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. 2016 Sep 9;33(12):3158–3160. doi: 10.1093/molbev/msw192

Table 1.

Nuclear and Mitochondrial Genotypes of Cybrid Lines.

Line (Rep)a P0 strains Line nuclear genotypec Line mitochondrial genotypee
Maternal Paternal Expb Obs Expd Obsf
RC-PH (1) HK105 PB800 Te HK105 HK105
RC-PH (2) HK105 PB800 Te HK105 F
RC-PH (3) HK105 PB800 Te HK105 PB800
RC-HP (1) PB800 HK105 Te PB800 PB800
RC-HP (2) PB800 HK105 Te PB800 PB800
RC-HP (3) PB800 HK105 Te PB800 PB800
RC-EH (1) HK104 EG4818 Te HK104 EG4181
RC-EH (2) HK104 EG4818 Te HK104 HK104
RC-EH (3) HK104 EG4818 Te HK104 EG4181
RC-HE (1) EG4818 HK104 Te EG4818 HK104
RC-HE (2) EG4818 HK104 Te EG4818 HK104
RC-HE (3) EG4818 HK104 Te EG4818 HK104
MR-AH (1) HK105 AF16 Tr Tr HK105 HK105
MR-AH (2) HK105 AF16 Tr Tr HK105 AF16
MR-AH (3) HK105 AF16 Tr Tr HK105 HK105
MR-AD (1) DL232 AF16 Tr Tr DL232 DL232
MR-AD (2) DL232 AF16 Tr Tr DL232 DL232
MR-AD (3) DL232 AF16 Tr Tr DL232 DL232
MR-AE (1) ED3101 AF16 Tr Tr ED3101 ED3101
MR-AE (2) ED3101 AF16 Tr Tr ED3101 ED3101
MR-AE (3) ED3101 AF16 Tr Tr ED3101 ED3101
MR-AJ4 (1) JU403 AF16 Tr Tr JU403 JU403
MR-AJ4 (2) JU403 AF16 Tr Tr JU403 JU403
MR-AJ4 (3) JU403 AF16 Tr Tr JU403 JU403
MR-AJ1 (1) JU1345 AF16 Tr Tr JU1345 JU1345
MR-AJ1 (2) JU1345 AF16 Tr Tr JU1345 JU1345
MR-AJ1 (3) JU1345 AF16 Tr Tr JU1345 JU1345
MR-AP (1) PB800 AF16 Tr Tr PB800 PB800
MR-AP (2) PB800 AF16 Tr Tr PB800 PB800
MR-AP (3) PB800 AF16 Tr Tr PB800 PB800
MR-AV (1) VT847 AF16 Tr VT847 VT847
MR-AV (2) VT847 AF16 Tr VT847 VT847
MR-AV (3) VT847 AF16 Tr VT847 VT847
CP129 (1) HK104 AF16 AF16 AF16 HK104 HK104
CP130 (2) HK104 AF16 AF16 AF16 HK104 HK104
CP131 (1) AF16 HK104 HK104 HK104 AF16 AF16
CP132 (2) AF16 HK104 HK104 HK104 AF16 HK104
CP133 (3) AF16 HK104 HK104 HK104 AF16 AF16

aAll crosses were replicated “(Rep)” thrice, with the exception of AF16 male×HK104 hermaphrodite (producing CP129 and CP130), for which one of three lines initiated went extinct.

bThe expected nuclear genotype is the P0 male wild isolate genotype.

cIsolates belong to the tropical (“Tr”), temperate (“Te”) or equatorial Kenya phylogenetic clade (Cutter et al. 2010). Nuclear genotype was observed either by an AFLP that distinguishes temperate from tropical alleles or at five loci distinguishing AF16 and HK104 (CP129–CP133). Because the former assays only distinguish members of different clades, nuclear genotypes of within-clade (Te×Te or Tr×Tr) hybrids were unable to be obtained (–).

dThe expected mitochondrial genotype is the P0 maternal wild isolate genotype.

eMitochondrial genotype was observed either by sequencing the COII gene or by an RFLP distinguishing the AF16 and HK104 mitotypes (CP129–CP133).

fThe observed and expected mitotypes occasionally did not match (gray shading), providing evidence for paternal mitochondrial transmission.

F, failed PCR reaction.