首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 109 毫秒
1.
棉铃虫抗寒能力的研究   总被引:16,自引:0,他引:16  
对棉铃虫(HelicoverpaarmigeraHubner)9个地理种群的抗寒能力进行了研究,棉铃虫非滞育蛹和滞育蛹的过冷却点分别于分布于-19.13℃至-18.16和-19.53℃范围内,随纬度升高,地理种群的过冷却点呈降低趋势,非滞育蛹在低温下的生存能力显著低下滞育蛹,采自北部特早熟棉区的辽宁省辽阳市种群,其抗寒性和华北种群无明显区别,但长江流域棉区的湖北省武穴种群显著低于华北种群,武穴种群  相似文献   

2.
在棉铃虫HelicoverpaarmigeraH櫣bner人工饲料中分别添加转Bt基因棉叶粉和常规棉叶粉饲喂幼虫,经滞育诱导后,发现2个处理间棉铃虫蛹的滞育率相似,2个处理间滞育蛹的自由水和结合水含量没有差异;但取食含Bt棉叶粉人工饲料的棉铃虫滞育蛹的过冷却点和结冰点显著高于对照组,蛹重及与抗寒性有关的脂肪和糖原含量均显著低于对照组。  相似文献   

3.
【目的】针对由Bt棉花和玉米构成的华北农田景观, 探讨不同寄主作物对棉铃虫 Helicoverpa armigera 越冬抗寒的影响。【方法】2013年在河北廊坊科研中试基地的作物田中将棉铃虫幼虫接到Bt棉和玉米上, 比较取食不同作物后棉铃虫的化蛹率、存活率和越冬蛹羽化率;在室内控制条件下分别用棉蕾和鲜玉米粒饲喂棉铃虫幼虫。 测定滞育蛹和非滞育蛹的鲜重、干重、以及脂肪、糖原和低分子物质含量等指标, 比较取食不同作物后棉铃虫的抗寒能力。【结果】取食玉米的棉铃虫滞育蛹干重(117.5 mg)、脂肪含量(457.2 μg/mg DW)以及海藻糖浓度(86.45 μg/g)均显著高于取食Bt棉的棉铃虫滞育蛹干重(56.6 mg)、脂肪含量(239.6 μg/mg DW)以及海藻糖浓度(13.87 μg/g);取食玉米的棉铃虫冰点(-10.2℃)显著低于取食Bt棉的棉铃虫冰点(-6.5℃)。【结论】结果表明取食玉米更加有利于棉铃虫越冬。 据历史数据, 近年来玉米种植面积不断增加, 这将提高棉铃虫成功越冬比率, 对棉铃虫种群扩张起到促进作用, 因此注重玉米上棉铃虫的防治尤为重要。  相似文献   

4.
《环境昆虫学报》2014,(1):17-21
为明确柑桔大实蝇Bactrocera minax (Enderlein)老熟幼虫和蛹的抗寒能力,对柑桔大实蝇老熟幼虫、滞育蛹和滞育解除蛹的过冷却点和结冰点进行了测定。结果显示,同一虫态不同个体间其过冷却点和结冰点具有不同程度的变异,但其变异范围均符合正态分布。柑桔大实蝇不同发育状态间的过冷却点和结冰点均具有显著差异,其中,已解除滞育进入发育状态的蛹的过冷却点和结冰点最低,分别为-11.15℃和-9.76℃;其次为滞育蛹,分别为-8.93℃和-7.63℃;而老熟幼虫最高,分别为-7.09℃和-3.43℃。此外,老熟幼虫的结冰点和过冷却点之间的差值最大为3.24℃,显著高于滞育蛹(1.30℃)和滞育解除蛹(1.39℃)。表明,倒春寒对已进入发育状态的柑桔大实蝇蛹不会造成不利影响。  相似文献   

