Farhat Mounira Ben, Boukhris Ines, Chouayekh Hichem
Laboratoire de Microorganismes et de Biomolécules, Centre de Biotechnologie de Sfax, Université de Sfax, BP '1177' 3018 Sfax, Tunisie.
Laboratoire de Microorganismes et de Biomolécules, Centre de Biotechnologie de Sfax, Université de Sfax, BP '1177' 3018 Sfax, Tunisie
FEMS Microbiol Lett. 2015 Mar;362(5). doi: 10.1093/femsle/fnv008. Epub 2015 Jan 21.
The actinomycetes isolates (128) which were taken from agricultural soil samples and collected near a rock phosphate processing unit were screened for mineral phosphate-solubilizing (MPS) ability. A significant MPS activity was observed for 30 isolates on various phosphate sources when grown in the National Botanical Research Institute's phosphate broth. CTM396 and CTM397 strains which showed the highest MPS abilities were identified by 16S rDNA sequencing as members of the genus Streptomyces. Their MPS activity was proved to be concomitant with a drop in pH due to the secretion of gluconic acid (GA). This was correlated with the simultaneous detection by PCR of genes gdh [encoding the glucose dehydrogenase (GDH) responsible for GA production from glucose] and pqq (involved in biosynthesis of the pyrroloquinoline quinone cofactor of GDH), as well as the highlighting of GHD enzyme activity, for the first time in a Streptomyces sp. strain producing GA. Furthermore, the 0.05% of humic acids proved to have a stimulatory effect on the growth and the ability of CTM396 to solubilize Gafsa rock phosphate. According to this study, it is possible to use humic acids and Gafsa rock phosphate in association with spores of ad hoc Streptomyces strains as natural and efficient amendments to improve plant growth with no need of costly and pollutant transformation of Gafsa rock phosphate.
从靠近磷矿粉加工单位采集的农业土壤样本中分离出128株放线菌,对其进行了矿物磷溶解(MPS)能力筛选。当在国家植物学研究所的磷酸盐肉汤中培养时,在各种磷酸盐源上观察到30株分离菌具有显著的MPS活性。通过16S rDNA测序鉴定出MPS能力最高的CTM396和CTM397菌株为链霉菌属成员。由于葡萄糖酸(GA)的分泌,它们的MPS活性被证明与pH值下降同时发生。这与通过PCR同时检测基因gdh[编码负责从葡萄糖产生GA的葡萄糖脱氢酶(GDH)]和pqq(参与GDH的吡咯并喹啉醌辅因子的生物合成)相关,并且首次在产生GA的链霉菌属菌株中突出显示了GHD酶活性。此外,0.05%的腐殖酸被证明对CTM396的生长和溶解加夫萨磷矿粉的能力有刺激作用。根据这项研究,可以将腐殖酸和加夫萨磷矿粉与特定链霉菌菌株的孢子联合使用,作为天然且有效的改良剂来促进植物生长,而无需对加夫萨磷矿粉进行昂贵且有污染的转化。