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The reconstruction and expression of a Bacillus thuringiensis cryIIIA gene in protoplasts and potato plants.

A Bacillus thuringiensis (B.t.) cryIIIA delta-endotoxin gene was designed for optimal expression in plants. The modified cry gene has the codon usage pattern of an average dicot gene and does not contain AT-rich nucleotide sequences typical of native B.t. cry genes. We assembled the 1.8 kb cryIIIA gene in nine blocks of three oligonucleotide pairs. For two DNA blocks, the polymerase chain reaction was used to enrich for correctly ligated pairs. We compared modified cryIIIA gene with native gene expression by electroporation of dicot (carrot) and monocot (corn) protoplasts. CryIIIA-specific RNA and protein was detected in carrot and corn protoplasts only after electroporation with the rebuilt gene. Transgenic potato lines were generated containing the redesigned cryIIIA gene under the transcriptional control of a chimeric CaMV 35S/mannopine synthetase (Mac) promoter. Out of 63 transgenic potato lines, 58 controlled first-instar Colorado potato beetle (CPB) larvae in bioassays. Egg masses which produced ca. 250,000 CPB larvae were placed on replicate clones of 56 transgenic potatoes. No CPB larvae developed past the second instar on any of these plants. Plants expressing high levels of delta-endotoxin were identified by their toxicity to more resistant third-instar larvae. We show there was good correlation between insect control and the levels of delta-endotoxin RNA and protein.

Amino Acid Sequence↗

Processing of pro-vitellogenin in insect fat body: a role for high-mannose oligosaccharide.

Several discrete events were resolved in the processing of vitellogenin in Blattella germanica. Using tunicamycin to inhibit the synthesis of high-mannose oligosaccharide, a high molecular weight pro-vitellogenin peptide (apo-proVG, Mr 215,000) was identified in fat body. Dosages of tunicamycin which inhibited glycosylation of vitellogenin by 98% inhibited its synthesis by as much as 59%, yet led to an intracellular accumulation of apo-proVG. Reversibility and dose dependency of these effects on vitellogenin synthesis, glycosylation, proteolytic processing, and secretion were demonstrated. In control insects, glycosylation of apo-proVG yielded a Mr 240,000 pro-vitellogenin peptide (proVG). FITC-Concanavalin A bound to purified proVG but not to apo-proVG, thus confirming an absence of high-mannose oligosaccharide in the apo-protein. Following its glycosylation, proVG was processed rapidly in fat body to Mr 160,000 (VG160) and Mr 102,000 (VG102) peptides which subsequently were secreted into hemolymph. After uptake into developing oocytes, the VG160 peptide was processed further prior to chorionation, yielding subunits of Mr 95,000 and 50,000. Uniqueness of the peptides of mature vitellin (Mr 102,000, 95,000, and 50,000) was indicated by comparison of the CNBr fragments of each purified subunit. Staining of CNBr fragments with FITC-Concanavalin A also indicated that high-mannose oligosaccharides are attached at one or more sites within each vitellin subunit. Resolution of the substructure of this insect vitellin and identification of events involved in the processing and secretion of its fat body apo-protein provide a basis for further study of the assembly and transport of vitellogenin, its packaging in eggs, and utilization during embryogenesis.

Adipose Tissue↗

Expression of cauliflower mosaic virus gene I using a baculovirus vector based upon the p10 gene and a novel selection method.

A new baculovirus expression vector based upon the p10 gene of Autographa californica nuclear polyhedrosis virus (AcNPV) and a novel system for the screening of p10 recombinants have been developed. The insertion of a cassette containing the lacZ gene under the control of a heat-shock promoter of Drosophila melanogaster downstream from the cloning site in p10 transfer vectors allows the convenient identification of putative recombinants by virtue of their expression of beta-galactosidase. Using this p10 transfer vector an AcNPV recombinant was engineered with a cDNA copy of gene I of cauliflower mosaic virus (CaMV) in place of the p10 coding sequence. This p10 recombinant expressed CaMV gene I at levels equivalent to those of p10 and polyhedrin, and was shown to be as effective in producing this protein as recombinants exploiting the polyhedrin promoter. CaMV gene I protein formed large numbers of hollow fiber-like structures in the cytoplasm of infected cells. Because the polyhedrin gene remains intact, these p10 expression vectors may be exploited for the expression of heterologous proteins in insects infected per os and for the enhancement of baculovirus pathogenicity for insect control.

