首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到16条相似文献,搜索用时 531 毫秒
1.
丝氨酸蛋白酶抑制剂(Serine protease inhibitor, Serpin)在昆虫Toll通路和PPO级联反应的防御机制中起着至关重要的作用。本研究利用现代生物信息学工具预测和分析了红火蚁Solenopsis invicta中Serpin家族的结构和功能多样性。染色体定位表明,红火蚁基因组中7个Serpin基因家族成员不均匀的分布在4条染色体上。结构域分析表明,SiSerpin蛋白具有Serpin基因的保守结构,即典型的反应中心环(Reactive central loop, RCL)结构与Serpin结构域,不同成员蛋白拥有多样化的基序。系统进化分析表明,红火蚁Serpin蛋白与其他的昆虫Serpin蛋白有较高亲缘关系,SiSerpin7与烟草天蛾Manduca sexta的Serpin3a亲缘关系最近,SiSerpin12与黄粉虫Tenebrio molitor Serpin55亲缘关系最近,SiSerpin13与烟草天蛾Serpin6亲缘关系最近,SiSerpin4与家蚕Serpin27亲缘关系最近。为了进一步明确红火蚁Serpin家族在绿僵菌Metarhizium侵染后的表达模式,用绿僵菌侵染不同体型的工蚁,荧光定量PCR(RT-qPCR)分析表明,红火蚁Serpin基因家族成员能在早期响应绿僵菌的侵染;除SiSerpin7基因外,大型和小型两种工蚁的表达模式存在较大的差异。结果表明红火蚁Serpin家族作为免疫调控蛋白,能够响应绿僵菌的侵染,且在红火蚁不同体型工蚁之间存在着不同的免疫调控模式。这些发现不仅为Serpins的功能分析提供了理论基础,而且有可能有助于绿僵菌作为一种有效的生防剂的开发。  相似文献   

2.
本研究在实验室条件下测定了金龟子绿僵菌M09、CQMa117和CQMa128三个菌株对红火蚁的侵染能力。结果表明在1.0×10~8孢子/mL浓度下M09、CQMa128和CQMa117菌株处理后10 d红火蚁的工蚁累计死亡率分别为73.3%、14.6%和55.5%;M09菌株对工蚁的LC50为3.50×106孢子/mL,8.0×107孢子/mL浓度处理LT50为4.35 d。对M09菌株侵染红火蚁幼虫和蛹的能力测定结果显示,1.0×10~8孢子/mL浓度处理后10 d该菌株对幼虫和蛹的累计侵染率为98.9%和100%,对幼虫和蛹LC50分别为6.34×10~4孢子/mL、1.01×10~4孢子/mL。以上研究证实金龟子绿僵菌M09菌株对红火蚁具较强的致病力,致死速度较快,可作为该蚁生物防治的候选菌株。  相似文献   

3.
在实验室条件下采用浸渍法测定了15株白僵菌Beauveria spp.,15株绿僵菌Metarhizium spp.和4株淡紫紫孢菌Purpureocillium lilacinum (Thom)对红火蚁Solenopsis invicta Buren工蚁的活性,并测定分析了高活性菌株对红火蚁工蚁的毒力。结果表明,以1.0×10^8孢子mL的浓度处理红火蚁工蚁后第10天,白僵菌HHY-B、LCM1、ZYSYE-Y2、Bb034、ZG5、Bb720、Bb040、CP728和淡紫紫孢菌LYC1菌株的活性较强,红火蚁工蚁的校正死亡率为84.70%~98.79%,僵虫率为70.61%~90.38%。红火蚁工蚁在接种不同浓度的高活性菌株后,随着孢子浓度的升高,红火蚁的累积校正死亡率和僵虫率增大,致死中时(LT50)缩短,第10天白僵菌ZYSYE-Y2、CP728、HHY-B、LCM1、ZG5、Bb040、Bb720、Bb034和淡紫紫孢菌LCM1菌株对红火蚁工蚁的LC50分别为1.16×10^5、1.49×10^5、2.27×10^5、2.28×10^5、2.32×10^5、3.79×10^5、4.94×10^5、8.47×10^5和3.90×10^6孢子/mL。当孢子浓度为1.0×10^7孢子/mL时,白僵菌HHY-B、CP728、ZG5和Bb040菌株处理的最终校正死亡率分别为91.54%、94.60%、91.23%和94.65%,僵虫率为82.51%、91.74%、85.43%和80.60%,致死中时(LT50)为4.22 d、4.07 d、3.72 d和3.68 d。综合分析表明,白僵菌HHY-B、CP728、ZG5和Bb040菌株对红火蚁工蚁具有较强的活性,可作为红火蚁生物防治的候选菌株  相似文献   

