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Genetics, Vol. 178, 1875-1893, April 2008, Copyright © 2008
doi:10.1534/genetics.107.085472

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The Caenorhabditis elegans rsd-2 and rsd-6 Genes Are Required for Chromosome Functions During Exposure to Unfavorable Environments

Wang Han, Prema Sundaram1, Himanshu Kenjale2, James Grantham and Lisa Timmons3

Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas 66045

3 Corresponding author: Department of Molecular Biosciences, 5041 Haworth Hall, 1200 Sunnyside Ave., University of Kansas, Lawrence, KS 66045.
E-mail: timmons{at}ku.edu

In Caenorhabditis elegans, exogenous dsRNA can elicit systemic RNAi, a process that requires the function of many genes. Considering that the activities of many of these genes are also required for normal development, it is surprising that exposure to high concentrations of dsRNA does not elicit adverse consequences to animals. Here, we report inducible phenotypes in attenuated C. elegans strains reared in environments that include nonspecific dsRNA and elevated temperature. Under these conditions, chromosome integrity is compromised in RNAi-defective strains harboring mutations in rsd-2 or rsd-6. Specifically, rsd-2 mutants display defects in transposon silencing, while meiotic chromosome disjunction is affected in rsd-6 mutants. RSD-2 proteins localize to multiple cellular compartments, including the nucleolus and cytoplasmic compartments that, in part, are congruent with calreticulin and HAF-6. We considered that the RNAi defects in rsd-2 mutants might have relevance to membrane-associated functions; however, endomembrane compartmentalization and endocytosis/exocytosis markers in rsd-2 and rsd-6 mutants appear normal. The mutants also possess environmentally sensitive defects in cell-autonomous RNAi elicited from transgene-delivered dsRNAs. Thus, the ultimate functions of rsd-2 and rsd-6 in systemic RNAi are remarkably complex and environmentally responsive.


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Genetics 2008 178: 0. [Full Text]  






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