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1.
为优化有效分离褐色橘蚜Toxoptera citricida全蛋白的双向电泳体系,比较了饱和酚抽提法、三氯乙酸(trichloroacetic acid,TCA)/丙酮沉淀法、直接裂解液法和Tris-HCl法4种蛋白提取方法,以及蛋白上样量、聚焦条件和固相p H梯度(immobilized p H gradient,IPG)胶条对褐色橘蚜全蛋白双向电泳的影响。结果表明,TCA/丙酮沉淀法和直接裂解液法获得的全蛋白浓度分别为4.25、4.03μg/μL,显著高于饱和酚抽提法和Tris-HCl法,且TCA/丙酮沉淀法所提取的蛋白种类丰富度最高。采用TCA/丙酮沉淀法获得全蛋白,当上样量为100μg时,所得蛋白质点多、分辨率高、背景清晰,除盐3 h,等电聚焦量45 000 V·h,并选用p H 3~10非线性IPG胶条时,双向电泳图谱中横向拖尾现象少,蛋白点相对清晰,分布均匀。表明所建立的双向电泳体系,结合银染,可从褐色橘蚜全蛋白中识别出1 264个蛋白点,且重复性研究匹配率高,可用于褐色橘蚜蛋白质组学研究。  相似文献   

2.
以来源于野生乌拉尔甘草的愈伤组织为试材,对甘草愈伤组织蛋白质的提取、SDS-PAGE电泳、上样量、染色方法等关键步骤进行了优化,结果表明:采用改良丙酮法可提高提取液中蛋白质的含量及单向电泳图谱的分辨率;17 cm IPG胶条上样量为450μg时,采用银染法提高了双向电泳图谱的分辨率及分离效果,获得了1 132个蛋白点。建立了一套适用于乌拉尔甘草的愈伤组织蛋白质组分析的双向电泳方法。  相似文献   

3.
李贞彪  王军节  王鹏 《植物保护》2019,45(3):138-144
为筛选出一套适用于双向电泳分析的链格孢菌蛋白的提取方法,以该菌为研究材料,首先采用TCA-丙酮法、磷酸-TCA-丙酮法、SDS提取法和TCA/丙酮-SDS/酚抽提法分别提取菌丝蛋白质,然后进行蛋白质浓度的测定和单向SDS-PAGE试验,并建立双向电泳体系。结果表明:TCA/丙酮-SDS/酚抽提法所获得的蛋白质浓度为15.9 mg/mL,分别是其他三种方法所得蛋白浓度的2.64、4.61和1.43倍;SDS-PAGE图谱中形成的条带数目最多、丰度最好;所获得的2-DE图谱背景清晰干净,无明显的横纵条纹,分辨率高,可辨别的蛋白质点数为1 138个,是TCA-丙酮法所分离蛋白点数的1.89倍。由此可知,TCA/丙酮-SDS/酚抽提法为链格孢菌蛋白提取的最优方法,该方法所提取的蛋白质适用于双向电泳分析及后续的蛋白质组学研究。  相似文献   

