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1.
Thioredoxin peroxidase (Tpx), also named peroxiredoxin (Prx), is an important peroxidase that can protect organisms against stressful environments. AccTpx4, a 1-Cys thioredoxin peroxidase gene from the Chinese honey bee Apis cerana cerana, was cloned and characterized. The AccTpx4 gene encodes a protein that is predicted to contain the conserved PVCTTE motif from 1-Cys peroxiredoxin. Quantitative real-time PCR (Q-PCR) and Western blotting revealed that AccTpx4 was induced by various oxidative stresses, such as cold, heat, insecticides, H2O2, and HgCl2. The in vivo peroxidase activity assay showed that recombinant AccTpx4 protein could efficiently degrade H2O2 in the presence of DL-dithiothreitol (DTT). In addition, disc fusion assays revealed that AccTpx4 could function to protect cells against oxidative stresses. These results indicate that AccTpx4 plays an important role in oxidative stress responses and may contribute to the conservation of honeybees.  相似文献   

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The galectins are a family of lectins that play important roles in development, immunity, and the regulation of cellular responses. Much research has focused on the functions of galectins in mammals, though less in insects. Here, we identified the AccGalectin1 gene in Apis cerana cerana for the first time and explored its functions. The open reading frame of AccGalectin1 is 1449 base pairs and encodes a 482-amino-acid protein. AccGalectin1 expression was high during the transition between developmental stages and was high in the head, thorax, and epidermis compared with its levels in other tissues. In addition, the expression of AccGalectin1 was induced by several adverse stresses, including both abiotic and biotic stresses. A disk diffusion assay of recombinant AccGalectin1 protein revealed possible roles in protecting cells from oxidative stress. Furthermore, the expression levels of multiple oxidative genes (AccCAT, AccTpx1, AccTrx2, etc) were increased after AccGalectin1 was knocked down in Apis cerana cerana using RNA interference. We also observed that the malondialdehyde content in the AccGalectin1-silenced bees was higher than that in the control bees, while the antioxidant enzymatic activities of superoxide dismutase and peroxidase were lower. Considering these results, we suggest that AccGalectin1 may be indispensable for protecting honeybees from biotic and abiotic damage by participating in the oxidative resistance response and the immune response. These results may provide insight into the precise functions of galectins in mammals and other insects.  相似文献   

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Background

Hemolymph plays key roles in honey bee molecule transport, immune defense, and in monitoring the physiological condition. There is a lack of knowledge regarding how the proteome achieves these biological missions for both the western and eastern honey bees (Apis mellifera and Apis cerana). A time-resolved proteome was compared using two-dimensional electrophoresis-based proteomics to reveal the mechanistic differences by analysis of hemolymph proteome changes between the worker bees of two bee species during the larval to pupal stages.

Results

The brood body weight of Apis mellifera was significantly heavier than that of Apis cerana at each developmental stage. Significantly, different protein expression patterns and metabolic pathways were observed in 74 proteins (166 spots) that were differentially abundant between the two bee species. The function of hemolymph in energy storage, odor communication, and antioxidation is of equal importance for the western and eastern bees, indicated by the enhanced expression of different protein species. However, stronger expression of protein folding, cytoskeletal and developmental proteins, and more highly activated energy producing pathways in western bees suggests that the different bee species have developed unique strategies to match their specific physiology using hemolymph to deliver nutrients and in immune defense.

Conclusions

Our disparate findings constitute a proof-of-concept of molecular details that the ecologically shaped different physiological conditions of different bee species match with the hemolymph proteome during the brood stage. This also provides a starting point for future research on the specific hemolymph proteins or pathways related to the differential phenotypes or physiology.

Electronic supplementary material

The online version of this article (doi:10.1186/1471-2164-15-563) contains supplementary material, which is available to authorized users.  相似文献   

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【目的】探索药用昆虫中华蜂(Apis cerana cerana Fabricius)体内可培养放线菌的分离方法,研究其物种多样性及抗菌活性,挖掘更多微生物资源。【方法】选用7种分离培养基对中华蜂样品体内放线菌进行分离;通过采用16S rRNA PCR-RFLP和16S rRNA基因序列分析方法研究其多样性;选用4种致病菌对菌株进行抗菌活性初探。【结果】共分离得到180株放线菌,根据菌落的形态和细胞特征观察结果,从中选取84株作为代表菌株,其分属于3个目、4个科中的4个属,其中6株为潜在新种;最适的表面消毒方法:浓度为0.2%的Cl O2(二氧化氯)作为消毒剂,作用60 s;拮抗实验显示,31.0%、48.8%、27.4%、16.7%的代表菌株分别对大肠杆菌、枯草芽孢杆菌、玉米弯孢病菌、西瓜枯萎病菌有不同程度的抗菌活性,71.4%的代表菌株对至少一种病原菌有拮抗作用。【结论】分离方法的选择对昆虫体内放线菌的分离效果影响较大;中华蜂体内放线菌具有丰富的多样性,展现出很好的抗菌活性,表明其在发现新型生物活性物质中具有很大的潜力。  相似文献   

