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Both, G. mellonella and S. exigua, are most important pests in tropical countries. G. mellonella has five to six generations per year (Abid et al. 1997; Ali 1996), there, and feeding in bee combs they find, besides wax, residues of honey, insect skin and pollen (Hachiro & Knox 2000). Li et al. (1987) have shown the efficacy of Bacillus thuringiensis aizawai against G. mellonella. It is registered in the EU as Mellonex for its control, but NeemAzal T/S may also be active, and will have some advantages (Leymann et al. 2000, Melathopoulos et al. 2000). Therefore we conducted new studies here, on the results we shall report. S. exigua is an important polyphagous pest of crops in tropical areas (Brown & Dewhurst 1975). By repeated control with synthetic insecticides, especially by illiterate farmers (Armes et al. 1992; Aggarwal et al. 2006a) resistance to a lot of those insecticides has been built up, making plant protection very difficult. Therefore the need is pronounced for microbial and botanical pesticides (Nagarkatti 1982; Rao et al. 1990), which have different modes of action than synthetic insecticides. Aggarwal et al. (2006b) have started to test such ingredients, but the time of observation was too short (3 days), since the effects of Neem products occur later than those of synthetic insecticides (Basedow et al. 2002). So we conducted new, longer lasting experiments (with 5 to 30 days), on which we give a report here. The experiments were conducted during guest stays of the three co-authors (from Mymensingh, Bangladesh, from Nazreth, Ethiopia, and from Khartoum, Sudan) at the Experimental Station of the Institute of Phytopathology and Applied Zoology at Giessen Univerity.
Acinetobacter baumannii is a Gram-negative pathogen that causes a multitude of nosocomial infections. The Acinetobacter trimeric autotransporter adhesin (Ata) belongs to the superfamily of trimeric autotransporter adhesins which are important virulence factors in many Gram-negative species. Phylogenetic profiling revealed that ata is present in 78% of all sequenced A. baumannii isolates but only in 2% of the closely related species A. calcoaceticus and A. pittii. Employing a markerless ata deletion mutant of A. baumannii ATCC 19606 we show that adhesion to and invasion into human endothelial and epithelial cells depend on Ata. Infection of primary human umbilical cord vein endothelial cells (HUVECs) with A. baumannii led to the secretion of interleukin (IL)-6 and IL-8 in a time- and Ata-dependent manner. Furthermore, infection of HUVECs by WT A. baumannii was associated with higher rates of apoptosis via activation of caspases-3 and caspase-7, but not necrosis, in comparison to ∆ata. Ata deletion mutants were furthermore attenuated in their ability to kill larvae of Galleria mellonella and to survive in larvae when injected at sublethal doses. This indicates that Ata is an important multifunctional virulence factor in A. baumannii that mediates adhesion and invasion, induces apoptosis and contributes to pathogenicity in vivo.