4.
豆蚜Aphis craccivora、豌豆蚜Acyrthosiphon pisum和豌豆修尾蚜Megoura crassicauda是为害豆科作物的主要害虫。南方小花蝽Orius strigicollis是重要捕食性食蚜天敌,广泛分布于我国南方。为明确南方小花蝽对豆科作物上3种蚜虫的捕食作用和生物防治潜能,本研究在实验室条件下,测定了南方小花蝽对3种蚜虫的捕食选择性和捕食功能反应。结果表明,南方小花蝽对3种蚜虫的捕食功能反应均符合Holling Ⅱ模型,不同龄期南方小花蝽对3种蚜虫捕食量由大到小依次为5龄若虫,雌成虫,低龄若虫。对豆蚜的捕食量均大于对豌豆修尾蚜的捕食量,对豌豆蚜的捕食量最小,雌成虫对以上3种蚜虫的日最大捕食量分别为豆蚜63.69头/d、豌豆蚜36.23头/d和豌豆修尾蚜49.26头/d。南方小花蝽对3种蚜虫的寻找效应随蚜虫密度的增加而降低,随小花蝽龄期的增加而升高,相同龄期的南方小花蝽对3种蚜虫的寻找效应由大到小依次为豌豆修尾蚜,豆蚜,豌豆蚜。南方小花蝽对猎物的捕食作用受自身密度的干扰,当猎物密度不变时,随着小花蝽自身密度的增加,单头小花蝽平均捕食量下降,其干扰反应符合HasseⅡ模型方程。南方小花蝽对豆蚜、豌豆蚜和豌豆修尾蚜的喜好性指数分别为0.186、-0.245、0.027,对豆蚜和豌豆修尾蚜表现出正喜好性,且对豆蚜的喜好性强于豌豆修尾蚜,但对豌豆蚜表现出负喜好性。综上所述,南方小花蝽对豆科作物上的3种蚜虫具有良好的防治潜能。  相似文献   

5.
麦长管蚜在不同温度下的年龄-龄期生命表   总被引:2,自引:2,他引:0  
为了解温度对麦长管蚜Sitobion avenae (Fabricius) 种群动态的影响,采用生命表方法研究了16、19、22、25、28 ℃共5个不同温度下麦长管蚜的实验种群生命表,并分析了温度对麦长管蚜各生命表参数的影响。结果表明:麦长管蚜繁殖力(F)、净生殖率(R0)、成蚜历期及寿命均随温度升高呈先增加后减小的趋势,在22 ℃时最大,分别为16.7±2.0头、14.11±1.90头、15.6±1.6 d、26.4±1.5 d。各龄若蚜发育历期和平均世代周期(T)随温度升高而缩短,在25 ℃时最短,其中T为12.83±0.30 d。内禀增长率(r)、周限增长率(λ)随温度升高而增大,在25 ℃时最大,分别为0.20±0.01/d和1.22±0.01/d。当温度达到28 ℃,内禀增长率出现负值为-0.14±0.02/d,周限增长率、净生殖率、繁殖力、寿命均最小,分别为0.87±0.02/d、0.16±0.04头、0.4±0.1头、15.5±0.3 d。除平均世代周期外,其它参数值在22 ℃均高于19 ℃,但无显著差异。表明麦长管蚜的生长繁殖在19 ℃和22 ℃较适,而在28 ℃受到抑制。  相似文献   

6.
福州地区为害柑桔的蚜虫有7种。绣线菊蚜 Aphis citricola van der Goot为秋季重发型;棉蚜 A.gossypii Glover春、夏发生为主,桔蚜 Toxoptera citricidus(Kirkaldy)为全年轻发型。春季蚜虫的虫源以迁入为主。有翅蚜梢率和有翅胎生蚜的数量与受害程度之间有显著相关性。柑桔新梢的抽发时期、数量和成熟的快慢对蚜虫种群的变动产生重要影响。  相似文献   

7.
为了对栗苞蚜Moritziella castaneivora Miyazaki进行有效监控,控制其蔓延及制定合理的防治策略,通过林间调查及室内观察研究栗苞蚜对日本栗的为害、主要生活习性和天敌对其捕食行为。结果表明,栗苞蚜对银寄和筑波为害炸苞率分别达(7.4±6.0)%和(8.6±5.5)%;4龄若蚜的耐饥力强于成蚜,二者离开寄主20 h后可分别存活50%和13%,且1龄若蚜迁移力明显强于成蚜;栗苞蚜卵在20:00的孵化率明显高于8:00和14:00。龟纹瓢虫、黑襟毛瓢虫、七星瓢虫和草蛉对栗苞蚜卵具有较强的捕食能力,龟纹瓢虫平均捕食栗苞蚜卵量约为43粒/h,平均取食1个卵为10.1 s,搜寻速率为8.5粒/min。此外,研究表明初春施用石硫合剂可有效减少虫口基数,防止当年栗苞蚜大发生。  相似文献   

