Suppr超能文献

通过基于本地植物的生境改良来优化接种生物结皮蓝藻的生存和生长。

Optimizing survival and growth of inoculated biocrust-forming cyanobacteria through native plant-based habitat amelioration.

机构信息

Department of Agronomy, University of Almería, Carretera de Sacramento s/n, 04120, Almería, Spain; Research Centre for Scientific Collections from the University of Almeria (CECOUAL), Carretera de Sacramento s/n, 04120, Almería, Spain.

Department of Agronomy, University of Almería, Carretera de Sacramento s/n, 04120, Almería, Spain; Estación Experimental de Zonas Áridas (EEZA-CSIC), Carretera de Sacramento s/n, La Cañada de San Urbano, 04120, Almería, Spain.

出版信息

J Environ Manage. 2024 Nov;370:122960. doi: 10.1016/j.jenvman.2024.122960. Epub 2024 Oct 23.

Abstract

Low restoration success in degraded drylands has promoted research efforts towards recovery of pioneer components of these ecosystems such as biocrusts. Biocrusts can stabilize soils and improve nutrient cycling to assist vegetation establishment, but their natural recovery following a disturbance may be very slow. Soil inoculation with biocrust-forming components such as cyanobacteria is widely spread to foster biocrust formation. However, the growth of induced biocrust can be constrained under field conditions due to the harsh environmental conditions in drylands. Thus, strategies to reduce abiotic stresses have to be explored to improve cyanobacteria survival and growth. In this study, we performed an outdoor experiment to analyze the effect of plant-based ameliorating strategies in combination with cyanobacteria inoculum on biocrust formation and improvement of degraded arid soil properties. These ameliorants consisted of a plant mesh made of Macrochloa tenacissima and a Plantago ovata-based stabilizer. Application of ameliorating treatments improved cyanobacteria growth (higher chlorophyll a content, lower albedo and higher NDVI) compared to the application of cyanobacteria inoculum alone. Inoculated soils showed higher aggregate stability than non-inoculated ones, but the highest soil stability was found in the soils treated with P. ovata and was also significantly increased in the soils covered by the M. tenacissima mesh compared to uncovered soils. Both the mesh and the P. ovata stabilizer increased soil organic carbon content by up to 10% and 172%, respectively, compared to soils without habitat amelioration. Microbial community composition was similar between control and inoculated soils and between the mesh covered and uncovered soils, indicating that neither cyanobacteria inoculation nor the vegetal mesh had negative effects on the native soil community. In contrast, the soil with the P. ovata stabilizer alone displayed a different composition, with up to 95% of the bacteria's relative abundance represented by Firmicutes. This effect needs to be considered when applying this stabilizer to prevent a potential alteration of the indigenous soil microbial community. This study indicates the viability of using plant-based ameliorating strategies to optimize the establishment and growth of cyanobacteria inoculum and maximize their effects on soil properties, thus contributing to advancing in the application of nature-based solutions for the restoration of degraded dryland ecosystems.

摘要

在退化的干旱地区,修复的成功率较低,这促使人们致力于恢复这些生态系统的先锋组成部分,如生物结皮。生物结皮可以稳定土壤并改善养分循环,从而帮助植被建立,但它们在受到干扰后自然恢复可能非常缓慢。通过向土壤中接种蓝细菌等生物结皮形成成分来广泛促进生物结皮的形成。然而,由于干旱地区恶劣的环境条件,诱导生物结皮的生长可能会受到限制。因此,必须探索减少非生物胁迫的策略,以提高蓝细菌的存活率和生长。在这项研究中,我们进行了一项户外实验,分析了结合蓝细菌接种剂的植物改良策略对生物结皮形成和改善退化干旱土壤性质的影响。这些改良剂包括由粗茎早熟禾制成的植物网和基于车前草的稳定剂。与单独接种蓝细菌相比,应用改良剂处理可提高蓝细菌的生长(更高的叶绿素 a 含量、更低的反照率和更高的 NDVI)。接种土壤的团聚体稳定性高于未接种土壤,但在覆盖有 M. tenacissima 网的土壤中发现的土壤稳定性最高,且比未覆盖土壤的土壤稳定性显著增加。与未进行栖息地改良的土壤相比,M. tenacissima 网和 P. ovata 稳定剂分别将土壤有机碳含量提高了 10%和 172%。与对照和接种土壤相比,接种和未覆盖土壤之间的微生物群落组成相似,表明蓝细菌接种和植物网都没有对本地土壤群落产生负面影响。相比之下,单独使用 P. ovata 稳定剂的土壤显示出不同的组成,其相对丰度高达 95%的细菌由厚壁菌门组成。在应用这种稳定剂时,需要考虑到这种效果,以防止对土著土壤微生物群落的潜在改变。本研究表明,使用基于植物的改良策略来优化蓝细菌接种剂的建立和生长并最大程度地提高其对土壤性质的影响是可行的,从而有助于推进基于自然的解决方案在退化干旱地区生态系统恢复中的应用。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验