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Thiourea a ROS Scavenger Regulates Source-to-Sink Relationship to Enhance Crop Yield and Oil Content in Brassica juncea (L.)

机译:硫磺清除剂硫脲调节油菜的源-库关系以提高芥菜(L.)的作物产量和油含量

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摘要

In the present agricultural scenario, the major thrust is to increase crop productivity so as to ensure sustainability. In an earlier study, foliar application of thiourea (TU; a non physiological thiol based ROS scavenger) has been demonstrated to enhance the stress tolerance and yield of different crops under field condition. Towards this endeavor, present work deals with the effect of TU on photosynthetic efficiency and source-to-sink relationship of Indian mustard (Brassica juncea) for understanding its mode of action. The application of TU increased the efficiency of both PSI and PSII photosystems and vegetative growth of plant. The comparative analysis of sucrose to starch ratio and expression level of sugar transporters confirmed the higher source and sink strength in response to TU treatment. The biochemical evidence in support of this was derived from higher activities of sucrose phosphate synthase and fructose-1,6-bis-phosphatase at source; and sucrose synthase and different classes of invertases at both source and sink. This indicated an overall increase in photoassimilate level at sink. An additional contribution through pod photosynthesis was confirmed through the analysis of phosphoenol pyruvate carboxylase enzyme activity and level of organic acids. The increased photoassimilate level was also co-ordinated with acetyl coA carboxylase mediated oil biosynthesis. All these changes were ultimately reflected in the form of 10 and 20% increase in total yield and oil content, respectively under TU treatment as compared to control. Additionally, no change was observed in oil composition of seeds derived from TU treated plants. The study thus signifies the co-ordinated regulation of key steps of photosynthesis and source-to-sink relationship through the external application of TU resulting in increased crop yield and oil content.
机译:在当前的农业形势下,主要重点是提高作物生产力,以确保可持续性。在较早的研究中,已证明叶面施用硫脲(TU;一种非生理性的基于硫醇的ROS清除剂)可提高田间条件下不同作物的胁迫耐受性和产量。为此,目前的工作涉及TU对印度芥菜(Brassica juncea)的光合作用效率和源-库关系的影响,以了解其作用方式。 TU的应用提高了PSI和PSII光系统的效率以及植物的营养生长。蔗糖与淀粉的比例和糖转运蛋白的表达水平的比较分析证实了TU处理能提高糖源和吸收强度。支持这一点的生化证据来自蔗糖磷酸合酶和果糖-1,6-双磷酸酶的较高活性。和蔗糖合酶以及源和汇的不同类别的转化酶。这表明在水槽的光同化水平总体增加。通过对磷酸烯醇丙酮酸羧化酶活性和有机酸水平的分析,证实了豆荚光合作用的另一贡献。增加的光同化水平也与乙酰辅酶A羧化酶介导的油生物合成协调。与对照相比,在TU处理下,所有这些变化最终以总产量和含油量分别增加10%和20%的形式反映出来。另外,未观察到来自TU处理过的植物的种子的油成分变化。因此,该研究表明通过外部施用TU可以协调协调光合作用的关键步骤以及源库关系,从而提高作物的产量和油含量。

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