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生物炭与促进植物生长的内生细菌对缓解玉米盐胁迫的交互作用。

Interactive effect of biochar and plant growth-promoting bacterial endophytes on ameliorating salinity stress in maize.

作者信息

Akhtar Saqib Saleem, Andersen Mathias Neumann, Naveed Muhammad, Zahir Zahir Ahmad, Liu Fulai

机构信息

Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, Højbakkegård Allé 13, DK-2630 Tåstrup, Denmark.

Sino-Danish Center for Education and Research, 3 Zhongguancun South 1st Alley, Haidian District, 100190 Beijing, China.

出版信息

Funct Plant Biol. 2015 Jul;42(8):770-781. doi: 10.1071/FP15054.

Abstract

The objective of this work was to study the interactive effect of biochar and plant growth-promoting endophytic bacteria containing 1-aminocyclopropane-1-carboxylate deaminase and exopolysaccharide activity on mitigating salinity stress in maize (Zea mays L.). The plants were grown in a greenhouse under controlled conditions, and were subjected to separate or combined treatments of biochar (0% and 5%, w/w) and two endophytic bacterial strains (Burkholderia phytofirmans (PsJN) and Enterobacter sp. (FD17)) and salinity stress. The results indicated that salinity significantly decreased the growth of maize, whereas both biochar and inoculation mitigated the negative effects of salinity on maize performance either by decreasing the xylem Na+ concentration ([Na+]xylem) uptake or by maintaining nutrient balance within the plant, especially when the two treatments were applied in combination. Moreover, in biochar-amended saline soil, strain FD17 performed significantly better than did PsJN in reducing [Na+]xylem. Our results suggested that inoculation of plants with endophytic baterial strains along with biochar amendment could be an effective approach for sustaining crop production in salt-affected soils.

摘要

这项工作的目的是研究含有1-氨基环丙烷-1-羧酸脱氨酶和胞外多糖活性的生物炭与促进植物生长的内生细菌对减轻玉米(Zea mays L.)盐胁迫的交互作用。将这些植物种植在温室中的可控条件下,并分别或联合进行生物炭(0%和5%,w/w)和两种内生细菌菌株(植物伯克霍尔德氏菌(PsJN)和肠杆菌属(FD17))处理以及盐胁迫处理。结果表明,盐胁迫显著降低了玉米的生长,而生物炭和接种处理均通过降低木质部Na⁺浓度([Na⁺]木质部)吸收或维持植物体内的养分平衡减轻了盐胁迫对玉米生长的负面影响,尤其是当两种处理联合应用时。此外,在添加生物炭的盐渍土壤中,菌株FD17在降低[Na⁺]木质部方面的表现明显优于PsJN。我们的结果表明,用内生细菌菌株接种植物并添加生物炭可能是在盐渍土壤中维持作物产量的有效方法。

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