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首页> 外文期刊>Acta Horticulturae >Understanding the effect of amino acids based biostimuiant by an enantiomeric analysis of their active principles and a proteomic profiling approach
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Understanding the effect of amino acids based biostimuiant by an enantiomeric analysis of their active principles and a proteomic profiling approach

机译:通过对氨基酸的生物活性成分进行对映体分析和蛋白质组学分析方法,了解基于氨基酸的生物刺激剂的作用

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摘要

Plant biostimulants are products that contain multiple compounds and claim to activate a wide range of plant responses. Amino acid based products are one example of biostimulants with a complex composition and different product characteristics depending on their sources and production processes. Amino acid biostimulants are obtained mainly by chemical or enzymatic protein hydrolysis and the type of hydrolysis determine the content of free amino acids and their enantiomeric purity. While L-amino acidsare biologically active, the application of D-amino acids has even shown deleterious. With the aim to highlight different quality compositions of amino acid biostimulants a comprehensive chiral analysis of different types of hydrolyzed protein biostimulants was performed. Results confirmed the high purity in L-amino acids in products obtained by enzymatic hydrolysis as well as a high racemization rate for those obtained through a chemical hydrolysis. Furthermore the application of the commercial biostimulant Terra-Sorb~R Foliar with L-amino acids shows multiple agronomic effects such as the improvement of the photosynthetic process and the enhancement of crop tolerance to stress. A proteomic approach in wheat plants was undertaken in order to understand which molecular mechanisms are involved in the stimulating effect of the product. The improvement of wheat productivity seems to be mediated by a combination of an enhanced CO2 fixation, a more active protein metabolism and a decrease of oxidative stress.
机译:植物生物刺激剂是包含多种化合物的产品,声称可以激活多种植物反应。氨基酸类产品是生物刺激剂的一个例子,其组成复杂,产品特性取决于其来源和生产过程。氨基酸生物刺激物主要通过化学或酶促蛋白质水解获得,水解的类型决定了游离氨基酸的含量及其对映体纯度。虽然L-氨基酸具有生物活性,但D-氨基酸的应用甚至显示出有害的。为了突出氨基酸生物刺激剂的不同质量组成,对不同类型的水解蛋白质生物刺激剂进行了全面的手性分析。结果证实了通过酶促水解获得的产品中L-氨基酸的高纯度,以及通过化学水解获得的产品中的高消旋率。此外,带有L-氨基酸的商业生物刺激剂Terra-Sorb_R Foliar的应用显示出多种农艺学效果,例如光合过程的改善和农作物对胁迫的耐受性的增强。为了了解哪种分子机制参与了产品的刺激作用,对小麦植物进行了蛋白质组学研究。小麦生产力的提高似乎是由增强的CO2固定,更活跃的蛋白质代谢和降低的氧化应激共同作用的。

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