5.
马尾松毛虫越冬代滞育与非滞育幼虫过冷却点的研究   总被引:3,自引:0,他引:3  
测定了在恒温和自然温度处理下饲养的马尾松毛虫滞育与非滞育幼虫的过冷却点。结果表明 ,2 7℃恒温饲养的滞育幼虫的平均过冷却点较非滞育幼虫的平均过冷却点低 ,但无显著差异 ;而自然温度下饲养的滞育幼虫的过冷却点较非滞育的过冷却点也低 ,然而 ,滞育开始时差异不显著 ,之后差异显著。相应滞育状态下 ,自然温度下饲喂的幼虫较 2 7℃恒温下饲喂的平均过冷却点低 ,但在滞育开始阶段和结束阶段两者之间的差异显著。自然温度下滞育和非滞育幼虫的抗寒能力都随气温的降低而增强 ,而 2 7℃下滞育与非滞育幼虫的抗寒能力均出现先增后减的趋势  相似文献   

6.
烟夜蛾滞育蛹和非滞育蛹的耐寒性   总被引:1,自引:0,他引:1  
对烟夜蛾Helicoverpa assultaGuen?e不同日龄滞育蛹和非滞育蛹的过冷却点和结冰点测定结果表明,在预蛹至5日龄蛹期,过冷却点和结冰点均逐渐下降。在预蛹期和3日龄蛹期,滞育蛹的过冷却点与非滞育蛹差异不显著;5日龄蛹时,滞育蛹和非滞育蛹的过冷却点分别下降至(-15.7±1.8)℃和(-13.5±1.2)℃,结冰点分别降至(-12.7±2.7)℃和(-9.5±1.3)℃,两类蛹间的差异均达极显著水平。自然越冬后,滞育蛹的存活率显著高于非滞育蛹,在土壤不同深处越冬的蛹的存活率存在差异,距土表15cm深的蛹存活率最高。  相似文献   

7.
滞育和非滞育棉铃虫血淋巴类固醇蜕皮素含量变化的比较   总被引:15,自引:1,他引:14  
王方海  龚和 《昆虫学报》1997,40(3):261-264
采用放射免疫分析法对不同时期的注定滞育和非滞育棉铃虫的血淋巴中的类固醇蜕皮素的含量进行了测定,发现在预蛹期间,注定滞育的棉铃虫的类固醇蜕皮素含量高于非滞育的棉铃虫,化蛹后,注定滞育的棉铃虫的类固醇蜕皮素含量则迅速降到极低的水平,明显低于非滞育棉铃虫。用20-羟基蜕皮素处理不同时期的滞育蛹,均能打破滞育。由此可见,类固醇蜕皮素含量的降低或缺乏乃是导致棉铃虫滞育的关键因子之一。  相似文献   

8.
胡振东  李显春 《昆虫知识》1999,36(5):270-272
本文利用人工诱导滞育的方法,对不同氰戊菊酯抗性水平的棉铃虫蛹滞育进行了比较研究。结果表明,氰戊菊酯抗性高的棉铃虫滞育率低,滞育蛹历期长,耐寒性差。不同氰戊菊酯抗性水平的棉铃虫蛹重无显著差异。  相似文献   

9.
棉铃虫滞育与抗逆性研究进展   总被引:6,自引:2,他引:4  
本文综述了棉铃虫滞育与抗逆性的研究进展 ,包括滞育的类型、滞育的诱导与解除 ,以及抗寒性、抗热性、抗旱性等。其中着重论述了棉铃虫的越冬滞育及其抗寒能力  相似文献   

10.
《环境昆虫学报》2014,(5):860-864
为了明确烟草潜叶蛾的抗寒能力,对烟草潜叶蛾三龄幼虫、四龄幼虫、蛹的过冷却点进行了测定,并初步明确了不同龄期、不同寄主植物、冷驯化等因素对其过冷却点的影响。结果表明:不同龄期下过冷却点由低到高排列顺序为蛹、三龄幼虫、四龄幼虫,其中蛹的过冷却点显著低于三龄、四龄幼虫的过冷却点。以烟草和马铃薯为寄主的蛹和四龄幼虫的过冷却点没有显著差异。经过冷驯化处理的四龄幼虫过冷却点低于未经冷驯化的对照组,但差异不显著;经过冷驯化的蛹的过冷却点高于对照组。本研究有助于了解烟草潜叶蛾的抗寒性及其越冬分布区域。  相似文献   

