) (Coleoptera: Anobiidae), is a pest of stored medicinal and aromatic plants. Generally, mortality of each stage increased with an increase of temperature and exposure time. Heat tolerance for different stages from highest to lowest was young larvae, old larvae, eggs, adult, and pupae. The mortality after 7 h at 42 degrees C for young larvae, old larvae, eggs, adults, and pupae, respectively, was 16 +/- 5, 31 +/- 6, 48 +/- 3, 63 +/- 8, and 86 +/- 2% (mean +/- SEM). Similar trends for stage specific mortality were seen with the lethal time for 90% mortality (LT90) at 42 degrees C; 773, 144, 12, and 11 h for old larvae, eggs, adults, and pupa respectively. Mortality was too low with young larvae to estimate LT90. The LT90 for young larvae at 42, 45, 50, 55, and 60 degrees C was 25, 20, 3.9, 0.18, and 0.08 h, respectively. The cold tolerance of different stages at 0 degree C from highest to lowest was adults, old larvae, young larvae, pupae, and eggs. The LT90 at 0 degrees C was 298, 153, 151, 89, and 53 h, respectively. The LT90 for adults at 5, -5, -10, and -15 degrees C was 792, 58, 2, and 0.8 h, respectively. The supercooling point of adults was -15.2 +/- 2 degrees C; young larvae, -9.0 +/- 0.8 degrees C; old larvae, -6.5 +/- 0.5 degrees C; and pupae, -4.0 +/- 1.4 degrees C. Heat treatments that control young larvae should control all other stages of S. paniceum. Cold treatments that control adults should control all other stages of S. paniceum. Dried plants stored at 5 degrees C for 45 d or 42 degrees C for 30 h and then kept below 18 degrees C throughout the rest of the year, should remain pest-free without any chemical control.  相似文献   

18.
Laboratory studies were conducted on certain aspects of biology ofDiadegma semiclausum Hellén, a larval parasite of a crucifer pest,Plutella xylostella (L.). Within the range of 15°C to 35°C, the higher temperature, the shorter was the duration of larval and adult stages. Egg hatching and adult emergence were high at 15°C to 30°C but were significantly reduced at 35°C. The higher the temperature, the higher was the proportion of males produced. Temperature threshold was 5.74°C for eggs, 3.80°C for larvae, 5.91°C for pupae and 6.60°C for adults.D. semiclausum oviposition in the first threeP. xylostella larval instars produced more parasite males than females but oviposition in the fourth instar produced significantly more females than males. Parasite adults tended to emerge from their pupae from 06∶00 to 09∶00 hours although some emerged at other hours during the photophase. Adult longevity and production of eggs increased when adults were provided with a food source (honey) compared with no food or provision of water alone. Parasite adults survived and laid eggs for 28 days when provided with food but for only three days when deprived of food.  相似文献   

19.
【背景】南亚果实蝇是世界性的检疫性害虫,在我国多个省市发生为害,对瓜果作物造成了严重的经济损失。【方法】采用人工恒温饲养方法,分别设置10、14、18、22、26、30、34℃7个恒温条件,测定不同温度条件下南亚果实蝇卵、幼虫和蛹的生长发育历期,并推算出相应的发育起点温度和有效积温。【结果】南亚果实蝇卵、幼虫和蛹的发育起点温度分别为7.36、2.43、7.64℃,卵期、幼虫期和蛹期的有效积温分别为20.21、187.69和156.65日度。完成整个世代的发育起点温度是7.64℃,有效积温为364.55日度。当温度达到34℃时,卵的发育历期相对延长,而蛹则不能正常发育,无法羽化为成虫。【结论与意义】在10~30℃,南亚果实蝇的卵、幼虫和蛹的发育历期随温度升高而缩短,各虫态的发育速率和温度呈显著正相关;在26和30℃下,卵、幼虫和蛹的发育历期均显著短于其他各处理温度的发育历期。该试验结果为了解南亚果实蝇的发育温度极限和进一步开展该害虫的适生性分析提供了基础信息,进而为制定该虫的检疫措施提供依据。  相似文献   

20.
Rhynchites cribripennis is a pest of olives widely distributed in the Mediterranean region. The adults drill holes in the flesh of olives, resulting in fruit drop. Although earlier studies reported high damage levels, its damage potential has not been specifically investigated. In the current study, the damage potential of this weevil was evaluated with regard to its density. Olive shoots were enclosed in muslin cages, along with two or four adult weevils, during the initial phase of the olive fruit development. In each cage, the shoots bore 357 fruits, on average. The percentage of fruits dropped and the damage level on the fruits were recorded at about 1‐month intervals. At harvest, the fruits that remained on the shoots were individually weighed to evaluate the damage as regards fruit weight. The results showed that R. cribripennis can cause a significant damage because of fruit drop (54 ± 6%, 38 ± 4% and 16 ± 2% in the cages with 4, 2 and 0 adults, respectively). The damage was more severe in fruits within the first month after their formation. A single feeding hole was shown to cause the drop of small fruits. The high percentage of dropped fruits caused a significant decrease in the weight of the olives at harvest among treatments. These results show that R. cribripennis can cause serious damage to olive production and offer useful information for quantifying its damage potential and developing a more rationale control strategy for this pest.  相似文献   

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