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1.
Environ Sci Pollut Res Int ; 23(11): 11363-11378, 2016 Jun.
Article in English | MEDLINE | ID: mdl-27072030

ABSTRACT

Soil ecotoxicology has been motivated by the increasing global awareness on environmental issues. Northern Hemisphere has been the main driver of this science branch; however, the number and quality of contributions from the Southern Hemisphere are increasing quickly. In this case study, Brazil is taken as an example of how soil ecotoxicology has developed over the last 30 years. It starts with a brief historical overview depicting the main events on soil ecotoxicology in the country. Following, an overview on the Brazilian legislation related to soil ecotoxicology is given, covering regulations with prospective focus, mainly on the registration of pesticides. Regulations with retrospective focus in contaminated areas are also given. Then, an outline of the actors in soil ecotoxicology and examples of prospective ecotoxicological studies performed with soil organisms and plants are given by stressor groups: pesticides, pharmaceuticals, metals, and residues. Experiences from retrospective studies, mainly looking at the assessment of industrial sites, are also covered. Emphasis is given on methodological aspects, pointing to needed actions, mainly regarding the different biotic and abiotic conditions of a tropical country. Finally, the last session discusses how soil ecotoxicology could be improved in methodological adaptations as well as legal requirements.


Subject(s)
Conservation of Natural Resources/methods , Ecotoxicology/methods , Government Regulation , Soil Pollutants , Soil/chemistry , Animals , Brazil , Conservation of Natural Resources/economics , Conservation of Natural Resources/legislation & jurisprudence , Ecotoxicology/economics , Ecotoxicology/legislation & jurisprudence , Guidelines as Topic , Risk Assessment , Soil Pollutants/analysis , Soil Pollutants/toxicity , Tropical Climate
2.
PLoS One ; 8(9): e74592, 2013.
Article in English | MEDLINE | ID: mdl-24086357

ABSTRACT

One of the interesting features of Anticarsia gemmatalis multiple nucleopolyhedrovirus isolate 2D (AgMNPV-2D) genome is the absence of chitinase (chiA) and cathepsin (v-cath) genes. This characteristic may be responsible for the lack of liquefaction and melanization in A. gemmatalis larvae killed by AgMNPV-2D infection. This study aimed to test the hypothesis that CHIA and V-CATH proteins from Choristonera fumiferana DEF multiple nucleopolyhedrovirus (CfDEFNPV) are able to liquefy and melanize the cuticle of A. gemmatalis larvae infected by a recombinant AgMNPV containing chiA and v-cath genes inserted in its genome. A fragment from the CfDefNPV genome containing chiA and v-cath genes was inserted into the genome of AgMNPV-2D. The recombinant virus (vAgp2100Cf.chiA/v-cath) was purified and used to infect insect cells and larvae. Transcripts of v-cath and chiA genes were detected along the infection of insect cells by qRT-PCR, from early to late phases of infection. The analysis of A. gemmatalis larvae killed by vAgp2100Cf.chiA/v-cath infection confirmed the hypothesis proposed. The vAgp2100Cf.chiA/v-cath showed higher insecticidal activity against third instar A. gemmatalis larvae when compared to AgMNPV-2D. The mean time to death was also lower for the vAgp2100Cf.chiA/v-cath when compared to AgMNPV-2D at 10 days post infection. Occlusion body production was higher in A. gemmatalis larvae infected with vAgp2100Cf.chiA/v-cath when compared to AgMNPV-2D. Enzyme assays showed higher chitinase and cysteine protease activities in insect cells and insects infected with vAgp2100Cf.chiA/v-cath when compared to AgMNPV-2D. The introduction of chiA and v-cath genes into the genome of AgMNPV improves its insecticidal activity against A. gemmatalis larvae and this recombinant virus could be used as an alternative to the wild type virus to control this important insect pest.


Subject(s)
Genes, Viral/genetics , Host-Pathogen Interactions , Insecticides/pharmacology , Lepidoptera/virology , Nucleopolyhedroviruses/genetics , Recombination, Genetic , Animals , Cathepsins/metabolism , Cell Line , Chitinases/metabolism , Cysteine Endopeptidases/metabolism , Genetic Loci , Host-Pathogen Interactions/drug effects , Host-Pathogen Interactions/genetics , Inclusion Bodies/drug effects , Inclusion Bodies/metabolism , Inhibitory Concentration 50 , Larva/drug effects , Larva/virology , Nucleopolyhedroviruses/drug effects , Time Factors , Transcription, Genetic/drug effects
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