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肯塔基蓝草如何耐受用于道路除冰的氯化钠所造成的压力?

How Kentucky bluegrass tolerate stress caused by sodium chloride used for road de-icing?

机构信息

Department of Agronomy, Faculty of Agriculture and Biology, Warsaw University of Life Sciences-SGGW, 159 Nowoursynowska St., 02-776, Warsaw, Poland.

Institute of Technology and Life Sciences (ITP), Falenty, Al. Hrabska 3, 05-090, Raszyn, Poland.

出版信息

Environ Sci Pollut Res Int. 2019 Jan;26(1):913-922. doi: 10.1007/s11356-018-3640-4. Epub 2018 Nov 12.

Abstract

Salts used in road de-icing during winter season inhibit the growth and development of lawn grass species. The mechanism of plant tolerance/sensitivity to such treatments is still not clear. Moreover, there is a lack of fast and non-invasive tool to detect the effect of these salts on plants growth. This study was designed to understand the tolerance mechanism of Kentucky bluegrass plants on salinity, based on some biometric and physiological parameters. In this experiment, we simulated the urban conditions where salts are used intensively for roads de-icing. Germination capacity was evaluated at five salt solutions of NaCl (0, 50, 100, 150 and 200 mM), and physiological parameters were measured during the tillering phase at salinity levels of 0, 150 and 300 mM of NaCl. Seeds of Kentucky bluegrass did not germinate under salinity. During tillering phase, salinity affected length, area and dry mass of roots as well as the relative water content of plants, negatively. Moreover, it influenced the maximum chlorophyll fluorescence yield, quantum yield of photosystem II and electron transport rate at early period of stress. This allows us to recommend these parameters for early detection of soil salinity effects on Kentucky bluegrass plants. It seems to be that the tolerance of this plant towards salinity is based on retaining water content in leaves that allow more efficient functioning of photosynthetic apparatus.

摘要

冬季道路除冰用盐会抑制草坪草的生长和发育。植物对这类处理的耐受/敏感性的机制尚不清楚。此外,缺乏快速、非侵入性的工具来检测这些盐对植物生长的影响。本研究旨在基于一些生物计量和生理参数,了解草地早熟禾对盐分的耐受机制。在这个实验中,我们模拟了城市中大量使用盐来除冰的情况。在五种 NaCl 盐溶液(0、50、100、150 和 200 mM)中评估了发芽能力,并在盐分水平为 0、150 和 300 mM NaCl 的分蘖阶段测量了生理参数。盐度条件下,草地早熟禾种子无法发芽。在分蘖阶段,盐分对根的长度、面积和干重以及植物的相对含水量有负面影响。此外,它还影响了胁迫早期最大叶绿素荧光产量、光系统 II 的量子产量和电子传递速率。这使我们能够推荐这些参数用于早期检测土壤盐分对草地早熟禾植物的影响。似乎这种植物对盐分的耐受性是基于保留叶片中的水分,从而使光合作用装置更有效地发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8015/6318346/1cc84d7ebf16/11356_2018_3640_Fig1_HTML.jpg

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