Animals↗

Insect cellular reactions to the lipopolysaccharide component of the bacterium Serratia marcescens are mediated by eicosanoids.

Nodulation, which begins with the formation of cellular microaggregates, is the predominant cellular defense reaction to bacterial infections in insects. We suggested that these reactions to bacterial infections are mediated by eicosanoids. The lipopolysaccharide (LPS) component of some bacterial cells stimulates defense reactions in mammals and insects. Here, we report on experiments designed to test the hypothesis that eicosanoids mediate microaggregation reactions to LPS. Injections of LPS (purified from the bacterium, Serratia marcescens) into larvae of the tenebrionid beetle, Zophobas atratus, stimulated microaggregation reactions in a dose-dependent manner. Treatments with eicosanoid-biosynthesis inhibitors immediately prior to LPS challenge sharply reduced the microaggregation responses. Separate treatments with specific inhibitors of phospholipase A(2), cyclooxygenase and lipoxygenase reduced microaggregation, supporting our view that microaggregate formation involves lipoxygenase and cyclooxygenase products. The inhibitory influence of dexamethasone was apparent within 30min after injection, and microaggregation was significantly reduced, relative to control insects, over the following 90min. The dexamethasone effects were reversed by treating LPS-injected insects with the eicosanoid precursor, arachidonic acid. These findings indicate that cellular defense reactions to a specific component of bacterial cells are mediated by eicosanoids, and open up new possibilities for dissecting detailed hemocytic actions in insect immune reactions to bacterial infections.

Journal Article↗

Do bedbugs transmit hepatitis B?

An intervention study was done over two years in seven Gambian villages to determine the contribution of bedbugs to hepatitis B transmission. In addition, fortnightly questionnaires were completed for each child to assess other possible routes of transmission. The intervention, insecticide spraying of the child's dwelling, was highly effective in reducing exposure to bedbugs but there was no effect on hepatitis B infection. No other risk factor for transmission was identified despite a consistent village-to-village variation in the rate of childhood infection. The major mode of transmission of hepatitis B in childhood remains unknown.

Animals↗

Monitoring resistance gene frequencies in Malaysian Culex quinquefasciatus Say adults using rapid non-specific esterase enzyme microassays.

The ability to identify the occurrence of different resistance genotypes in field populations of mosquito is considered important for the purpose of optimising chemical control operations. The recent development of rapid microassays of enzymes responsible for resistance has provided a means for rapidly assessing the genetic background of target mosquito populations. This concept is the topic of investigation in this study. Non-specific esterase activity, which is responsible for the resistance to organophosphates in Malaysian Culex quinquefasciatus Say adults, was determined in 3 field populations from Kuala Lumpur City using rapid enzyme assay. The optical density results were used to estimate the genotypic frequencies of the populations. Subsequently, time-dependent changes in the various frequencies were determined. Such techniques allowed rapid assessment of resistance genotypes for decision-making and its possible use in insect control merits further investigation.

Animals↗

Multi-omics reveals an ecdysone-activated Eip75B-FABP signaling axis coordinating nutrient metabolism for development in Hermetia illucens.

INTRODUCTION: Efficient nutrient storage is essential for insect development and energy homeostasis; however, the mechanisms coordinating nutrient allocation during ontogeny are not well understood. Elucidating these systems may yield valuable insights to insect metabolic adaptation. OBJECTIVES: This study aimed to identify regulatory modules governing nutrient metabolism in insects, focusing on hormonal and metabolic interplay. METHODS: Multi-omics profiling (proteomics, phosphoproteomics, and transcriptomics) was conducted throughout the life cycle, from egg to adult, to identify metabolic regulators. RNAi was utilized for gene knockdown, followed by qRT-PCR and mitochondrial DNA quantification to evaluate knockdown efficiency and its metabolic implications. Assessments of nutrient metabolism were performed using assays for triglycerides, crude protein, and fatty acid synthase. EMSA and BODIPY staining examined transcriptional regulation and lipid droplet dynamics. RESULTS: Utilizing an integrative multi-omics approach, this study elucidates the temporal metabolic regulators in insects. A conserved regulatory module was identified in which the PPAR homolog, ecdysone-induced protein 75B (Eip75B), functions as a transcriptional activator of fatty acid binding protein (FABP), sustaining lipid metabolic homeostasis during the larval stage. PPARγ modulators (rosiglitazone and GW9662) alter lipid accumulation, along with the expression of Eip75B and FABP, which was measured by qRT-PCR. Furthermore, the deficiency of FABP may reprogram metabolic pathways by inhibiting lipid storage and promoting mitochondrial β-oxidation, as supported by increased mitochondrial DNA copy number, as well as enhancing protein synthesis. This metabolic change could be modulated by ecdysone signaling, as hormonal supplementation effectively rescued the lipid loss phenotype. Our results establish the ecdysone-Eip75B-FABP signaling axis as a central regulatory module that integrates hormonal and nutrient-sensing signals to control insect nutritional metabolism. CONCLUSION: The ecdysone-Eip75B-FABP axis integrates hormonal and nutrient signals to regulate metabolic plasticity, underscoring a universal strategy for developmental energy allocation. The data also offer potential implications for research on metabolic disorders and bioenergy applications.

