Plant Growth Promoting Microorganism Selection and Activity Test for Reforestation of Topsoil Restoration Site

Ji Seul Kim, Jun Ho Kim, Eun Young Lee
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Abstract

Objectives : This study was conducted to investigate the applicability of plant growth promoting microorganisms during restoration through re-vegetation of damaged topsoil.Methods : As the vegetation to be applied to the restoration site, Weigela subsessilis, Spiraea prunifolia, Pine densiflora, Pennisetum alopecuroides were selected. An attempt was made to isolate plant growth promoting microorganisms from the root zone of plants of the same species inhabiting domestic park sites and hiking trails. Plant growth promoting activities such as phosphate solubilization ability, siderophore production ability, IAA production ability, and ACC deaminase production ability were examined, and the species to be finally applied was selected and then identified. Among the strains whose plant growth promoting activity was confirmed, Arthrobacter sp. 1B2 and Paraburkholderia terrae 1P2 were applied to the genitalia and pine, respectively, and a pot experiment was conducted to confirm the activity.Results and Discussion : Forty-five strains were isolated from Weigela subsessilis, Spiraea prunifolia, Pine densiflora, Pennisetum alopecuroides and the IAA-producing ability and ACC deaminase-producing ability were confirmed for 16 strains whose phosphate solubilizing ability and siderophore-producing ability were confirmed. After selecting and identifying strains with excellent plant growth promoting ability, strains such as Cupriavidus sp, Arthrobacter sp., Pseudomonas fluorescens, Pseudomonas sp., Paraburkholderia terrae were obtained. Among them, Arthrobacter sp. 1B2 and Paraburkholderia terrae 1P2 strains were applied to genitalia and pine, respectively, and it was confirmed that plant growth was promoted.Conclusions : Bioassay experiments and field applications using plant growth promoting microorganisms have been mainly studied for herbaceous species (Grandaceae, corn, oats, etc.). However, in this study, the applied plants are shrubs class, which do not significantly grow in length, targeting damaged areas with high subsoil content, which are poor in environment and insufficient in organic and inorganic matter. Therefore, it is meaningful in that the activity of plant growth promoting microorganisms focused on absorption of inorganic substances, such as phosphate solubilization activity and siderophore ability, was investigated and the activity was confirmed by performing a bioassay.
植物生长促进微生物的选择及表层土壤复垦地造林活性试验
目的:本研究旨在探讨促进植物生长的微生物在受损表土恢复过程中的适用性。方法:选择薇葛拉、绣线菊、赤松、狼牙草为恢复区植被。试图从居住在国内公园和徒步小径的同类植物的根区中分离出促进植物生长的微生物。考察了植物的促生长活性,如磷酸盐溶解能力、铁载体产生能力、IAA产生能力和ACC脱氨酶产生能力,并筛选和鉴定了最终应用的物种。在已证实具有植物生长促进活性的菌株中,将节杆菌1B2和对地拟伯克霍尔德菌1P2分别应用于生殖器和松树,并进行盆栽实验以证实其活性。结果与讨论:从魏格拉、绣线菊、赤松、苦叶狼尾草中分离得到45株菌株,其中16株菌株的IAA产生能力和ACC脱氨酶产生能力得到了证实,其溶磷能力和铁载体产生能力得到证实。经过筛选鉴定,获得了Cupriavidus sp、Arthrobacter sp.、Pseudomonas fluorescens、Pseudodomonas sp.、Paraburkholderia terrae等具有良好促生长能力的菌株。其中,节杆菌1B2和地形副伯克霍尔德菌1P2菌株分别应用于生殖器和松树,证实了植物生长得到了促进。结论:利用植物生长促进微生物进行的生物测定实验和田间应用主要针对草本物种(Grandaceae、玉米、燕麦等)。然而,在本研究中,应用植物为灌木类,其长度不显著,针对底土含量高的受损区域,其环境较差,有机物和无机物不足。因此,研究以吸收无机物质为重点的植物生长促进微生物的活性,如磷酸盐增溶活性和铁载体能力,并通过生物测定证实其活性,是有意义的。
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