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Legume bioactive compounds: influence of rhizobial inoculation

机译:豆类生物活性化合物:根瘤菌接种的影响

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摘要

Legumes consumption has been recognized as beneficial for human health, due to their content in proteins, fiber, minerals and vitamins, and their cultivation as beneficial for sustainable agriculture due to their ability to fix atmospheric nitrogen in symbiosis with soil bacteria known as rhizobia. The inoculation with these baceria induces metabolic changes in the plant, from which the more studied to date are the increases in the nitrogen and protein contents, and has been exploited in agriculture to improve the crop yield of several legumes. Nevertheless, legumes also contain several bioactive compounds such as polysaccharides, bioactive peptides, isoflavones and other phenolic compounds, carotenoids, tocopherols and fatty acids, which makes them functional foods included into the nutraceutical products. Therefore, the study of the effect of the rhizobial inoculation in the legume bioactive compounds content is gaining interest in the last decade. Several works reported that the inoculation of different genera and species of rhizobia in several grain legumes, such as soybean, cowpea, chickpea, faba bean or peanut, produced increases in the antioxidant potential and in the content of some bioactive compounds, such as phenolics, flavonoids, organic acids, proteins and fatty acids. Therefore, the rhizobial inoculation is a good tool to enhance the yield and quality of legumes and further studies on this field will allow us to have plant probiotic bacteria that promote the plant growth of legumes improving their functionality.
机译:豆科植物的食用因其在蛋白质,纤维,矿物质和维生素中的含量而被认为对人体健康有益,并且由于其具有固定土壤中氮与土壤细菌根瘤菌共生的能力,因此被认为对可持续农业有利。接种这些细菌会诱导植物体内的代谢变化,迄今为止,更多的研究是氮和蛋白质含量的增加,并且已在农业中用于改善几种豆类作物的产量。然而,豆类还含有几种生物活性化合物,例如多糖,生物活性肽,异黄酮和其他酚类化合物,类胡萝卜素,生育酚和脂肪酸,这使它们成为营养产品中的功能性食品。因此,在过去的十年中,关于根瘤菌接种对豆类生物活性化合物含量的影响的研究引起了人们的兴趣。几篇工作报告说,在大豆,cow豆,鹰嘴豆,蚕豆或花生等几种豆科植物中接种不同属和种的根瘤菌,可使抗氧化能力和某些生物活性化合物(如酚类)的含量增加,类黄酮,有机酸,蛋白质和脂肪酸。因此,根瘤菌接种是提高豆类产量和质量的良好工具,对该领域的进一步研究将使我们拥有植物益生菌,可以促进豆类植物的生长,从而改善其功能。

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