Animals↗

Molecular cloning and function expression of a diuretic hormone receptor from the house cricket, Acheta domesticus.

Insect diuretic hormones regulate fluid and ion secretion and the receptors with which they interact are attractive targets for new insect control agents. Recently, a diuretic hormone receptor from the moth Manduca sexta was isolated by expression cloning and found to be a member of the calcitonin/secretin/corticotropin releasing factor family of G-protein coupled receptors [Reagan J. D. (1994) J. Biol. Chem. 269, 9-12]. Degenerate oligonucleotides were designed based upon conserved regions in this receptor family and used to isolate a diuretic hormone receptor from the house cricket, Acheta domesticus. The complementary DNA isolated encodes a protein consisting of 441 amino acids with seven putative membrane spanning regions. Interestingly, unlike the M. sexta diuretic hormone receptor, the cricket diuretic hormone receptor contains a putative signal sequence. The receptor shares 53% and 38% sequence identity with the M. sexta diuretic hormone and human corticotropin releasing factor receptors respectively. When expressed in COS-7 cells, the receptor binds A. domesticus diuretic hormone with high affinity and stimulates adenylate cyclase with high potency. Four other insect diuretic hormones are considerably less effective at stimulating adenylate cyclase in COS-7 cells transfected with the receptor. This is in contrast to the M. sexta diuretic hormone receptor which is stimulated by all five insect diuretic hormones with high potency.

Amino Acid Sequence↗

Use of malaria prevention measures in Malawian households.

Information on malaria prevention practices in households was obtained in a nation-wide knowledge, attitudes, and practices survey in Malawi. Of the 1,531 heads of household questioned, 55% were able to identify mosquitoes as the cause of malaria. Use of any type of malaria prevention method was reported by 52% of respondents. Among users, 47% used commercial products (insecticide, mosquito coils, bednets), and 64% used natural measures (burning leaves, dung, or wood); 11% used both. The most common commercial measure used was mosquito coils (16%) followed by insecticide spray (11%) and bednets (7%). Increasing household income and educational level of the household head were strongly correlated with use of commercial methods to prevent malaria; households with an income ranked moderate or greater were eight times more likely to have used a purchased product. Use of natural measures was correlated with lower income and educational level. Thirty-six percent of respondents reported having heard or seen information on malaria in the previous year. Use of household malaria preventive measures in Malawi is very low and income-dependent. Educational messages are required to improve understanding and use of affordable measures.

Adult↗

Current trends and new directions in crop protection.

Synthetic agricultural chemicals will continue to be the major component in protecting food and fiber crops from attack by insects, fungi, and weeds. This trend will most likely continue through the end of this century and possibly beyond. The discovery and introduction of potent new pesticides such as the sulfonylurea and imidazolinone herbicides and synthetic pyrethroid insecticides have demonstrated that excellent weed and insect control can be achieved with minute amounts of chemical per treated unit area in comparison to older chemicals. In some instances, these reductions approached two orders of magnitude. Further improvements in delivery systems and formulations have also contributed to reductions in the chemical load in the environment. However, increased regulatory demands; environmental concerns; developing resistance in key pests; increasing costs of research, development, manufacturing, and selling; and even a smaller number of basic producers, all in concert impact heavily on future developments in chemical pesticides. We can expect also that, within the next decade, there will be an increasing number of introductions of biological pesticides, including microbials and biochemicals derived from microbiological sources. These new products--including mycoherbicides, mycofungicides, and biological insecticides--are expected to become prominent control measures in the intermediate time span (10-20 years), to be supplemented in the long-term by products and transgenic plants derived from recombinant DNA technology.

