首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Synthesis of Indoleacetic Acid Gibberellic Acid and ACC-Deaminase by Mortierella Strains Promote Winter Wheat Seedlings Growth under Different Conditions
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Synthesis of Indoleacetic Acid Gibberellic Acid and ACC-Deaminase by Mortierella Strains Promote Winter Wheat Seedlings Growth under Different Conditions

机译:羊肚菌菌株合成吲哚乙酸赤霉素和ACC脱氨酶促进冬小麦幼苗在不同条件下的生长

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摘要

The endogenous pool of phytoregulators in plant tissues supplied with microbial secondary metabolites may be crucial for the development of winter wheat seedlings during cool springs. The phytohormones may be synthesized by psychrotrophic microorganisms in lower temperatures occurring in a temperate climate. Two fungal isolates from the Spitzbergen soils after the microscopic observations and “the internal transcribed spacer” (ITS) region molecular characterization were identified as Mortierella antarctica (MA DEM7) and Mortierella verticillata (MV DEM32). In order to study the synthesis of indoleacetic acid (IAA) and gibberellic acid (GA), Mortierella strains were grown on media supplemented with precursor of phytohormones tryptophan at 9, 15 °C, and 20 °C for nine days. The highest amount of IAA synthesis was identified in MV DEM32 nine-day-culture at 15 °C with 1.5 mM of tryptophan. At the same temperature (15 °C), the significant promoting effect (about 40% root and shoot fresh weight) of this strain on seedlings was observed. However, only MA DEM-7 had the ACC (1-aminocyclopropane-1-carboxylate) deaminase activity with the highest efficiency at 9 °C and synthesized IAA without tryptophan. Moreover, at the same conditions, the strain was confirmed to possess the strong promoting effect (about 40% root and 24% shoot fresh weight) on seedlings. Both strains synthesized GA in all tested terms and temperatures. The studied Mortierella strains had some important traits that led them to be considered as microbial biofertilizers components, improving plant growth in difficult temperate climates.
机译:在植物组织中内源性的植物调节剂池,其中提供的微生物次生代谢产物可能对凉爽的春季冬小麦幼苗的生长至关重要。所述植物激素可以由在气候温和的较低温度下的精神营养微生物合成。经过显微镜观察和“内部转录间隔区”(ITS)区域分子鉴定后,从斯皮茨卑尔根土壤中分离出的两种真菌被鉴定为南极Mortierella南极洲(MA DEM7)和轮叶Mortierella verticillata(MV DEM32)。为了研究吲哚乙酸(IAA)和赤霉素(GA)的合成,将Mortierella菌株在补充了植物激素色氨酸前体的培养基上于9、15°C和20°C培育了9天。在15°C含1.5 mM色氨酸的MV DEM32 9天培养物中,IAA合成量最高。在相同温度(15°C)下,观察到该菌株对幼苗的显着促进作用(约占根和茎鲜重的40%)。然而,只有MA DEM-7在9°C时具有最高效率的ACC(1-氨基环丙烷-1-羧酸酯)脱氨酶活性,并且合成了不含色氨酸的IAA。此外,在相同条件下,证实该菌株对幼苗具有强的促进作用(约40%的根和24%的枝条鲜重)。两种菌株均在所有测试条件和温度下合成了GA。所研究的羊肚菌菌株具有一些重要特性,因此被认为是微生物生物肥料的组成部分,可在温和的气候条件下改善植物的生长。

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