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首页> 外文期刊>Antonie van Leeuwenhoek >Plant growth enhancing effects by a siderophore-producing endophytic streptomycete isolated from a Thai jasmine rice plant (Oryza sativa L. cv. KDML105)
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Plant growth enhancing effects by a siderophore-producing endophytic streptomycete isolated from a Thai jasmine rice plant (Oryza sativa L. cv. KDML105)

机译:分离自泰国茉莉花水稻植物(Oryza sativa L.cv.KDML105)的产生铁载体的内生链霉菌对植物的生长作用

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摘要

An endophytic Streptomyces sp. GMKU 3100 isolated from roots of a Thai jasmine rice plant (Oryza sativa L. cv. KDML105) showed the highest siderophore production on CAS agar while phosphate solubilization and IAA production were not detected. A mutant of Streptomyces sp. GMKU 3100 deficient in just one of the plant growth promoting traits, siderophore production, was generated by inactivation of a desD-like gene encoding a key enzyme controlling the final step of siderophore biosynthesis. Pot culture experiments revealed that rice and mungbean plants inoculated with the wild type gave the best enhancement of plant growth and significantly increased root and shoot biomass and lengths compared with untreated controls and siderophore-deficient mutant treatments. Application of the wild type in the presence or absence of ferric citrate significantly promoted plant growth of both plants. The siderophore-deficient mutant clearly showed the effect of this important trait involved in plant–microbe interaction in enhancement of growth in rice and mungbean plants supplied with sequestered iron. Our results highlight the value of a substantial understanding of the relationship of the plant growth promoting properties of endophytic actinomycetes to the plants. Endophytic actinomycetes, therefore, can be applied as potentially safe and environmentally friendly biofertilizers in agriculture.
机译:内生链霉菌从泰国茉莉花水稻植物(Oryza sativa L. cv。KDML105)的根中分离出的GMKU 3100在CAS琼脂上显示出最高的铁载体生成,而未检测到磷酸盐增溶和IAA生成。链霉菌sp。 GMKU 3100缺乏植物生长促进性状之一,即铁载体的产生,是通过desD样基因失活产生的,该基因编码控制铁载体生物合成最后一步的关键酶。盆栽实验表明,与未处理的对照和铁载体缺乏的突变体处理相比,接种野生型的水稻和绿豆植物能最佳地促进植物生长,并显着增加根和茎的生物量和长度。在存在或不存在柠檬酸铁的情况下施用野生型显着促进了两种植物的植物生长。缺乏铁载体的突变体清楚地表明了植物-微生物相互作用中涉及的这一重要性状对螯合铁供应的水稻和绿豆植物生长的促进作用。我们的结果突出了对内生放线菌与植物的植物生长促进特性之间关系的实质性理解的价值。因此,内生放线菌可以在农业中用作潜在安全和环保的生物肥料。

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