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We need to demonstrate that evolution science is alive and well, as well as show how it is making remarkable progress through the application of molecular technologies -- even though it does not have all the answers.
Until the recent application of molecular technologies to biodiversity studies, almost all information has been labelled with scientific names.
Over the past 15 years, the application of molecular technologies to the study of these neoplasms has revealed critical genetic pathways associated with the development of specific thyroid tumour types [ 3].
Over the past 15 years, the application of molecular technologies to the study of this neoplasm has revealed critical genetic pathways associated with the development of specific thyroid tumour subtypes.
Given these resources, I will not attempt to recreate their work here, but I will consider two emerging trends – one from the world of parasites and one from the world of large vertebrates – that have been made possible by the application of molecular technologies.
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There have been enormous advances in potential applications of molecular technology to the treatment of pancreatic cancer (Manu et al, 2000) and, for example, gene therapy and anti-angiogenesis therapy appear promising modalities (Humphreys et al, 1999; Van Riel et al, 1999).
For example, the EIP is engaged in the new advanced molecular detection (AMD) initiative at CDC to explore and advance application of modern molecular technologies to the practice of public health.
Application of novel molecular technologies has allowed the localization of unique sequences, comprising protein-coding genes, on B chromosomes of several vertebrate species [ 13, 14, 16, 36].
Therefore the application of molecular marker technologies for the identification of trait-marker associations, and high throughput genotyping technologies can greatly accelerate the whole breeding cycle through marker assisted selection (MAS) [ 22].
Because overexpression of endogenous transferrin receptor (TfR) has been qualitatively described for various cancers and is presumably due to malignant transformation of cells, TfR may represent a suitable target for application of molecular imaging technologies to increase detection of smaller tumors.
This clearly complicates genetic studies of trait inheritance, as well as the development and application of molecular marker technologies [ 17].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com