ONE SUBSPECIES OF THE RED JUNGLEFOWL (GALLUS-GALLUS GALLUS) SUFFICES AS THE MATRIARCHIC ANCESTOR OF ALL DOMESTIC BREEDS

被引:252
作者
FUMIHITO, A
MIYAKE, T
SUMI, SI
TAKADA, M
OHNO, S
KONDO, N
机构
[1] WAKUNAGA PHARMACEUT CO LTD,CENT LABS,KODACHO,HIROSHIMA 73911,JAPAN
[2] RES INST EVOLUTIONARY BIOL,SETAGAYA KU,TOKYO 158,JAPAN
[3] BECKMAN RES INST CITY HOPE,DUARTE,CA 91010
关键词
D O I
10.1073/pnas.91.26.12505
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The noncoding control region of the mitochondrial DNA of various gallinaceous birds was studied with regard to its restriction fragment length polymorphism (RFLP) and sequences of the first 400 bases. Tandem duplication of the 60-base unit was established as a trait unique to the genus Gallus, which is shared neither by pheasants nor by quails. Unlike its close ally Gallus varius (green junglefowl), the red junglefowl Gallus gallus is a genetically very diverse species; the 7.0% sequence divergence was seen between those from Thailand (G. g. gallus and G. g. spadiceus) and the other from the Indonesian island of Java (G. g. Bankiva). Furthermore, the divergence increased to 27.83% if each transversion is regarded as an equivalent of 10 transitions. On the other hand, a mere 0.5-3.0% difference (all transitions) separated various domestic breeds of the chicken from two G. g. gallus of Thailand, thus indicating a single domestication event in the area inhabited by this subspecies of the red junglefowl as the origin of all domestic breeds. Only transitions separated six diverse domesticated breeds. Nevertheless, a 2.75% difference was seen between RFLP type I breeds (White Leghorn and Nagoya) and a RFLP type VIII breed (Ayam Pelung). The above data suggested that although the mitochondrion of RFLP type V was the main contributor to domestication, hens of other RFLP types also contributed to this event.
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页码:12505 / 12509
页数:5
相关论文
共 15 条
[1]   MITOCHONDRIAL-DNA AND HUMAN-EVOLUTION [J].
CANN, RL ;
STONEKING, M ;
WILSON, AC .
NATURE, 1987, 325 (6099) :31-36
[2]   NUCLEOTIDE-SEQUENCE AND EVOLUTION OF CODING AND NONCODING REGIONS OF A QUAIL MITOCHONDRIAL GENOME [J].
DESJARDINS, P ;
MORAIS, R .
JOURNAL OF MOLECULAR EVOLUTION, 1991, 32 (02) :153-161
[3]   SEQUENCE AND GENE ORGANIZATION OF THE CHICKEN MITOCHONDRIAL GENOME - A NOVEL GENE ORDER IN HIGHER VERTEBRATES [J].
DESJARDINS, P ;
MORAIS, R .
JOURNAL OF MOLECULAR BIOLOGY, 1990, 212 (04) :599-634
[4]  
DIRIENZO A, 1991, P NATL ACAD SCI USA, V88, P597
[5]  
HALEY LE, 1965, GENETICS, V51, P983
[6]  
HASHIGUCHI T, 1983, JPN REP SOC RES NATI, V10, P190
[7]   EVIDENCE FOR 2 INDEPENDENT DOMESTICATIONS OF CATTLE [J].
LOFTUS, RT ;
MACHUGH, DE ;
BRADLEY, DG ;
SHARP, PM ;
CUNNINGHAM, P .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (07) :2757-2761
[8]  
NEI M, 1988, MOL EVOLUTIONARY GEN, P178
[9]  
Ohno S., 1970, EVOLUTION GENE DUPLI
[10]  
Sambrook J., 1989, MOL CLONING LAB MANU