Evaluation of landscape ecological security pattern via the “pattern-function-stability” framework in the Guanzhong Plain Urban Agglomeration of China

IF 7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Enle Qiao , Rukeya Reheman , Zhongxue Zhou , Siyu Tao
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Abstract

Most studies have assessed and constructed landscape ecological security patterns (LESPs) primarily from the perspective of landscape morphology by employing morphological spatial pattern analysis, with little attention paid to fundamental ecosystem attributes (such as ecosystem functions and stability). Thus, this study proposed a comprehensive evaluation and optimization framework for LESPs from the perspective of “mode function stability” by integrating assessment landscape pattern, ecological function, and landscape stability. A comprehensive evaluation and optimization of the LESPs was conducted using the Minimum Cumulative Resistance (MCR) model in the Guanzhong Plain Urban Agglomeration (GPUA) as the research area. The results showed that: (1) Generally, the landscape quality in urban agglomerations was relatively low because of the large area of agricultural vegetation, high human interference, and landscape fragmentation, which caused low levels of landscape pattern, function, and stability. (2) LESPs were mainly determined by landscape stability in urban agglomerations due to low-quality ecosystems, rapid landscape transformation, and severe anthropogenic disturbances. (3) There was a large variation in the landscape function and stability of a certain landscape type due to their different structures and human interference across space in urban agglomerations. According to assessment by “pattern-function-stability” framework, the ecological sources and corridors covered with natural forest were the crucial cornerstone to constructing LESPs, and the rivers in crop planting areas were the inevitably selected corridors, but their ecological function and stability needed further improvement in construction. (4) The framework can assess spatial patterns and ecological functions to further the stability and sustainability of the landscape in maintaining ecological security and facilitating the identification of improvement objectives or measures of individual ecological sources or corridors in regional ecological infrastructure construction practices.

Abstract Image

中国关中平原城市群 "格局-功能-稳定性 "框架下的景观生态安全格局评价
大多数研究主要从景观形态的角度,通过形态空间格局分析来评估和构建景观生态安全格局(LESPs),很少关注生态系统的基本属性(如生态系统功能和稳定性)。因此,本研究从 "模式功能稳定性 "角度出发,综合评估景观格局、生态功能和景观稳定性,提出了景观安全格局综合评价与优化框架。以关中平原城市群(GPUA)为研究区域,利用最小累积阻力(MCR)模型对 LESPs 进行了综合评价与优化。结果表明(1) 由于农业植被面积大、人为干扰多、景观破碎化等原因,城市群的景观质量普遍较低,导致景观格局、功能和稳定性水平较低。(2) 由于生态系统质量低、景观变化快、人为干扰严重,城市群的景观稳定性主要决定了 LESPs。(3)在城市群中,由于不同空间结构和人为干扰,某种景观类型的景观功能和稳定性存在较大差异。根据 "格局-功能-稳定性 "框架的评估,天然林覆盖的生态源和廊道是构建 LESP 的重要基石,农作物种植区的河流是廊道的必然选择,但其生态功能和稳定性需要在建设中进一步提高。(4)该框架可对空间格局和生态功能进行评估,以进一步提高景观的稳定性和可持续性,维护生态安全,便于在区域生态基础设施建设实践中确定单个生态源或廊道的改善目标或措施。
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来源期刊
Ecological Indicators
Ecological Indicators 环境科学-环境科学
CiteScore
11.80
自引率
8.70%
发文量
1163
审稿时长
78 days
期刊介绍: The ultimate aim of Ecological Indicators is to integrate the monitoring and assessment of ecological and environmental indicators with management practices. The journal provides a forum for the discussion of the applied scientific development and review of traditional indicator approaches as well as for theoretical, modelling and quantitative applications such as index development. Research into the following areas will be published. • All aspects of ecological and environmental indicators and indices. • New indicators, and new approaches and methods for indicator development, testing and use. • Development and modelling of indices, e.g. application of indicator suites across multiple scales and resources. • Analysis and research of resource, system- and scale-specific indicators. • Methods for integration of social and other valuation metrics for the production of scientifically rigorous and politically-relevant assessments using indicator-based monitoring and assessment programs. • How research indicators can be transformed into direct application for management purposes. • Broader assessment objectives and methods, e.g. biodiversity, biological integrity, and sustainability, through the use of indicators. • Resource-specific indicators such as landscape, agroecosystems, forests, wetlands, etc.
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