Cross-climatic comparison of microbial stress-responsive genes in urban parks: A comparative analysis

IF 6 2区 环境科学与生态学 Q1 ENVIRONMENTAL STUDIES Urban Forestry & Urban Greening Pub Date : 2024-11-21 DOI:10.1016/j.ufug.2024.128595
Saeed ur Rahman , Xinxin Liu , Muhammad Khalid , Asad Rehman , Junfeng Cao , Chang Zhao , Haoxin Tan , Samiah Arif , Bangxiao Zheng , Yucheng Bian , Ari Jumpponen , D. Johan Kotze , Heikki Setälä , Nan Hui
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Abstract

Understanding the distribution and abundance of microbial stress-related genes (SRGs) is crucial for unraveling the intricate dynamics of microbial communities and their responses to diverse environmental conditions. Despite the importance of these genes in shaping microbial adaptation and resilience, a comprehensive examination of their relative abundance across distinct climatic regions, such as boreal, temperate, and tropical environments, remains notably scarce in the existing literature. This study seeks to address this research gap by exploring and comparing the relative abundances of microbial SRGs using GeoChip 5.0 functional gene array in these three climatic regions. Our data indicate a greater relative abundance of SRGs such as nsrR, degP, cpxR, ahpF, Obg and cisD in the tropical region than in the other two regions whereas ecf and glnA showed higher abundance in both temperate and tropical regions in terms of reference forests and old parks. The distinct characteristics of the tropical biome are likely to influence both SRGs and the profile of SRG-hosts, consequently enhancing soil microbial abundances. Moreover, multivariate analyses unveiled distinct SRG profiles in urban parks and climatic regions. Additionally, we explored the influence of plant functional types (recalcitrant and labile tree litter, lawn) on SRGs. The impact of vegetation type on SRGs was not statistically significant, except in the tropical region, where its influence was notably pronounced compared to the boreal and temperate regions. Furthermore, several genes (nsrR, degP, cpxR, degS, dnaK, Obg, cisD, and glnA) were more prevalent in old parks when compared to young parks in all three climatic regions. However, urban parks displayed a significantly elevated abundance of SRGs compared to forest areas. This study provides new insights into the prevalence of SRGs across different climatic regions, enhancing our understanding of their dynamics in both human-influenced environments and pristine habitats.
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城市公园微生物应激反应基因的跨气候比较:比较分析
了解微生物压力相关基因(SRGs)的分布和丰度对于揭示微生物群落错综复杂的动态及其对不同环境条件的反应至关重要。尽管这些基因在塑造微生物适应性和恢复力方面非常重要,但在现有文献中,对它们在不同气候区域(如北方、温带和热带环境)的相对丰度进行全面研究的文献仍然非常少。本研究试图通过使用 GeoChip 5.0 功能基因阵列探索和比较这三个气候区微生物 SRGs 的相对丰度来填补这一研究空白。我们的数据表明,在热带地区,nsrR、degP、cpxR、ahpF、Obg 和 cisD 等 SRGs 的相对丰度高于其他两个地区,而在温带和热带地区,ecf 和 glnA 在参考森林和古老公园中的丰度都较高。热带生物群落的独特特征可能会影响 SRG 和 SRG 宿主的特征,从而提高土壤微生物的丰度。此外,多变量分析揭示了城市公园和气候区域中不同的 SRG 特征。此外,我们还探讨了植物功能类型(难降解和易腐烂的树木落叶、草坪)对 SRGs 的影响。植被类型对 SRGs 的影响在统计学上并不显著,但热带地区除外,与北方地区和温带地区相比,热带地区的植被类型对 SRGs 的影响明显。此外,与所有三个气候区的年轻公园相比,一些基因(nsrR、degP、cpxR、degS、dnaK、Obg、cisD 和 glnA)在老公园中更为普遍。然而,与森林地区相比,城市公园的 SRGs 丰度明显更高。这项研究为我们了解SRGs在不同气候区域的流行情况提供了新的视角,从而加深了我们对SRGs在受人类影响的环境和原始栖息地中的动态变化的理解。
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来源期刊
CiteScore
11.70
自引率
12.50%
发文量
289
审稿时长
70 days
期刊介绍: Urban Forestry and Urban Greening is a refereed, international journal aimed at presenting high-quality research with urban and peri-urban woody and non-woody vegetation and its use, planning, design, establishment and management as its main topics. Urban Forestry and Urban Greening concentrates on all tree-dominated (as joint together in the urban forest) as well as other green resources in and around urban areas, such as woodlands, public and private urban parks and gardens, urban nature areas, street tree and square plantations, botanical gardens and cemeteries. The journal welcomes basic and applied research papers, as well as review papers and short communications. Contributions should focus on one or more of the following aspects: -Form and functions of urban forests and other vegetation, including aspects of urban ecology. -Policy-making, planning and design related to urban forests and other vegetation. -Selection and establishment of tree resources and other vegetation for urban environments. -Management of urban forests and other vegetation. Original contributions of a high academic standard are invited from a wide range of disciplines and fields, including forestry, biology, horticulture, arboriculture, landscape ecology, pathology, soil science, hydrology, landscape architecture, landscape planning, urban planning and design, economics, sociology, environmental psychology, public health, and education.
期刊最新文献
Energy performance assessment on vertical greening systems with green roof in hot summer and cold winter regions based on long-term experimental data The role of urban trees as nature-based solutions for stormwater runoff control Urbanization associated with greater tree growth declines in urban than in rural forests Cross-climatic comparison of microbial stress-responsive genes in urban parks: A comparative analysis Evidence for environmental influences on impulsivity and aggression
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