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高盐条件下海蓬子(盐地碱蓬)生态型作为一种有潜力的草坪草的表现。

Performance of Aeluropus lagopoides (mangrove grass) ecotypes, a potential turfgrass, under high saline conditions.

机构信息

Department of Arid Land Agriculture, Faculty of Food and Agriculture, UAE University, Al Ain, UAE.

Department of Horticulture, Faculty of Crop Production Sciences, The University of Agriculture, Peshawar, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2019 May;26(13):13410-13421. doi: 10.1007/s11356-019-04838-3. Epub 2019 Mar 23.

Abstract

Climate change has become a real threat, and its impacts are being felt throughout the world. Temperature is considered one of the significant elements by the recent consequences of climate change and global warming, specially the salinity which is increased at higher temperature. Turfgrasses are adversely affected due to an increasing trend in salinity. The main aim of this investigation was to find out salt-tolerant ecotypes from native species of UAE to mitigate the salinity problem. Performance of a native grass, Aeluropus lagopoides, was investigated under high saline conditions during the year 2014 under the UAE climatic conditions. The experiment was planned under randomised complete block design (RCBD) with two factors and four replications. During the experiment, 50 ecotypes of Aeluropus lagopoides, alongside Paspalum vaginatum (as control), were tested at different salt levels, i.e. 0, 15, 30, 45, 60 and 75 dSm. Significant differences were found among various ecotypes as well as salinity levels for different agronomic traits including green cover, canopy stiffness, leaf colour and salinity of leaf rinseates. Most of the ecotypes tolerated salinity up to 30 dSm, maintaining the quality, but beyond this level the quality declined. However, some of the ecotypes survived under high salinity, even beyond sea level (75 dSm). All the ecotypes, except RUA2, RUA3 and RUA1, showed better performance than P. vaginatum, the prevailing commercial turfgrass in the UAE. Based on their performance, the ecotypes RUDA7, FA5, RA3, RUDA2 and RA2 could be used for turf purposes under saline conditions.

摘要

气候变化已成为一个现实威胁,其影响遍及全球。温度被认为是气候变化和全球变暖的最近后果的重要因素之一,特别是在高温下增加的盐度。由于盐度呈上升趋势,草坪草受到不利影响。本研究的主要目的是从阿联酋的本地物种中找到耐盐生态型,以减轻盐度问题。在 2014 年,根据阿联酋的气候条件,在高盐条件下对本地草种 Aeluropus lagopoides 的性能进行了研究。该实验采用随机完全区组设计(RCBD),有两个因素和四个重复。在实验过程中,对 50 种 Aeluropus lagopoides 生态型(连同 Paspalum vaginatum 作为对照)在不同盐度水平下进行了测试,即 0、15、30、45、60 和 75 dSm。在不同的农艺性状,包括绿色覆盖、冠层硬度、叶片颜色和叶片冲洗液盐度方面,发现不同生态型和盐度水平之间存在显著差异。大多数生态型可耐受 30 dSm 以下的盐度,保持质量,但超过这个水平质量就会下降。然而,一些生态型在高盐度下存活下来,甚至超过海平面(75 dSm)。除了 RUA2、RUA3 和 RUA1 之外,所有生态型的表现都优于 P. vaginatum,后者是阿联酋流行的商业草坪草。根据它们的表现,RUDA7、FA5、RA3、RUDA2 和 RA2 等生态型可用于盐渍条件下的草坪用途。

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