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Effects of a low-voltage electric pulse charged to culture soil on plant growth and variations of the bacterial community

机译:充电土壤的低压电脉冲对植物生长和细菌群落变化的影响

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This study was conducted to verify the effect of an electric pulse on growth of crops (lettuce and hot pepper) that were cultivated in lab-scale soil. The electric pulse generated from direct-circuited 2, 4, 6, 8, and 10 V of electricity by periodic exchange of the anode and cathode was charged to a culture soil that is an electrically pulsed culture soil (EPCS) but not charged to a conventional culture soil (CCS). Growth of lettuce increased and growth duration of hot pepper plants was more prolonged at 4, 6, 8, and 10 V of EPCS than at 2 V of EPCS and CCS. The fruiting duration and yield of hot pepper fruits were proportional to the growth duration of the hot pepper plants. Temperature gradient gel electrophoresis (TGGE) patterns of 16S-rDNA obtained from the bacterial community inhabiting the CCS and EPCS were identical at the initial time and did not change significantly at days 28 and 56 of cultivation. The bacterial communities inhabiting the surface of lettuce roots were not influenced by the electric pulse but were significantly different from those inhabiting the culture soil based on the TGGE patterns. Growth of lettuce and hot pepper plants that were cultivated in 4 - 10 V of EPCS may increase; however, the bacterial community inhabiting the soil and the surface of plant roots may not be influenced by an electric pulse.
机译:进行这项研究的目的是验证电脉冲对实验室规模土壤中种植的农作物(生菜和辣椒)生长的影响。通过定期交换阳极和阴极而从直流2、4、6、8和10 V直流电产生的电脉冲带入作为电脉冲培养土壤(EPCS)的培养土壤,但不带电常规耕作土壤(CCS)。 EPCS,CCS在2 V时,EPCS的4 V,6 V,8 V和10 V时,莴苣的生长增加,辣椒植物的生长时间更长。辣椒果实的结实时间和产量与辣椒植物的生长时间成正比。从居住在CCS和EPCS的细菌群落获得的16S-rDNA的温度梯度凝胶电泳(TGGE)模式在初始时相同,并且在培养的第28天和第56天没有明显变化。生菜根表面上的细菌群落不受电脉冲的影响,但与基于TGGE模式的生菜土壤上的细菌群落有显着差异。在EPCS 4-10 V中种植的生菜和辣椒植物的生长可能会增加;但是,居住在土壤和植物根部表面的细菌群落可能不受电脉冲的影响。

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