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Role of Pseudomonas putida Indoleacetic Acid in Development of the Host Plant Root System

机译:恶臭假单胞菌吲哚乙酸在宿主植物根系发育中的作用

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摘要

Many plant-associated bacteria synthesize the phytohormone indoleacetic acid (IAA). While IAA produced by phytopathogenic bacteria, mainly by the indoleacetamide pathway, has been implicated in the induction of plant tumors, it is not clear whether IAA synthesized by beneficial bacteria, usually via the indolepyruvic acid pathway, is involved in plant growth promotion. To determine whether bacterial IAA enhances root development in host plants, the ipdc gene that encodes indolepyruvate decarboxylase, a key enzyme in the indolepyruvic acid pathway, was isolated from the plant growth-promoting bacterium Pseudomonas putida GR12-2 and an IAA-deficient mutant constructed by insertional mutagenesis. The canola seedling primary roots from seeds treated with wild-type P. putida GR12-2 were on average 35 to 50% longer than the roots from seeds treated with the IAA-deficient mutant and the roots from uninoculated seeds. In addition, exposing mung bean cuttings to high levels of IAA by soaking them in a suspension of the wild-type strain stimulated the formation of many, very small, adventitious roots. Formation of fewer roots was stimulated by treatment with the IAA-deficient mutant. These results suggest that bacterial IAA plays a major role in the development of the host plant root system.
机译:许多与植物相关的细菌都合成植物激素吲哚乙酸(IAA)。虽然由植物病原性细菌(主要是吲哚乙酰胺途径)产生的IAA与植物肿瘤的诱导有关,但尚不清楚由有益细菌(通常是通过吲哚丙酮酸途径)合成的IAA是否参与植物的生长促进。为了确定细菌IAA是否能增强宿主植物的根系发育,从促进植物生长的恶臭假单胞菌GR12-2中分离了编码吲哚丙酮酸脱羧酶(吲哚丙酮酸途径中的关键酶)的ipdc基因,并构建了一个IAA缺陷型突变体通过插入诱变。野生型恶臭假单胞菌GR12-2处理过的芥花籽油的初生根平均比用IAA缺陷型突变体处理过的种子和未接种种子的根长35至50%。另外,通过将绿豆切块浸泡在野生型菌株的悬浮液中使其暴露于高水平的IAA,可以刺激许多非常小的不定根的形成。通过使用IAA缺陷型突变体处理,刺激了较少根的形成。这些结果表明细菌IAA在宿主植物根系的发育中起主要作用。

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