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The mitogen-activated protein kinase (MAPK) cascade pathway plays an important role in regulating stress responses. The function of the c-Jun NH2-terminal kinase (JNK), a component of the MAPK cascade pathway, in Apis cerana cerana (Acc) remains unclear. Here, JNK was isolated and identified from Acc. Bioinformatics analyses revealed there is a typical serine/threonine protein kinase catalytic domain in the AccJNK protein. An expression profile analysis showed that AccJNK was significantly induced by pesticide treatments. To further explore the functional mechanisms of AccJNK, a yeast 2-hybrid screen was performed, activator protein-1 (AP-1) was screened as the interaction partner of AccJNK, and the interaction relationship was further verified by pull-down assay. Quantitative real-time polymerase chain reaction showed the expression pattern of AccAP-1 was similar to that of AccJNK. After a knockdown of AccJNK or AccAP-1 by RNA interference, the survival rate of Acc after pesticide treatments increased. Additionally, the expression levels of antioxidant-related genes and the activities of antioxidant enzymes increased, suggesting that the knockdown of AccJNK or AccAP-1 increased the antioxidant capacity of bees. Our study revealed that the JNK-mediated MAPK pathway responds to pesticide stress by altering the antioxidant capacity of Acc.  相似文献   

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Background

Apis mellifera and Apis cerana are two sibling species of Apidae. Apis cerana is adept at collecting sporadic nectar in mountain and forest region and exhibits stiffer hardiness and acarid resistance as a result of natural selection, whereas Apis mellifera has the advantage of producing royal jelly. To identify differentially expressed genes (DEGs) that affect the development of hypopharyngeal gland (HG) and/or the secretion of royal jelly between these two honeybee species, we performed a digital gene expression (DGE) analysis of the HGs of these two species at three developmental stages (newly emerged worker, nurse and forager).

Results

Twelve DGE-tag libraries were constructed and sequenced using the total RNA extracted from the HGs of newly emerged workers, nurses, and foragers of Apis mellifera and Apis cerana. Finally, a total of 1482 genes in Apis mellifera and 1313 in Apis cerana were found to exhibit an expression difference among the three developmental stages. A total of 1417 DEGs were identified between these two species. Of these, 623, 1072, and 462 genes showed an expression difference at the newly emerged worker, nurse, and forager stages, respectively. The nurse stage exhibited the highest number of DEGs between these two species and most of these were found to be up-regulated in Apis mellifera. These results suggest that the higher yield of royal jelly in Apis mellifera may be due to the higher expression level of these DEGs.

Conclusions

In this study, we investigated the DEGs between the HGs of two sibling honeybee species (Apis mellifera and Apis cerana). Our results indicated that the gene expression difference was associated with the difference in the royal jelly yield between these two species. These results provide an important clue for clarifying the mechanisms underlying hypopharyngeal gland development and the production of royal jelly.

Electronic supplementary material

The online version of this article (doi:10.1186/1471-2164-15-744) contains supplementary material, which is available to authorized users.  相似文献   

9.

Background

Long non-coding RNAs (lncRNAs) are a class of RNAs that do not encode proteins. Recently, lncRNAs have gained special attention for their roles in various biological process and diseases.

Results

In an attempt to identify long intergenic non-coding RNAs (lincRNAs) and their possible involvement in honey bee development and diseases, we analyzed RNA-seq datasets generated from Asian honey bee (Apis cerana) and western honey bee (Apis mellifera). We identified 2470 lincRNAs with an average length of 1011 bp from A. cerana and 1514 lincRNAs with an average length of 790 bp in A. mellifera. Comparative analysis revealed that 5 % of the total lincRNAs derived from both species are unique in each species. Our comparative digital gene expression analysis revealed a high degree of tissue-specific expression among the seven major tissues of honey bee, different from mRNA expression patterns. A total of 863 (57 %) and 464 (18 %) lincRNAs showed tissue-dependent expression in A. mellifera and A. cerana, respectively, most preferentially in ovary and fat body tissues. Importantly, we identified 11 lincRNAs that are specifically regulated upon viral infection in honey bees, and 10 of them appear to play roles during infection with various viruses.

