Using a synaptic vesicle-tagged GFP marker, Punc-25-SNB-1::GFP, that is localized to the presynaptic terminals of VD and DD motoneurons, we isolated two recessive loss-of-function mutations,
ju43 and
ju58, that define the
syd-7 locus. In wild-type animals, the Punc-25-SNB-1::GFP marker is expressed as discrete fluorescent puncta spaced evenly along the ventral and dorsal sides of the animal. In
syd-7 mutants some of the fluorescent puncta are absent in various regions, while the remaining puncta appear normal in morphology and spacing. 90% of
ju43 and
ju58 animals lose SNB-1::GFP puncta in places corresponding to the presynaptic regions of VD1 and VD2 neurons. 50% of
ju58 animals also lack SNB-1::GFP puncta in presynaptic regions of different DD neurons. Despite of the defects in GFP marker, the locomotion of
syd-7 animals is indistinguishable from wild-type animals. Absence of SNB-1::GFP puncta can be caused by defects in either cell fate or neural differentiation. To distinguish these possibilities we are examining the axonal morphology of D neurons and the expression of cell-type specific markers in
syd-7 animals. We mapped
syd-7 to chromosome V, in a small region overlapped by yDf12 and arDf1. This tentatively places
syd-7 between
eat-6 and
him-5. Currently we are further fine-mapping
syd-7 and trying to rescue
syd-7 with cosmids in the region. We are also in the progress of testing for the genetic interactions between
syd-7 and genes known to be involved in the development of the nervous system.