11.
Cold hardiness of Helicoverpa zea (Lepidoptera: Noctuidae) pupae   总被引:1,自引:0,他引:1  
An insect's cold hardiness affects its potential to overwinter and outbreak in different geographic regions. In this study, we characterized the response of Helicoverpa zea (Boddie) pupae to low temperatures by using controlled laboratory measurements of supercooling point (SCP), lower lethal temperature (LT(50)), and lower lethal time (LLTime). The impact of diapause, acclimation, and sex on the cold hardiness of the pupae also were evaluated. Sex did not significantly affect the SCP, LT(50), or LLTime. However, the mean SCP of diapausing pupae (-19.3°C) was significantly lower than nondiapausing pupae (-16.4°C). Acclimation of nondiapausing pupae to constant temperatures from 10 to 20°C before supercooling also produced a significantly lower SCP than nondiapausing pupae held at 25°C. The LT(50)s of nondiapausing and diapausing were not significantly different, but confirmed that H. zea pupae are chill-intolerant because these lethal temperatures are warmer than the corresponding mean SCPs. Diapausing pupae survived longer than nondiapausing pupae at the same, constant, cold temperatures, a finding consistent with the SCP results. Both of these results suggest enhanced cold hardiness in diapausing pupae. When laboratory results were compared with field temperatures and observed distributions of H. zea in the contiguous United States, the laboratory results corroborated what is currently perceived to be the northern overwintering limit of H. zea; approximately the 40(th) parallel. Moreover, our research showed that areas north of this limit are lethal to overwintering pupae not because of low temperature extremes, but rather the length of time spent at near-zero temperatures.  相似文献   

12.
Abstract The age‐dependent cold hardiness profile of Ostrinia nubilalis is compared between nondiapausing and diapausing larvae, as well as with field‐collected larvae. The results suggest that both cold tolerance and accumulation of cryoprotectants depends upon the age of O. nubilalis larva. Late fifth‐instar nondiapausing larvae are more cold tolerant than younger fifth‐instars because they show enhanced ability to withstand sub‐zero temperatures. No appreciable difference is observed between the experimental groups of diapausing larvae as far as their supercooling ability and tolerance at sub‐zero temperatures above the supercooling point. In general, both field‐collected and diapausing larvae are more cold tolerant than nondiapausing larvae, indicating a direct link between diapause and cold hardiness. The age of diapausing larvae affects the ability to accumulate glycerol. Glycerol levels of 45‐day‐old diapausing larvae are significantly higher (2.7‐fold) compared with 90‐day‐old diapausing larvae. Moreover, diapausing larvae display a five‐ to 13‐fold higher glycerol content compared with nondiapausing larvae. There is a trend for an age‐dependent cold hardiness profile in O. nubilalis and further tests that could demonstrate a causal relationship between age and cold tolerance are needed.  相似文献   

13.
Supercooling points (SCPs) and low temperature survival were determined for diapausing and nondiapausing larvae of the ectoparasitoid Nasonia vitripennis. Neither nondiapausing nor diapausing larvae could survive tissue freezing. The SCP profiles were nearly identical for nondiapause-destined (-27 degrees C) and diapausing larvae (-25 degrees C), but these values were not indicative of the lower limits of tolerance in either type of larvae: larvae were killed by chilling at temperatures well above the SCP. Diapausing larvae could withstand low temperature exposures 3-8 times longer than their nondiapausing counterparts. Low temperature survival was enhanced in diapausing and nondiapausing larvae by their encasement within the puparium of the host flesh fly, SARCOPHAGA CRASSIPALPIS: the LT(50)s determined for nondiapausing and diapausing larvae enclosed by fly puparia were 2-3 times higher than values calculated for larvae removed from the puparia. Additional low temperature protection was gained through acquisition of host cryoprotectants during larval feeding: nondiapausing parasitoid larvae that fed on diapausing flesh fly pupae with high levels of glycerol were able to survive exposure to a subzero temperature 4-9 times longer than wasps reared on nondiapausing fly pupae that contained lower quantities of glycerol. Alanine may also contribute to the cold hardiness of N. vitripennis, as evidenced by the fact that larvae feeding on diapausing fly pupae both contained higher concentrations of alanine and exhibited greater cold hardiness. The results thus demonstrate that several critical features of cold hardiness in the wasp are derived from biochemical and physical attributes of the host.  相似文献   

