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Soybean Seed Phenol, Lignin, and Isoflavones and Sugars Composition Altered by Foliar Boron Application in Soybean under Water Stress

机译:水分胁迫下叶面硼对大豆种子中酚,木质素和异黄酮及糖成分的影响

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Previous research showed that foliar boron (B) application at flowering or seed-fill growth stages altered seed protein, oil, and fatty acids. The objective of this research was to investigate the effects of foliar B fertilizer on seed phenolics (phenol, lignin, and isoflavones) and sugars concentrations. A repeated greenhouse experiment was conducted on soybean [(Glycine max(L.) Merr.)] under watered and water-stressed conditions. Soybean plants were divided into different sets, and each set was subjected to one of the following treatments: W = plants were watered with no foliar B; WB = plants were watered and received foliar B; WS = plants were water-stressed with no foliar B; WSB = plants were waterstressed and received foliar B. Foliar B was applied at rate of 0.45 kg/ha twice at flowering and twice at seed-fill stages. The results showed that total phenol and lignin concentrations were higher in seed collected from water-stressed plants compared with those collected from watered plants whether B was applied or not. The higher total phenol and lignin concentration in seed collected of water-stressed plants may be due to B-deficiency in plant tissues. Application of B resulted in higher concentrations of total seed B and isoflavones under watered and water-stressed plants. Higher cell wall B was higher in water-stressed plants than in watered plants, having an opposite trend to total B. Application of B resulted in higher seed sucrose in watered and water-stressed plants, but raffinose and stachyose were significantly higher under water-stressed plants. The research demonstrated that foliar B fertilizer altered seed phenol, lignin, isoflavones, and sugars, suggesting that B involved in phenolics and sugar metabolism. The higher cell wall B in waterstressed plants than in watered plants supports previous research that B has mainly a structural role. The higher sucrose resulting from foliar B in watered plants is desirable as sucrose contributes to seed quality. The increase of raffinose and stachyose concentrations in seed of water-stressed plants is undesirable as raffinose, and especially stachyose may be involved in water stress/drought tolerance. The current knowledge would help soybean breeders select for higher phenolic compounds and desirable sugars for higher seed qualities under drought conditions.
机译:先前的研究表明,在开花或种子填充生长阶段施用叶硼(B)会改变种子蛋白,油和脂肪酸。这项研究的目的是研究叶面肥对种子中酚类(酚,木质素和异黄酮)和糖浓度的影响。在浇水和水分胁迫条件下,对大豆[(Glycine max(L。)Merr。)]进行了重复的温室试验。将大豆植物分成不同的组,并且每组都进行以下处理之一:W =将植物浇水,不添加叶面B; WB =给植物浇水并接受叶面B; WS =水分胁迫,无叶面B; WSB =使植物受到水分胁迫,并接受叶面B。叶面B以0.45 kg / ha的用量在开花期两次,在种子灌浆期两次。结果表明,无论是否施用B,从水分胁迫的植物中收集的种子中总酚和木质素的浓度要比从水分胁迫的植物中收集的更高。水分胁迫植物收集的种子中总酚和木质素浓度较高,可能是由于植物组织中的B缺乏。在浇水和水分胁迫的植物下,施用B导致总种子B和异黄酮的浓度更高。水分胁迫下的植物中较高的细胞壁B比浇水的植物中更高,与总B的趋势相反。施用B可使水分和水分胁迫的植物中的种子蔗糖含量更高,但是在水-胁迫下,棉子糖和水苏糖显着更高。强调植物。研究表明,叶面肥B改变了种子酚,木质素,异黄酮和糖的含量,表明B参与酚类和糖代谢。水分胁迫植物中的细胞壁B比浇水植物中的B高,这支持了以前的研究,即B主要具有结构性作用。在浇水植物中由叶面B产生的较高蔗糖是理想的,因为蔗糖有助于种子质量。水分胁迫植物的种子中的棉子糖和水苏糖浓度增加是不可取的,因为棉子糖尤其是水苏糖可能参与了水分胁迫/干旱耐受性。当前的知识将帮助大豆育种者选择更高的酚类化合物和理想的糖,以在干旱条件下获得更高的种子品质。

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