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11.
Dieu-Hien Truong Hoang Chinh Nguyen Julien Bauwens Gabriel Mazzucchelli Georges Lognay Frédéric Francis 《Journal of Plant Interactions》2018,13(1):30-36
The interactions between Arabidopsis thaliana and Plutella xylostella have been considered as a model system to unravel the responses of plants to herbivorous insects. Here, we use a 2-DE proteome approach to detect protein expression changes in the leaves of Arabidopsis plants exposed to P. xylostella larval infestation at 27°C within 8?h. Approximately 450 protein spots were reproducibly detected on gels. Of these, comparing healthy and infested leaves, we identified 18 differentially expressed protein spots. Thirteen proteins were successfully identified by MALDI-TOF/MS and LC-ESI-MS/MS. Functional classification analysis indicated that the differentially identified proteins were associated with amino acid, carbohydrate, energy, lipid metabolism, and photosynthesis. In addition, their relative abundances were assessed according to larval pest feeding on Arabidopsis leaves. These data provide valuable new insights for further works in plant-biotic and environmental stress interaction. 相似文献
12.
Seven triterpenoid saponins, including four new compounds, catunarosides A–D (1–4), and three known compounds, swartziatrioside (5), aralia-saponin V (6), araliasaponin IV (7) were isolated from the stem bark of Catunaregam spinosa, a Chinese mangrove associate. Their structures were elucidated on the basis of their spectral data and hydrolysis experiments. The antifeedant activities of compounds 1–7 against Plutella xylostella were also evaluated. 相似文献
13.
Muhammad Sarfraz Andrew B. Keddie Lloyd M. Dosdall 《Biocontrol Science and Technology》2005,15(8):763-789
The diamondback moth (DBM), Plutella xylostella (L.) (Lepidoptera: Plutellidae), is one of the most destructive cosmopolitan insect pests of brassicaceous crops. It was the first crop insect reported to be resistant to DDT and now, in many crucifer producing regions, it has shown significant resistance to almost every synthetic insecticide applied in the field. In certain parts of the world, economical production of crucifers has become almost impossible due to insecticidal control failures. Consequently, increased efforts worldwide have been undertaken to develop integrated pest management (IPM) programs, principally based on manipulation of its natural enemies. Although over 130 parasitoid species are known to attack various life stages of DBM, most control worldwide is achieved by relatively few hymenopteran species belonging to the ichneumonid genera Diadegma and Diadromus, the braconid genera Microplitis and Cotesia, and the eulophid genus Oomyzus. DBM populations native to different regions have genetic and biological differences, and specific parasitoid strains may be associated with the specific DBM strains. Therefore, accurate identification based on genetic studies of both host and parasitoid is of crucial importance to attaining successful control of DBM through inoculative or inundative releases. Although parasitoids of DBM larvae and pupae are currently its principal regulators, bacteria-derived products (e.g., crystal toxins from Bacillus thuringiensis) and myco-insecticides principally based on Zoophthora radicans and Beauveria bassiana are increasingly being applied or investigated for biological control. Viruses, nematodes and microsporidia also have potential as biopesticides for DBM. When an insect pest is exposed to more than one mortality factor, there is the possibility of interactions that can enhance, limit, or limit and enhance the various aspects of effectiveness of a particular control tactic. This paper reviews the effectiveness of various parasitoids and entomopathogens against DBM, interactions among them, and their possible integration into modern IPM programs. 相似文献
14.
Crude venom and calyx fluid from Cotesia plutellae (Hymenoptera Braconidae) were assayed for biological activity toward hemocytes of Plutella xylostella (Lepidoptera Plutellidae). Venom from C. plutellae displayed high activity toward the spreading of plasmatocytes of P. xylostella early in the incubation period, and the inhibition was more severe as the concentration of venom increased. However, most inhibited hemocytes spread normally after being incubated for 4h. No effects were found toward granular cells from the host. Additionally, the venom from C. plutellae had some lethal effects on hemocytes of P. xylostella at high concentrations. In contrast, when incubated with different concentrations of calyx fluid, the spreading of some hemocytes was inhibited, some began to disintegrate, and some were badly damaged with only the nucleus left. After 4h, the majority of hemocytes died. The same results were observed when hemocytes were incubated in calyx fluid together with venom. These results show that calyx fluid from C. plutellae may play a major role in the suppression of the host immune system, whereas venom from C. plutellae has a limited effect on hemocytes and probably synergizes the effect of calyx fluid or polydnavirus. 相似文献
15.
采用水平切片淀粉凝胶电泳方法,分析了北京、河北、云南和武汉4个不同地理种群的小菜蛾的等位酶,得到了3个酶系统(甘油醛磷酸脱氢酶(GPD)、苹果酸酶(ME)和苹果酸脱氢酶(MDH-1,MDH-2和MDH-3)5个基因位点的资料。用Biosys2.0软件计算了不同地理种群的遗传变异指标(N、A、P、H0和He),结果表明小菜蛾各种群内的基因多样性大于各种种群间的基因多样性(约15倍),武汉种群小菜蛾的遗传性最大。并计算了遗传距离D和相似性系数,并由此得出聚类图,分析了小菜蛾不同地理种群间的遗传关系。 相似文献
16.
