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具有多种植物生长促进活性的固氮菌可促进番茄和红辣椒的生长。

Nitrogen-fixing bacteria with multiple plant growth-promoting activities enhance growth of tomato and red pepper.

机构信息

Department of Agricultural Chemistry, Chungbuk National University, Chungbuk, Republic of Korea; Department of Biological Sciences, Inha University, Incheon, Republic of Korea.

出版信息

J Basic Microbiol. 2013 Dec;53(12):1004-15. doi: 10.1002/jobm.201200141. Epub 2013 Apr 2.

Abstract

As a suitable alternative to chemical fertilizers, the application of plant growth-promoting rhizobacteria has been increasing in recent years due to their potential to be used as biofertilizers. In the present work, 13 nitrogen-fixing bacterial strains belonging to 11 different genera were tested for their PGP attributes. All of the strains were positive for 1-aminocyclopropane-1-carboxylate deaminase (ACCD), indole-3-acetic acid (IAA), salicylic acid, and ammonia production while negative for cellulase, pectinase, and hydrocyanic acid production. The strains Pseudomonas sp. RFNB3 and Serratia sp. RFNB14 were the most effective in solubilizing both tri-calcium phosphate and zinc oxide. In addition, all strains except Pseudomonas sp. RFNB3 were able to oxidize sulfur, and six strains were positive for siderophore synthesis. Each strain tested in this study possesses at least four PGP properties in addition to nitrogen fixation. Nine strains were selected based on their multiple PGP potential, particularly ACCD and IAA production, and evaluated for their effects on early growth of tomato and red pepper under gnotobiotic conditions. Bacterial inoculation considerably influenced root and shoot length, seedling vigor, and dry biomass of the two crop plants. Three strains that demonstrated substantial effects on plant performance were further selected for greenhouse trials with red pepper, and among them Pseudomonas sp. RFNB3 resulted in significantly higher plant height (26%) and dry biomass (28%) compared to control. The highest rate of nitrogen fixation, as determined by acetylene reduction assay, occurred in Novosphingobium sp. RFNB21 inoculated red pepper root (49.6 nM of ethylene/h/g of dry root) and rhizosphere soil (41.3 nM of ethylene/h/g of dry soil). Inoculation with nitrogen-fixing bacteria significantly increased chlorophyll content, and the uptake of different macro- and micro-nutrient contents enhancing also in red pepper shoots, in comparison with uninoculated controls. The population estimation studies showed that nitrogen-fixing as well as total heterotrophic bacteria were also noticeably increased in soil and plant samples. The findings of this study suggest that certain nitrogen-fixing strains possessing multiple PGP traits could be applied in the development of biofertilizers.

摘要

由于具有作为生物肥料的潜力,近年来,植物促生根际细菌的应用作为一种替代化肥的方式逐渐增多。在本工作中,测试了 13 株属于 11 个不同属的固氮细菌菌株,以评估它们的促生特性。所有菌株均为 1-氨基环丙烷-1-羧酸脱氨酶(ACCD)、吲哚-3-乙酸(IAA)、水杨酸和氨生产阳性,而纤维素酶、果胶酶和氢氰酸生产阴性。假单胞菌 RFNB3 和沙雷氏菌 RFNB14 这两种菌株在溶解三钙磷酸盐和氧化锌方面最为有效。此外,除了假单胞菌 RFNB3 以外,所有菌株都能够氧化硫,并且有 6 株菌产生铁载体。在这项研究中测试的每一种菌株除了固氮作用外,还具有至少四种促生特性。基于其多种促生潜力,特别是 ACCD 和 IAA 的产生,选择了 9 株菌进行根际条件下番茄和红辣椒早期生长的影响评估。细菌接种对两种作物的根长和茎长、幼苗活力和干生物量有显著影响。在温室试验中,对表现出对植物生长有显著影响的 3 株菌进行了红辣椒的进一步选择,其中假单胞菌 RFNB3 与对照相比,显著提高了植株高度(26%)和干生物量(28%)。通过乙炔还原测定法确定的最高固氮速率发生在接种到红辣椒根(49.6 nM 的乙烯/h/g 干根)和根际土壤(41.3 nM 的乙烯/h/g 干土)的新鞘氨醇单胞菌 RFNB21 中。与未接种对照相比,接种固氮细菌显著增加了红辣椒幼苗的叶绿素含量,以及不同大量和微量营养元素的吸收。种群估算研究表明,固氮细菌和总异养细菌在土壤和植物样本中的数量也明显增加。本研究结果表明,某些具有多种促生特性的固氮菌株可应用于生物肥料的开发。

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