4.
研究了红火蚁工蚁感染绿僵菌后在蛹室的行为变化,以及健康工蚁对侵染蛹的行为保护机制.结果表明: 工蚁被绿僵菌侵染后,在蛹室的活动时间逐渐减少,由第1天的103.4 s降至第3天的38.5 s;而且育幼时间占蛹室活动时间的比例也下降,由第1天的13.6%降至第3天的3.5%.当蛹被绿僵菌侵染后,工蚁对侵染蛹的梳理总时间为对照组的5.3倍,每次梳理的平均持续时间为对照组的5.2倍.梳理行为能显著减少侵染蛹的体表分生孢子数量,在无工蚁、2只工蚁和10只工蚁存在条件下,蛹体表平均孢子数分别为103.1、51.6和31.3个.工蚁的存在能抑制蛹体表孢子的萌发,处理20 h后,无工蚁、2只工蚁和10只工蚁存在条件下,蛹体表孢子萌发率分别为95.1%、80.4%和59.9%.蛹的羽化率随着工蚁数量增加显著升高.红火蚁工蚁通过社会行为防御病原真菌侵染蛹的策略为种群的延续和发展提供了保障.  相似文献   

5.
白僵菌是最具防治害虫潜力的一类昆虫病原真菌。本研究测定了球孢白僵菌Beauveria bassiana 237菌株对红火蚁Solenopsis invicta的感染毒力,并探究了白僵菌侵染对红火蚁免疫相关酶活性及相关基因表达的影响。结果显示,该白僵菌菌株对红火蚁的毒力较强,在孢子悬浮液108孢子/mL浓度下,对红火蚁的致死中时间LT50为5.288±0.2014 d;在10^4~10^8孢子/mL的不同浓度处理下,红火蚁死亡率随孢子浓度的增加而显著增加。经计算,第4~10天致死中浓度LC50值由8.82×10^6孢子/mL降低到8.95×10^5孢子/mL。红火蚁被球孢白僵菌感染后,体内保护酶和解毒酶发生了不同程度的改变。其中保护酶类酚氧化酶(PO)的活性在白僵菌处理后的第12 h已出现抑制,而在第24 h、48 h、72 h时均显著高于对照;超氧化物歧化酶(SOD)活性在12 h时与对照无显著差异,但在24~48 h阶段酶活显著上升,之后下降;过氧化物酶(POD)在较早时段保持与对照无显著差异水平,至中后期48~72 h出现持续升高。解毒酶类混合功能氧化酶系(MFO)的活性在整个检测时间段内表现为抑制-上升-抑制-上升的波动状态;谷胱甘肽S-转移酶(GSTs)活性的变化与SOD相似,只在24~48 h阶段出现上升。白僵菌还导致红火蚁免疫信号通路Toll途径相关基因表达量变化。在处理后12 h,识别因子GNBP1、Spaetzle即被激活,维持上调-回调波动趋势;而信号传递因子Myd88、pelle在检测的12~72 h内基本处于被抑制状态,只有Myd88在48 h时表达量上升;转录因子Dorsal以及抗菌肽Defensin在12~24 h都已被显著激活,而在后续48~72 h被抑制。综上所述,球孢白僵菌237菌株通过调节红火蚁酶活以及免疫相关基因的表达量实现成功侵染和致病作用,具有很高的生防应用价值。  相似文献   

6.
在前期筛选已获得对红火蚁Solenopsis invicta Buren高效致病真菌罗伯茨绿僵菌Metarhizium robertsii AUGM47的基础上,为进一步明确病原真菌对寄主昆虫的侵染机制。本试验在室内条件下,以红火蚁工蚁为侵染对象,利用荧光显微镜和透射电镜观察了罗伯茨绿僵菌AUGM47侵染单元分生孢子在体表附着萌发、穿透和体内增殖的早期发育过程。结果表明,菌株AUGM47分生孢子在红火蚁体表可萌发并形成附着胞侵入,接种后12 h观察到萌发,在36 h内普遍出现穿透结构穿透体壁。接种后48 h为菌体在血腔内的增殖阶段。菌丝体在穿透表皮和体腔内增殖过程中伴随着机械压力和酶的活动。接种后96 h,观察到自噬现象,菌体通过自噬降解并回收细胞器,为从体内穿出的晚期发育过程提供物质基础。本研究对罗伯茨绿僵菌AUGM47分生孢子在红火蚁体外至体内的发育进程研究证实了菌株的高致病性,为红火蚁生防真菌菌种改良和后续开发利用奠定理论基础。  相似文献   

