Publication Title: 
Research in Veterinary Science

The development of anthelmintic resistance has made the search for alternatives to control gastrointestinal nematodes of small ruminants imperative. Among these alternatives are several medicinal plants traditionally used as anthelmintics. This present work evaluated the efficacy of ethyl acetate, acetone, and methanol dried leaf and seed extracts of five medicinal plants were tested in vitro ovicidal and larvicidal activities on Haemonchus contortus.

Kamaraj, C.
Rahuman, A. Abdul
Publication Title: 
Ecotoxicology and Environmental Safety

Aedes aegypti Linn is one of the most important mosquito species. The vectors are responsible for causing deadly diseases like dengue and dengue hemorrhagic fever. Several chemical pesticides used to control these dengue vectors caused severe toxic significances on human health and other non-target beneficial insects. Therefore the current investigation has been made to access the bio-efficacy of the crude seed extracts of T. chebula against the dengue vector Ae. aegypti. The GC-MS analysis of crude seed extracts of T.

Thanigaivel, Annamalai
Vasantha-Srinivasan, Prabhakaran
Senthil-Nathan, Sengottayan
Edwin, Edward-Sam
Ponsankar, Athirstam
Chellappandian, Muthiah
Selin-Rani, Selvaraj
Lija-Escaline, Jalasteen
Kalaivani, Kandaswamy
Publication Title: 
Experimental Gerontology

Dietary restriction extends lifespan in many organisms, but little is known about how it affects hematophagous arthropods. We demonstrated that diet restriction during either larval or adult stages extends Aedes aegypti lifespan. A. aegypti females fed either single or no blood meals survived 30-40% longer than those given weekly blood meals. However, mosquitoes given weekly blood meals produced far more eggs.

Joy, Teresa K.
Arik, Anam J.
Corby-Harris, Vanessa
Johnson, Adiv A.
Riehle, Michael A.
Publication Title: 
Geriatrics & Gerontology International

Lifespan can be lengthened by genetic and environmental modifications. Study of these might provide valuable insights into the mechanism of aging. Low doses of radiation and short-term exposure to heat and high concentrations of oxygen prolong the lifespan of the nematode Caenorhabditis elegans. These might be caused by adaptive responses to harmful environmental conditions. Single-gene mutations have been found to extend lifespan in C. elegans, Drosophila and mice. So far, the best-characterized system is the C.

Honda, Yoko
Tanaka, Masashi
Honda, Shuji
Publication Title: 
Journal of Genetics and Genomics = Yi Chuan Xue Bao

CoQ is an essential electron carrier in the mitochondrial respiratory chain of both eukaryotes and prokaryotes. It consists of a benzoquinone head group and a hydrophobic polyisoprenoid tail. The genes (COQ1-9) involved in CoQ biosynthesis have been characterized in yeast. In this study, we generated and molecularly characterized a mutant allele of a novel Drosophila gene, sbo, which encodes a protein that is predicted to catalyze the prenylation of p-hydroxybenzoate with the isoprenoid chain during the process of CoQ synthesis.

Liu, Jiyong
Wu, Qinghua
He, Dianlu
Ma, Tengyu
Du, Li
Dui, Wen
Guo, Xiaoyan
Jiao, Renjie
Publication Title: 
Journal of Medical Entomology

Using the in vitro rearing system in conjunction with the hair tuft bioassay, NYDA and NYDA without fragrances formulations (92% wt:wt dimeticones) were 100% ovicidal (0% of treated eggs hatched) after an 8-h exposure of the eggs of the human head louse (Pediculus humanus capitis De Geer) following the manufacturer's instructions. Comparatively, 78 and 66% of eggs similarly exposed hatched after distilled deionized water or Nix (1% permethrin) treatments, respectively.

Strycharz, Joseph P.
Lao, Alice R.
Alves, Anna-Maria
Clark, J. Marshall
Publication Title: 

It is widely appreciated that larvae of the nematode Caenorhabditis elegans arrest development by forming dauer larvae in response to multiple unfavorable environmental conditions. C. elegans larvae can also reversibly arrest development earlier, during the first larval stage (L1), in response to starvation. "L1 arrest" (also known as "L1 diapause") occurs without morphological modification but is accompanied by increased stress resistance.

Baugh, L. Ryan
Publication Title: 
Developmental Cell

Developmental timing genes catalyze stem cell progression and animal maturation programs across taxa. Caenorhabditis elegans DRE-1/FBXO11 functions in an SCF E3-ubiquitin ligase complex to regulate the transition to adult programs, but its cognate proteolytic substrates are unknown. Here, we identify the conserved transcription factor BLMP-1 as a substrate of the SCF(DRE-1/FBXO11) complex. blmp-1 deletion suppressed dre-1 mutant phenotypes and exhibited developmental timing defects opposite to dre-1.

Horn, Moritz
Geisen, Christoph
Cermak, Lukas
Becker, Ben
Nakamura, Shuhei
Klein, Corinna
Pagano, Michele
Antebi, Adam
Publication Title: 
Science (New York, N.Y.)

A C. elegans neurosecretory signaling system regulates whether animals enter the reproductive life cycle or arrest development at the long-lived dauer diapause stage. daf-2, a key gene in the genetic pathway that mediates this endocrine signaling, encodes an insulin receptor family member. Decreases in DAF-2 signaling induce metabolic and developmental changes, as in mammalian metabolic control by the insulin receptor. Decreased DAF-2 signaling also causes an increase in life-span.

Kimura, K. D.
Tissenbaum, H. A.
Liu, Y.
Ruvkun, G.
Publication Title: 
Proceedings of the National Academy of Sciences of the United States of America

Mutations in the clk-1 gene of the nematode Caenorhabditis elegans result in slowed development, sluggish adult behaviors, and an increased lifespan. CLK-1 is a mitochondrial polypeptide with sequence and functional conservation from human to yeast. Coq7p, the Saccharomyces cerevisiae homologue, is essential for ubiquinone (coenzyme Q or Q) synthesis and therefore respiration. However, based on assays of respiratory function, it has been reported that the primary defect in the C. elegans clk-1 mutants is not in Q biosynthesis.

Jonassen, T.
Larsen, P. L.
Clarke, C. F.


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