14.
The effects of transgenic Bt cotton on the overwintering generation of the cotton bollworm, Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae), are unknown. We hypothesized that a Bt cotton diet may adversely affect fitness of this generation and examined fresh weight, lipids, glycogens, low-molecular-weight sugars and SCPs (supercooling points) of pupae, as well as survival of larvae, diapausing pupae and adult emergence in comparison with controls. Field and laboratory experiments showed that larvae fed on Bt cotton had a decreased pupation rate, and fewer entered diapause and emerged as adults compared with larvae fed non-Bt cotton. Furthermore, larvae fed Bt cotton had reduced pupal weight, glycogen content and trehalose levels both in diapausing and in non-diapausing pupae, and only diapausing pupae had an increased SCP compared to controls. The SCPs of diapausing pupae reared on Bt cotton were significantly higher than those reared on non-Bt cotton. The trehalose levels of diapausing pupae reared on Bt cotton were significantly lower than those of larvae reared on non-Bt cotton. Thus, these results suggest that a Bt cotton diet weakens the preparedness of cotton bollworm for overwintering and reduces survival of the overwintering generation, which will in turn reduce the density of the first generation in the following year. Effects of transgenic Bt cotton on the overwintering generation of cotton bollworm appear to have significantly contributed to the suppression of cotton bollworm observed throughout northern China in the past decade.  相似文献   

15.
To clarify differences in pupal cold hardiness and larval food consumption between overwintering and non‐overwintering generations of the common yellow swallowtail, Papilio machaon, we reared larvae from the Osaka population under photoperiods of 16 h light : 8 h dark (LD 16:8) (long day) or LD 12:12 (short day) at 20°C. We examined the relationship between food consumption and weight during the final larval stadium and pupae, and measured the pupal supercooling point (SCP). Although the ratio of assimilation to consumption did not differ significantly between photoperiods, the ratio of assimilation to pupal weight differed significantly between individuals reared under long and short days. All diapausing pupae were brown, whereas 56% of non‐diapausing pupae were green with the remainder brown. The mean pupal body length (L), dorsal width (W1) and lateral width (W2) were larger in non‐diapausing than in diapausing pupae, and the W1/L and W1/W2 ratios differed significantly between non‐diapausing and diapausing pupae. SCP was approximately –20°C and did not differ among pupae 5, 15 and 30 days after pupation under long‐day conditions. However, under short‐day conditions, mean SCP gradually decreased, stabilizing at approximately –24 to –25°C by 30 days after pupation. After freezing, some diapausing pupae emerged as adults, whereas all non‐diapausing pupae died. Both egestion and assimilation were greater under long‐day conditions. The results revealed that pupae of this papilionid exhibit seasonal polyphenism in physiological and morphological traits. Energy from food appears to be expended on increasing cold hardiness in the overwintering generation and on reproduction in the non‐overwintering generation.  相似文献   

16.
Cold hardiness adaptations of codling moth, cydia pomonella   总被引:1,自引:0,他引:1  
Neven LG 《Cryobiology》1999,38(1):43-50
The cold hardiness adaptations of natural and laboratory reared populations of the codling moth, Cydia pomonella, were examined. Hemolymph, gut, and whole body supercooling points (SCPs), 24-h LT50s, polyhydroxy alcohol concentrations, hemolymph freezing points, and hemolymph melting points were determined. Nondiapausing codling moth larvae do not have appreciable levels of ice nucleators in the hemolymph or gut. Whole body supercooling points were higher than hemolymph supercooling points. For nondiapausing larvae, LT50s were significantly higher than both the whole body and the hemolymph supercooling points, indicating the presence of chill sensitivity. As the larvae left the food source and spun a cocoon, both hemolymph and whole body SCPs decreased. Diapause destined larvae had significantly lower hemolymph SCPs than nondiapausing larvae, but whole body SCPs were not significantly different from nondiapausing larvae of the same age. The LT50s of diapause destined and diapausing larvae were significantly lower than that of nondiapausing larvae. Codling moths are freezing intolerant, with LT50s close to the average whole body supercooling point in diapause destined and diapausing larvae. The overwintering, diapausing larvae effectively supercool to avoid lethal freezing by removal of ice nucleators from the gut and body without appreciable increase of antifreeze agents such as polyols or antifreeze proteins.  相似文献   