8.
蚜虫为害对五个燕麦品种苗期体内几种物质的影响   总被引:1,自引:0,他引:1  
[目的]研究蚜虫为害后燕麦苗期植株体内的叶绿素、可溶性糖、可溶性蛋白、总酚含量的变化,评价这4种物质与燕麦抗蚜性的关系,探索燕麦抗蚜的生化机制,为选育抗蚜燕麦品种提供科学依据。[方法] 选取田间具有不同抗蚜表现的5个燕麦品种,待幼苗长至3叶期接蚜,分别于接蚜时和接蚜后不同时间测定其体内的叶绿素、可溶性糖、可溶性蛋白、总酚的含量,与同期未接蚜植株做比较。[结果] 随着感蚜时间增加,每个品种叶绿素含量均明显降低,作为抗蚜物质的总酚含量增加,可溶性糖和可溶性蛋白也有所增加。[结论] 说明燕麦的抗蚜性与其体内的可溶性糖、可溶性蛋白、酚类物质含量有关。  相似文献   

9.
为筛选高效、低毒的杀虫剂,测定1.5%除虫菊素、0.3%印楝素、4%阿维·啶虫脒、2.5%高效氯氟氰菊酯和70%吡虫啉5种杀虫剂对苜蓿种子田主要害虫牛角花齿蓟马Odontothrips loti和豌豆蚜Acyrthosiphon pisum的室内毒力和田间防效,并分析这5种药剂对主要传粉昆虫数量及多样性指数的影响。结果显示,0.3%印楝素对牛角花齿蓟马和豌豆蚜的毒力相对较高,LC50分别为1.093 mg/L和2.864 mg/L。70%吡虫啉以及4%阿维·啶虫脒对牛角花齿蓟马和豌豆蚜均有较高的防效,最高防效均达到85.00%以上,但这2种药剂对传粉昆虫威胁较大,而0.3%印楝素则对传粉昆虫威胁较小。推荐花期苜蓿种子田使用0.3%印楝素1 000倍稀释液防控害虫,而非开花期可交替使用70%吡虫啉1 000倍稀释液和4%阿维·啶虫脒1 000倍稀释液防控害虫。  相似文献   

10.
[目的]探讨麦田间作对麦长管蚜种群的生态调控作用。[方法]田间调查小麦单作田、小麦与绿豆、小麦与豌豆以8:2行距间作田麦长管蚜种群数量及其时间动态变化;室内利用"Y"型嗅觉仪测定麦长管蚜对小麦、小麦与绿豆、小麦与豌豆不同组合气味的选择性。[结果]麦田间作不能影响麦蚜种群随时间动态变化曲线,但能在一定程度上降低麦长管蚜无翅蚜和有翅蚜的数量。室内麦长管蚜无翅蚜和有翅蚜显著选择寄主植物的气味。当小麦与绿豆或小麦与豌豆组合时对麦长管蚜没有吸引作用。[结论]非寄主植物的气味对寄主植物气味起掩盖作用,干扰蚜虫的寄主定位,这可能是间作低于单作蚜量的原因之一。  相似文献   

11.
Fifteen species of dermestid beetles were recorded at ‘Evolution Canyon’ (EC), Lower Nahal Oren, Mt. Carmel, Israel. They represent ~35% of known Israeli dermestid species. The following three species were recorded for the first time in Israel:Trogoderma svriaca Dalla Torre, 1911;Ctesias svriaca Ganglbauer, 1904; andAnthrenus (s.str.) jordaniens Pic, 1934. Adults of 13 species were collected on the more solar radiated, warmer and climatically more fluctuating south-facing slope (SFS); ten species were collected on the opposite, north-facing slope (NFS), which was cooler and climatically more stable. The abundance of adult dermestid beetles was 1.9 times higher on the SFS than on the NFS (86 and 47, respectively). Species richness and abundance distribution at EC (three collecting stations on each slope and one at the valley bottom) were significantly negatively correlated with the plant cover that consisted of trees and bushes (Spearmanr s ,P=0.007 and 0.039, respectively) and perennials (Spearmanr s ,P=0.039 and 0.077, respectively), indicating that non-woody plants were preferred by adult dermestid beetles.  相似文献   

