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1 e targets other than the Y chromosome-linked Sry gene.
2 chain reaction for the Y chromosome-specific Sry gene.
3 m female heart allografts expressed the male sry gene.
4 [PCR] and in situ hybridization for the male sry gene.
5 that WT1 could transactivate the endogenous SRY gene.
6 n the chick where there is no evidence for a Sry gene.
7 ections of canine SMCY and the entire canine SRY gene.
9 To understand the biological function of the SRY gene, a site-directed mutational analysis is require
10 types in the chick testis, where there is no Sry gene and sex determination depends on a ZZ male/ZW f
14 essfully generated a knockout of the porcine SRY gene by microinjection of two CRISPR-Cas ribonucleop
15 ggest that ectopic activation of a Y-located SRY gene could exert male-specific effects in developmen
20 Physical mapping data indicate that the cat SRY gene is present as multiple functional copies and th
21 nstrate that incomplete demethylation on the SRY gene is the driving cause of XY(DSD) in these XY DSD
23 olymerase chain reaction to measure the male Sry gene, revealed a marked increase in macrophage traff
24 awaki et al. reveals that a recently evolved SRY gene sequence antagonizes SRY protein stability, nec
27 Our results showed that WT1 up-regulates the SRY gene through the proximal early growth response gene
28 and microsatellite loci and the Y chromosome Sry gene to determine the hybrid status of 36 individual
29 Polymerase chain reaction analysis of the SRY gene to identify male cells was performed in the tre
31 Persistent abnormal hypermethylation of the SRY gene was observed together with its down-regulated m