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生物炭改良土壤对缓解植物干旱和盐胁迫的综述

Biochar soil amendment on alleviation of drought and salt stress in plants: a critical review.

作者信息

Ali Shafaqat, Rizwan Muhammad, Qayyum Muhammad Farooq, Ok Yong Sik, Ibrahim Muhammad, Riaz Muhammad, Arif Muhammad Saleem, Hafeez Farhan, Al-Wabel Mohammad I, Shahzad Ahmad Naeem

机构信息

Department of Environmental Sciences and Engineering, Government College University, Allama Iqbal Road, Faisalabad, 38000, Pakistan.

Department of Soil Sciences, Faculty of Agricultural Sciences and Technology, Bahauddin Zakariya University, Multan, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2017 May;24(14):12700-12712. doi: 10.1007/s11356-017-8904-x. Epub 2017 Apr 3.

Abstract

Drought and salt stress negatively affect soil fertility and plant growth. Application of biochar, carbon-rich material developed from combustion of biomass under no or limited oxygen supply, ameliorates the negative effects of drought and salt stress on plants. The biochar application increased the plant growth, biomass, and yield under either drought and/or salt stress and also increased photosynthesis, nutrient uptake, and modified gas exchange characteristics in drought and salt-stressed plants. Under drought stress, biochar increased the water holding capacity of soil and improved the physical and biological properties of soils. Under salt stress, biochar decreased Na uptake, while increased K uptake by plants. Biochar-mediated increase in salt tolerance of plants is primarily associated with improvement in soil properties, thus increasing plant water status, reduction of Na uptake, increasing uptake of minerals, and regulation of stomatal conductance and phytohormones. This review highlights both the potential of biochar in alleviating drought and salt stress in plants and future prospect of the role of biochar under drought and salt stress in plants.

摘要

干旱和盐胁迫会对土壤肥力和植物生长产生负面影响。生物炭是在无氧或缺氧条件下生物质燃烧产生的富含碳的物质,施用生物炭可改善干旱和盐胁迫对植物的负面影响。在干旱和/或盐胁迫下,施用生物炭可促进植物生长、增加生物量和产量,还能提高干旱和盐胁迫植物的光合作用、养分吸收并改善气体交换特性。在干旱胁迫下,生物炭增加了土壤持水能力,改善了土壤的物理和生物学性质。在盐胁迫下,生物炭减少了植物对钠的吸收,同时增加了对钾的吸收。生物炭介导的植物耐盐性增加主要与土壤性质的改善有关,从而提高了植物的水分状况,减少了钠的吸收,增加了矿物质的吸收,并调节了气孔导度和植物激素。本文综述了生物炭在缓解植物干旱和盐胁迫方面的潜力以及生物炭在植物干旱和盐胁迫下作用的未来前景。

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