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The development of a phosphite-mediated fertilization and weed control system for rice

机译:亚磷酸盐介导的水稻施肥和杂草控制系统的开发

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摘要

Fertilizers and herbicides are two vital components of modern agriculture. The imminent danger of phosphate reserve depletion and multiple herbicide tolerance casts doubt on agricultural sustainability in the future. Phosphite, a reduced form of phosphorus, has been proposed as an alternative fertilizer and herbicide that would address the above problems to a considerable extent. To assess the suitability of a phosphite-based fertilization and weed control system for rice, we engineered rice plants with a codon-optimized ptxD gene from Pseudomonas stutzeri. Ectopic expression of this gene led to improved root growth, physiology and overall phenotype in addition to normal yield in transgenic plants in the presence of phosphite. Phosphite functioned as a translocative, non-selective, pre- and post-emergent herbicide. Phosphite use as a dual fertilizer and herbicide may mitigate the overuse of phosphorus fertilizers and reduce eutrophication and the development of herbicide resistance, which in turn will improve the sustainability of agriculture.
机译:肥料和除草剂是现代农业的两个重要组成部分。磷酸盐储备枯竭和多种除草剂耐受性的迫在眉睫,使人们对未来的农业可持续性产生怀疑。已提出亚磷酸酯(一种还原形式的磷)作为替代肥料和除草剂,可以在很大程度上解决上述问题。为了评估基于亚磷酸酯的施肥和杂草控制系统对水稻的适用性,我们设计了一种带有密码子优化的斯氏假单胞菌(Pseudomonas stutzeri)ptxD基因的水稻植物。该基因的异位表达除了在亚磷酸酯存在下转基因植物的正常产量外,还改善了根的生长,生理和整体表型。亚磷酸酯起易位,非选择性,芽前和芽后除草剂的作用。将亚磷酸酯用作肥料和除草剂的双重肥料可以减轻磷肥的过度使用,并减少富营养化和抗除草剂能力的发展,进而改善农业的可持续性。

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