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水分胁迫对土壤中根的质外体屏障形成的影响不同于水培根:组织化学、生物化学和分子证据。

Effects of water stress on apoplastic barrier formation in soil grown roots differ from hydroponically grown roots: Histochemical, biochemical and molecular evidence.

机构信息

Department of Ecophysiology, Institute of Cellular and Molecular Botany, University of Bonn, Bonn, Germany.

Plant Cell Biology, Institute of Cellular and Molecular Botany, University of Bonn, Bonn, Germany.

出版信息

Plant Cell Environ. 2024 Dec;47(12):4917-4931. doi: 10.1111/pce.15067. Epub 2024 Aug 7.

Abstract

In root research, hydroponic plant cultivation is commonly used and soil experiments are rare. We investigated the response of 12-day-old barley roots, cultivated in soil-filled rhizotrons, to different soil water potentials (SWP) comparing a modern cultivar (cv. Scarlett) with a wild accession ICB181243 from Pakistan. Water potentials were quantified in soils with different relative water contents. Root anatomy was studied using histochemistry and microscopy. Suberin and lignin amounts were quantified by analytical chemistry. Transcriptomic changes were observed by RNA-sequencing. Compared with control with decreasing SWP, total root length decreased, the onset of endodermal suberization occurred much closer towards the root tips, amounts of suberin and lignin increased, and corresponding biosynthesis genes were upregulated in response to decreasing SWP. We conclude that decreasing water potentials enhanced root suberization and lignification, like osmotic stress experiments in hydroponic cultivation. However, in soil endodermal cell suberization was initiated very close towards the root tip, and root length as well as suberin amounts were about twofold higher compared with hydroponic cultivation.

摘要

在根系研究中,水培植物栽培通常被使用,而土壤实验则很少。我们研究了在充满土壤的根箱中培养的 12 天大的大麦根对不同土壤水势(SWP)的反应,将现代品种(Scarlett)与来自巴基斯坦的野生品系 ICB181243 进行了比较。通过定量分析具有不同相对含水量的土壤中的水分势。使用组织化学和显微镜研究了根解剖结构。通过分析化学定量了栓质和木质素的含量。通过 RNA-seq 观察了转录组的变化。与 SWP 降低的对照相比,总根长减少,内皮层栓质化的开始更接近根尖,栓质和木质素的含量增加,相应的生物合成基因被上调以响应 SWP 的降低。我们得出的结论是,降低水势会增强根的栓质化和木质化,就像水培培养中的渗透胁迫实验一样。然而,在土壤中,内皮层细胞的栓质化是在非常接近根尖的地方开始的,与水培培养相比,根长和栓质含量高了约两倍。

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