Kobayashi Donald Y, Reedy Ralph M, Palumbo Jeffrey D, Zhou Jun-Ma, Yuen Gary Y
Department of Plant Biology & Pathology, Cook College, Rutgers, The State University of New Jersey, New Brunswick, NJ 08901-8520, USA.
Appl Environ Microbiol. 2005 Jan;71(1):261-9. doi: 10.1128/AEM.71.1.261-269.2005.
Lysobacter enzymogenes strain C3, a biological control agent for plant diseases, produces multiple extracellular hydrolytic enzymes and displays antimicrobial activity against various fungal and oomycetous species. However, little is known about the regulation of these enzymes or their roles in antimicrobial activity and biocontrol. A study was undertaken to identify mutants of strain C3 affected in extracellular enzyme production and to evaluate their biocontrol efficacy. A single mini-Tn5-lacZ(1)-cat transposon mutant of L. enzymogenes strain C3 that was globally affected in a variety of phenotypes was isolated. In this mutant, 5E4, the activities of several extracellular lytic enzymes, gliding motility, and in vitro antimicrobial activity were reduced. Characterization of 5E4 indicated that the transposon inserted in a clp gene homologue belonging to the Crp gene family of regulators. Immediately downstream was a second open reading frame similar to that encoding acetyltransferases belonging to the Gcn5-related N-acetyltransferase superfamily, which reverse transcription-PCR confirmed was cotranscribed with clp. Chromosomal deletion mutants with mutations in clp and between clp and the acetyltransferase gene verified the 5E4 mutant phenotype. The clp gene was chromosomally inserted in mutant 5E4, resulting in complemented strain P1. All mutant phenotypes were restored in P1, although the gliding motility was observed to be excessive compared with that of the wild-type strain. clp mutant strains were significantly affected in biological control of pythium damping-off of sugar beet and bipolaris leaf spot of tall fescue, which was partially or fully restored in the complemented strain P1. These results indicate that clp is a global regulatory gene that controls biocontrol traits expressed by L. enzymogenes C3.
溶杆菌属C3菌株是一种植物病害的生物防治剂,能产生多种细胞外水解酶,并对多种真菌和卵菌具有抗菌活性。然而,关于这些酶的调控及其在抗菌活性和生物防治中的作用知之甚少。本研究旨在鉴定C3菌株中影响细胞外酶产生的突变体,并评估其生物防治效果。分离出了一株溶杆菌属C3菌株的单mini-Tn5-lacZ(1)-cat转座子突变体,该突变体在多种表型上受到全局影响。在这个名为5E4的突变体中,几种细胞外裂解酶的活性、滑动运动能力和体外抗菌活性均降低。对5E4的特征分析表明,转座子插入了一个属于Crp基因家族调控因子的clp基因同源物中。紧接下游是第二个开放阅读框,类似于编码属于Gcn5相关N-乙酰转移酶超家族的乙酰转移酶的开放阅读框,逆转录PCR证实其与clp共转录。clp和乙酰转移酶基因之间发生突变的染色体缺失突变体证实了5E4突变体的表型。clp基因被染色体插入突变体5E4中,产生了互补菌株P1。虽然观察到P1的滑动运动能力比野生型菌株过度,但所有突变体表型在P1中都得到了恢复。clp突变体菌株在甜菜腐霉猝倒病和高羊茅双极叶斑病的生物防治中受到显著影响,在互补菌株P1中部分或完全恢复。这些结果表明,clp是一个全局调控基因,控制着溶杆菌属C3菌株表达的生物防治特性。