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首页> 外文期刊>Molecular Plant-Microbe Interactions >Root Mucilage from Pea and Its Utilization by Rhizosphere Bacteria as a Sole Carbon Source
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Root Mucilage from Pea and Its Utilization by Rhizosphere Bacteria as a Sole Carbon Source

机译:豌豆根黏液及其根际细菌作为唯一碳源的利用

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摘要

Plant roots secrete a complex polysaccharide mucilage that may provide a significant source of carbon for microbes that colonize the rhizosphere. High molecular weight mucilage was separated by high-pressure liquid chromatography gel filtration from low molecular weight components of pea root exudate. Purified pea root mucilage generally was similar in sugar and glycosidic linkage composition to mucilage from cowpea, wheat, rice, and maize, but appeared to contain an unusually high amount of material that was similar to arabinogalactan protein. Purified pea mucilage was used as the sole carbon source for growth of several pea rhizosphere bacteria, including Rhizobium leguminosarum 8401 and 4292, Burkholderia cepacia AMMD, and Pseudomonas fluorescens PRA25. These species grew on mucilage to cell densities of three- to 25-fold higher than controls with no added carbon source, with cell densities of 1 to 15% of those obtained on an equal weight of glucose. Micromolar concentrations of nod gene-inducing flavonoids specifically stimulated mucilage-dependent growth of R. leguminosarum 8401 to levels almost equaling the glucose controls. R. leguminosarum 8401 was able to hydrolyze p -nitrophenyl glycosides of various sugars and partially utilize a number of purified plant polysaccharides as sole carbon sources, indicating that R. leguminosarum 8401 can make an unexpected variety of carbohydrases, in accordance with its ability to extensively utilize pea root mucilage.
机译:植物根系分泌一种复杂的多糖黏液,可以为定居在根际的微生物提供重要的碳源。通过高压液相色谱凝胶过滤从豌豆根分泌物的低分子量组分中分离出高分子量粘液。纯化的豌豆根黏液通常在糖和糖苷键组成上与cow豆,小麦,水稻和玉米的黏液相似,但似乎含有与阿拉伯半乳聚糖蛋白相似的异常大量物质。纯化的豌豆粘液用作几种豌豆根际细菌生长的唯一碳源,这些细菌包括豆科根瘤菌8401和4292,洋葱伯克霍尔德菌AMMD和荧光假单胞菌PRA25。与没有添加碳源的对照组相比,这些物种的粘液细胞密度增长了3到25倍,与等重量的葡萄糖相比,它们的细胞密度提高了1到15%。微摩尔浓度的诱导nod基因的类黄酮可特异性刺激豆科球菌8401的粘液依赖性生长,使其水平几乎等于葡萄糖对照。豆科真菌8401能够水解各种糖的对硝基苯基糖苷,并部分利用许多纯化的植物多糖作为唯一碳源,这表明豆科真菌8401可以根据其广泛的能力制造出意想不到的各种糖酶。利用豌豆根粘液。

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