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Biochar impact on development and productivity of pepper and tomato grown in fertigated soilless media

机译:生物炭对施肥无土培养基中辣椒和番茄生长和生产力的影响

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The impact of additions (1–5% by weight) of a nutrient-poor, wood-derived biochar on pepper (Capsicum annuum L.) and tomato (Lycopersicum esculentum Mill.) plant development and productivity in a coconut fiber:tuff growing mix under optimal fertigation conditions was examined. Pepper plant development in the biochar-treated pots was significantly enhanced as compared with the unamended controls. This was reflected by a system-wide increase in most measured plant parameters: leaf area, canopy dry weight, number of nodes, and yields of buds, flowers and fruit. In addition to the observed increases in plant growth and productivity, the rhizosphere of biochar-amended pepper plants had significantly greater abundances of culturable microbes belonging to prominent soil-associated groups. Phylogenetic characterization of unique bacterial isolates based on 16S rRNA gene analysis demonstrated that of the 20 unique identified isolates from roots and bulk soil from the char-amended growing mix, 16 were affiliated with previously described plant growth promoting and/or biocontrol agents. In tomato, biochar treatments positively enhanced plant height and leaf size, but had no effect on flower and fruit yield. The positive impacts of biochar on plant response were not due to direct or indirect effects on plant nutrition, as there were no differences between control and treatments in leaf nutrient content. Nor did biochar affect the field capacity of the soilless mixture. A number of organic compounds belonging to various chemical classes, including n-alkanoic acids, hydroxy and acetoxy acids, benzoic acids, diols, triols, and phenols were identified in organic solvent extracts of the biochar. We conjecture two related alternatives to explain the improved plant performance under biochar treatment: (i) the biochar stimulated shifts in microbial populations towards beneficial plant growth promoting rhizobacteria or fungi, due to either chemical or physical attributes of the biochar; or (ii) low doses of biochar chemicals, many of which are phytotoxic or biocidal at high concentrations, stimulated plant growth at low doses (hormesis).
机译:椰子纤维:​​凝灰岩种植混合物中添加的营养不足的木材衍生生物炭(重量百分比为1-5%)对辣椒(Capsicum annuum L.)和番茄(Lycopersicum esculentum Mill。)植物发育和生产力的影响在最佳施肥条件下进行了检查。与未经修改的对照相比,经生物炭处理的盆中辣椒植物的发育显着增强。全系统大多数已测植物参数的增加反映了这一点:叶片面积,冠层干重,节数以及芽,花和果实的产量。除了观察到的植物生长和生产力的提高之外,生物炭改良的辣椒植物的根际具有明显更多的属于显着土壤相关群体的可培养微生物。基于16S rRNA基因分析的独特细菌分离物的系统发生特征表明,在20个独特鉴定的来自根和土壤的炭化改良生长混合物中分离出的菌株中,有16个与先前所述的植物生长促进剂和/或生物防治剂相关。在番茄中,生物炭处理可积极提高株高和叶片大小,但对花果产量无影响。生物炭对植物响应的正面影响不是由于对植物营养的直接或间接影响,因为对照和处理之间叶片营养成分没有差异。生物炭也不会影响无土混合物的田间持水量。在生物炭的有机溶剂提取物中鉴定出许多属于各种化学类别的有机化合物,包括正链烷酸,羟基和乙酰氧基酸,苯甲酸,二醇,三醇和酚。我们推测有两种相关的替代方法来解释生物炭处理下植物性能的改善:(i)由于生物炭的化学或物理特性,生物炭刺激了微生物种群向有利于植物生长的根瘤菌或真菌生长的转变;或(ii)低剂量的生物炭化学品,其中许多在高浓度时具有植物毒性或杀生物作用,可在低剂量下刺激植物生长(毒害作用)。

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