阿尔及利亚土壤重氮营养菌对番茄萌发和生长的生物防治作用

N. Tabli, E. Nabti, D. Dahel, N. Mokrane, H. Manyani, M. Dary, M. Megias
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引用次数: 2

摘要

土壤样品在无菌条件下采集自阿尔及利亚西部地区。对番茄种子进行初步萌发试验,筛选出4个样品,分离纯化了40个菌落。选取20株对番茄萌发有诱导作用的菌株,在体内进行了对番茄生长有刺激作用的试验。生物化学(API 50 CHB/E gallery)和系统发育(DNAr 16S测序)鉴定,研究促进植物生长的特性(IAA(吲哚乙酸)植物激素、酶、铁载体、游离固氮的产生,以及对五种植物病原真菌(Botrytis cinerea;仙人掌植物,肉桂植物;用尖孢镰刀菌和大丽花黄萎病菌(Verticillium dahliae)在番茄体内萌发阳性。结果表明,菌株S11、S6、S15和S12对番茄生长影响较大,茎长(cm)分别为9.212、9.280、9.362和9.858,高于对照(6400 cm)。这些菌株的生化和系统发育鉴定表明它们属于以下菌株:灵巧节杆菌(S6),链霉菌Sp(S11),芽孢杆菌sp13 (S15)和分枝杆菌Sp(S12)。4株菌株产生多种酶,吲哚乙酸(植物激素)含量高(mg/l: 38.47 (S11);86.90 (S6);93.96 (S12)和190.23 (S15),铁载体,固氮。对多种植物病原真菌均有拮抗作用,对芽孢杆菌sp13的植物生长抑制(PGI) %:0 ~ 78.51%;链霉菌29-74%;灵巧节杆菌0 ~ 72%;分枝杆菌对番茄生长的抑制率为0 ~ 69%,证明两菌株对番茄生长刺激具有亲和性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Diazotrophic Bacteria on Germination and Growth of Tomato, with Bio-control Effect, Isolated from Algerian Soil
soils samples were collected from the west region of Bejaia-Algeria in aseptic conditions. The preliminary germination test on tomatos seeds allowed screening of 4 simples from which 40 different colonies were isolated and purified. These last were submitted to in vitro germination test, while 20 strains with an inductor effect on th e germination were selected and tested for the presence of stimulator effect of growth of tomato in vivo. Biochemical (on API 50 CHB/E gallery), and phylogenetic (DNAr 16S sequencing) identification, tests researching characteristics promoting p lant growth (production of IAA (Indol Acetic Acid) phyto- hormone, enzymes, siderophores, free nitrogen fixation, and an an tagonistic test on five phytopathogenic fungi ( Botrytis cinerea; Phytophtora cactorum, phytophtora cinnamomi; Fusarium oxysporum a nd Verticillium dahliae) were applied for the strain showing positive in vivo germination results on tomato.The results of this last test led to select four strains: S11, S6, S15, and S12 that greatly affected tomato growth, with stems length (cm) of 9.212, 9.280, 9.362 and 9.858, respectively, compared to the control (6.400). Biochemical and phylogenic identifications of these strains allowed to affiliate them as following: Arthrobacter agilis(S6), Streptomyces Sp (S11), Bacillus sp13 (S15) and Mycobacterium Sp(S12). The four strains produced several enzymes, high indol acetic acid (phyto- hormone) quantity (mg/l: 38.47 (S11); 86.90 (S6); 93.96 (S12) and 190.23 (S15), siderophores, nitrogen fixing. It also showed an antagonistic activity against the phytopathogenic fungi tested with variable p lant growth inhibition (PGI) %:0-78.51% for Bacillus sp13; 29-74%for Streptomyces sp; 0-72%for Arthrobacter agilis; and 0-69% for Mycobacterium sp. These results prove that the strains are compatible for tomato growth stimulation.
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