scholarly journals Comparative Effects of Certain Igrs on the Carbohydrates of Hemolymph and Fat Body of the Desert Locust, Schistocerca Gregaria (Orthoptera: Acrididae)

2012 ◽  
Vol 95 (4) ◽  
pp. 928-935 ◽  
Author(s):  
M. A. Tanani ◽  
K. S. Ghoneim ◽  
Kh. Sh. Hamadah
1977 ◽  
Vol 168 (3) ◽  
pp. 513-520 ◽  
Author(s):  
P Johnson ◽  
H H Rees

1. The C-20 hydroxylation of alpha-ecdysone to produce beta-ecdysone was investigated in the desert locust, Schistocerca gregaria. 2. alpha-Ecdysone C-20 hydroxylase activity was located primarily in the fat-body and Malpighian tubules. The properties of the hydroxylation system from Malpighian tubules investigated further. 3. The enzyme system was mitochondrial, had a pH optimum of 6.5, an apparent Km of 12.5 micron and required O2 and NADPH. 4. The activity of the hydroxylation system showed developmental variation within the fifth instar, the maximum activity corresponding to the maximum tire of endogenous moulting hormone. The significance of these results is assessed in relation to the control of the endogenous titre of beta-ecdysone. 5. The mechanism of the hydroxylation system was investigated by using known inhibitors of hydroxylation reactions such as CO, metyrapone and cyanide. 6. The CO difference spectrum of the reduced mitochondrial preparation indicated the presence of cytochrome P-450 in the preparation. 7. It concluded that the alpha-ecdysone C-20 hydroxylase system is a cytochrome P-450-deendent mono-oxygenase.


1971 ◽  
Vol 49 (4) ◽  
pp. 431-434 ◽  
Author(s):  
Roger Gordon ◽  
John M. Webster ◽  
David E. Mead

Adult desert locusts were experimentally infected with 50 Mermis nigrescens ova and changes in the fat body carbohydrate levels and glycogen phosphorylase activities recorded. At both 2 and 3 weeks after infection, the parasitism caused a significant reduction in the level of glycogen and non-glycogen carbohydrates in the host fat body, together with a progressive depletion of active and inactive glycogen phosphorylases. By feeding extensively upon the blood carbohydrates of the host, the developing nematode deprives the fat body of carbohydrates and thereby effects a reduction in glycogenesis by the host fat body. Increased catabolism (and (or) decreased anabolism) of the fat body phosphorylases, together with a possible suppression of the host "hyperglycaemic factor" by the nematode, prevent further glycogenolysis by the fat bodies of mermithid-infected locusts and allow a low, constant level of fat body glycogen to be maintained in these insects.


1974 ◽  
Vol 52 (12) ◽  
pp. 1535-1539 ◽  
Author(s):  
S. M. Craig ◽  
J. M. Webster

The older the host (Schistocerca gregaria) at infection, the greater the burden of parasitic Mermis nigrescens required to inhibit the next-but-one molt. Mermithid parasitism caused no change in ecdysone level in the host, but did cause a decrease in fat body protein synthesis. The effect of this decrease on host molting is discussed.


2008 ◽  
Vol 40 (3) ◽  
pp. 137-150 ◽  
Author(s):  
Liesbeth Badisco ◽  
Ilse Claeys ◽  
Matthias Van Hiel ◽  
Elke Clynen ◽  
Jurgen Huybrechts ◽  
...  

Members of the insulin superfamily are not restricted to vertebrates, but have also been identified in invertebrate species. In the current report, we present the characterization of Scg-insulin-related peptide (IRP), an insulin-related peptide in the desert locust, Schistocerca gregaria. This peptide was isolated from corpora cardiaca (CC) extracts by means of a high-performance liquid chromatography (HPLC)-based purification strategy. Subsequent cloning and sequencing of the corresponding cDNA revealed that the encoded Scg-IRP precursor displays the structural organization that is typical for members of the insulin superfamily. Moreover, immunocytochemistry on brain tissue sections demonstrated the presence of Scg-IRP in median neurosecretory cells of the pars intercerebralis and their projections towards the storage part of the CC. Quantitative real-time RT-PCR studies revealed the presence of Scg-IRP transcripts in a variety of tissues, including nervous tissue and fat body. Furthermore, these transcripts showed a tissue- and phase-dependent, temporal regulation during the reproductive cycle of adult males and females. Finally, we demonstrated that Scg-IRP interacts in vitro with a recombinant neuroparsin, a locust protein displaying sequence similarity with vertebrate IGF binding proteins.


2020 ◽  
Vol 21 (20) ◽  
pp. 7518
Author(s):  
Marijke Gijbels ◽  
Elisabeth Marchal ◽  
Thomas Wolf Verdonckt ◽  
Evert Bruyninckx ◽  
Jozef Vanden Broeck

Postembryonic development of insects is coordinated by juvenile hormone (JH) together with ecdysteroids. Whereas the JH early response gene krüppel-homolog 1 (Kr-h1) plays a crucial role in the maintenance of juvenile characteristics during consecutive larval stages, the ecdysteroid-inducible early gene E93 appears to be a key factor promoting metamorphosis and adult morphogenesis. Here, we report on the developmental and molecular consequences of an RNAi-mediated knockdown of SgE93 in the desert locust, Schistocerca gregaria, a hemimetabolan species. Our experimental data show that injection of gregarious locust nymphs with a double-stranded RNA construct targeting the SgE93 transcript inhibited the process of metamorphosis and instead led to supernumerary nymphal stages. These supernumerary nymphal instars still displayed juvenile morphological features, such as a nymphal color scheme and body shape, while they reached the physical body size of the adult locusts, or even surpassed it after the next supernumerary molt. Interestingly, when compared to control locusts, the total duration of the fifth and normally final nymphal (N5) stage was shorter than normal. This appeared to correspond with temporal and quantitative changes in hemolymph ecdysteroid levels, as well as with altered expression of the rate-limiting Halloween gene, Spook (SgSpo). In addition, the levels of the ecdysone receptor (SgEcR) and retinoïd X receptor (SgRXR) transcripts were altered, indicating that silencing SgE93 affects both ecdysteroid synthesis and signaling. Upon knockdown of SgE93, a very potent upregulation of the SgKr-h1 transcript levels was observed in both head and fat body, while no significant changes were detected in the transcript levels of SgJHAMT and SgCYP15A1, the enzymes that catalyze the two final steps in JH biosynthesis. Moreover, the process of molting was disturbed in these supernumerary nymphs. While attempting ecdysis to the next stage, 50% of the N6 and all N7 nymphal instars eventually died. S. gregaria is a very harmful, swarm-forming pest species that destroys crops and threatens food security in many of the world’s poorest countries. We believe that a better knowledge of the mechanisms of postembryonic development may contribute to the discovery of novel, more selective and sustainable strategies for controlling gregarious locust populations. In this context, identification of molecular target candidates that are capable of significantly reducing the fitness of this devastating swarming pest will be of crucial importance.


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