Polydnaviruses are unique symbiotic viruses that are replicated in the calyx cells of the ovary of some parasitic wasps. They have a segmented genome of circular double-stranded DNA and are injected along with the wasp's egg into the host, where they are essential for successful parasitism. Polydnaviruses replicate from integrated proviral DNA, and after excision of viral segments, flanking DNA is rejoined. Little is known about ovarian morphogenesis, the mode of amplification of the viral DNA and the involvement of ecdysteroids. Here we have analysed these parameters in the course of pupal-adult development in the braconid wasp Chelonus inanitus. Immediately after pupation, ovarian cells proliferated and calyx cells began to differentiate; at this stage ecdysteroids, in particular 20-hydroxyecdysone, were highest. Thereafter, calyx cells began to increase in size and DNA content and eventually became gigantic. Amplification of non-viral DNA (actin) and viral DNA in its integrated and excised form and of corresponding rejoined flanking regions was measured by quantitative real-time PCR. In the early phase of calyx cell differentiation, copy numbers of actin and integrated viral DNA increased to a similar extent. This, along with the increase in nuclear volume and DNA content in the absence of extensive cell proliferation, suggested polyploidization of the early stage calyx cells. In the following phase, integrated viral DNA was selectively and intensively amplified and eventually excised and circularized. As copy numbers of excised circular viral DNA and rejoined flanking DNA reached similarly high levels, excised viral DNA appeared not to replicate. After adult eclosion, amplification of viral DNA declined.
Successful parasitism of some endoparasitic wasps depends on an obligately symbiotic association with polydnaviruses. These unique viruses have a segmented genome consisting of circles of double-stranded (ds) DNA and do not replicate in the parasitized host. They are produced in the wasp's ovary and injected into the host along with the egg. Chelonus inanitus is an egg-larval parasitoid; its polydnavirus (CiV) has been shown to protect the parasitoid larva from the host's immune system and to induce developmental arrest in the prepupal stage. The genome of CiV consists of at least 10-12 segments and five have been sequenced up to now. Here, the complete (CiV12g2) or partial (CiV12g1, CiV16.8g1) cloning of three new CiV genes is reported. All three occur only on one viral segment and have no similarity to other known polydnavirus genes, with the exception of a high similarity of CiV12g1 to CiV14g1 and CiV12g2 to CiV14g2. Furthermore, the first attempt of in vivo application of RNA interference to study the function of polydnavirus genes is shown. Injection of dsRNA of two late-and one early-and late-expressed CiV genes into CiV/venom-containing host eggs partially rescued last-instar larvae from developmental arrest. Injection of the same dsRNAs into parasitized eggs partially reduced parasitoid survival, mainly by preventing the successful emergence of the parasitoid from the host. These viral genes thus seem to be involved in inducing developmental arrest and in keeping the cuticle soft, which appears to be necessary for parasitoid emergence and host feeding.
A flow cytometric analysis of five B cell chronic lymphocytic leukemic (B-CLL) cell lines was undertaken using 129 unknown reagents from the blind panel (BP) and 72 reagents from the known CD panel obtained from the Fourth International Leucocyte Differentiation Conference and Workshop, B cell section (Vienna, 1989). The five cell lines examined were: SeD (PNAS 75, 5706, 1978), B-CLL-LCL (BLOOD 71, 9, 1988), JVM-HH and JVM-2(INT J CAN 38, 531, 1986), and WR#1 (TH and BD). The reagents were #1-129 (blinded panel) and reagents 1-44 and 53-84 (CD panel with CD23 reagents missing). Positivity was defined as greater than 30% of the cells having a three fold increase or more in mean channel fluorescence. Fourty-three reagents of the blinded panel were negative by these criteria while all remaining reagents were positive on all five lines. SeD showed the lowest reactivity; B-CLL-LCL and JVM-2 showed the most reactivity; JVM-HH and WR#1 were intermediate. The known CD panel confirmed the reactivity of the blinded panel. An average immunophenotype was constructed and compared to published normal EBV lymphoblastoid cell lines and several differences were noted. There was an absence or significant decrease in the expression of CD19, CD21, CD22 and CD37 while there was an increased expression of CD38, CD54, CD74 and CD76. The heterogeneity observed between the B-CLL lines may in part be due to polymorphisms but is more likely to represent the underlying heterogeneity seen in common and familial B-CLL.2+öff
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