12.
We first discuss the diversity of fruit fly (Diptera: Tephritidae) parasitoids (Hymenoptera) of the Neotropics. Even though the emphasis is on Anastrepha parasitoids, we also review all the information available on parasitoids attacking flies in the genera Ceratitis, Rhagoletis, Rhagoletotrypeta, Toxotrypana and Zonosemata. We center our analysis in parasitoid guilds, parasitoid assemblage size and fly host profiles. We also discuss distribution patterns and the taxonomic status of all known Anastrepha parasitoids. We follow by providing a historical overview of biological control of pestiferous tephritids in Latin American and Florida (U.S.A.) and by analyzing the success or failure of classical and augmentative biological control programs implemented to date in these regions. We also discuss the lack of success of introductions of exotic fruit fly parasitoids in various Latin American countries. We finish by discussing the most pressing needs related to fruit fly biological control (classical, augmentative, and conservation modalities) in areas of the Neotropics where fruit fly populations severely restrict the development of commercial fruit growing. We also address the need for much more intensive research on the bioecology of native fruit fly parasitoids.  相似文献   

13.
Molecular diagnostic techniques have been developed to differentiate the Ascochyta pathogens that infect cool season food and feed legumes, as well as to improve the sensitivity of detecting latent infection in plant tissues. A seed sampling technique was developed to detect a 1% level of infection by Ascochyta rabiei in commercial chickpea seed. The Ascochyta pathogens were shown to be genetically diverse in countries where the pathogen and host have coexisted for a long time. However, where the pathogen was recently introduced, such as A. rabiei to Australia, the level of diversity remained relatively low, even as the pathogen spread to all chickpea-growing areas. Pathogenic variability of A. rabiei and Ascochyta pinodes pathogens in chickpea and field pea respectively, appears to be quantitative, where measures of disease severity were based on aggressiveness (quantitative level of infection) rather than on true qualitative virulence. In contrast, qualitative differences in pathogenicity in lentil and faba bean genotypes indicated the existence of pathotypes of Ascochyta lentis and Ascochyta fabae. Therefore, reports of pathotype discrimination based on quantitative differences in pathogenicity in a set of specific genotypes is questionable for several of the ascochyta-legume pathosystems such as A. rabiei and A. pinodes. This is not surprising since host resistance to these pathogens has been reported to be mainly quantitative, making it difficult for the pathogen to overcome specific resistance genes and form pathotypes. For robust pathogenicity assessment, there needs to be consistency in selection of differential host genotypes, screening conditions and disease evaluation techniques for each of the Ascochyta sp. in legume-growing countries throughout the world. Nevertheless, knowledge of pathotype diversity and aggressiveness within populations is important in the selection of resistant genotypes.  相似文献   

14.
Recent data on the epidemiology of the common mycotoxigenic species of Fusarium, Alternaria, Aspergillus and Penicillium in infected or colonized plants, and in stored or processed plant products from the Mediterranean area are reviewed. Emphasis is placed on the toxigenicity of the causal fungal species and the natural occurrence of well known mycotoxins (aflatoxins, ochratoxins, fumonisins, trichothecenes, zearalenone, patulin, Alternaria-toxins and moniliformin), as well as some more recently described compounds (fusaproliferin, beauvericin) whose toxigenic potential is not yet well understood. Several Fusarium species reported from throughout the Mediterranean area are responsible of the formation of mycotoxins in infected plants and in plant products, including: Fusarium graminearum, F. culmorum, F. cerealis, F. avenaceum, F. sporotrichioides and F. poae, which produce deoxynivalenol, nivalenol, fusarenone, zearalenone, moniliformin, and T-2 toxin derivatives in wheat and other small grains affected by head blight or scab, and in maize affected by red ear rot. Moreover, strains of F. verticillioides, F. proliferatum, and F. subglutinans, that form fumonisins, beauvericin, fusaproliferin, and moniliformin, are commonly associated with maize affected by ear rot. Fumonisins, were also associated with Fusarium crown and root rot of asparagus and Fusarium endosepsis of figs, caused primarily by F. proliferatum. Toxigenic A. alternata strains and associated tenuazonic acid and alternariols were commonly found in black mould of tomato, black rot of olive and citrus, black point of small cereals, and black mould of several vegetables. Toxigenic strains of A. carbonarius and ochratoxin A were often found associated with black rot of grapes, whereas toxigenic strains of A. flavus and/or P. verrucosum, forming aflatoxins and ochratoxin A, respectively, were found in moulded plant products from small cereals, peanuts, figs, pea, oilseed rape, sunflower seeds, sesame seeds, pistachios, and almonds. Finally, toxigenic strains of P. expansum and patulin were frequently found in apple, pear and other fresh fruits affected by blue mould rot, as well as in derived juices and jams.  相似文献   

