Scientific program (abstracts of papers) for the Joint Annual Meeting of the American Society of Plant Physiologists and the Canadian Society of Plant Physiologists (La Société Canadienne de Physiologie Végétale) Hyatt Regency Hotel Minneapolis, Minnesota, USA: MONDAY, AUGUST 2, 1993

美国植物生理学会和加拿大植物生理学会(La Société Canadienne de Physiologie Végétale)联合年会科学议程(论文摘要) 美国明尼苏达州明尼阿波利斯凯悦酒店:1993年8月2日,星期一

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Abstract

bld2-1 mutant Chlamydomonas reinhardtii strains assemble basal bodies with singlet microtubules; bld2-1 cells display flagellar assembly defects as well as positioning defects of the mitotic spindle and cleavage furrow. To further understand the role of the BLD2 gene, we have isolated three new bld2 alleles and three partially dominant extragenic suppressors, rgn1-1, rgn1-2, and rgn1-3. bld2 rgn1-1 strains have phenotypes intermediate between those of bld2 and wild-type strains with respect to flagellar number, microtubule rootlet organization, cleavage furrow positioning, and basal body structural phenotypes. Instead of the triplet microtubules of wild-type cells, bld2 rgn1-1 basal bodies have mixtures of no, singlet, doublet, and triplet microtubules. The bld2-4 allele was made by insertional mutagenesis and identified in a noncomplementation screen in a diploid strain. The bld2-4 allele has a lethal phenotype based on mitotic segregation in diploid strains and in haploid strains generated by meiotic recombination. The lethal phenotype in haploid strains is suppressed by rgn1-1; these suppressed strains have similar phenotypes to other bld2 rgn1-1 double mutants. It is likely that BLD2 is an essential gene that is needed for basal body assembly and function.

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