Insect cell lines have been widely used in recombinant baculovirus expression systems and transient gene expression studies. Critical to these applications have been the transfection of foreign DNA. This has been frequently done using labor intensive and cytotoxic liposome-based transfection reagents. In the current study we have optimized a new kind of polyethylenimine-based DNA transfection reagent on the Spodoptera frugiperda Sf9 insect cell line. A plasmid vector that transiently expresses green fluorescent protein (GFP) was effectively delivered into Sf9 cells. A transfection efficiency of 54% and cell viability of 85-90% were obtained for Sf9 cells. The developed transfection protocol has now been successfully used to transfect eight insect cell lines derived from Bombyx mori, Trichoplusia ni, Helicoverpa zea, Heliothis virescens and S. frugiperda with GFP and GUS with transfection efficiencies of at least 45%. This method provides high heterologous protein expression levels, transfection efficacy and cell viability, and could be used for transient gene expression in other lepidopteran cell lines.
SummaryThe ability of 12 unique lepidopteran insect cell lines, from Anticarsia gemmatalis, Heliothis virescens, Lymantria dispar (two lines), Mamestra brassica, Plutella xylostella, Spodoptera, frugigerda (two lines), and Trichoplusia ni (three lines) to support production of a recombinant polydnavirus (PDV) protein (GiPDV 1.1) expressed using the Bac-to-Bac™ baculovirus expression system was examined. Polydnavirus gene GiPDV 1.1 was cloned into the pFastBac baculovirus vector under the control of the polyhedron promoter, followed by generation of recombinant bacmid-GiPDV 1.1 by site-specific transposition. The ability of each insect cell line to support recombinant PDV gene expression was estimated using reverse transcriptase-polymerase chain reaction and Western blot. Each insect cell line infected with recombinant bacmid-GiPDV 1.1 and tested in this study was capable of supporting and producing recombinant protein. Teme course expression analysis showed that 72–96 h after transfection to be the optimal time for recombinant protein for each insect cell line.
Lepidopteran cell lines derived from the gypsy moth, Lymantria dispar , have not been widely used in protein expression studies or systems because they are weakly adherent, have specific growth requirements and characteristics, and are generally difficult to transfect. Using lipid-mediated transfection of a reporter plasmid, we modify the standard method for transfection of L. dispar -derived embryonic cell lines IPLB-LdEp and -LdEIta, obtaining transfection efficiencies of 34% and 30%, respectively, as determined by image analysis assays. Using the standard lipid-mediated method, we obtain transfection efficiencies for L. dispar -derived cell line IPLB-Ld652Y of at least 40% with high mean expression levels, indicating the IPLB-Ld652Y cell line may be a superior choice for expression studies or systems requiring L. dispar -derived cells.
Recently investigators showed that polydnavirus DNA from the parasitic wasp Glyptapanteles indiensis could transform gypsy moth L. dispar cell lines in vitro (McKelvey et al., 1996). Here we show GiPDV DNA is capable of transforming in vitro to varying degrees lepidopteran (IPLB-TN-R2, IPLB-SF-21, IAL-PID2, IPLB-HvT1) and coleopteran (IPLB-DU182E) insect cell lines derived from various somatic tissue types. An insect cell line derived from dipteran Aedes albopictus (C7/10) could not be transformed with G. indiensis polydnavirus.
The Colorado potato beetle, Leptinotarsa decemlineata, is a major holarctic pest of solanaceous crops. Presumably, this insect spread from Solanum species in central America to the Mexican plateau, and this was followed by multiple invasions of North America and Europe. Attempts are being made to control this beetle by using a genetically modified spiroplasma that occurs naturally in its gut. In the current study, spiroplasmas isolated from beetles collected in North America and Poland exhibited serologic (spiroplasma motility inhibition test) and genomic (restriction fragment length polymorphism) profiles that suggest that there were multiple spiroplasma introductions. Two serovars were identified; one is found in northern North America and at high elevations in Poland, and the other is found in southern North America and at low elevations in Poland. The patterns of genovar distribution coincide with the serovar patterns. The existence of such biovars—intraspecific taxal units reflected by serologic and genomic differences—should be taken into consideration when taxonomies are developed and strains are chosen for biocontrol.
