Holden D W, Kronstad J W, Leong S A
Department of Plant Pathology and Plant Disease Resistance, University of Wisconsin, Madison 53706.
EMBO J. 1989 Jul;8(7):1927-34. doi: 10.1002/j.1460-2075.1989.tb03596.x.
Four genes (ums1, ums2, ums3 and ums4) representing an hsp70-related gene family were isolated from a genomic library of Ustilago maydis. All four genes are transcriptionally active during normal growth. Following a heat shock, the mRNA levels of ums1 and ums2 increase by approximately 5-fold, whereas the ums3 transcript becomes less abundant. The amount of ums4 mRNA remains relatively unchanged after heat treatment. The nucleotide sequence of the 5' non-coding and a portion of the ums2 coding region was determined. The sequence encoding the first 90 amino acids is 73% identical to corresponding regions of the Drosophila and yeast (SSA1) hsp70 genes. To investigate the effect of a mutation in ums2, a plasmid was constructed in which most of the transcriptional unit of ums2 was deleted and substituted with the Escherichia coli hygromycin B (hygB) phosphotransferase gene. Transcription of this gene is controlled by the ums2 promoter, allowing the expression of hygB resistance in Ustilago. The marker was introduced into diploid cells as a linear sequence with termini homologous to the 5' and 3' flanking regions of ums2. In approximately 50% of transformants examined, one of the two wild-type ums2 alleles had been replaced by the mutated sequence, demonstrating the feasibility of using one-step gene disruption to create heterozygous diploids in Ustilago. The ums2/ums2::hygBr heterozygote produced teliospores after injection into corn plants, but only cells carrying functional ums2 were found among their meiotic progeny. Therefore ums2::hygBr segregates as a recessive lethal, which strongly suggests that ums2 is essential for growth in Ustilago.
从玉米黑粉菌的基因组文库中分离出了代表一个与热休克蛋白70(hsp70)相关基因家族的四个基因(ums1、ums2、ums3和ums4)。在正常生长过程中,所有这四个基因都具有转录活性。热休克后,ums1和ums2的mRNA水平增加约5倍,而ums3转录本的丰度降低。热处理后,ums4 mRNA的量相对保持不变。测定了ums2 5'非编码区和部分编码区的核苷酸序列。编码前90个氨基酸的序列与果蝇和酵母(SSA1)hsp70基因的相应区域有73%的同一性。为了研究ums2突变的影响,构建了一个质粒,其中ums2的大部分转录单元被删除,并用大肠杆菌潮霉素B(hygB)磷酸转移酶基因取代。该基因的转录由ums2启动子控制,使得在玉米黑粉菌中能够表达潮霉素B抗性。该标记以线性序列的形式导入二倍体细胞,其末端与ums2的5'和3'侧翼区域同源。在所检测的大约50%的转化体中,两个野生型ums2等位基因中的一个已被突变序列取代,这证明了使用一步基因破坏在玉米黑粉菌中创建杂合二倍体的可行性。ums2/ums2::hygBr杂合子注射到玉米植株后产生了冬孢子,但在其减数分裂后代中仅发现携带功能性ums2的细胞。因此,ums2::hygBr作为隐性致死基因分离,这强烈表明ums2对玉米黑粉菌的生长至关重要。