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Statistically significant sex-biased differences, which we have defined as a >2-fold difference in expression with 95% confidence, were observed with 12 of the LylinOBP transcripts expressed at higher levels in male antennae (Table?4). Sex-biased transcripts were likewise detected in the proboscis and legs; however, the number of genes affected was limited: LylinOBP10 in legs and LylinOBP4 and LylinOBP6 in the proboscis and antenna. In antennae, the bias was towards male dominant expression, whereas in legs and the proboscis higher expression was observed in females (Table?4). To validate the microarray data, we used qRT-PCR to assess the transcript abundance of nine LylinOBP genes (LylinOBP1, LylinOBP2, LylinOBP5, LylinOBP8, LylinOBP15, LylinOBP19, LylinOBP24, LylinOBP26 and LylinOBP29) that showed varying degrees of expression in antennae, proboscis and legs. https://en.wikipedia.org/wiki/MRIP Transcript abundance for each OBP was determined for multiple tissues (antenna, proboscis, leg, head, body, gut and fat body) relative to standard curves prepared from serially diluted plasmid DNAs containing a portion of the LylinOBP sequence of interest. Consistent with the microarray data, we found https://www.selleckchem.com/products/AZD1152-HQPA.html that transcript abundance was heterogeneous amongst the tissues we examined (Fig.?6); however, there was clear preferential expression (P??leg?>?proboscis) and LylinOBP19 (proboscis?>?leg?>?antenna) amongst the chemosensory tissues was consistent with that observed in the microarray experiments. While not as pronounced as that seen in the hybridization experiments, our https://www.selleckchem.com/products/pf-06463922.html qRT-PCR data also demonstrated a certain degree of sex-biased OBP expression in the chemosensory tissues (Fig.?6), in particular in male antennae for LylinOBP1 and LylinOBP2 (P?
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