7.
【目的】本研究旨在分析红火蚁Solenopsis invicta毒腺细菌群落多样性,并与热带火蚁Solenopsis geminata和聚纹双刺猛蚁Diacamma rugosum比较毒腺细菌群落差异。【方法】采用Illumine Hiseq 2500测序平台对红火蚁(工蚁、有翅蚁和蚁后)、热带火蚁(工蚁)及聚纹双刺猛蚁(工蚁)毒腺细菌群落16S rRNA基因V3-V4区测序,基于测序数据进行生物信息学分析。【结果】变形菌门(Proteobacteria)在红火蚁工蚁、有翅蚁和蚁后以及热带火蚁工蚁毒腺中占优势,而厚壁菌门(Firmicutes)在聚纹双刺猛蚁工蚁毒腺中占优势。与红火蚁工蚁和有翅蚁相比,柔壁菌门(Tenericutes)在红火蚁蚁后毒腺中更丰富。广州红火蚁蚁后毒腺中假单胞杆菌Pseudomonas相对丰度显著高于其在有翅蚁及工蚁中的。螺原体Spiroplasma相对丰度在热带火蚁毒腺中显著高于在聚纹双刺猛蚁工蚁毒腺中的。毒腺中细菌多样性分析发现,芽孢杆菌属Bacillus和乳酸杆菌属Lactobacillus在广西红火蚁工蚁中的相对丰度显著高于在广州红火蚁工蚁中的。然而,乳酸杆菌属细菌在聚纹双刺猛蚁工蚁毒腺中的相对丰度显著高于广西的热带火蚁工蚁毒腺中的。【结论】毒腺细菌组成和多样性在3种不同种类蚂蚁工蚁和红火蚁不同品级中存在差异。  相似文献   

8.
莱氏绿僵菌对斜纹夜蛾的致病力及生理效应   总被引:1,自引:0,他引:1  
【目的】测定莱氏绿僵菌Metarhizium rileyi Nr5772菌株对斜纹夜蛾Spodoptera litura幼虫及蛹的致病能力,研究莱氏绿僵菌侵染后在寄主体内的发育及对寄主的生理效应,探讨莱氏绿僵菌的致病机制。【方法】采用浸渍法测定莱氏绿僵菌孢子对斜纹夜蛾3-6龄幼虫及蛹的致死中浓度(LC_(50))和致死中时(LT_(50))。采用微量注射法接种莱氏绿僵菌虫菌体,在不同时间后采集斜纹夜蛾幼虫血淋巴,在显微镜下检查虫菌体的数量、形态及寄主血细胞数量,并用酶标仪测定寄主血淋巴酚氧化酶(Phenoloxidase,PO)的活性。【结果】M.rileyi孢子对3龄斜纹夜蛾幼虫毒力最强,10 d后LC_(50)=3.12×10~6个孢子/mL,龄期越大,致病力越低;孢子浓度为5×10~9个/mL时,对3龄幼虫的致死速度最快,LT_(50)=4.55 d,致死速度随龄期的增大和浓度的降低逐渐减缓;M.rileyi孢子对蛹的致病力远低于对幼虫的致病力。注射接种虫菌体后,64 h内,虫菌体数量在寄主血腔中以幂函数的形式增长,寄主的血细胞数量没有明显的变化;在侵染初期(接种后44 h内),血淋巴PO活性正常;在侵染后期,虫菌体数量不再增加(55-64 h后),逐渐转化为菌丝体,并快速杀死寄主,PO活性受到抑制。【结论】莱氏绿僵菌Nr5772菌株对斜纹夜蛾幼虫有较强的致病力,应在害虫低龄期应用;莱氏绿僵菌在侵染初期对寄主血细胞和血淋巴PO无影响,后期则完全抑制PO活性。  相似文献   