Conclusions

This study provides the first comprehensive set of lincRNAs for honey bees and opens the door to discover lincRNAs associated with biological and hormone signaling pathways as well as various diseases of honey bee.

Electronic supplementary material

The online version of this article (doi:10.1186/s12864-015-1868-7) contains supplementary material, which is available to authorized users.  相似文献   

10.
低温导致中华蜜蜂后翅翅脉的新变异   总被引:1,自引:0,他引:1  
周冰峰  朱翔杰  李月 《生态学报》2011,31(5):1387-1392
在封盖发育期,将中华蜜蜂Apis cerana cerana封盖子放入24℃低温环境中分别处理24、48、72 h,再恢复到正常的发育温度35℃至羽化,或将封盖子放在30℃低温中培养至羽化,发现羽化后的蜜蜂后翅翅脉发生明显变异。发现翅脉变异有3种类型,翅脉增加、翅脉突出和翅脉缺失。后翅翅脉增加的变异只发现一种,基室、缘室共有的径分脉与基室、盘室共有的中脉之间,新增径中横脉。新增的径中横脉发生的程度不同,有的在径分脉和中脉相对的位置相向伸出,有的形成完整的新脉,新增的径中横脉与原径中横脉相似,在末端均有"弱化点"。由于原有径中横脉较短,一直忽略其存在,这次径中横脉的确定,可以判定原来公认的"中脉分叉"应分别是径分脉和中脉延伸出来的两条翅脉。后翅突出的变异有2种,中脉向基室突出,径分脉向基室突出。翅脉突出的程度不同,有的略突出,有的明显突出,有的伸出翅脉较长。中脉突出均发生在中脉的转折点上,且此类翅脉变异,仅发生在雄蜂样本中,在工蜂样本中还未见。后翅翅脉缺失的变异有2种,发生在肘臀横脉和中脉。肘臀横脉"弱化点"处缺失。将中华蜜蜂雄蜂封盖子放入低温30℃恒温培养箱中发育,发现2个羽化的雄蜂样本发生肘臀横脉在"弱化点"处缺失。中脉向盘室伸出的部分发生缺失。翅脉缺失的程度不同,有的明显缩短,有的仅存痕迹,有的缺失大部分或完全缺失。中脉向盘室伸出的部分是东方蜜蜂Apis cerana区别于西方蜜蜂Apis mellifera的主要形态特征之一,如果东方蜜蜂这段翅脉全部缺失,此部位的形态与西方蜜蜂完全相同。这意味着这个翅脉作为区分东方蜜蜂和西方蜜蜂的翅脉特征将面临挑战。对蜜蜂种质资源鉴定,蜜蜂的系统发育和进化生物学等领域的研究将具有重要影响。温度影响翅脉发育的深入研究,为研究蜜蜂翅脉发育过程,揭示翅脉发育调控机制,以及蜜蜂发育的温度适应生理机制提供一个新思路。  相似文献   

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锌指蛋白(Zinc finger proteins, ZFPs)是一类在真核生物体内广泛分布的蛋白质。锌指蛋白作为一类转录因子,它能够调控基因的表达和细胞的分化,最近的研究显示其在动植物抗逆方面也发挥着重要作用。本研究对中华蜜蜂Apis cerana cerana ZFP37的蛋白结构进行了预测分析,并通过qRT-PCR分析了中华蜜蜂在遭受高温胁迫时ZFP37的表达情况,进一步了解锌指蛋白在中华蜜蜂应对热胁迫过程中的作用。结果显示,中华蜜蜂ZFP37可编码123个氨基酸,蛋白分子量为13.7 kDa,无跨膜结构。氨基酸同源序列比对结果表明,中华蜜蜂ZFP37序列与蜜蜂科昆虫的相似性最高,与其他膜翅目昆虫的相似性存在差异。基因的表达模式显示,ZFP37在高温下表达升高,此外,胁迫时间的增加也可导致ZFP37表达的升高。这些结果表明ZFP37对于中华蜜蜂应对热应激有重要的生物学意义。  相似文献   

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Background

The honey bee is an important model system for increasing understanding of molecular and neural mechanisms underlying social behaviors relevant to the agricultural industry and basic science. The western honey bee, Apis mellifera, has served as a model species, and its genome sequence has been published. In contrast, the genome of the Asian honey bee, Apis cerana, has not yet been sequenced. A. cerana has been raised in Asian countries for thousands of years and has brought considerable economic benefits to the apicultural industry. A cerana has divergent biological traits compared to A. mellifera and it has played a key role in maintaining biodiversity in eastern and southern Asia. Here we report the first whole genome sequence of A. cerana.

