Bhatt Kalpana, Maheshwari Dinesh Kumar
Department of Botany and Microbiology, Gurukul Kangri Vishwavidyalaya, Haridwar, Uttarakhand 249404 India.
3 Biotech. 2020 Feb;10(2):36. doi: 10.1007/s13205-019-2033-9. Epub 2020 Jan 7.
The present study was designed to isolate an array of zinc solubilizing bacteria (ZSB) and to characterize them for plant growth promotion (PGP) attributes with respect to L. For this purpose, seventy bacteria were procured from cow dung and screened for zinc solubilization (ZnO and ZnCO). Where, isolate CDK25 was found to be the most potent owing to its maximum zinc solubilization (ZnO) ability (5.0 cm). For quantitative assay, atomic absorption spectroscopy (AAS) was used, where CDK25 showed markedly higher solubilization of ZnO (20.33 ppm). It was investigated that CDK25 also endowed with multiple PGP attributes viz., Phosphate solubilization, Phytase production, Indole acetic acid (IAA) and Siderophore production. Quantitative study revealed isolate CDK25 to solubilize and produce maximum quantity of phosphate (281.59 μg/ml) and IAA (13.8 μg/ml) respectively. ZSB was applied in different treatments under pot culture assay, where T3 (seeds + CDK25) showed significant impact on plant growth parameters, besides showing maximum zinc content in fruit (0.25 mg/100 g). Hence, isolate CDK25 expresses highest potential throughout the experiments; as zinc solubilizer, PGP strain, and based on 16S rRNA gene sequencing identified as . Therefore, meticulous use of this bacterium could aid in providing adequate amount of soluble zinc along with enhanced plants growth, nutrient uptake and yield in sustainable manner.
本研究旨在分离一系列锌溶解细菌(ZSB),并针对番茄表征其促进植物生长(PGP)的特性。为此,从牛粪中获取了70株细菌,并筛选其锌溶解能力(ZnO和ZnCO)。其中,分离株CDK25因其最大的锌溶解(ZnO)能力(5.0厘米)而被发现是最有效的。对于定量分析,使用了原子吸收光谱法(AAS),其中CDK25对ZnO的溶解能力明显更高(20.33 ppm)。研究发现,CDK25还具有多种PGP特性,即磷酸盐溶解、植酸酶产生、吲哚乙酸(IAA)和铁载体产生。定量研究表明,分离株CDK25分别溶解并产生最大量的磷酸盐(281.59μg/ml)和IAA(13.8μg/ml)。在盆栽试验的不同处理中应用了ZSB,其中T3(种子+CDK25)对植物生长参数有显著影响,此外果实中的锌含量最高(0.25毫克/100克)。因此,分离株CDK25在整个实验中表现出最高的潜力;作为锌溶解剂、PGP菌株,并基于16S rRNA基因测序鉴定为 。因此,谨慎使用这种细菌有助于以可持续的方式提供适量的可溶性锌,同时促进植物生长、养分吸收和产量。