17.
Lobesia botrana (Denis & Schiffermüller) (Lepidoptera: Tortricidae) is a key pest of grapes in Europe. It overwinters as a pupa in the bark crevices of the plant. Supercooling point (SCP) and low temperature survival was investigated in the laboratory and was determined using a cool bath and a 1 °C min?1 cooling rate. Freezing was fatal both to diapausing and non‐diapausing pupae. SCP was significantly lower in diapausing male (?24.8 °C) and female (?24.5 °C) pupae than in non‐diapausing ones (?22.7 and ?22.5 °C, respectively). Sex had no influence on SCP both for diapausing and non‐diapausing pupae. Supercooling was also not affected by acclimation. However, acclimation did improve survival of diapausing pupae at temperatures above the SCP. Survival increased as acclimation period increased and the influence was more profound at the lower temperatures examined. Diapausing pupae could withstand lower temperatures than non‐diapausing ones and lethal temperature was significantly lower than for non‐diapausing pupae. Freezing injury above the SCP has been well documented for both physiological stages of L. botrana pupae. Our findings suggest a diapause‐related cold hardiness for L. botrana and given its cold hardiness ability, winter mortality due to low temperatures is not expected to occur, especially in southern Europe.  相似文献   

18.
桉树枝瘿姬小蜂的耐寒性测定   总被引:2,自引:1,他引:1  
桉树枝瘿姬小蜂Leptocybe invasa Fisher&LaSalle是一种新入侵的检疫性有害生物,为了明确其对极端低温的耐受性,以了解其适生范围,测定了桉树枝瘿姬小蜂幼虫、蛹、成虫及不同地区、不同寄主条件下雌雄成虫以及广东、广西、海南3省6地越冬幼虫12—3月的过冷却点和冰点。结果表明,不同虫态的过冷却点和冰点由低到高顺序为:蛹<幼虫<成虫。蛹的过冷却点和冰点分别为(-24.93±0.10)℃、(-22.81±0.14)℃,成虫的过冷却点和冰点为(-20.93±0.24)℃和(-17.33±0.27)℃。随着纬度的升高,桉树枝瘿姬小蜂的过冷却点和冰点都呈现降低的趋势。海南地区不同寄主桉树枝瘿姬小蜂过冷却点从低到高的顺序排列为:湛-201<小叶桉<广林9号。在12—3月,桉树枝瘿姬小蜂的越冬幼虫过冷却点和冰点随着环境温度的升高而升高,以广东广州地区1月份的越冬幼虫过冷却点和冰点为最低,其数值分别为(-25.44±0.17)℃和(-24.04±0.21)℃,个体过冷却点的最低值为-26.9℃。由实验结果可知,桉树枝瘿姬小蜂蛹和幼虫的耐寒力最强,以幼虫和蛹越冬。地区、寄主、温度对其耐寒力均有显著的影响,而且其有向现疫区以北的区域扩散的潜能。  相似文献   

19.
甘薯天蛾过冷却点变化与生化成分的关系   总被引:1,自引:0,他引:1  
测定长沙地区甘薯天蛾Agrius convolvuli L.在发育过程中不同时期的过冷却点、虫体水分和粗脂肪含量,并对其动态变化和相互之间的相关性进行分析。结果表明:不同世代甘薯天蛾过冷却点均随发育进程显著升高,在蛹期明显下降;2龄幼虫的过冷却点均为-11℃左右,蛹的过冷却点在越冬代过冷却点为-7·38℃,比其他世代蛹低2~3℃。甘薯天蛾虫体含水量随发育进程不断降低,粗脂肪含量则不断升高,其越冬代蛹粗脂肪含量占其干重高达30·23%。甘薯天蛾过冷却点与虫体水分含量呈正相关;而与虫体粗脂肪含量呈负相关,且在第2、3代和越冬代均呈显著负相关。甘薯天蛾在发育过程中通过调节水分和粗脂肪含量可能是其抵抗低温的生理机制之一。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号