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Indole-3-acetaldehyde–sodium bisulfite addition compound

吲哚-3-乙醛 - 亚硫酸氢钠加成化合物

公司名称: Sigma-Aldrich
产品编号: I1000
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Growth Assay and Detection of TRP and Indole Derivatives in Piriformospora indica Culture Supernatant by LC-MS/MS
Author:
Date:
2013-06-20
[Abstract]  The mutualistic root endophyte Piriformospora indica colonizes a wide range of plants and the colonization of root cells by this fungus is very often associated with beneficial effects to its host, such as growth promotion and increased biotic and abiotic stress tolerance. These traits may be based on general mechanisms and signaling pathways common to many different plant species. One such mechanism could be the recruitment of phytohormone pathways by P. indica. It is known, that many mutualistic microorganisms are able to synthesize and secrete phytohormones during the ... [摘要]  共生根内生真菌(Pyriformospora indica)殖民广泛的植物,并且这种真菌对根细胞的定植通常与对其宿主的有益效果相关,例如生长促进和增加的生物和非生物胁迫耐受性 。 这些性状可以基于许多不同植物物种共有的一般机制和信号传导途径。 一种这样的机制可以是通过P募集植物激素途径。 indica 。 已知许多共生微生物能够在与其宿主植物相互作用期间合成和分泌植物激素。 该方案已经成功地用于通过P分析吲哚-3-乙酸(IAA)及其吲哚衍生物的色氨酸(TRP)依赖性生物合成。 蚜虫以及它们对这种真菌生长的影响(Hilbert等人,2012)。

Indole Derivative Feeding Test and Detection of TRP and Indole derivatives by Thin Layer Chromatography
Author:
Date:
2013-06-20
[Abstract]  The mutualistic root endophyte Piriformospora indica colonizes a wide range of plants and the colonization of root cells by this fungus is very often associated with beneficial effects to its host, such as growth promotion and increased biotic and abiotic stress tolerance. These traits could be based on general mechanisms and signaling pathways common to many different plant species. One such mechanism could be the recruitment of phytohormone pathways by P. indica. It is known, that many mutualistic microorganisms are able to synthesize and secrete phytohormones during the ... [摘要]  共生根内生真菌(Pyriformospora indica)殖民广泛的植物,并且这种真菌对根细胞的定植通常与对其宿主的有益效果相关,例如生长促进和增加的生物和非生物胁迫耐受性 。 这些性状可以基于许多不同植物物种共有的一般机制和信号途径。 一种这样的机制可以是通过P募集植物激素途径。 indica 。 已知许多共生微生物能够在与其宿主植物相互作用期间合成和分泌植物激素。 该方案已经成功地用于通过P分析吲哚-3-乙酸(IAA)及其吲哚衍生物的色氨酸(TRP)依赖性生物合成。 疟疾(Hilbert et al 。,2012)。

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