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发展一种快速弹道测定法,用于检测在品脱豆植物摄取四环素后,叶片细胞内钙离子相对水平的变化。

Development of a rapid biolistic assay to determine changes in relative levels of intracellular calcium in leaves following tetracycline uptake by pinto bean plants.

机构信息

Department of Biological Sciences, University at Buffalo, Buffalo, NY 14260, USA.

出版信息

Analyst. 2009 Aug;134(8):1594-600. doi: 10.1039/b902147g. Epub 2009 Jun 2.

Abstract

Tetracycline antibiotics, such as chlortetracycline (CTC) and tetracycline (TC), are introduced into agricultural lands through the application of manure as fertilizer. These compounds are phytotoxic to certain crop plants, including pinto beans (Phaseolus vulgaris), the species used for this investigation. While the mechanism of this toxicity is not yet understood, CTC is known to be a calcium chelator. We describe here a novel method to show that CTC is taken up by pinto bean plants and chelates calcium in leaves. Cameleon fusion proteins can provide qualitative and quantitative imaging of intracellular calcium levels, but current methodology requires stable transformation. Many plant species, including pinto beans, are not yet transformable using standard Agrobacterium-based protocols. To determine the role of calcium chelation in this plant, a rapid, biolistic method was developed to transiently express the cameleon protein. This method can easily be adapted to other plant systems. Our findings provide evidence that chelation of intracellular calcium by CTC is related to phytotoxic effects caused by this antibiotic in pinto beans. Root uptake of CTC and TC by pinto beans and their translocation to leaves were further verified by fluorescence spectroscopy and liquid chromatography/mass spectrometry, confirming results of the biolistic method that showed calcium chelation by tetracyclines in leaves.

摘要

四环素类抗生素,如金霉素(CTC)和四环素(TC),通过作为肥料的粪肥施用到农业用地中。这些化合物对某些作物植物具有植物毒性,包括用于本研究的利马豆(Phaseolus vulgaris)。虽然这种毒性的机制尚不清楚,但已知 CTC 是一种钙螯合剂。我们在这里描述了一种新方法,证明 CTC 被利马豆植物吸收并在叶片中螯合钙。 Cameleon 融合蛋白可以提供细胞内钙水平的定性和定量成像,但目前的方法需要稳定的转化。许多植物物种,包括利马豆,尚未通过标准的基于农杆菌的方案进行转化。为了确定钙螯合在这种植物中的作用,开发了一种快速、弹道的方法来瞬时表达 Cameleon 蛋白。这种方法可以很容易地适应其他植物系统。我们的研究结果提供了证据,证明 CTC 对细胞内钙的螯合与这种抗生素在利马豆中引起的植物毒性效应有关。通过荧光光谱和液相色谱/质谱进一步证实了利马豆对 CTC 和 TC 的根吸收及其向叶片的转运,这证实了弹道方法的结果,表明四环素类药物在叶片中螯合钙。

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