首页> 外文期刊>Canadian journal of microbiology >Preliminary screening of rhizobacteria for biocontrol of little seed canary grass (Phalaris minor Retz.) and wild oat (Avena fatua L.) in wheat
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Preliminary screening of rhizobacteria for biocontrol of little seed canary grass (Phalaris minor Retz.) and wild oat (Avena fatua L.) in wheat

机译:小种子金丝雀草(Phalaris Minor Retz)生物管制的根瘤菌的初步筛选和野生燕麦(Avena Fatua L.)

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摘要

Conventional weed control methods often have environmental impact. The present study was conducted to screen selected accessions of Pseudomonas for both potential biocontrol of Phalaris minor and Avena fatua and potential concurrent growth promotion of wheat. The four Pseudomonas strains (B11, T19, T24, and T75) were found positive for cyanide production, siderophore production, phosphorus solubilization, oxidase activity, catalase activity, and ACC deaminase activity in vitro. These strains were phytotoxic, causing up to 73.3% mortality in the lettuce seedling bioassay. Consortia of compatible Pseudomonas strains increased A. fatua and P. minor seedling mortality up to 50.0% and 56.7%, respectively, and reduced root length up to 73.8% and 53.9%, respectively, as compared with the uninoculated control. Consortia of compatible Pseudomonas strains increased wheat shoot length, root length, fresh biomass, dry biomass, and leaf greenness up to 41.6%, 100%, 79.9%, 81.5%, and 21.1%, respectively, over the uninoculated control. Four of the 11 Pseudomonas consortia tested expressed good weed suppression and wheat growth promotion capacity and deserve further experimentation. The findings from this study may lead to the formulation of bioherbicides that will improve human and environmental health.
机译:传统的杂草控制方法通常会对环境产生影响。本研究的目的是筛选假单胞菌材料,以期对小飞虱和燕麦进行潜在的生物防治,并同时促进小麦的生长。四株假单胞菌(B11、T19、T24和T75)在体外对氰化物生成、铁载体生成、磷溶解、氧化酶活性、过氧化氢酶活性和ACC脱氨酶活性呈阳性。这些菌株具有植物毒性,在莴苣幼苗生物测定中导致高达73.3%的死亡率。与未接种的对照相比,相容的假单胞菌菌株联合使用可使A.fatua和P.minor幼苗死亡率分别提高50.0%和56.7%,根长分别降低73.8%和53.9%。与未接种的对照相比,兼容的假单胞菌菌株组合使小麦芽长、根长、新鲜生物量、干生物量和叶绿色度分别增加41.6%、100%、79.9%、81.5%和21.1%。测试的11个假单胞菌联合体中有4个表现出良好的杂草抑制和小麦生长促进能力,值得进一步试验。这项研究的发现可能会导致生物除草剂的配方,从而改善人类和环境健康。

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