Department of Agricultural Chemistry, Chonnam National University, Gwangju, 61186, South Korea.
Arch Microbiol. 2021 Oct;203(8):5183-5192. doi: 10.1007/s00203-021-02480-7. Epub 2021 Aug 3.
Seaweed and its extracts have been developed as fertilizers because they possess plant-growth-promoting and antibacterial compounds. For use as fertilizers, the major carbohydrates in seaweed, including fucoidan and alginate, need to be efficiently digested in the soil. We isolated fucoidan/alginate degrading bacteria from paddy soil and verified its use as a biofertilizer. Results show that Stenotrophomonas pavanii has a high alginate degrading activity, and also stimulating melon, pepper, and tomato growth. The growth stimulation effect of the bacteria was enhanced by alginate treatment. Bacillus sp. was isolated as a fucoidan degrading bacterium and this bacterium was also able to stimulate melon growth. Using 16S ribosomal DNA analysis, fucoidan/alginate resistant or susceptible bacteria were successively selected. Bacteria with increased population due to fucoidan and alginate had specificity to each carbohydrate, whereas those with decreased population showed susceptibility to both carbohydrates. This report demonstrates some bacteria for their use as biofertilizers with seaweed and demonstrated that a high throughput method is efficient in identifying bacteria with specific properties.
海藻及其提取物已被开发为肥料,因为它们具有促进植物生长和抗菌的化合物。为了用作肥料,海藻中的主要碳水化合物,包括褐藻糖胶和藻酸盐,需要在土壤中被有效地消化。我们从稻田土壤中分离出褐藻糖胶/藻酸盐降解细菌,并验证了其作为生物肥料的用途。结果表明,寡养单胞菌具有很高的藻酸盐降解活性,同时也能刺激甜瓜、辣椒和番茄的生长。细菌的生长刺激作用通过藻酸盐处理得到增强。从土壤中分离出的一种褐藻胶降解细菌为芽孢杆菌,该细菌也能刺激甜瓜的生长。利用 16S 核糖体 DNA 分析,我们依次选择了对褐藻糖胶和藻酸盐具有抗性或敏感性的细菌。由于褐藻糖胶和藻酸盐而增加数量的细菌对每种碳水化合物具有特异性,而数量减少的细菌则对两种碳水化合物都具有敏感性。本报告证明了一些细菌可以用作海藻生物肥料,并表明高通量方法在鉴定具有特定特性的细菌方面是有效的。