...
首页> 外文期刊>Applied and Environmental Microbiology >Analysis of Expression of a Phenazine Biosynthesis Locus of Pseudomonas aureofaciens PGS12 on Seeds with a Mutant Carrying a Phenazine Biosynthesis Locus-Ice Nucleation Reporter Gene Fusion
【24h】

Analysis of Expression of a Phenazine Biosynthesis Locus of Pseudomonas aureofaciens PGS12 on Seeds with a Mutant Carrying a Phenazine Biosynthesis Locus-Ice Nucleation Reporter Gene Fusion

机译:携带吩嗪生物合成位点-冰成核报告基因融合体的突变体在种子上表达金黄色假单胞菌PGS12吩嗪生物合成位点的分析

获取原文
           

摘要

A derivative of Pseudomonas aureofaciens PGS12 expressing a promoterless ice nucleation gene under the control of a phenazine biosynthesis locus was used to study the expression of a phenazine antibiotic locus (Phz) during bacterial seed colonization. Seeds of various plants were inoculated with wild-type PGS12 and a PGS12 ice nucleation-active phz:inaZ marker exchange derivative and planted in soil, and the expression of the reporter gene was monitored at different intervals for 48 h during seed germination. phz gene expression was first detected 12 h after planting, and the expression increased during the next 36-h period. Significant differences in expression of bacterial populations on different seeds were measured at 48 h. The highest expression level was recorded for wheat seeds (one ice nucleus per 4,000 cells), and the lowest expression level was recorded for cotton seeds (one ice nucleus per 12,000,000 cells). These values indicate that a small proportion of bacteria in a seed population expressed phenazine biosynthesis. Reporter gene expression levels and populations on individual seeds in a sample were lognormally distributed. There was greater variability in reporter gene expression than in population size among individual seeds in a sample. Expression on sugar beet and radish seeds was not affected by different inoculum levels or soil matric potentials of -10 and -40 J/kg; only small differences in expression on wheat and sugar beet seeds were detected when the seeds were planted in various soils. It is suggested that the nutrient level in seed exudates is the primary reason for the differences observed among seeds. The lognormal distribution of phenazine expression on seeds and the timing and difference in expression of phenazine biosynthesis on seeds have implications for the potential efficacy of biocontrol microorganisms against plant pathogens.
机译:在吩嗪生物合成基因座的控制下表达无启动子冰成核基因的金黄色假单胞菌PGS12的衍生物用于研究细菌种子定殖过程中吩嗪抗生素基因座(Phz)的表达。将各种植物的种子接种野生型PGS12和PGS12冰成核活性的phz:inaZ标记交换衍生物并种植在土壤中,并在种子萌发过程中以不同间隔监测报告基因的表达48小时。 phz基因表达在种植后12 h首先检测到,在接下来的36 h期间表达增加。在48小时测量了不同种子上细菌种群表达的显着差异。小麦种子的最高表达水平记录下来(每4,000个细胞一个冰核),而棉花种子的最低表达水平记录下来(每12,000,000个细胞一个冰核)。这些值表明种子种群中一小部分细菌表达了吩嗪的生物合成。样品中单个种子上报告基因的表达水平和种群呈对数正态分布。报告基因表达的变异性大于样本中单个种子的种群大小。甜菜和萝卜种子上的表达不受接种量或土壤基质电位-10和-40 J / kg的影响;当将种子种植在各种土壤中时,仅检测到小麦和甜菜种子的表达差异很小。有人认为,种子渗出液中的营养水平是造成种子间差异的主要原因。吩嗪在种子上的对数正态分布以及吩嗪在种子上的生物合成表达的时机和差异对生物防治微生物对抗植物病原体的潜在功效具有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号