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Relationships between DNA length and electrophoretic mobility in an agarose gel have been compared by estimating the lengths of known DNA polymer fragments, using other fragments in the series as standards. Global estimates were made using 10 fragments as standards; local estimates were made using the two closest fragments on either side of the unknown as standards. Most relationships were fitted by least squares. All the relationships gave more accurate local than global estimates. The most accurate results were obtained using the reciprocal relationship, where the maximum error in the local estimates was less than 0.1%. The semilog relationship gave the least accurate results, with a maximum error in the local estimates of almost 5%. The polymer fragments were also used as standards to estimate the lengths of λ DNA restriction fragments. Here the estimates were in error by up to 3%, indicating the influence of base composition and sequence on electrophoretic mobility.  相似文献   
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An experiment was performed during the grazing seasons of 1998, 1999 and 2000 to study the influence of the antiparasitic drug ivermectin and the nematophagous fungus Duddingtonia flagrans on cattle dung disintegration. The faeces originated from groups of animals that were part of a separate grazing experiment where different control strategies for nematode parasite infections were investigated. Each group consisted of 10 first-season grazing cattle that were either untreated, treated with the ivermectin sustained-release bolus, or fed chlamydospores of D. flagrans. Faeces were collected monthly on 4 occasions and out of pooled faeces from each group, 4 artificial 1 kg dung pats were prepared and deposited on nylon mesh on an enclosed pasture and protected from birds. The position of the new set of pats was repeated throughout the 3 years of the study. Each year, the dung pats were weighed 4, 6, 8 and 10 weeks after deposition and immediately afterwards replaced to their initial positions.

Results showed that there was no difference in faecal pat disintegration between groups. However, the time-lag between deposition and complete disintegration of the faeces varied significantly between deposition occasions. Dung pats disappeared within 2 weeks (visual observation) when subjected to heavy rainfall early after deposition, whereas an extended dry period coincided with faeces still remaining 12 months after deposition.

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We demonstrate a new method for making oligonucleotide microarrays by synthesis in situ. The method uses conventional DNA synthesis chemistry with an electrochemical deblocking step. Acid is delivered to specific regions on a glass slide, thus allowing nucleotide addition only at chosen sites. The acid is produced by electrochemical oxidation controlled by an array of independent microelectrodes. Deblocking is complete in a few seconds, when competing side-product reactions are minimal. We demonstrate the successful synthesis of 17mers and discrimination of single base pair mismatched hybrids. Features generated in this study are 40 μm wide, with sharply defined edges. The synthetic technique may be applicable to fabrication of other molecular arrays.  相似文献   
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P A Whittaker  E M Southern 《Gene》1986,41(1):129-134
UV-irradiation of DNA can inhibit the activity of certain restriction endonucleases because of thymine dimer formation within the enzyme recognition sequence. The number of sites affected depends upon the dose of UV, thus making it easier to control the extent of enzyme digestion than by either limiting the digestion time, or the amount of enzyme. Restriction-site maps of bacteriophage lambda recombinants are readily produced by labelling DNA using a radioactive oligonucleotide that is complementary to either the left or right cohesive end of lambda, irradiating the DNA with UV light, limit digesting with the appropriate enzyme, and calculating the size of the fragments detected after gel electrophoresis and autoradiography.  相似文献   
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Recent advances in biotechnology and the availability of ever more powerful computers have led to the formulation of increasingly complex models at all levels of biology. One of the main aims of systems biology is to couple these together to produce integrated models across multiple spatial scales and physical processes. In this review, we formulate a definition of multi-scale in terms of levels of biological organisation and describe the types of model that are found at each level. Key issues that arise in trying to formulate and solve multi-scale and multi-physics models are considered and examples of how these issues have been addressed are given for two of the more mature fields in computational biology: the molecular dynamics of ion channels and cardiac modelling. As even more complex models are developed over the coming few years, it will be necessary to develop new methods to model them (in particular in coupling across the interface between stochastic and deterministic processes) and new techniques will be required to compute their solutions efficiently on massively parallel computers. We outline how we envisage these developments occurring.  相似文献   
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