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X射线计算机断层扫描与植物基因表达、根际细菌群落及酶活性的兼容性

Compatibility of X-ray computed tomography with plant gene expression, rhizosphere bacterial communities and enzyme activities.

作者信息

Ganther Minh, Yim Bunlong, Ibrahim Zeeshan, Bienert Manuela Desiree, Lippold Eva, Maccario Lorrie, Sørensen Søren Johannes, Bienert Gerd Patrick, Vetterlein Doris, Heintz-Buschart Anna, Blagodatskaya Evgenia, Smalla Kornelia, Tarkka Mika T

机构信息

Helmholtz Centre for Environmental Research, Halle, Germany.

Julius Kühn-Institut, Braunschweig, Germany.

出版信息

J Exp Bot. 2020 Sep 19;71(18):5603-5614. doi: 10.1093/jxb/eraa262.

Abstract

Non-invasive X-ray computed tomography (XRCT) is increasingly used in rhizosphere research to visualize development of soil-root interfaces in situ. However, exposing living systems to X-rays can potentially impact their processes and metabolites. In order to evaluate these effects, we assessed the responses of rhizosphere processes 1 and 24 h after a low X-ray exposure (0.81 Gy). Changes in root gene expression patterns occurred 1 h after exposure with down-regulation of cell wall-, lipid metabolism-, and cell stress-related genes, but no differences remained after 24 h. At either time point, XRCT did not affect either root antioxidative enzyme activities or the composition of the rhizosphere bacterial microbiome and microbial growth parameters. The potential activities of leucine aminopeptidase and phosphomonoesterase were lower at 1 h, but did not differ from the control 24 h after exposure. A time delay of 24 h after a low X-ray exposure (0.81 Gy) was sufficient to reverse any effects on the observed rhizosphere systems. Our data suggest that before implementing novel experimental designs involving XRCT, a study on its impact on the investigated processes should be conducted.

摘要

非侵入性X射线计算机断层扫描(XRCT)越来越多地用于根际研究,以原位可视化土壤-根系界面的发育情况。然而,将活体系统暴露于X射线下可能会对其过程和代谢产物产生潜在影响。为了评估这些影响,我们在低剂量X射线照射(0.81 Gy)后1小时和24小时评估了根际过程的响应。暴露1小时后,根基因表达模式发生变化,细胞壁、脂质代谢和细胞应激相关基因下调,但24小时后没有差异。在任何一个时间点,XRCT均未影响根系抗氧化酶活性、根际细菌微生物群落组成或微生物生长参数。亮氨酸氨肽酶和磷酸单酯酶的潜在活性在1小时时较低,但在暴露后24小时与对照无差异。低剂量X射线照射(0.81 Gy)后24小时的时间延迟足以逆转对观察到的根际系统的任何影响。我们的数据表明,在实施涉及XRCT的新实验设计之前,应先研究其对所研究过程的影响。

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