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ChIP-seq profiling identifies diapause-regulated H3K27me3 targets in the fat body of Culex pipiens.

Culex pipiens, a principal vector of significant arboviruses, survives winter through diapause, a hormonally controlled inactive phase that enhances endurance under severe cold circumstances. Recent data suggests that epigenetic processes, namely histone post-translational modifications (hPTMs), play a crucial role in regulating seasonal dormancy. Prior studies from our laboratory indicated a decrease in the methylation of Histone 3 (H3K27me3) in diapausing fat body tissue, associated with elevated expression of the histone demethylase UTX. Nonetheless, the precise genomic areas impacted by these chromatin alterations remained unidentified. We used chromatin immunoprecipitation coupled with high-throughput sequencing (ChIP-seq) to delineate the genome-wide distribution of H3K27me3 across fat body chromatin in diapausing (D) and non-diapausing (ND) female Cx. pipiens. Notably, the higher signal at transcription start sites (TSSs) reflects localized redistribution rather than a global decrease, as diapausing fat bodies retain less H3K27me3 overall but concentrate it at promoters. To investigate the functional significance of these chromatin alterations, we confirmed a number of target loci via ChIP-qPCR and assessed gene expression with qRT-PCR. We identified many critical genes that were markedly increased in diapausing mosquitoes, exhibiting an inverse relation to H3K27me3 enrichment. Our data demonstrates different H3K27me3 chromatin landscapes between diapausing and non-diapausing Cx. pipiens, corroborating a hypothesis of selective, locus-specific repression in the non-diapause state and its targeted removal during diapause to permit activation of dormancy-associated genes. These results suggest that chromatin remodeling is a core driver of the diapause switch.

Animals

Hormonal control of embryonic diapause and reactivation in the tammar wallaby.

Suckling is the most important and best-known influence that the marsupia offspring exerts on its mother but recent evidence suggests that this is not the only way it proclaims its presence. The pregnant female differs from the non-pregnant in several features, which appear to be due to the presence of the conceptus in the uterus. The converse influence of the female on the embryo is best known in kangaroos and wallabies because the facultative and obligate embryonic diapause they exhibit has provided excellent opportunities for experimental investigation of the environmental and hormonal control of early pregnancy. Results from the tammar wallaby, which exhibits both types of diapause, show that the initiation of diapause occurs on Day 8 p.c. The sequence of events that lead to blastocyst reactivation, after removing the suckling stimulus (facultative diapause), takes seven days and involves a reduction in prolactin secretion from the anterior pituitary, reactivation of the corpus luteum, increase in endometrial secretion and reactivation of the blastocyst. The ultimate control of obligate diapause involves alteration of photoperiod but the role of prolactin is still uncertain.

Animals

A horizontally transferred bacterial gene for pantothenic acid biosynthesis regulates diapause and reproduction in the spider mite Amphitetranychus viennensis.

Horizontal gene transfer (HGT) has contributed substantially to the evolution of arthropod genomes, yet the functional significance of many horizontally acquired genes remains poorly understood. The hawthorn spider mite, Amphitetranychus viennensis, is a devastating agricultural pest whose high fecundity and overwintering diapause afford its exceptional ecological resilience. Through a genome-wide screen, we identified 37 high-confidence horizontally transferred genes (HTGs) in A. viennensis. Among these candidates, we prioritized AvPBL, a gene encoding pantothenate-β-alanine ligase, for functional characterization because it controls the rate-limiting step of a distinctly non-metazoan pantothenic acid (vitamin B5) biosynthesis pathway. RNAi-mediated suppression of AvPBL significantly reduced transcript abundance and endogenous pantothenic acid levels, triggering a 23.7% reduction in cumulative fecundity and severely compromising the mites' ability to enter winter diapause. Importantly, exogenous pantothenic acid supplementation rescued these reproductive and diapause defects, directly linking the observed phenotypes to the disruption of pantothenic acid biosynthesis. Our results demonstrate that the horizontally transferred bacterial gene AvPBL has been functionally integrated into the endogenous metabolic network of A. viennensis, playing a critical role in vitamin B5 biosynthesis, reproduction, and diapause regulation. These findings provide direct evidence that horizontally acquired metabolic genes can shape key life-history traits and drive adaptive evolution in arthropods.

