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An Assessment of Engineered Calcium Oxalate Crystal Formation on Plant Growth and Development as a Step toward Evaluating Its Use to Enhance Plant Defense

机译:工程草酸钙晶体形成对植物生长和发育的评估以评估其用于增强植物防御能力的步骤

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摘要

The establishment of new approaches to control chewing insects has been sought not only for direct use in reducing crop loss but also in managing resistance to the pesticides already in use. Engineered formation of calcium oxalate crystals is a potential strategy that could be developed to fulfill both these needs. As a step toward this development, this study investigates the effects of transforming a non-calcium oxalate crystal accumulating plant, Arabidopsis thaliana, into a crystal accumulating plant. Calcium oxalate crystal accumulating A. thaliana lines were generated by ectopic expression of a single bacterial gene encoding an oxalic acid biosynthetic enzyme. Biochemical and cellular studies suggested that the engineered A. thaliana lines formed crystals of calcium oxalate in a manner similar to naturally occurring crystal accumulating plants. The amount of calcium oxalate accumulated in leaves also reached levels similar to those measured in the leaves of Medicago truncatula in which the crystals are known to play a defensive role. Visual inspection of the different engineered lines, however, suggested a phenotypic consequence on plant growth and development with higher calcium oxalate concentrations. The restoration of a near wild-type plant phenotype through an enzymatic reduction of tissue oxalate supported this observation. Overall, this study is a first to provide initial insight into the potential consequences of engineering calcium oxalate crystal formation in non-crystal accumulating plants.
机译:人们一直在寻求建立控制咀嚼昆虫的新方法,不仅可以直接用于减少农作物损失,而且可以用于管理对已经使用的农药的抗性。草酸钙晶体的工程化形成是可以满足这些需求的潜在策略。作为迈向这一发展的一步,本研究调查了将非草酸钙晶体蓄积植物拟南芥转化为晶体蓄积植物的效果。通过异位表达编码草酸生物合成酶的单个细菌基因,生成积累草拟南芥线的草酸钙晶体。生化和细胞研究表明,拟制的拟南芥品系以与天然晶体积累植物相似的方式形成草酸钙晶体。叶片中草酸钙的积累量也达到了与苜蓿苜蓿叶片中测得的水平相似的水平,其中已知该晶体起着防御作用。然而,目视检查不同的工程品系表明草酸钙浓度较高对植物的生长和发育产生表型后果。通过酶促还原草酸组织恢复近乎野生型植物表型支持了这一观察。总的来说,这项研究是首次提供对非结晶性植物中工程草酸钙晶体形成的潜在后果的初步见解。

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  • 作者

    Paul A. Nakata;

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  • 年(卷),期 -1(10),10
  • 年度 -1
  • 页码 e0141982
  • 总页数 15
  • 原文格式 PDF
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