Exact(7)
The results regarding the colony morphology, budding patterns and cell shapes are indicated in Table 1.
They identified 127 genes which when deleted altered wild-type budding patterns.
For some areas of biology, there is congruence between GO annotations for Biological Process and phenotypes: for example, the GO term 'axial cellular bud site selection' (GO 0007120) is related to mutant phenotypes affecting budding patterns.
All homozygous strains in the genome were individually examined for deviation in bud site selection during cell division, identifying 127 (3%) homozygous deletion strains that reproducibly displayed altered budding patterns.
Myo1p deficiency in yeast (myo1Δ) causes a cell separation defect characterized by the formation of attached cells, yet it also causes abnormal budding patterns, formation of enlarged and elongated cells, increased osmotic sensitivity, delocalized chitin deposition, increased chitin synthesis, and hypersensitivity to the chitin synthase III inhibitor Nikkomycin Z.
In budding yeast, three cell types, including haploids of opposite mating type (MATa and MATα) and diploids (MATa/ α), have distinct developmental phenotypes such as mating, meiosis, and budding patterns that are directly attributable to their different genotypes at the mating-type locus [ 66].
Similar(53)
In the phylactolaemates, the primitive zooids are cylindrical in form, and the budding pattern results in a branched colony.
Cell morphology and budding pattern of the mutants were also similar to the wild type (data not shown).
Finally, the budding pattern of the newly budded cells could not be investigated since arp2-1 mutant cells display a random budding pattern even at permissive temperature [21].
As previously reported by others [16], [17], we observed here that haploid yeast cells exiting quiescence displayed a specific budding pattern, i.e.: the vast majority of daughter and mother cells emitted a new bud at the distal pole (Supplementary Figure S1D and data not shown).
Most mutations of the CTD in yeast have pleiotropic effects on one or another major feature of cellular metabolism, including growth rate, cell size, budding pattern, capacity to adjust to physical or metabolic stress, and how efficiently the CTD is phosphorylated by CTD-directed kinases [1], [3], [8], [9].
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