根鞘:作用、形成过程和调查方法

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-11-28 DOI:10.3390/soilsystems7040106
Rosangela Addesso, Adriano Sofo, Mariana Amato
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引用次数: 0

摘要

气候变化对作物生产力产生负面影响,威胁着世界上许多脆弱热点地区全体人口的生存,并有可能加剧饥饿、营养不良和国际不平等。选择具有耐受非生物胁迫适应性特征的植物物种,是确保作物对环境扰动具有更强抵抗力和复原力的一项挑战。根鞘被定义为根毛、渗出物和土壤的复合体,强烈粘附在植物根部,在缺水、缺养分和酸性土壤条件下,根鞘是一种很有前途的根系适应性状。根鞘具有多种有益的生态功能,如提高水分和养分的吸收;防止脱水、热和酸胁迫;刺激微生物活动。在多个被子植物物种(包括在恶劣环境中生长的作物)中都有关于根鞘的描述。本综述旨在收集迄今为止有关根鞘的相关文献,重点关注:(i) 根鞘形成的各种过程,包括物理化学和生物学过程;(ii) 根鞘的进化和生态作用;(iii) 研究和表征根鞘最常用的方法。本研究全面概述了这一革命性根系在农艺学上的重要意义,以便今后的研究填补现有的知识空白,并确定通用的方法。
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Rhizosheath: Roles, Formation Processes and Investigation Methods
Climate change negatively affects crop productivity, threatening the survival of entire populations from many vulnerable hotspot regions of the world with the risk of exacerbating hunger, malnutrition and international inequality. Selecting plant species manifesting abiotic stress-tolerant adaptive traits represents a challenge towards ensuring that crops are more resistant and resilient to environmental perturbations. The rhizosheath, defined as the complex of root hair, exudates and soil that strongly adheres to plant roots, is a promising root adaptive trait in facing conditions of water and nutrient deficits, as well as acidic soil. Several beneficial ecological functions are attributed to the rhizosheath, such as enhancing water and nutrient uptake; protecting from dehydration, heat and acid stresses; and stimulating microbial activities. It has been described in several Angiosperm species, including crops grown in severe habitats. The aim of this review was to collect the relevant literature produced to date regarding rhizosheaths, focusing on (i) the various processes involved in its formation, including both physicochemical and biological ones; (ii) the evolutionary and ecological role of rhizosheaths; and (iii) the most frequently used methodologies for its investigation and characterization. The present work provides a comprehensive overview of this revolutionary root’s great agronomic importance in order to address future research aiming to fill the existing knowledge gaps and define a common and shared methodology.
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
期刊最新文献
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