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首页> 外文期刊>Soil Science and Plant Nutrition >Effect of biochar on the growth of Poncirus trifoliata (L.) Raf. seedlings in Gannan acidic red soil
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Effect of biochar on the growth of Poncirus trifoliata (L.) Raf. seedlings in Gannan acidic red soil

机译:生物炭对三叶草生长的影响。赣南酸性红壤幼苗

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Soil acidification has become a serious problem for citrus cultivation in China. As a soil amendment, biochar is expected to increase soil pH as well as soil fertility. In this study, we assessed the effect of biochar on Trifoliate orange, the most frequently used citrus rootstock, in a pot experiment using acidic red soil from the Gannan citrus production area. Plant height and shoot diameter of Poncirus trifoliata (L.) Raf. seedlings increased significantly after biochar was added to soils. This positive effect was further evidenced by the increased plant biomass and leaf net photosynthetic rate. The root system architecture (RSA) was evaluated based on root length, root surface area, root volume and root tip. Biochar amendment significantly increased the total absorptive surface area of the root system. Due to the significant role of arbuscular mycorrhizal fungi (AMF) in citrus root nutrient uptake, the AMF colonization and community in Poncirus roots were investigated. The AMF colonization rate was not significantly affected by biochar, whereas AMF diversity increased upon biochar treatment. In addition, the biochar treatment resulted in increases in soil pH, organic matter and mineral nutrients. Together, our results suggest that the positive effects of biochar on the growth performance of Poncirus seedlings can be attributed to the substantial augmentation of soil fertility, increased soil pH, optimized RSA and improved AMF species composition.
机译:土壤酸化已成为中国柑橘种植的严重问题。作为土壤改良剂,生物炭有望提高土壤pH值和土壤肥力。在这项研究中,我们在使用甘南柑桔产区的酸性红壤的盆栽试验中,评估了生物炭对最常用的柑桔根茎三叶形橙的影响。 Poncirus trifoliata(L.)Raf的株高和枝条直径。将生物炭添加到土壤后,幼苗显着增加。植物生物量和叶片净光合速率的提高进一步证明了这种积极作用。基于根长度,根表面积,根体积和根尖对根系统体系结构(RSA)进行了评估。生物炭改良剂显着增加了根系的总吸收表面积。由于丛枝菌根真菌(AMF)在柑桔根养分吸收中起着重要作用,因此对庞氏根系中的AMF定植和群落进行了研究。生物炭对AMF的定殖率没有显着影响,而生物炭处理后AMF的多样性增加。另外,生物炭处理导致土壤pH值,有机质和矿物质营养素增加。总之,我们的结果表明,生物炭对红皮杨幼苗生长性能的积极影响可以归因于土壤肥力的大幅提高,土壤pH值的提高,优化的RSA和改良的AMF种类组成。

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