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Molecular and analysis
Molecular analysis suggests that the frog – salamander divergence took place considerably earlier than the palaeontological evidence indicates.
Molecular phylogenetic analysis of Fringillidae, " New World nine-primaried oscines " ( Aves: Passeriformes ).
* The primary technical reference work on this topic is Nanosystems: Molecular Machinery, Manufacturing, and Computation, an in-depth, physics-based analysis of a particular class of potential nanomachines and molecular manufacturing systems, with extensive analyses of their feasibility and performance.
Molecular genetic testing by linkage analysis or direct mutation screening is available clinically ; however, genetic heterogeneity is a significant complication to molecular genetic testing.
Molecular analysis since 1992 has suggested that the hagfishes are most closely related to lampreys, and so also are vertebrates in a monophyletic sense.
Molecular analysis carried out at the University of Copenhagen suggests that this classification should be reviewed.
Molecular analysis suggests that the hexapods diverged from their sister group, the Anostraca ( fairy shrimps ), at around the start of the Silurian period-coinciding with the appearance of vascular plants on land.
Molecular phylogenetics is the analysis of hereditary molecular differences, mainly in DNA sequences, to gain information on an organism's evolutionary relationships.
Molecular phylogenetic analysis has lent support to this hypothesis, and it is now generally accepted.
Molecular biology research uses numerous proteins and enzymes many of which are from expression systems ; particularly DNA polymerase for PCR, reverse transcriptase for RNA analysis and restriction endonucleases for cloning.
Molecular phylogenetic analysis of Fringillidae, " New World nine-primaried oscines " ( Aves: Passeriformes ) Mol.
*: ( 2008 ) Molecular phylogenetic analysis of Dendrobium ( Orchidaceae ), with emphasis on the Australian section Dendrocoryne, and implications for generic classification.
Molecular research, based on cladistic analysis of DNA sequences, has confirmed Donk's circumscription of the Cantharellaceae, though the smaller genera have not yet been sequenced.
Molecular research, based on cladistic analysis of DNA sequences, has resurrected and redefined the Polyporales ( also known as the polyporoid clade ).
Molecular properties can be modeled through sedimentation velocity analysis or sedimentation equilibrium analysis.
Molecular phylogenetic analysis of DNA sequences has shown that Agapanthus is sister to a clade consisting of subfamilies Allioideae and Amaryllidoideae of the family Amaryllidaceae ( sensu APG III ).
Molecular analysis published in 2006 established that the bolete mushrooms are all derived from a common ancestor, and established the Boletales as an order separate from the Agaricales.
* Molecular: analysis of DNA, RNA, and proteins at the molecular level
Molecular analysis of CPOX is the best way to identify these patients, as they will not express a biochemical phenotype on laboratory testing unless they are symptomatic.
Molecular phylogenetic analysis carried out in 2004 showed that the tribe is monophyletic ( i. e. it contains all the descendants of a single common ancestor ).
Molecular data, including analysis of retrotransposon insertion sites in the nuclear DNA of a variety of marsupials, and the fossil evidence indicate that Ameridelphia might best be understood as an evolutionary grade.
Molecular ( DNA ) testing for PAX6 gene mutations ( by sequencing of the entire coding region and deletion / duplication analysis ) is available for isolated aniridia and the Gillespie syndrome.
Molecular studies by molecular systematists, based on DNA analysis, have revealed new relationships among mammal families over the last few years.

Molecular and 39
Molecular Phylogenetics and Evolution 39 ( 1 ): 186-197.
Molecular Phylogenetics and Evolution 39 ( 3 ): 657 – 667.
Molecular Phylogenetics and Evolution 39 ( 3 ): 657 – 667.
Molecular Phylogenetics and Evolution 39 ( 3 ): 657 – 667.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.
Molecular Phylogenetics and Evolution 39 ( 2 ): 503 – 511.

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