首页> 外文期刊>Journal of Plant Growth Regulation >Benefits of Biochar for Improving Ion Contents, Cell Membrane Permeability, Leaf Water Status and Yield of Rice Under Saline-Sodic Paddy Field Condition
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Benefits of Biochar for Improving Ion Contents, Cell Membrane Permeability, Leaf Water Status and Yield of Rice Under Saline-Sodic Paddy Field Condition

机译:生物炭加强离子含量,细胞膜渗透性,叶片水状况和水稻产量的益处,盐水 - 稻田条件下

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摘要

Saline-sodic is one of the major conditions threatening crop production. Biochar application could alleviate the adverse impacts of saline-sodic stress in crops. But its effect on reducing Na+ uptake in rice under saline-sodic paddy field condition remains unknown. This study evaluated the effect of biochar on ion contents, cell membrane permeability, leaf water status and yield of rice in saline-sodic paddy soil using a field experiment. The soil was amended with biochar at zero-biochar (B0), 33.75 t ha(-1) (B1), 67.5 t ha(-1) (B2), and 101.25 t ha(-1) (B3), respectively. The results indicated that biochar addition significantly reduced Na+ concentration and Na+/K+ ratio, while it remarkably increased K+ concentration of rice plant. Furthermore, biochar application significantly decreased the leaf-relative electrical leakage and increased leaf water status, plant height, and chlorophyll content index. The rice biomass production and harvested yield were significantly increased. Therefore, biochar application to saline-sodic paddy soil has benefits to alleviate saline-sodic stress and increase rice yield in saline-sodic paddy soil.
机译:盐水钠是威胁作物生产的主要条件之一。生物炭申请可以缓解盐水胁迫在作物中的不利影响。但其对盐水 - 稻田条件下水稻中的降低Na +摄取的影响仍然未知。该研究评估了生物炭对野外实验盐水 - 稻田土壤中水稻的离子含量,细胞膜渗透性,叶水状况和产量。在零生物炭(B0),33.75吨HA(B1),67.5吨(-1)(B2)和101.25吨HA(-1)(B3)中分别用BioChOn进行析出。结果表明,生物炭加成显着降低Na +浓度和Na + / k +比,而米植物的k +浓度显着增加。此外,生物炭应用显着降低了叶相对电泄漏和增加的叶片水状态,植物高度和叶绿素含量指数。水稻生物质生产和收获的产量显着增加。因此,生物炭应用于盐水 - 碘水稻土壤具有可缓解盐水 - 胁迫的益处,并增加盐水 - 稻田土壤中的水稻产量。

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