15.
《干旱区科学》2014,(6):782-782
正Journal of Arid Land(JAL)is an international journal(ISSN 1674-6767;CN 65-1278/K)for the natural sciences,sponsored by the Xinjiang Institute of Ecology and Geography,Chinese Academy of Sciences and Science Press.It is published by Science Press and Springer-Verlag Berlin Heidelberg bimonthly.JAL publishes original,innovative,and integrative research from arid and semiarid regions,ad  相似文献   

16.
The genera ofMicrogaster Latreille 1804 andHygroplitis Thomson 1895 from China are presented systematically in this paper. Thirty-two species ofMicrogaster and three species ofHygroplitis are known in China. Diagnosis, character variation, distribution and host of each species among the two genera are presented, including its host and distribution. Keys to the species ofMicrogaster andHygroplitis are given. http://www.phytoparasitica.org posting Dec. 19, 2006.  相似文献   

17.
Plant Viruses Transmitted by Whiteflies   总被引:18,自引:0,他引:18  
One-hundred and fourteen virus species are transmitted by whiteflies (family Aleyrodidae). Bemisia tabaci transmits 111 of these species while Trialeurodes vaporariorum and T. abutilonia transmit three species each. B. tabaci and T. vaporariorum are present in the European–Mediterranean region, though the former is restricted in its distribution. Of the whitefly-transmitted virus species, 90% belong to the Begomovirus genus, 6% to the Crinivirus genus and the remaining 4% are in the Closterovirus, Ipomovirus or Carlavirus genera. Other named, whitefly-transmitted viruses that have not yet been ranked as species are also documented. The names, abbreviations and synonyms of the whitefly-transmitted viruses are presented in tabulated form together with details of their whitefly vectors, natural hosts and distribution. Entries are also annotated with references. Whitefly-transmitted viruses affecting plants in the European–Mediterranean region have been highlighted in the text.  相似文献   

18.
Liriomyza cicerina (Diptera: Agromyzidae) is an important pest on chickpea in Turkey. The objective of this study was to determine the parasitoids and rates of parasitism ofL. cicerina on chickpea (Cicer arietinum L.) during the 2005 and 2006 seasons in ?anl?urfa province, Turkey. Leaves with mines were sampled weekly and kept in the laboratory to observe and count emerging leafminer and parasitoid adults. Eight parasitoid species were collected: the braconidsOpius monilicornis Fischer andOpius tersus Foerster and the eulophidsDiaulinopsis arenaria (Erdös) andNeochrysocharis formosa (Westwood), which occurred in both the winter and summer seasons;Diglyphus crassinervis Erdös,Neochrysocharis ambitiosa Hansson,Neochrysocharis sericea (Erdös) andPediobius metallicus (Nees), which occurred only in the summer growing areas.Diaulinopsis arenaria was the predominant parasitoid with 4–7.7% parasitism rate whileN. ambitiosa andO. monilicornis were the second and third most predominant species. The results of these trials show that sinceDia. arenaria occurred throughout every season, it could potentially be used for control of the leafminerL. cicerina.  相似文献   

