Okumura S, Mitsukawa N, Shirano Y, Shibata D
Mitsui Plant Biotechnology Research Institute, Tsukuba, Ibaraki, Japan.
DNA Res. 1998 Oct 30;5(5):261-9. doi: 10.1093/dnares/5.5.261.
Using a high-affinity phosphate transporter gene of Arabidopsis thaliana, PHT1, as a probe, three Arabidopsis homologs were isolated, named PHT4, PHT5 and PHT6, in addition to the previously isolated PHT2 and PHT3. The amino acid sequences deduced from the three nucleotides were 32-42% homologous with microbial phosphate transporters of Saccharomyces cerevisiae (PHO84), Neurospora crassa (PHO-5) and Glomus versiforme (GvPT). PHT1, PHT2, PHT3 and PHT6 were clustered in a 25-kbp region of chromosome V. PHT1 and PHT4 transcripts were detected in roots. Interestingly, suspension-cultured cells expressed only PHT4. PHT4 and PHT5 located within a genetic distance of 6.4 cM on chromosome II, and were close to a phosphate accumulation mutant pho2. Genomic sequencing revealed no difference in the sequences of the two genes in both pho2 and wild-type. The PHT4 transcript was expressed at similar levels in the mutant and wild-type. These results demonstrate that neither PHT4 nor PHT5 is allelic to PHO2.
以拟南芥的一个高亲和力磷酸盐转运蛋白基因PHT1作为探针,除了之前分离出的PHT2和PHT3之外,又分离出了三个拟南芥同源基因,分别命名为PHT4、PHT5和PHT6。从这三个核苷酸推导出来的氨基酸序列与酿酒酵母(PHO84)、粗糙脉孢菌(PHO - 5)和多形球囊霉(GvPT)的微生物磷酸盐转运蛋白有32% - 42%的同源性。PHT1、PHT2、PHT3和PHT6聚集在第五条染色体的一个25千碱基对区域。在根中检测到了PHT1和PHT4的转录本。有趣的是,悬浮培养细胞只表达PHT4。PHT4和PHT5位于第二条染色体上6.4厘摩的遗传距离内,并且靠近一个磷酸盐积累突变体pho2。基因组测序显示,在pho2和野生型中这两个基因的序列没有差异。PHT4转录本在突变体和野生型中的表达水平相似。这些结果表明,PHT4和PHT5都不是PHO2的等位基因。