Agriculture↗

Lysozyme in the midgut of Manduca sexta during metamorphosis.

Low levels of lysozyme were found in the midgut epithelium of the tobacco hornworm, Manduca sexta, during the early part of the fifth larval stadium. This was observed in control insects as well as in bacterially challenged insects. No lysozyme was detected in the gut contents of either group of insects which were actively eating or in the early stages of metamorphosis. However, high levels of lysozyme activity were detected in homogenates of midgut tissue collected from insects later in the stadium. Immunocytochemical studies demonstrated that lysozyme accumulates in large apical vacuoles in regenerative cells of the midgut during the larval-pupal molt. These cells, initially scattered basally throughout the larval midgut epithelium, multiply and form a continuous cell layer underneath the larval midgut cells. At the larval/pupal ecdysis the larval midgut epithelium is sloughed off and the regenerative cells, now forming the single cell layer of the midgut, release the contents of their vacuoles into the midgut lumen. This release results in high lysozyme activity in the lumen of the pupal midgut and is thought to confer protection from bacterial infection. This is the first indication that the lysozyme gene may be developmentally regulated in a specific tissue in the absence of a bacterial infection.

Animals↗

Oral toxicity to flesh flies of a neurotoxic polypeptide.

An insect selective neurotoxic polypeptide from venom of the scorpion Androctonus australis (AaIT, M(r) 8,000) was shown to cross the midgut of the flesh fly Sarcophaga falculata, using assays of oral toxicity, column chromatography, and microscopic autoradiography of the native and radioiodinated toxin. AaIT induced paralysis of flies within 1-2 h after oral administration, with a lethal dose (LD50) of 10 micrograms/100 mg of body weight. Oral toxicity was about 0.14% of toxicity by injection. Hemolymph collection 70-85 min after feeding flies with [125I]AaIT showed that 5% of ingested radioactivity appeared in hemolymph. Most of this represented degradation products, but included about 0.3% of the chromatographically intact toxin. In contrast, hemolymph of identically treated lepidopterous larvae (Manduca, Helioverpa [= Heliothis]) contained degradation products but no intact toxin. [125I]AaIT was shown to cross the midgut of Sarcophaga through a morphologically distinct segment of the midgut previously shown to be permeable to a cytotoxic, positively charged polypeptide of similar molecular weight. These results suggest that Sarcophaga midgut contains a morphologically and functionally distinct segment that transports small peptides, and that employment of neurotoxic polypeptides for insect control may be feasible. Activity might be greatly improved through modification and metabolic stabilization of active peptides.

Animals↗

[Use of dichlorvos in flour mills].

In the framework of studies on the possible use of dichlorvos (DDVP) in flour mills, the authors investigated the effects of various parameters (such as concentration of the DDVP solution to be used, temperature, location of the samples, different kinds of samples and packages) on the formation of DDVP residues on milling products. It was found that a concentration of 0.6 ml of DDVP-50/m3 and temperatures ranging from 18 degrees to 22 degrees C are particularly suited for insect control. Under these conditions, the DDVP residues on the samples were degraded within a period of 2--4 weeks, according to the kind of product. Uncovered foods shall not be present in rooms where DDVP is being applied. In virtue of the present findings, DDVP is recommended for use in flour mills.

Dichlorvos↗

Cholesterol oxidase: a potent insecticidal protein active against boll weevil larvae.

The discovery of proteins that control insects is critical for the continued growth of the agricultural biotechnology industry. A highly efficacious protein that killed boll weevil (Anthonomus grandis grandis Boheman) larvae was discovered in Streptomyces culture filtrates. The protein was identified as cholesterol oxidase (E.C. 1.1.3.6). Purified cholesterol oxidase was active against boll weevil larvae at a concentration (LC50 = 20.9 micrograms/ml) comparable to the bioactivity of Bacillus thuringiensis proteins against other insect pests. Histological studies demonstrated that cholesterol oxidase lysed the boll weevil midgut epithelium, suggesting that this is the primary mechanism of lethality.

Amino Acid Sequence↗