19.
Systematic information on the quantitative impact of Z ygogramma bicolorata on the biology of P arthenium hysterophorus is crucial as the seeds of this weed continue to germinate from the accumulated soil seed bank throughout the year in the form of different germinating flushes, while the activity of the beetle ceases during winter as it enters diapause. Therefore, plant–herbivore interactions need to be explored to develop predictions of the overall impact of the introduced beetle on the weed. The findings revealed that defoliation by Z . bicolorata had a significant impact on the plant height, density and flower production in flushes F 3, F 4 and F 5, but not in F 1 and F 2 that exhibited longer periodicity, profuse branching, a longer flowering period and maximum flower production and contributed mostly to the existing seed soil bank. Therefore, total depletion of the existing soil seed bank was not possible. Consequently, the effect of augmentative field releases of laboratory‐reared beetles was explored on F 1 and F 2 in February for three consecutive years (2011–2013). Before initiating the trial, random soil samples were taken from the plots that were assigned to the paired treatments (i.e. with the beetle and without the beetle [insecticide‐treated]) and it was found that the seed bank in those samples did not differ. The single release of Z . bicolorata adults at five per plant at the six‐leaf stage significantly reduced the soil seed bank, compared to without the biocontrol agent, irrespective of the flushes at the end of the season.  相似文献   

20.
Solacol®, a formulation of the antibiotic validamycin, at 0.33% in 2% malt extract agar, reduced the spread of fungi on dilution plates drastically and allowed twice as much incubation time before subculturing; this resulted in an elevated number of species isolated. Using pure cultures of 62 common soil fungi, it was shown that all fast-growing species (exceptPythium ultimum) were efficiently inhibited but not completely suppressed. Inhibition was comparable to that by 0.5% oxgall, though, while this substance completely suppressed several species, Solacol very strongly inhibited onlyGaeumannomyces graminis, Gerlachia nivalis, Harzia acremonioides, Verticillium biguttatum andRhizoctonia solani. In a further experiment each separate constituent of Solacol was tested against 22 fungi at equivalent concentrations. Validamycin strongly inhibitedChaetomium globosum and two Basidiomycetes, though hardly more than the non-ionic detergent which mainly inhibited the other fungi. A few species were, however, more inhibited by Solacol than by the detergent alone. Solacol at 0.33% is a suitable aid in dilution plating of soil fungi, by increasing the number of colonies and species observed.Samenvatting Solacol®, een formulering van het antibioticum validamycine, remde de groei van schimmels in verdunningsplaten met een concentratie van 0.33% in 2% moutagar en maakte het mogelijk de periode tot afenten met een factor 2 te verlengen; daardoor was het aantal geïsoleerde soorten duidelijk toegenomen. Met reincultures van 62 algemene grondschimmelsoorten werd aangetoond, dat alle snelgroeiende soorten (met uitzondering vanPythium ultimum) voldoende geremd, maar niet volkomen onderdrukt werden. Het remmingspercentage was vergelijkbaar met dat van 0.5% ossegal, hoewel dit laatste sommige soorten volkomen onderdrukte; Solacol remde alleenGaeumannomyces graminis, Gerlachia nivalis, Harzia acremonioides, Verticillium biguttatum enRhizoctonia solani zeer sterk. In een volgend experiment werden de componenten van Solacol t.o.v. 22 fungi apart getoetst in concentraties equivalent aan 0.33% Solacol. Validamycine remde alleenChaetomium globosum en twee basidiomyceten behoorlijk, maar nauwelijks meer dan de niet-ionische uitvloeier, die in hoofdzaak de overige remeffecten veroorzaakte. Enkele soorten werden echter door het complete Solacol veel sterker geremd dan door de uitvloeier alleen. Solacol in een verdunning van 0,33% wordt aanbevolen bij verdunningsplaten voor het isoleren van grondschimmels ten einde het aantal kolonies en soorten te verhogen.  相似文献   

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