Centro de Estudios de Biotecnología Industrial, Facultad de Ciencias Naturales, Universidad de Oriente, Av. Patricio Lumumba S/N, 90500, Santiago de Cuba, Cuba.
World J Microbiol Biotechnol. 2012 Apr;28(4):1593-603. doi: 10.1007/s11274-011-0965-2. Epub 2011 Dec 10.
Eighteen aerobic endospore forming strains were isolated from sugarcane rhizosphere in N-free medium. A phenotypic description and analysis of the 5' end hypervariable region sequences of 16S rRNA revealed a high diversity of Bacillus and related genera. Isolates were identified, and four genera were obtained: seven strains belonged to Bacillus (Bacillaceae family), four belonged to Paenibacillus, six belonged to Brevibacillus and one strain was identified as Cohnella (Paenibacillaceae family). Four Brevibacillus strains showed in vitro inhibitory activity against plant pathogens fungi Curvularia and Fusarium. Seventy-four percent of the isolated bacteria grew on pectin as the only carbon source, showing polygalacturonase activity. Pectate lyase activity was detected for the first time in a Brevibacillus genus strain. All isolates showed endoglucanase activity. Calcium phosphate solubilisation was positive in 83.3% of the isolates, with higher values than those reported for Bacillus inorganic phosphate solubilising strains. High ethylene plant hormone secretion in the culture medium was detected in 22% of the bacteria. This is the first report of ethylene secretion in Paenibacillaceae isolates. Indole-3-acetic acid production was found in a Brevibacillus genus isolate. It was reported for the first time the presence of Cohnella genus strain on sugarcane rhizosphere bearing plant growth promoting traits. The sugarcane isolate Brevibacillus B65 was identified as a plant growth inoculant because it showed wider spectra of plant stimulation capabilities, including an antifungal effect, extracellular hydrolases secretion, inorganic phosphate solubilisation and plant hormone liberation. In this work, sugarcane was shown to be a suitable niche for finding aerobic endospore forming 'Bacilli' with agriculture biotechnological purposes.
从无氮培养基中的甘蔗根际中分离到 18 株需氧内生孢子形成菌株。表型描述和 16S rRNA 5'端高变区序列分析揭示了芽孢杆菌属和相关属的高度多样性。对分离株进行了鉴定,得到了四个属:7 株属于芽孢杆菌属(芽孢杆菌科),4 株属于类芽孢杆菌属,6 株属于短芽孢杆菌属,1 株属于科恩氏菌属(类芽孢杆菌科)。有 4 株短芽孢杆菌属菌株对植物病原菌真菌旋孢腔菌和镰刀菌具有体外抑制活性。74%的分离细菌可以以果胶为唯一碳源生长,并表现出多聚半乳糖醛酸酶活性。首次在短芽孢杆菌属菌株中检测到果胶裂解酶活性。所有分离株均表现出内切葡聚糖酶活性。83.3%的分离株具有溶解磷酸钙的能力,其值高于报道的芽孢杆菌属无机磷溶解菌株。在 22%的细菌中检测到培养基中乙烯植物激素的分泌。这是首次在类芽孢杆菌属分离株中报道乙烯的分泌。在一株短芽孢杆菌属分离株中发现了吲哚-3-乙酸的产生。首次报道了科恩氏菌属菌株存在于具有植物生长促进特性的甘蔗根际上。甘蔗分离株短芽孢杆菌 B65 被鉴定为植物生长接种剂,因为它表现出更广泛的植物刺激能力谱,包括抗真菌作用、细胞外水解酶分泌、无机磷酸盐溶解和植物激素释放。在这项工作中,甘蔗被证明是一个适合寻找具有农业生物技术用途的需氧内生孢子形成“芽孢杆菌”的合适生态位。