Younas Hajira, Nazir Aisha, Bareen Firdaus-E, Thies Janice E
Institute of Botany, University of the Punjab, Lahore, 54590, Pakistan.
Institute of Molecular Biology and Biotechnology, University of Lahore, Lahore, 54000, Pakistan.
Environ Sci Pollut Res Int. 2023 Mar;30(14):40147-40161. doi: 10.1007/s11356-022-25118-7. Epub 2023 Jan 6.
Endophytic bacteria inhabit plant tissues such as roots, stems, leaves, fruits, and seeds and can multiply inside plant tissue without damaging them. This study involves the isolation, characterization, metabolic profiling, and effect of endophytic bacteria isolated from the roots of Scots pine (Pinus sylvestris), on the growth of sunflower. In the current study, fifteen isolates of endophytic bacteria were obtained from the roots of Scots pine, and their molecular characterization was performed using 16 s rRNA ribotyping. The molecular characterization revealed that the strains belonged to Bacillus spp., Pseudomonas spp., Micrococcus sp., Serratia sp., Enterobacter sp., Pantoea sp., Staphylococcus sp., and Microbacterium sp. Among the isolated strains, 9 strains showed positive results for ammonium production, 12 strains for calcium solubilization, 11 strains for magnesium solubilization, 5 strains for zinc solubilization, 12 strains for phosphate solubilization, 8 strains for potassium solubilization, 10 strains for indole acetic acid (IAA) production, 9 strains for siderophore, and 6 strains for hydrogen cyanide (HCN) production. The greenhouse experiment results demonstrated that all isolated endophytic bacteria improved the shoot length, dry weight, and chlorophyll content of sunflower, whereas a significant increase was observed by PS-3 (Bacillus cereus), PS-6 (Serratia marcescens), and PS-8 (Pseudomonas putida). Besides, the concentration of nitrogen, phosphorus, and potassium were also measured in sunflower shoots, and results asserted that bacterial inoculation increased the bioavailability of these essential nutrients to plants compared to uninoculated control. Thus, these endophytic bacteria could be used as an encouraging option to improve plant growth and performance.
内生细菌栖息于植物组织,如根、茎、叶、果实和种子中,能够在植物组织内繁殖而不损害它们。本研究涉及从欧洲赤松(Pinus sylvestris)根部分离的内生细菌的分离、表征、代谢谱分析及其对向日葵生长的影响。在本研究中,从欧洲赤松根部获得了15株内生细菌分离株,并使用16 s rRNA基因分型对其进行了分子表征。分子表征显示,这些菌株属于芽孢杆菌属、假单胞菌属、微球菌属、沙雷氏菌属、肠杆菌属、泛菌属、葡萄球菌属和微杆菌属。在分离出的菌株中,9株铵产生呈阳性,12株钙溶解呈阳性,11株镁溶解呈阳性,5株锌溶解呈阳性,12株磷酸盐溶解呈阳性,8株钾溶解呈阳性,10株吲哚乙酸(IAA)产生呈阳性,9株铁载体呈阳性,6株氰化氢(HCN)产生呈阳性。温室实验结果表明,所有分离出的内生细菌均提高了向日葵的茎长、干重和叶绿素含量,而PS-3(蜡样芽孢杆菌)、PS-6(粘质沙雷氏菌)和PS-8(恶臭假单胞菌)的效果显著增加。此外,还测定了向日葵茎中氮、磷和钾的浓度,结果表明,与未接种对照相比,细菌接种提高了这些必需养分对植物的生物有效性。因此,这些内生细菌可作为促进植物生长和性能的一个令人鼓舞的选择。