Results

Using de novo assembly methods, we produced a 238 Mbp draft of the A. cerana genome and generated 10,651 genes. A.cerana-specific genes were analyzed to better understand the novel characteristics of this honey bee species. Seventy-two percent of the A. cerana-specific genes had more than one GO term, and 1,696 enzymes were categorized into 125 pathways. Genes involved in chemoreception and immunity were carefully identified and compared to those from other sequenced insect models. These included 10 gustatory receptors, 119 odorant receptors, 10 ionotropic receptors, and 160 immune-related genes.

Conclusions

This first report of the whole genome sequence of A. cerana provides resources for comparative sociogenomics, especially in the field of social insect communication. These important tools will contribute to a better understanding of the complex behaviors and natural biology of the Asian honey bee and to anticipate its future evolutionary trajectory.

Electronic supplementary material

The online version of this article (doi:10.1186/1471-2164-16-1) contains supplementary material, which is available to authorized users.  相似文献   

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【目的】蜜蜂球囊菌(Ascosphaera apis,简称球囊菌)专性侵染蜜蜂幼虫而导致白垩病,危害蜜蜂健康和养蜂生产。本研究旨在探究中华蜜蜂(Apis cerana cerana,简称中蜂) 6日龄幼虫响应球囊菌胁迫的环状RNA(circular RNA,circRNA)差异表达谱及差异表达circRNA (differentially expressed circRNA,DEcircRNA)在宿主胁迫应答中的潜在功能。【方法】利用去除线性RNA的circRNA-seq技术对正常和球囊菌侵染的中蜂6日龄幼虫肠道(AcCK和AcT)进行测序。利用find_circ软件鉴定circRNA,统计circRNA的长度和环化类型。根据|log_2(Fold change)|≥1和P≤0.05的标准筛选DEcircRNA。将DEcircRNA的来源基因比对Gene ontology (GO)数据库和Kyoto Encyclopedia of Genes and Genomes (KEGG)数据库,从而获得功能及通路(pathway)注释。随机挑选3个DEcircRNA进行RT-qPCR验证。【结果】AcCK和AcT的circRNA-seq分别得到76342570和68269362条原始读段(raw reads),经严格质控得到74524108和66974392条有效读段(clean reads),Q30分别为92.75%和94%,GC含量分别为54.31%和54.90%。比对上东方蜜蜂(Apis cerana)参考基因组的短序列读段(anchor reads)共计23648400条。AcCK和AcT中分别鉴定到805和702个circRNA,长度均介于201–1000 nt,数量最多的环化类型均为已注释外显子circRNA,但分布在不同长度、不同环化类型的circRNA数量存在差异。AcCK vs AcT比较组共有494个DEcircRNA,包括257个上调circRNA和237个下调circRNA;上调和下调幅度最大的circRNA分别为novel_circ_000123和novel_circ_000726。上述DEcircRNA的来源基因可注释到11条生物学进程相关条目,9条分子功能相关条目,9条细胞组分相关条目,以及73条通路。进一步分析发现,部分DEcircRNA的来源基因注释到7条细胞免疫通路和3条体液免疫通路。【结论】中蜂6日龄幼虫响应球囊菌胁迫的过程中可能通过改变分布在不同长度和环化类型的circRNA数量,以及特异性表达一些circRNA和调节部分circRNA的表达量对病原产生应答;novel_circ_000027、novel_circ_000127、novel_circ_000312等DEcircRNA在宿主的胁迫应答过程中可能通过调控氧化磷酸化、细胞和体液免疫等通路发挥特殊作用。研究结果为深入理解中蜂幼虫对球囊菌的胁迫应答机制及二者的相互作用机制提供了新见解。  相似文献   

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Trypanosoma cruzi: Oxidative stress induces arginine kinase expression   总被引:1,自引:0,他引:1  
Trypanosoma cruzi arginine kinase is a key enzyme in cell energy management and is also involved in pH and nutritional stress response mechanisms. T. cruzi epimastigotes treated with hydrogen peroxide presented a time-dependent increase in arginine kinase expression, up to 10-fold, when compared with untreated parasites. Among other oxidative stress-generating compounds tested, only nifurtimox produced more than 2-fold increase in arginine kinase expression. Moreover, parasites overexpressing arginine kinase showed significantly increased survival capability during hydrogen peroxide exposure. These findings suggest the participation of arginine kinase in oxidative stress response systems.  相似文献   

