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首页> 外文期刊>Plant signaling & behavior >Application of nanoscale secondary ion mass spectrometry to plant cell research.
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Application of nanoscale secondary ion mass spectrometry to plant cell research.

机译:纳米级二次离子质谱在植物细胞研究中的应用。

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摘要

Imaging resource flow in soil-plant systems remains central to understanding plant development and interactions with the environment. Typically, subcellular resolution is required to fully elucidate the compartmentation, behavior, and mode of action of organic compounds and mineral elements within plants. For many situations this has been limited by the poor spatial resolution of imaging techniques and the inability to undertake studies in situ. Here we demonstrate the potential of Nanoscale Secondary Ion Mass Spectrometry (NanoSIMS), which is capable of the quantitative high-resolution spatial imaging of stable isotopes (e.g. 12C, 13C, 14N, 15N, 16O, 18O, 31P, 34S) within intact plant-microbial-soil systems. We present examples showing how the approach can be used to investigate competition for 15N-labeled nitrogen compounds between plant roots and soil microorganisms living in the rhizosphere and the spatial imaging of 31P in roots. We conclude that NanoSIMS has great potential to elucidate the flow of isotopically-labeled compounds in complex media (e.g. soil) and opens up countless new opportunities for studying plant responses to abiotic stress (e.g. 18O3, elevated 13CO2), signal exchange, nutrient flow and plant-microbial interactions.
机译:对土壤植物系统中的资源流进行成像仍然是了解植物发育以及与环境相互作用的关键。通常,需要亚细胞分辨率来充分阐明植物中有机化合物和矿物质元素的分隔,行为和作用方式。在许多情况下,这受到成像技术的较差的空间分辨率和无法进行原位研究的限制。在这里,我们证明了纳米级二次离子质谱(NanoSIMS)的潜力,该技术能够对稳定同位素(例如 12 C, 13 C , 14 N, 15 N, 16 O, 18 O, 31 P , 34 S)在完整的植物-微生物-土壤系统中。我们提供了一些实例,展示了该方法如何用于调查植物根与生活在根际中的土壤微生物之间的 15 N标记的氮化合物之间的竞争以及 31 的空间成像P在根中。我们得出的结论是,NanoSIMS在阐明同位素标记化合物在复杂介质(例如土壤)中的流动方面具有巨大潜力,并为研究植物对非生物胁迫的响应(例如 18 O 3 ,升高的 13 CO 2 ),信号交换,养分流和植物与微生物的相互作用。

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