Sanford D. Eigenbrode Nelson N. Kabalo Kimberly A. Stoner 《Entomologia Experimentalis et Applicata》1999,90(3):225-235
Predation by Chrysoperla plorabunda (Fitch) (Chrysopidae) first instars on Plutella xylostella (L.) (Plutellidae) neonates was measured on nine Brassica oleracea L. types with different surface wax crystal morphology. Forty-eight-hour survival of P. xylostella caged on leaves was significantly reduced by C. plorabunda on plants expressing glossy mutations that reduce surface waxbloom, but not on plants with normal waxbloom. During 5-min observations, C. plorabunda spent more time walking and less time scrambling (moving the legs with no locomotion) on glossy types than on the normal-wax types. Adhesive force produced by C. plorabunda on plant surfaces was 20 to 200-fold greater on glossy types than on normal-wax types. All the glossy types provided an advantage to C. plorabunda over normal-wax types by increasing the force of attachment to the leaf suface by the larvae, which in turn increased time allocated to walking, leading to greater predation of P. xylostella larvae. Among glossy and normal wax types together, attachment force and time allocated to walking were significantly correlated with predation by C. plorabunda. Within glossy or normal-wax types, however, these correlations were not significant. Neither time allocated to walking, nor attachment to the leaf surface was a predictor of predation by C. plorabunda within glossy or normal-wax types. Although diverse mechanisms therefore contribute to differences in predation, the results show that reduction in waxbloom can substantially affect the mobility and effectiveness of this generalist predator. 相似文献
17.
Lee DW Shrestha S Kim AY Park SJ Yang CY Kim Y Koh YH 《Insect biochemistry and molecular biology》2011,41(4):236-243
Sex pheromone production is regulated by pheromone biosynthesis-activating neuropeptide (PBAN) in many lepidopteran species. We cloned a PBAN receptor (Plx-PBANr) gene from the female pheromone gland of the diamondback moth, Plutella xylostella (L.). Plx-PBANr encodes 338 amino acids and has conserved structural motifs implicating in promoting G protein coupling and tyrosine-based sorting signaling along with seven transmembrane domains, indicating a typical G protein-coupled receptor. The expression of Plx-PBANr was found only in the pheromone gland of female adults among examined tissues and developmental stages. Heterologous expression in human uterus cervical cancer cells revealed that Plx-PBANr induced significant calcium elevation when challenged with Plx-PBAN. Female P. xylostella injected with double-stranded RNA specific to Plx-PBANr showed suppression of the receptor gene expression and exhibited significant reduction in pheromone biosynthesis, which resulted in loss of male attractiveness. Taken together, the identified PBAN receptor is functional in PBAN signaling via calcium secondary messenger, which leads to activation of pheromone biosynthesis and male attraction. 相似文献
18.
19.
小菜蛾烟碱型乙酰胆碱受体α亚基cDNA的克隆、序列分析与不同发育阶段表达分析 总被引:1,自引:0,他引:1
烟碱型乙酰胆碱受体(nAChR)介导昆虫中枢神经系统中胆碱能突触兴奋性神经递质的快速传递,也是新烟碱类杀虫剂和多杀菌素的作用靶标。本研究利用RT-PCR和RACE技术,克隆了小菜蛾Plutella xylostella nAChR α亚基的一个新基因(Pxα8)的全长cDNA(GenBank登录号为EU914853)。Pxα8的cDNA序列全长1 744 bp,开放阅读框为1 602 bp,编码534个氨基酸,具有nAChR α亚基的典型特征,与其他昆虫nAChR α8亚基具有77%~96%的相似性,与果蝇nAChR β2亚基具有76%的相似性。Pxα8的开放阅读框存在单核苷酸多态性位点,导致多个位点氨基酸的替换。雌性4龄幼虫的多态性位点多于雄性4龄幼虫,而且雌、雄4龄幼虫的多态性位点均不相同。半定量RT-PCR研究结果表明,Pxα8 mRNA在成虫期表达量高于蛹期和4龄幼虫期。本研究结果为进一步研究小菜蛾nAChR 亚基的多样性和对多杀菌素的靶标抗性机制提供重要基础。 相似文献
20.
艾氏剂环氧化酶及细胞色素P-450对小菜蛾抗药性发展的影响 总被引:1,自引:0,他引:1
本文对室内长期饲养的小菜蛾(Plutella xylostella L.)敏感品系和田间采集的抗性种群体内的艾氏剂平氧化酶及细胞色素P-450进行了比较研究。结果证明,艾氏剂环氧化酶在感性和抗性小菜蛾间存在着量及质的差异。抗性种群的艾氏剂环氧化酶的Vmax和Km值分别为感性品系的5.4%和6.5倍。抗性种群的细胞色素P-450的含量是感性品系的1.1—1.3倍。艾氏剂环氧化酶在量上及质上的差异及细胞色素P-450含量的提高是导致小菜蛾抗药性发生与发展的重要机制之一。而且质的差异较之量的差异可能起着更为重要的作用. 相似文献