Amphitetranychus viennensis

[Role of photoperiodism and temperature in the induction of diapause in the egg phase of Aedes caspius caspius Pall. (Diptera, Culicidae)].

The influence of two photoperiods (12 and 20 hours of light per day) and different constant (25, 20, 15.5, 12.5 and 4 degrees) and fluctuating temperatures on the hatching of the larvae of Ae. caspius caspius from Bairam-Ali (Turkmenia) has been studied experimentally. The induction of winter egg diapause has been established to be under photoperiodic and temperature control. In eggs laid by short-day treated females the tendency to enter diapause is more expressed (55.9%) as compared with those laid by long-day exposed females (1.6%); in this case the eggs were kept at 12.5 degrees and in shortday regime. The low temperature 4 degrees increases only slightly the number of diapausing eggs (13.9%). The temperature which fluctuate during twenty-four hours being combined with short-day regime is more effective (the action of low temperature coincides with the scotophase). Even in the progeny of long-day exposed females the termorhythms 13--21, 8--20 and 4--20 degrees induce to enter diapause correspondigly 27.4, 22.8 and 59.9 per cent of the eggs.

Aedes

[Activity of the corpora allata of diapausing females of Tetrix undulata (SWRB) (Orthoptera-Tetrigidae)].

The implantation of one or two pairs of corpora allata of diapausing females in another diapausing females (two weeks old) induces vitellogenesis and laying of one, two or three egg-pods in a great number of females. The denervation of the corpora-allata of a diapausing female also induced vitellogenesis. These results suggeste that corpora-allata of diapausing females are not active. The denervation induces the break of the inhibition "travelling" by the corpora-allata-cardiaca nerves or stimulates the corpora-allata.

Animals

Comparative ultrastructure and blood-brain barrier in diapause and nondiapause larvae of the European corn borer Ostrinia nubilalis (Hübner).

Ultrastructural examination of diapause and nondiapause larval brains of the European corn borer disclosed anatomical differences that may be related to the insect's "blood-barrier". The perineurial type I cells are quite closely appressed in the diapause brain, but thrown into extensive folds with large intercellular spaces in the nondiapause brain. The perineurial type II cells of diapause and nondiapause larvae are basically similar in general ultrastructure, and most likely form the basis for the "blood-brain barrier." Horseradish peroxidase penetration studies indicated that the outer margin of the perineurial type II cells constitute the limits of infiltration into the brain. An enzymatic component of the "blood-brain barrier" is postulated in this insect. The localization of ATPase in the perineurial type II cells indicates that energy-requiring regulatory mechanisms may be localized here. Metabolic studies with isolated brains, coupled with recent evidence from mammalian systems, suggest that glial cells may be of importance in an enzymatic "blood-brain barrier."

Adenosine Triphosphatases

[Juvenile hormone in diapausing Pieris brassicae and mutations. Tetrahydrofolic acid and pterins incubated in chrysalids, provoking ontogenic and mutagenic genetic information alterations in Drosophila melanogaster].

Study of AMPc phosphodiesterase shows presence of JH in diapausing chrysalids and antogonistic action of FH and pterines. Study of farnesoldeshydrogenase and farnesal deshydrogenase in Dm shows that FH4 and pterines inhibite FDH, active ADH. Conclusion is JH in diapause chrysalides is active factor with FH4 provoking genesis of pigmentary mutation, cellular proliferation or growth deficiencies. Comparison with JH+FH4+ teromes incubated in Bar (Muller 5) mutants of Dm in place of diapausing chrysalids reproduce larval deficiences, mosaics and mutations observed in precedent experiments.