Spiroplasma strain LD-1T (T = type strain), which was isolated from the gut of a Colorado potato beetle (Leptinotarsa decemlineata) larva collected in Maryland, was serologically distinct from other spiroplasmas. Similar isolates were obtained from other L. decemlineata specimens collected in various parts of North America, in Poland, and in other eastern European countries and from Leptinotarsa texana specimens collected in Texas. Cells of strain LD-1T, which in early passages were spiral, exhibited exceptionally rapid translational motility. This rapid motility and the spiral shape were lost after extended passage in culture. The organism required serum for growth. Originally isolated in coculture with insect cells in DCCM medium, strain LD-1T adapted to several media in the absence of cocultured cells. Use of anaerobic conditions allowed primary isolation in a variety of media. The organism did not grow in serum-free media containing 2% serum fraction. Optimal growth in M1D medium occurred at 30 to 37°C (doubling time, 7.2 h). On solid M1D medium containing 2.0% Noble agar (pH 6.25) at 30°C, strain LD-1T produced discrete colonies with numerous satellites. Strain LD-1T hydrolyzed arginine, but did not utilize urea; there was evidence of weak fermentation of glucose. The guanine-plus-cytosine content of the DNA was determined to be 25 ± 1 mol%, and the genome size was 1,085 kb. The results of extensive studies of the ecology of this spiroplasma suggest that it is host specific for Leptinotarsa beetles. Strain LD-1 (= ATCC 43213) is designated the type strain of a new species, Spiroplasma leptinotarsae.
Thirteen different insect cell lines representing three different orders were infected with Autographa californica nuclear polyhedrosis virus (AcMNPV) whose genome had been inactivated in situ by photochemical means or by short wave UV irradiation. Changes in rates of cellular DNA synthesis, as measured by [3H]thymidine incorporation, and cell growth were subsequently measured at various times post infection. Seven cell lines exhibited a significant decline in [3H]thymidine incorporation (compared to control levels) during an initial 12 h period post infection, while three cell lines showed substantial declines in [3H]thymidine incorporation over a 4 day period post infection. All cell lines which showed a significant decline in [3H]thymidine over the duration of the experiment (4 days) also exhibited reduced cell growth rates. The role of a putative AcMNPV virion associated factor(s) in influencing these cellular events is discussed.
Extracts of three continuous cell lines from the cabbage looper, Trichoplusia ni, were assayed for the presence of ecdysteroids. While no evidence of ecdysteroids was present in the extracts of the ovarian (TN-368) or embryonic (IPLB-TN-R2) cell lines, radioimmunoassays on extracts of media and extracts of cell pellets from imaginal disc cell cultures (IAL-TND1) were positive. The immunoreactive material from both cells and media co-migrated with a 20-hydroxyecdysone standard on reversed-phase high-performance liquid chromatography (HPLC). The immunoreactive fractions from the cell extract were chromatographed on silica HPLC and subjected to mass spectral analysis. Both of these analyses indicated that the unknown compound was 20-hydroxyecdysone. Radioimmunoassay indicated up to 28 ng of ecdysone equivalents in cells (3.75 x 107 cells) from 50 ml of IAL-TND1 cultures, which is equivalent to 120 ng of 20-hydroxyecdysone based on relative reactivity of the antiserum used in this study. This report presents the first evidence of 20-hydroxyecdysone production by a continuous insect cell line and also the first to show that cells from imaginal discs are capable of ecdysteroid synthesis.
Half of the spiroplasmas observed microscopically in insects cannot be cultivated and are thus inaccessible to study. Media mixed with cultured insect cells have now been used to isolate two of these spiroplasmas--the sex-ratio organism (SRO) of Drosophila and the Colorado potato beetle spiroplasma (CPBS). Studies described herein indicate that at least one of the cell-supplied factors is involved in redox maintenance. A wide variety of insect cell culture systems were suitable for primary isolation of the CPBS. The SRO and CPBS were found to attach to insect cells in vitro.