9.
【目的】为了探讨入侵火蚁在我国成功定殖及其之间的竞争机制。【方法】运用行为学方法研究红火蚁Solenopsis invicta(Buren)和热带火蚁Solenopsis geminata(Fabricius)在个体水平和群体水平上的攻击性、攻击手段及合作能力。【结果】一对一攻击试验中,红火蚁和热带火蚁之间攻击级别多集中在3级,两种入侵蚂蚁间以相互威胁为主;红火蚁大型工蚁与热带火蚁兵、工蚁间最为好斗,其攻击级别达到4级的比例最高,分别为33.04%、37.92%。热带火蚁兵蚁与各型红火蚁间攻击强度差异不显著;热带火蚁工蚁与红火蚁小型工蚁之间的攻击性最强,其攻击性(3.49)显著高于热带火蚁工蚁与红火蚁大、中型工蚁的攻击性(3.32和2.97)。在攻击手段上,3级打斗时各型红火蚁更倾向以物理攻击主动威胁热带火蚁,而热带火蚁兵、工蚁会采取多种方式主动攻击红火蚁,双方皆以躲避应对为主;4级打斗时两种火蚁主要以混合攻击为主动或应对手段。群体攻击试验显示,红火蚁群体间攻击强度和合作性会随着群体数量的增加而显著增加,热带火蚁合作性较差,其群体对抗红火蚁的优势仅仅是由于个体数量的增加。【结论】红火蚁比热带火蚁具有更强的竞争优势。研究结果为入侵蚂蚁间不对称竞争机制和长期群落替代的内在原因提供理论基础。  相似文献   

10.
红火蚁Solenopsis invicta是世界上最具破坏力和威胁性的入侵检疫害虫之一,对农林业生产安全、公共设施以及人体健康都造成了巨大影响。为筛选对红火蚁有致病性的病原真菌,本研究通过组织分离法对自然罹病的红火蚁进行致病菌分离,结合病原形态学及分子生物学的方法对病原真菌进行鉴定并采用喷雾法测定了病原真菌对红火蚁的致病力。结果表明:从罹病红火蚁上分离出3株病原真菌HHYSFJ01、HHYSFJ02和HHYSFJ05,分别为红绶曲霉Aspergillus nomius、淡紫拟青霉Purpureocillium lilacinum和球孢白僵菌Beauveria bassiana。致病性测定,这3株病原菌对红火蚁均具有较强的致病性,且3株病原菌致病性间差异显著。经1.0×10^8孢子/mL孢子悬浮液喷雾处理红火蚁10 d后,球孢白僵菌菌株HHYSFJ05的致病性最强,红火蚁工蚁的校正死亡率为84.71%,LT50为4.67 d;红绶曲霉菌株HHYSFJ01和淡紫拟青霉菌株HHYSFJ02次之,红火蚁工蚁的校正死亡率分别为78.82%和73.29%,LT50分别为4.99 d和5.20 d。  相似文献   

11.
[背景]红火蚁是一种危险性入侵生物,虫生真菌对其防治效果会受到外界环境因子的影响。[方法]应用致病力测定的方法研究了不同剂量金龟子绿僵菌M09对红火蚁的毒力,同时研究了含水量和土壤类型对绿僵菌毒力的影响。[结果]红火蚁的死亡率与金龟子绿僵菌的剂量呈正相关,处理4d后LG50为0.37g。金龟子绿僵菌在砂土、壤土和粘土中对红火蚁的致死率均与对照差异显著,其中在砂土中的毒力最强。此外,在不同含水量的土壤中,金龟子绿僵菌的致死率也不相同(P〈0.01)。[结论与意义]土壤类型和土壤湿度会显著影响金龟子绿僵菌M09对红火蚁的防治效果。选择高湿和砂土类型的土壤施用金龟子绿僵菌M09可以达到较好的效果。  相似文献   

12.
Oligonucleotide primer pairs were designed to unique areas of the small subunit (16S) rRNA gene of Thelohania solenopsae and a region of the Gp-9 gene of Solenopsis invicta. Multiplex PCR resulted in sensitive and specific detection of T. solenopsae infection of S. invicta. The T. solenopsae-specific primer pair only amplified DNA from T. solenopsae and T. solenopsae-infected S. invicta. This primer pair did not produce any amplification products from DNA preparations from uninfected S. invicta, seven additional species of microsporidia (including Vairimorpha invictae), or Mattesia spp. The Gp-9-specific primers recognized and amplified DNA from Solenopsis xyloni, Solenopsis richteri, Solenopsis geminata, the invicta/richteri hybrid, and monogyne and polygyne S. invicta, but not from T. solenopsae, and, as such, served as a positive control verifying successful DNA preparation. Multiplex PCR detected T. solenopsae in worker fire ants infected with as few as 5000 spores. Furthermore, multiplex PCR detected T. solenopsae in all developmental stages of S. invicta. However, detection could be made more sensitive by using only the T. solenopsae-specific primer pair; ants infected with as few as 10 spores were able to be discerned. Multiplex PCR detection of T. solenopsae offers the advantages of a positive control, a single PCR amplification, detection of all developmental stages, and increased sensitivity and specificity compared with microscopy.  相似文献   

