PubMed Health⌕ Search

Biomedical subjects

E M Gillet

Publications and source records attributed to E M Gillet.

2 recordsLinked to original sources

Qualified testing of single-locus codominant inheritance using single tree progenies.

In forest trees, classical techniques of studying modes of inheritance are usually not feasible due to the difficulty of performing controlled crosses. The limited information on inheritance extractable from readily available data, such as the large progenies collectable from single seed trees, must be compensated by the design of appropriately parameterized models. For this purpose, a system analytic approach is used to develop a new inferential framework for testing a single-locus codominant mode of inheritance of genetic traits using the inferred genotypes within progenies of single trees of inferred heterozygous genotype. Model assumptions are random gametic fusion between the local gamete pools and absence of postzygotic selection; ovule segregation distortion is allowed. The method yields estimates of the allele frequencies in both local gamete pools. Since tests of modes of inheritance must be tests of models rather than of parameters, the utility of the classical statistical testing procedures is limited, particularly concerning the qualification of a sampling method to attain a preassigned level of precision. Consistent application of this principle makes it possible to design qualified sampling methods prior to the actual experiment as well as to specify qualification levels for tests of completed experiments.

Alleles↗

Genetic analysis of nuclear DNA restriction fragment patterns.

Restriction fragment length polymorphism (RFLP) analysis in the broad sense is the analysis of differences in restriction fragment pattern produced by defined target segments within or between cell compartments, cell types, etc., in a single individual or in different individuals. Thus both molecular hybridization and DNA amplification by two-primer extension using the polymerase chain reaction can define target segments for RFLP analysis. The two techniques are outlined with special consideration of characteristics important for genetic analysis. The mode of inheritance of restriction fragment patterns as a prerequisite for their use as genetic markers in inheritance studies is explained, leading to criticism of common usage. The importance of internal restriction sites for the determination of allelic variation is stressed. It is shown that, if target segments are under the control of a single nuclear diploid restriction fragment locus, then complete reconstruction of all parental target segments requires controlled crosses between individuals of like restriction fragment pattern.

Blotting, Southern↗