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球囊霉属真菌和生物炭可以协同提高柳枝稷耐盐碱性的生理特性。

Rhizophagus irregularis and biochar can synergistically improve the physiological characteristics of saline-alkali resistance of switchgrass.

机构信息

Engineering Research Center of Agricultural Microbiology Technology, Ministry of Education & Heilongjiang Provincial Key Laboratory of Ecological Restoration and Resource Utilization for Cold Region & Key Laboratory of Microbiology, College of Heilongjiang Province & School of Life Sciences, Heilongjiang University, Harbin, China.

Jiaxiang Industrial Technology Research Institute of Heilongjiang University, Jining, China.

出版信息

Physiol Plant. 2024 May-Jun;176(3):e14367. doi: 10.1111/ppl.14367.

Abstract

Inoculation of arbuscular mycorrhizal fungi (AMF) or biochar (BC) application can improve photosynthesis and promote plant growth under saline-alkali stress. However, little is known about the effects of the two combined on growth and physiological characteristics of switchgrass under saline-alkali stress. This study examined the effects of four treatments: (1) no AMF inoculation and no biochar addition (control), (2) biochar (BC) alone, (3) AMF (Rhizophagus irregularis, Ri) alone, and (4) the combination of both (BC+Ri) on the plant biomass, antioxidant enzymes, chlorophyll, and photosynthetic parameters of switchgrass under saline-alkali stress. The results showed that the above-ground, belowground and total biomass of switchgrass in the BC+Ri treatment group was significantly higher (+136.7%, 120.2% and 132.4%, respectively) than in other treatments compared with Control. BC+Ri treatment significantly increased plant leaves' relative chlorophyll content, antioxidant enzyme activity, and photosynthesis parameters. It is worth noting that the transpiration rate, stomatal conductance, net photosynthetic rate, PSII efficiency and other photosynthetic-related indexes of the BC+Ri treatment group were the highest (38% to 54% higher than other treatments). The fitting results of light response and CO response curves showed that the light saturation point, light compensation point, maximum carboxylation rate and maximum electron transfer rate of switchgrass in the Ri+BC treatment group were the highest. In conclusion, biochar combined with Ri has potential beneficial effects on promoting switchgrass growth under saline-alkali stress and improving the activity of antioxidant enzymes and photosynthetic characteristics of plants.

摘要

接种丛枝菌根真菌(AMF)或生物炭(BC)可以在盐碱性胁迫下提高光合作用并促进植物生长。然而,对于两种方法联合应用对盐碱性胁迫下柳枝稷生长和生理特性的影响却知之甚少。本研究探讨了四种处理方式的效果:(1)不接种 AMF 且不添加生物炭(对照);(2)单独添加生物炭(BC);(3)单独接种 AMF(Rhizophagus irregularis,Ri);(4)同时接种 AMF 和添加生物炭(BC+Ri)对盐碱性胁迫下柳枝稷植物生物量、抗氧化酶、叶绿素和光合参数的影响。结果表明,与对照相比,BC+Ri 处理组柳枝稷地上、地下和总生物量分别显著提高(分别提高 136.7%、120.2%和 132.4%)。BC+Ri 处理显著提高了植物叶片的相对叶绿素含量、抗氧化酶活性和光合作用参数。值得注意的是,BC+Ri 处理组的蒸腾速率、气孔导度、净光合速率、PSII 效率和其他与光合作用相关的指标最高(比其他处理高 38%至 54%)。拟合的光响应和 CO 响应曲线结果表明,Ri+BC 处理组柳枝稷的光饱和点、光补偿点、最大羧化速率和最大电子传递速率最高。综上所述,生物炭与 Ri 联合应用具有促进盐碱性胁迫下柳枝稷生长、提高植物抗氧化酶活性和光合作用特性的潜在有益作用。

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