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首页> 外文期刊>Journal of Agricultural Science >Screening of Diazotrophs as Plant Growth Promoters and Their Effect in the Development of Maize Seed
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Screening of Diazotrophs as Plant Growth Promoters and Their Effect in the Development of Maize Seed

机译:用植物生长促进剂筛选重氮化及其在玉米种子发育中的作用

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摘要

Free-living diazotrophs play an important role as plant growth promoters by supplementing nitrogen to deficient soils. In this study, six diazotrophic isolates were selected from 36 previously screened diazotrophic isolates for their mode of action to promote plant growth. A nitrogen free medium was used to screen nitrogen fixing diazotrophs. All strains have exhibited some activity of indole-3-acetic acid production. Strain MAF7-1 shown the highest (0.448 mg ml-1), while strain NUL3-2 exhibited the least (0.032 mg ml-1) production of IAA. Though all isolates were unable to solubilize inorganic phosphate, were able to inhibit the growth of Fusarium oxysporum that causes wilting to plants. There was no significant difference in maize seed germination vigour and rate. However, MAF7-1 had better germination rate and seed vigour (27.5%) when compared to the control (16%). Except strain NUL3-2, all showed significant increase of root length and dry weight of maize seedlings. Therefore, the choice of strain to be used for production of biofertilizer should not only be based on the nitrogenase activity, but also on ability to produce phytohormones.? Strain NUL3-2, MAF7-1 and MAF7-3 are potential strains that can be used in the production of biofertilizer. Further study of these strains in depth as plant growth agents and biofertilizer is commendable for future application.
机译:自由生活的真正术式通过补充氮来缺乏土壤来发挥重要作用。在这项研究中,选自36例先前筛选的无腺营养分离株,用于促进植物生长的36例以前筛选的重氮营养分离株。使用氮培养基用于筛选氮素固定的重氮化。所有菌株均表现出吲哚-3-乙酸产生的一些活性。菌株MAF7-1显示最高(0.448mg ML-1),而菌株NUL3-2表现出IAA的最低(0.032mg-1)的产生。虽然所有分离物不能溶解无机磷酸盐,但能够抑制镰刀菌的生长,导致植物萎缩。玉米种子萌发活力和速率没有显着差异。然而,与对照(16%)相比,MAF7-1具有更好的发芽率和种子活力(27.5%)。除菌株NUL3-2外,均显示出玉米幼苗的根长和干重的显着增加。因此,用于生产生物元分叉器的菌株的选择不仅应基于氮酶活性,还应基于产生植物激素的能力。菌株NUL3-2,MAF7-1和MAF7-3是可用于生产生物元分叉器的潜在菌株。随着植物生长剂和生物认用剂的进一步研究这些菌株,可供未来应用。

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