13.
Red imported fire ant, Solenopsis invicta, colonies were infected horizontally by introducing live brood (mainly larvae and pupae) infected with Thelohania solenopsae. Live, infected brood introduced into uninfected colonies were adopted and raised to adulthood instead of being executed by the recipient colony. Introductions of infected larvae with uninfected pupae, which eclose into adult worker caste fire ants, resulted in an 80% infection rate of the inoculated colonies. Infections from introductions of infected pupae with uninfected larvae resulted in a 37.5% infection of inoculated colonies. Infections were also detected in 11.6 and 3.7% of the adult worker caste ants that eclosed from uninfected large larvae and pupae, respectively, that were held with infected adult workers. Microscopic examination of infected brood revealed sporoblasts and large numbers of spores of T. solenopsae in S. invicta pupae.  相似文献   

14.
Expression analysis of the genes involved in germination, conidiogenisis and pathogenesis of Metarhizium anisopliae during its saprophytic and pathogenic life stages can help plan strategies to increase its efficacy as a biological control agent. We quantified relative expression levels of the nitrogen response regulator gene (nrr1) and a G-protein regulator of genes involved in conidiogenesis (cag8), using an RT-qPCR assay. Comparisons were made between M. anisopliae var. anisopliae and M. anisopliae var. acridum during germination and conidiogenesis and at different stages of pathogenesis. The cag8 gene was repressed during germination and induced during conidial development and the pathogenic phase, and the nrr1 gene was induced during germination, conidiogenesis and the pathogenic phase. Both genes were more expressed in M. anisopliae var. anisopliae, demonstrating that different varieties of M. anisopliae differ in activation of genes linked to virulence for certain environments and hosts. This suggests that differences among these varieties in the ability to adapt could be attributed not only to specific genomic regions and genes, but also to differential gene expression in this fungus, modulating its ability to respond to environmental stimuli.  相似文献   

15.
Lipases secreted by Metarhizium anisopliae, an important biological control agent, could potentially be involved in the host infection process. Here, we present the activity profile during the host infection process and the effect of lipase activity inhibitor ebelactone B on infection. The previous treatment of spores with lipase activity inhibitor, ebelactone B, completely inhibited lipolytic activity and prevented the infection of the Rhipicephalus (Boophilus) microplus host. The results herein presented prove, for the first time, the importance of lipase activity in M. anisopliae host infection process. The filamentous fungus Metarhizium anisopliae is one of the most important and studied biological agents for the control of several arthropod pests, including the cattle tick Rhipicephalus (Boophilus) microplus. Lipases secreted by M. anisopliae could potentially be involved in the host infection process. This work presents the activity profile during the host infection process and the effect of lipase activity inhibitor ebelactone B on infection. During the course of tick exposure to spores (6-120 h) lipase activity increased from 0.03 ± 0.00 U to 0.312 ± 0.068 U using rho NP palmitate as substrate. In zymograms, bands of lipase activity were detected in ticks treated with spores without inhibitor. The previous treatment of spores with lipase activity inhibitor, ebelactone B, completely inhibited lipolytic activity, at all times specified, and prevented the infection of the R. microplus host. Spores treated with the inhibitor did not germinate on the tick, although this effect was not observed in the culture medium. The results herein presented prove, for the first time, the importance of lipase activity in M. anisopliae host infection process.  相似文献   

16.
为探明红火蚁Solenopsis invicta工蚁对颜色信号的选择与利用,本研究测定了不同颜色色卡对工蚁的趋向行为以及不同颜色饵料对工蚁觅食行为的影响,以期为红火蚁的高效监测与防控提供重要基础。结果表明颜色显著影响了红火蚁工蚁的趋向行为,黑色对工蚁的引诱率最高,可达32%;黄色对工蚁的引诱率最低,仅为7%。研究也发现不同颜色的饵料显著影响了红火蚁工蚁的觅食。在5 min时间内,工蚁在黄色、绿色以及蓝色饵料上觅食的数量最多,显著高于在紫色和黑色上饵料的觅食工蚁数;工蚁对红色、橙色、黄色、绿色、蓝色饵料的搬运量最大,显著高于紫色与黑色的饵料。综上,红火蚁工蚁可以识别与利用颜色信号,在制备红火蚁监测与防控饵剂时,可以考虑将饵剂染色红、橙、黄、绿、蓝等反射波长较长的颜色,以便工蚁能快速定位到饵剂并搬运更多的饵剂到蚁巢中。  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