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131.
Mitochondrial control-region sequences in two shorebird species, the turnstone and the dunlin, and their utility in population genetic studies 总被引:12,自引:0,他引:12
We determined the mitochondrial control-region sequences of five turnstones
(Arenaria interpres) and three dunlins (Calidris alpina). Comparisons
revealed that the central part (part II) is conserved relative to much more
variable parts at the beginning (part I) and the end (part III). This
pattern of sequence conservation is also found in the control regions of
other vertebrates. The average sequence divergence between turnstone and
dunlin was 21.8% for part I, 7.5% for part II, and 29.5% for part III.
Within-species sequence divergence over the entire control region was much
lower, at 0.9% for turnstones and 2.0% for dunlins. In both shorebird
species, part III contains a repetitive sequence composed only of A and C
nucleotides, which has not been found in the control regions of other
birds. A survey of the part I sequences of 25 turnstones and 25 dunlins
sampled around the world revealed that these species have very different
population genetic structures. Dunlins are not only much more
differentiated in their sequences but also have a strongly subdivided
population genetic structure. Pleistocene vicariant events combined with
strong natal philopatry and high mutation rates of the sequences are likely
responsible for this population genetic subdivision. Conversely, part I
sequences of turnstones are weakly differentiated and are geographically
unstructured. We argue that this is not the result of global gene flow but
that, instead turnstones have recently expanded from a refugial population
that was bottlenecked.
相似文献
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DNA replication during muscle cell differentiation: identification of multiple DNA-dependent DNA polymerases 总被引:1,自引:0,他引:1
DNA-dependent DNA polymerases have been studied during chick embryo muscle differentiation in vitro. The total activity, extracted at both low and high ionic strengths, does not change throughout the differentiative process, although DNA synthesis stops at the moment of fusion. Analyses by glycerol gradient centrifugation of the extracts at low and high ionic strengths show two major DNA polymerase forms, one sedimenting at 7.5 S and another at 3-4 S. Both enzymes are present in similar amounts in duplicating myoblasts and in post-mitotic myotubes. These data suggest that the arrest of DNA synthesis which accompanies myoblast differentiation is not dependent on the disappearance or decrease of the major DNA polymerase activities described. 相似文献
135.
Xiaodan Xu Wei Zheng AJ Harris Wei Wang Weizhu Shao Jun Wen 《Molecular breeding : new strategies in plant improvement》2018,38(10):123
Camellia reticulata is a well-known woody ornamental species endemic to Southwest China. It represents a polyploid complex with diploids, allotetraploids, and allohexaploids. The parentage of the allotetraploids and allohexaploids has been reported by genomic in situ hybridization, but the maternal parents still remain unknown. In this study, sequences of the chloroplast rpl16 intron of 105 cultivars of C. reticulata and 7 congeneric species were used to infer the maternal origin of the allopolyploids. The results showed that (1) the allotetraploids were derived from C. pitardii as the maternal parental species and the diploid C. reticulata as the paternal parental species; (2) the allohexaploid C. reticulata was derived from the allotetraploid C. reticulata as the maternal parent and C. saluenensis as the paternal parent; and (3) the C. reticulata cultivars were derived from hexaploid C. reticulata as the maternal parents. These results indicated that C. pitardii, the allotetraploid and allohexaploid C. reticulata may serve as good potential maternal parents for the cross breeding of Camellia. 相似文献
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Artim John M. Hook Alexandra Grippo Richard S. Sikkel Paul C. 《Coral reefs (Online)》2017,36(4):1213-1223
Coral Reefs - On coral reefs, gnathiid isopods are a common blood-feeding ectoparasite of reef fishes that can have significant impacts on reef-fish health and fitness. Cleaner fishes and shrimps... 相似文献
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We investigated leaf anatomy and micromorphology in the New World Vitis using light and scanning electron microscopy to understand the correlation of these traits to molecular phylogenetic relationships and environmental affinity. We observed traits known to differ among species of Vitis with importance in traditional taxonomy of Vitis: trichome type, stomata morphology, mesophyll organization, and midrib vascularization. We found that traits associated with water conductance and photosynthesis comprised the highest loadings of axis one of a principal components analysis (PCA) while traits related to gas exchange (i.e., the stomatal apparatus) had high loadings on axis two. Using the PCA, we identified seven clusters of species, which showed little correlation to recently reported molecular phylogenetic relationships. Moreover, analyses using Bayes Traits and Bayesian Binary Method revealed little to no phylogenetic signal in trait evolution. PCA axes one and two separated species occurring in dry southwestern North American habitats from those in mesic places. For example, a cluster of V. monticola and V. arizonica occurred adjacent to a cluster of V. californica and V. girdiana in ordination space, and the latter three species share key leaf anatomical traits. Nevertheless, among these, only V. arizonica and V. girdiana are closely related according to molecular phylogeny. Thus, the leaf micromorphological/anatomical traits of Vitis observed in this study are highly correlated with environment, but not phylogenetic relationships. We expect that trait similarities among distantly related species may result from evolutionary convergences, especially within xeric habitats of western North America. 相似文献