Uncultivable for more than 25 years, the sex-ratio spiroplasma of Drosophila willistoni grew in a tissue culture medium (H-2) containing an embryo-derived lepidopteran cell line (IPLB-TN-R2). After adaptation, it grew in a cell-free H-2 medium. This success demonstrates the usefulness of cell culture systems for cultivation of fastidious microorganisms and facilitates study of the sex-ratio trait in Drosophila.
A cell line (IPLB-TpE1) was established from embryos of the hymenopteran parasitoid,Trichogramma pretiosum Riley. Cultures contain a mixture of attached, elongate spindle-shaped cells and large aggregates of suspended cells. Chromosomes of the cells were typical ofTrichogramma species and isozyme characterization showed patterns similar toT. pretiosum adults, but distinctly different fromHeliothis zea, the lepidopteran host from which parasite eggs were obtained. The cells are capable of growth over a wide range of osmotic pressures with equal growth between 350 and 600 mOsm/kg. Optimal growth was obtained with a pH of 6.5. Doubling time at the 40th passage was 72 h and cultures are currently subcultured at weekly intervals.
The Colorado potato beetle spiroplasma, which is not cultivable in conventional cell-free media, grew in tissue culture media in the presence of several coleopteran and lepidopteran insect cell lines. The cultured organisms attained titers of 1.2 × 10 9 spiroplasmas per milliliter of culture at the 100th passage and retained infectivity and a high capacity for translational motility at the 15th passage. Cell culture systems may facilitate the isolation of other presently uncultivable microorganisms and may be useful in the study of the role of microbial physiology and behavior in pathogenicity.
The ability of insect hemolymph to induce vesicles in a high passage insect cell line, IAL-TND1, is described. The factor responsible, designated VPA for ‘vesicle-promoting activity’, was determined to be heat sensitive, nondialyzable, and protease Type XIV sensitive but insensitive to trypsin digestion. In efforts to determine the source of VPA, hemolymph was collected from different developmental stages ofTrichoplusia ni, and certain tissues fromT. ni were cocultured with IAL-TND1 cells. Hemolymph from every developmental stage tested exhibited VPA although the effect was somewhat reduced in spinning-stage larvae. Additionally, several tissue, including fat body, tess, and imaginal discs, released VPA into the culture medium. Neural tissues and endocrine glands did not induce vesicle formation.
A new cell line was developed from 3-d-old embryonated eggs of the cabbage looper,Trichoplusia ni, and has been designated IPLB-TN-R2. It contains a variety of morphological cell types, including myoblastlike, neuroblastlike, and epithelial-like cells. Chromosome analysis revealed typical lepidopteran chromosomes. Isozyme characterization showed patterns similar to two other cabbage looper cell lines (TN-368 and IAL-TND1) in the case of five enzymes but differed from these two lines for two other enzymes. Virus infectivity tests revealed the line is highly susceptible toAutographa californica nuclear polyhedrosis virus, but no cytopathology was observed after inoculation with several other lepidopteran viruses.
Two new cell lines, designated IPLB-DU182A and IPLB-DU182E, were developed from embryos of the southern corn rootworm,Diabrotica undecimpunctata. Cells were grown in the lepidopteran cell culture media IPL-52B and IPL-76 in a 3∶1 ratiowith 9% fetal bovine serum. The IPL-52B was modified by deleting CaCl2·2H2O and NaHCO3 out of the formulation. The osmotic pressure was adjusted to the optimal osmolarity of 400 mOsm/kg by the addition of2 g mannitol/100 ml medium. The cells were primarily epithelial-like, but some spindle-shaped cells were also present. The lines were 65% diploid and were characterized with respect to 10 isozymes. Cellscurrently grow with a 5-d doubling time and are subcultured by trypsinization at 1-wk intervals and at a 1∶2 to 1∶5 split ratio.