Summary
Human lice (Phthiraptera: Pediculidae) from Africa, America and Europe were electrophoresed for 28 enzymes, with special interest in metabolic factors likely to be involved with insecticide resistance. Zymogram profiles of the body louse (
Pediculus humanus
L. from France and U.S.A.) and the head louse (
P. capitis
DeGeer from France, Madagascar, Mali & Senegal) were compared. Only two enzymes, phosphoglucomutase (Pgm) and esterase 3 (Est‐3), showed electrophoretic variation. In our starch gel electrophoresis conditions,
P. humanus
showed three electromorphs of Pgm migrating anodally 6, 11 and 16 mm (designated alleles
a, b, c
, respectively). Of the putative
Pgm
alleles,
b and c
occurred in all samples of both species of lice, whereas allele
a
was found only in
P. humanus
lab strain from U.S.A. Esterase 3 had four electromorphs migrating 23, 26, 30 and 35 mm (designated alleles
a, b, c and d
). Among putative
Est
alleles,
a
was found only in
P. capitis
from Bamako (all 14 specimens
aa
homozygotes), allele
d
was found only in
P. capitis
from Dakar (39% frequency), whereas
Est‐3
alleles
b and c
showed apparently balanced polymorphism in all samples of both
P. humanus
and
P. capitis
except that from Bamako. Despite the limited amount of isoenzyme variation detected (only 2/31 polymorphic loci), divergences of
Est‐3
and
Pgm
among
Pediculus
populations may be relevant to their biosystematics and resistance.