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Screening for Lotus creticus growth promoting rhizobacteria under greenhouse conditions

机译:温室条件下荷叶促生长菌的筛选

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Utilization of plant growth promoting rhizobacteria (PGPR) is now gradually increasing in agriculture and offers an attractive way to replace chemical fertilizers, pesticides, and supplements. This study was conducted with a view to isolate bacteria from the rhizosphere of the legume Lotus creticus (L. creticus) and to assess their plant growth promoting functional potentialities. A total of 113 rhizobacteria was isolated from the rhizosphere of L. creticus and were tested for their capacity of solubilizing tricalcium phosphate (TCP) on Pikovskaya (PVK) solid medium. Out of 29 phosphate solubilizing bacteria (PSB), 5 isolates were selected for their solubilization diameters (between 0.6 and 1.5 cm). These isolates were characterized for plant growth promoting (PGP) traits. The results showed that the highest concentration of indole acetic acid (IAA) was produced by LCR33 (19.08 ± 0.96 mg L-1). All 5 isolates could produce hydrogen cyanide (HCN), siderophores, ammonia and amino-cyclopropane carboxylate (ACC) deaminase. The isolates were evaluated for TCP solubilizing quantitative assay in PVK liquid medium. The concentrations of solubilized P were between 43.34±0.18 mg L-1 and 173.57±0.77 mg L-1. This solubilization was accompanied by a pH decrease of the culture media from 7 to 4.06. Furthermore, the 5 selected PSB were tested in vitro for antagonism against phytopathogenic fungus Fusarium oxysporum. In fact, all the PSB, were capable of inhibiting its growth and the highest percentages of inhibition were obtained for LCP27 and LCR33 (48.15±0.99% and 40.74±0.45%). Also, the effect of these 2 PSB on growth of L. creticus plants was investigated under greenhouse conditions. Significant increases were obtained for shoot and root length and dry and fresh matter production of plants as compared to the uninoculated control. These PSB could be recommended as biofertilizers for contributing to the rehabilitation of degraded soils.
机译:现在,在农业中对促进根瘤菌(PGPR)的植物生长的利用正在逐步增加,并提供了一种替代化学肥料,农药和补品的有吸引力的方式。进行这项研究的目的是从豆科植物莲花cr(L。creticus)的根际分离细菌,并评估其促进功能生长的植物生长。从小额乳杆菌的根际中分离出总共113个根际细菌,并测试了它们在Pikovskaya(PVK)固体培养基上溶解磷酸三钙(TCP)的能力。在29种磷酸盐增溶细菌(PSB)中,选择了5种分离株,用于其增溶直径(0.6至1.5 cm)。这些分离物的特征在于具有促进植物生长的特性。结果表明,LCR33可产生最高浓度的吲哚乙酸(IAA)(19.08±0.96 mg L-1)。所有5种分离物均可产生氰化氢(HCN),铁载体,氨和氨基环丙烷羧酸酯(ACC)脱氨酶。对分离物进行了PVK液体培养基中TCP溶解度定量测定的评估。溶解的P的浓度在43.34±0.18mg L-1和173.57±0.77mg L-1之间。这种溶解伴随着培养基的pH从7降低到4.06。此外,在体外测试了5种选择的PSB对植物病原真菌尖孢镰刀菌的拮抗作用。实际上,所有PSB均具有抑制其生长的能力,并且LCP27和LCR33的抑制率最高(48.15±0.99%和40.74±0.45%)。另外,在温室条件下研究了这两种PSB对cr。creticus植物生长的影响。与未接种的对照相比,植物的枝条和根长以及干物质和新鲜物质的产量显着增加。可将这些PSB推荐用作生物肥料,以促进退化土壤的修复。

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