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1.
Percept Mot Skills ; 99(2): 501-18, 2004 Oct.
Article in English | MEDLINE | ID: mdl-15560338

ABSTRACT

The purpose of the study was to examine differences in depth perception of students classified according to their gross locomotor skills. The seven qualitative gross locomotor tasks of Ulrich's Test of Gross and Motor Development were used to classify 162 students as either motor impaired (n1 =27) or nonimpaired (n2= 135). The Howard Dollman Apparatus was used to measure depth perception. Analysis showed that the motor-impaired group scored significantly lower than the nonimpaired group on depth perception. Discriminant function analysis indicated that only the running task separated the students by depth perception scores. Subsequent multiple regression analysis confirmed that the running task, along with sliding and galloping, were significant predictors of the students' perception of the third dimension. Physical educators working with students with gross locomotor impairments or low perception of the third dimension need to adjust their teaching and offer opportunities for successful involvement in physical education classes and sports.


Subject(s)
Depth Perception/physiology , Locomotion/physiology , Motor Skills Disorders/epidemiology , Motor Skills Disorders/physiopathology , Perceptual Disorders/diagnosis , Perceptual Disorders/epidemiology , Students , Child , Female , Humans , Male , Prevalence , Severity of Illness Index
2.
Genome ; 41(4): 527-34, 1998 Aug.
Article in English | MEDLINE | ID: mdl-9796101

ABSTRACT

Two tandemly repeated DNA sequences, the 81-bp family and pOS218, have been isolated from a Sau3AI Olea europaea ssp. sativa partial genomic library. Sequencing of the 81-bp element showed the monomer to be between 78 and 84 bases long and to contain 51-58% adenine and thymidine residues. Comparison between the monomers revealed heterogeneity of the sequence primary structure. The clone pOS218 is 218 bases long, and sequence comparison between the two elements revealed that an internal region of the pOS218 repeated DNA sequence had 79% homology to the 81 bp repeat sequence. A breakage-reunion mechanism, involving the CAAAA sequence, could be responsible for the derivation of pOS218 from the 81 bp family element. By using double target in situ hybridization, co-localization of the two sequences on Olea chromosomes was observed. The sequences were present at DAPI stained heterochromatic regions, as major or minor sites having a subtelomeric or interstitial location. Methylation studies using two sets of isoschizomers, Sau3AI-MboI and MspI-HpaII, demonstrated that most cytosine residues in the GATC sites and the internal cytosine in the CCGG sites of both elements were methylated in O. europaea ssp. sativa. No major difference in methylation was apparent between DNA extracted from young leaves or from callus of O. europaea ssp. sativa. Both elements are also present in Olea chrysophylla, Olea oleaster, and Olea africana, but are absent from other Oleaceae genera, including Phillyrea, Forsythia, Ligustrum, Parasyringa, and Jasminum.


Subject(s)
DNA, Plant/genetics , Trees/genetics , Base Sequence , DNA, Plant/chemistry , Genomic Library , Molecular Sequence Data , Repetitive Sequences, Nucleic Acid , Sequence Alignment , Sequence Homology, Nucleic Acid , Species Specificity
3.
Nature ; 391(6666): 485-8, 1998 Jan 29.
Article in English | MEDLINE | ID: mdl-9461215

ABSTRACT

The plant Arabidopsis thaliana (Arabidopsis) has become an important model species for the study of many aspects of plant biology. The relatively small size of the nuclear genome and the availability of extensive physical maps of the five chromosomes provide a feasible basis for initiating sequencing of the five chromosomes. The YAC (yeast artificial chromosome)-based physical map of chromosome 4 was used to construct a sequence-ready map of cosmid and BAC (bacterial artificial chromosome) clones covering a 1.9-megabase (Mb) contiguous region, and the sequence of this region is reported here. Analysis of the sequence revealed an average gene density of one gene every 4.8 kilobases (kb), and 54% of the predicted genes had significant similarity to known genes. Other interesting features were found, such as the sequence of a disease-resistance gene locus, the distribution of retroelements, the frequent occurrence of clustered gene families, and the sequence of several classes of genes not previously encountered in plants.


Subject(s)
Arabidopsis/genetics , Chromosome Mapping , Genome, Plant , Chromosomes, Artificial, Yeast , Genes, Plant/physiology , Multigene Family , Plant Proteins/genetics , Sequence Analysis, DNA
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