Chatterjee A, Cui Y, Liu Y, Dumenyo C K, Chatterjee A K
Department of Plant Pathology, University of Missouri, Columbia 65211, USA.
Appl Environ Microbiol. 1995 May;61(5):1959-67. doi: 10.1128/aem.61.5.1959-1967.1995.
The soft-rotting bacterium, Erwinia carotovora subsp. carotovora 71, produces extracellular enzymes such as pectate lyase isozymes (Pels), cellulase (Cel), polygalacturonase (Peh), and protease (Prt). While the extracellular levels of these enzymes are extremely low when the bacterium is grown in salts-yeast extract-glycerol (SYG) medium, the enzymatic activities are highly induced in SYG medium supplemented with celery extract. By transposon (mini-Tn5) mutagenesis, we isolated a RsmA- mutant, AC5070, which overproduces extracellular enzymes; the basal levels of Pel, Peh, and Cel in AC5070 are higher than the induced levels in the RsmA+ parent, AC5047. While Peh production is mostly constitutive in AC5070, Pel, Cel, and Prt production is still inducible with celery extract. The high basal levels of pel-1, pel-3, and peh-1 mRNAs in AC5070 demonstrate that overproduction of the pectolytic enzymes is due to the stimulation of transcription. Using chromosomal DNA flanking mini-Tn5 as a probe, we cloned the wild-type rsmA+ allele, which suppresses Pel, Peh, Cel, and Prt production in both RsmA+ and RsmA- strains. The RsmA- mutant, like its parent, produces N-(3-oxohexanoyl)-L-homoserine lactone (HSL), a starvation/cell density-sensing signal required for extracellular enzyme production. To examine the role of HSL, we constructed HSL-deficient strains by replacing hslI, a locus required for HSL production, with hslI::Tn3HoHo1-Spc. While the basal levels of Pel, Peh, Cel, and Prt are comparable in the RsmA- mutant and its HSL- derivative, these enzymes are barely detectable in the Hsl- derivative of the RsmA+ parent strain.(ABSTRACT TRUNCATED AT 250 WORDS)
软腐病菌胡萝卜软腐欧文氏菌胡萝卜软腐亚种71能产生胞外酶,如果胶酸裂解酶同工酶(Pels)、纤维素酶(Cel)、多聚半乳糖醛酸酶(Peh)和蛋白酶(Prt)。当该细菌在盐-酵母提取物-甘油(SYG)培养基中生长时,这些酶的胞外水平极低,但在添加芹菜提取物的SYG培养基中酶活性会被高度诱导。通过转座子(mini-Tn5)诱变,我们分离出一个RsmA突变体AC5070,它能过量产生胞外酶;AC5070中Pel、Peh和Cel的基础水平高于RsmA+亲本AC5047中的诱导水平。虽然在AC5070中Peh的产生大多是组成型的,但Pel、Cel和Prt的产生仍可被芹菜提取物诱导。AC5070中pel-1、pel-3和peh-1 mRNA的高基础水平表明果胶酶的过量产生是由于转录受到刺激。用mini-Tn5侧翼的染色体DNA作为探针,我们克隆了野生型rsmA+等位基因,它能抑制RsmA+和RsmA-菌株中Pel、Peh、Cel和Prt的产生。RsmA突变体与其亲本一样,能产生N-(3-氧代己酰基)-L-高丝氨酸内酯(HSL),这是胞外酶产生所需的饥饿/细胞密度感应信号。为了研究HSL的作用,我们通过用hslI::Tn3HoHo1-Spc替换HSL产生所需的基因座hslI构建了HSL缺陷菌株。虽然RsmA突变体及其HSL衍生物中Pel、Peh、Cel和Prt的基础水平相当,但在RsmA+亲本菌株的Hsl衍生物中几乎检测不到这些酶。(摘要截短于250字)