19.
中华蜜蜂幼虫肠道响应球囊菌胁迫的microRNA应答分析   总被引:3,自引:0,他引:3  
【目的】蜜蜂球囊菌(Ascosphaera apis,简称球囊菌)是一种能够侵染中华蜜蜂(Apis cerana cerana,简称中蜂)幼虫的致死性真菌病原。微小RNA(microRNA,miRNA)可通过在转录后水平靶向抑制或降解mRNA而参与宿主与病原互作过程。本研究旨在对球囊菌胁迫的中蜂6日龄幼虫肠道的差异表达miRNA(DEmiRNA)及其靶基因进行深入分析,进而揭示DEmiRNA在中蜂响应球囊菌胁迫应答过程中的作用。【方法】利用Illumina MiSeq平台对正常及球囊菌胁迫的中蜂6日龄幼虫肠道(AcCK和AcT)进行测序,通过相关生物信息学软件预测DEmiRNA及其靶基因。通过Blast将靶基因注释到GO和KEGG数据库。利用Cytoscape软件构建DEmiRNA与其靶mRNA的调控网络。通过Stem-loop RT-PCR和qPCR验证测序数据的可靠性。【结果】本研究共预测出537个miRNA,其长度分布介于16–35 nt之间,且不同长度的miRNA首位碱基偏向性差异明显。通过Stem-loop RT-PCR证实了10个novel miRNA的表达。AcCK vs AcT比较组共有54个DEmiRNA,包含31个上调和23个下调miRNA,可分别靶向结合6170和8199个靶基因。GO分类结果显示上调和下调miRNA的靶基因分别涉及47和47个条目,富集基因数最多的皆为结合细胞进程和催化活性。KEGG代谢通路(pathway)富集分析结果表明上调和下调miRNA的靶基因分别富集在134和126条pathway,富集基因数最多的均为内吞作用和内质网中的蛋白质加工。调控网络分析结果表明,DEmiRNA及其靶mRNA形成十分复杂的调控关系;31个DEmiRNA可靶向结合51个与泛素介导的蛋白水解相关的mRNA,18个DEmiRNA可靶向结合14个与Jak-STAT信号通路相关的mRNA;miR-1277-x、miR-26-x、miR-27-y、miR-30-x、miR-6052-x等16个miRNA共同参与了上述两条免疫通路的调控。最后,随机挑选3个DEmiRNA进行qPCR验证,结果证明了测序数据的可靠性。【结论】本研究提供了中蜂幼虫肠道在球囊菌胁迫后期的miRNA的表达谱和差异表达信息,揭示了球囊菌与宿主之间在miRNA组学水平存在复杂的互作。miR-6052-x和miR-1277-x作为调控网络的核心可能通过影响细胞凋亡参与宿主的免疫防御,miR-26-x和miR-30-x可能通过调控Jak-STAT信号通路参与宿主的胁迫应答。本研究筛选出的关键DEmiRNA有望作为治疗白垩病的分子靶标。  相似文献   

20.
吴国火  崔林  王梦馨  李红亮  韩宝瑜 《生态学报》2020,40(12):4024-4031
我国茶园面积约占全球的60%,茶树花已成为我国主要植物蜜源之一,尤其在秋冬季。茶树花招引蜜蜂的机理尚不清晰,遂以中华蜜蜂Apis cerana cerana为试虫,以8个国家级良种茶树的鲜花、茶树花主要香气组分和茶鲜叶重要挥发性组分为味源,用Y形嗅觉仪进行行为测定,结果表明:①在0.25—5.00 g质量范围内,不仅8个良种茶树的鲜花明显引诱该蜂,而且每种茶树花质量为某一确定值时,其引诱的蜂数与CK(洁净空气)引诱的蜂数差异显著(P<0.05);②在茶树花27个主要香气组分中,发现苯乙酮(10-6 g/mL)、芳樟醇(10-6、10-2 g/mL)、莰烯(10-4 g/mL)、顺-3-己烯-1-醇(10-10 g/mL)、α-法尼烯(10-6、10-4、10-2 g/mL)、癸醛(10-6 g/mL)、β-紫罗兰酮(10-6 g/mL)、亚油酸(10-4...  相似文献   

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