庐山野生油茶根际增磷菌的组成及增磷能力

Qibiao Sun, Yanfen Liu, Ya-Fang Tang, Pei-yu Zhang, Y. Tong, Gang He, X. Ji, Z. He, O. Jianping, Zhang Hongfang, C. Ye
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引用次数: 1

摘要

油茶(Camellia oleifera)是中国特有的食用油树,具有重要的经济价值。然而,土壤缺磷是制约油松生长的重要因素之一。本文研究了庐山野生油桐根际土壤中可培养溶磷菌(PSB)的数量和组成。采用稀释涂布板法分离PSB, 16S rRNA测序鉴定。采用半定量方法(磷酸盐增溶晕直径与菌落直径之比)评价分离的PSB的磷酸盐增溶能力。结果表明,野生油松根际土壤(0.28-1.08×107 CFU/g土壤)中存在大量的PSB,且不同树木的PSB种群大小存在差异。从根际土壤中分离到100株PSB,分别属于芽孢杆菌属、伯克氏菌属、泛菌属、副伯克氏菌属和假单胞菌属。在这些菌株中,伯克霍尔德菌的分离频率和磷酸盐溶解能力最高,占分离株的61%。经6 d培养,100株芽孢杆菌的增磷指数在1.02 ~ 3.04之间变化,芽孢杆菌在培养过程中容易丧失增磷能力。结果表明,伯克霍尔德菌属是油松根际PSB的优势属,可用于促进磷的吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Composition and Phosphate-Solubilizing Capability of Phosphate-Solubilizing Bacteria in the Rhizosphere of Wild Camellia oleifera in Mountain Lushan
Camellia oleifera, a unique edible oil tree species in China, is of important economic value. However, the shortage of phosphorus in the soil is one of the important factors limiting the growth of C. oleifera. Here, we investigated the population size and composition of culturable phosphate-solubilizing bacteria (PSB) in the rhizosphere soil of wild C. oleifera in Mountain Lushan, China. PSB were isolated using a dilution coating plate method and identified by 16S rRNA sequencing. The phosphate-solubilizing capability of the isolated PSB was evaluated by a semi-quantitative method (the ratio of phosphate solubilization halo diameter versus colony diameter). The results showed that large amounts of PSB existed in the rhizosphere soil of wild C. oleifera (0.28–1.08×107 CFU/g soil) and the population size of PSB differed from investigated trees. A total of 100 strains of PSB were isolated from the rhizosphere soil, belonging to Bacillus, Burkholderia, Pantoea, Paraburkholderia, and Pseudomonas, respectively. Of these strains, Burkholderia showed the highest isolation frequency and phosphate-solubilizing capability, accounting for 61% of the isolates. The phosphate solubilization index of 100 strains varied from 1.02 to 3.04 after a 6-day incubation, and Bacillus strains were easy to lose their phosphate-solubilizing capability during the incubation. Our result suggested that Burkholderia was the dominant genus of PSB in the rhizosphere of C. oleifera and could be utilized for facilitating the uptake of P.
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