3',5'-Cyclic-AMP Phosphodiesterases

Novel genetic association with migratory diapause in Australian monarch butterflies.

BACKGROUND: Monarch butterflies (Danaus plexippus) are a charismatic and culturally important North American butterfly species famous for their unique, dramatic migratory life history. While non-migratory populations of the species are widespread and apparently stable, migratory populations in North America have recently seen declines, prompting concern that the migratory phenomenon in North America may be at risk of disappearing. In contrast, a relatively recently-established monarch population in Australia has rapidly re-acquired a migratory life history following hundreds of generations of residency and successive bottlenecks as the species island-hopped across the Pacific during the late 1800s and early 1900s. The process by which migration re-emerged in Australian monarchs is not currently known. RESULTS: We raised and sequenced individuals from Queensland, Australia under environmental conditions associated with migration initiation and found strong variance in reproductive diapause, a key migratory trait, between families which was associated with variation at the spectrin beta chain protein Karst. This protein is known to be involved in diapause termination in monarchs but has not previously been identified as associated with migratory life history variance. The most strongly associated migratory SNPs are also present at a low frequency in North America, suggesting that the Australian population is leveraging standing variation which persisted across repeated bottlenecks as Monarchs spread across the Pacific. CONCLUSIONS: Our results provide an intriguing example of how the temporary loss of migration-in this case likely over hundreds of generations-may not entail the loss of genetic variation associated with this complex life history strategy.

Animals

Cyclic adenosine monophosphate-induced changes in the surface morphology of diapausing blastocysts and the effects on implantation.

Estrogen induces blastocyst implantation in diapausing female mice, increases uterine levels of adenyl cyclase and cyclic adenosine monphosphate (cylic AMP), and stimulates synthesis of ribonucleic acid and protein in both the uterus and blastocyst. Furthermore, the surface ultrastructure of trophoblast cells seen with scanning electron microscopy (SEM) changes with activation of the diapausing blastocyst by estrogen. Cyclic AMP-activated blastocysts were investigated with the use of SEM and compared to blastocysts activated by estrogen. Intraperitoneal administration of cyclic AMP was generally ineffective, whereas administration of cyclic AMP intraluminally in the uterus effectively mimicked the early estrogen activation. These findings are discussed in relation to other known activation changes in preimplantation blastocysts and with regard to similar findings after administration of various antiestrogens.

Animals

Molecular size of the diapause hormone of the silkworm Bombyx mori.

The diapause hormone (DH) responsible for arrested development of the silkworm Bombix mori consists of two active principles of peptide (A and B). Since both hormones form aggregates in aqueous phases, the molecular weights were determined by gel permeation chromatography of Merckogel OR 6000 using methanol-dichloromethane mixture as the developing agent. Gramicidins and modified peptides soluble in the organic solvents were used as the standard markers for the molecular weight measurements of the hormones. The molecular weights of DH-A and -B are estimated to be 3300 +/- 400 and 2000 +/- 200, respectively.

Animals

[The existance of a winter diapause revealed by the effects of hormone treatment in the spider Pisaura mirabilis Cl. (Pisauridae)].

In the same experimental conditions, injections of ecdysterone induce moulting phenomena appearing after significantly different times according to whether the nymphs of Pisaura have been captured in October or January. The variable sensibility of the spiders towards an equal amount of hormones allows us to confirm the occurrence of winter-diapause in this Arachnid.

Animals

[Effect of different estro-progesterone sequences on nidation of dormant blastocysts administered in diapause in ovariectomized rats].

The hormonal condition permitting delayed nidation in rats ovarectomized on day 4 or 5 of pregnancy was studied by administering progesterone and estradiol in differents sequences between days 9 and 14. The best result was obtained when progesterone was given 3 days before an estrogen-progesterone association. The same treatment induced delayed nidation in rats receiving Reserpine and ovariectomized day 5, but not when progesterone and estradiol were present day 4.

Animals