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纺织用大麻与盐分:靶向基因表达分析的见解

Textile Hemp vs. Salinity: Insights from a Targeted Gene Expression Analysis.

作者信息

Guerriero Gea, Behr Marc, Hausman Jean-Francois, Legay Sylvain

机构信息

Environmental Research and Innovation (ERIN) Department, Luxembourg Institute of Science and Technology (LIST), L-4362 Esch/Alzette, Luxembourg.

出版信息

Genes (Basel). 2017 Sep 26;8(10):242. doi: 10.3390/genes8100242.

Abstract

Soil salinity is a serious threat to agriculture, because it compromises biomass production and plant productivity, by negatively affecting the vegetative growth and development of plants. Fiber crops like textile hemp (Cannabis sativa L.) are important natural resources that provide, sustainably, both cellulosic and woody fibers for industry. In this work, the response to salinity (200 mM NaCl) of a fiber variety of hemp (Santhica 27) was studied using quantitative real-time PCR. The responses of plantlets aged 15 days were analyzed by microscopy and by measuring the changes in expression of cell wall-related genes, as well as in the general response to exogenous constraints. The results presented here show that a different response is present in the hemp hypocotyls and leaves. In the leaves, genes coding for heat shock proteins were significantly upregulated, together with a phytohormone-related transcript (ethylene-responsive factor 1 ERF1) and genes involved in secondary cell wall biosynthesis (cellulose synthase CesA4, fasciclin-like arabinogalactan proteins FLA10 and FLA8). Moreover, a tendency towards upregulation was also observed in the leaves for genes involved in lignification (4CL, CAD, PAL); a finding that suggests growth arrest. In the hypocotyl, the genes involved in lignification did not show changes in expression, while a gene related to expansion (expansin EXPA8), as well as transcripts coding for calcium-dependent lipid-binding family proteins (CALB), were upregulated. Microscopic analyses on the hypocotyl cross sections revealed changes in the vascular tissues of salt-exposed plantlets, where the lumen of xylem vessels was reduced. The gene expression results show that a different response is present in the hemp hypocotyls and leaves. The data presented contribute to our understanding of the regulatory gene network in response to salinity in different tissues of an important fiber crop.

摘要

土壤盐渍化是农业面临的严重威胁,因为它会对植物的营养生长和发育产生负面影响,从而损害生物量生产和作物生产力。像纺织用大麻(Cannabis sativa L.)这样的纤维作物是重要的自然资源,可为工业可持续地提供纤维素纤维和木质纤维。在这项研究中,我们使用定量实时PCR技术研究了一种大麻纤维品种(Santhica 27)对盐胁迫(200 mM NaCl)的响应。通过显微镜观察以及测量细胞壁相关基因的表达变化和对外源胁迫的总体响应,分析了15日龄幼苗的反应。此处呈现的结果表明,大麻的下胚轴和叶片存在不同的反应。在叶片中,编码热休克蛋白的基因显著上调,同时一种与植物激素相关的转录本(乙烯响应因子1,ERF1)以及参与次生细胞壁生物合成的基因(纤维素合酶CesA4、类成束蛋白阿拉伯半乳聚糖蛋白FLA10和FLA8)也显著上调。此外,在叶片中还观察到参与木质化的基因(4CL、CAD、PAL)有上调的趋势;这一发现表明生长停滞。在下胚轴中,参与木质化的基因表达没有变化,而一个与细胞扩张相关的基因(扩张蛋白EXPA8)以及编码钙依赖性脂质结合家族蛋白(CALB)的转录本上调。对下胚轴横切面的显微镜分析揭示了盐处理幼苗维管组织的变化,其中木质部导管的管腔变小。基因表达结果表明,大麻的下胚轴和叶片存在不同的反应。这些数据有助于我们了解一种重要纤维作物不同组织对盐胁迫响应的调控基因网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dc0/5664092/baf4b44295c7/genes-08-00242-g001.jpg

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