首页> 外文期刊>European Journal of Horticultural Science >Growth and yield recovery in strawberry plants under autotoxicity through electrodegradation.
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Growth and yield recovery in strawberry plants under autotoxicity through electrodegradation.

机译:通过电沉淀在自身毒性下草莓植物的生长和产量恢复。

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The appropriate timing and intensity of electro-degradation (ED) of nutrient solution to recover strawberry autotoxicity in closed hydroponic system was investigated during spring 2010 in glasshouse of Experimental Research Center for Biological Resources Science,Shimane University. In growth chamber bioassay, growthof strawberry plantlets were inhibited greatly in non-renewed nutrient solution due to the accumulation of autotoxic root exudates compared to nutrient solutionrenewed weekly (control). Plants grown in non-renewednutrient solution electro-degraded weekly intervals also showed growth inhibition whereas biweekly ED improved its growth. This growth inhibition in weekly ED nutrient solution was found to be attributed by the degradation Fe-EDTA (about 10%) and low concentration of Ca2+ in culture solution. Electrolysis durations were evaluated in without plant experiments. It was found that low pH (3.13) and increased temperature were two major constraints for longer ED duration(24 h). Therefore, considering electric voltage, electricalconductivity (EC) and pH, shorter ED duration (2 h) was selected for further experiments. 2 h ED treatment of nutrient solution certainly can save energy and be feasible for greenhouse applications. In greenhouse, strawberry plants were grown in Wagner's pot hydroponic system where nutrient solutions were eitherrenewed four weekly or not-renewed entirely. The non-renewed nutrient solutions were electro-degraded either biweekly or four weekly. Growth and yield of strawberry plants was decreased in non-renewed nutrient solution and its biweekly ED treatment but it was improved in non-renewed nutrient solution when ED applied at four weeks intervals. It was found that fruit yield of strawberry plant was completely recovered (~99%) in non-renewed nutrient solution with ED at every four weeks, whereas, in our previous study the recovery was 71% compared to renewed nutrient solution. Therefore, we recommend application of ED to non-renewed nutrient solution for 2 h at every four weeks intervals to avoid autotoxicity in strawberry in a closed hydroponic system.
机译:在2010年春季,在岛根大学生物资源科学实验研究中心的温室中研究了营养液电降解(ED)的适当时机和强度,以恢复密闭水培系统中的草莓自身毒性。在生长室生物测定中,与每周更新的营养液相比,由于自身毒性根系分泌物的积累,在未更新的营养液中草莓幼苗的生长受到了极大的抑制。在每周一次电降解的未更新营养液中生长的植物也显示出生长抑制,而每两周ED改善了其生长。发现每周ED营养液中的这种生长抑制归因于Fe-EDTA的降解(约10%)和培养液中Ca 2 + 的低浓度。在没有植物实验的情况下评估电解时间。发现低pH(3.13)和温度升高是延长ED持续时间(24 h)的两个主要限制因素。因此,考虑到电压,电导率(EC)和pH值,选择了较短的ED持续时间(2 h)用于进一步的实验。 2 h ED处理营养液当然可以节省能源,并且在温室应用中是可行的。在温室中,草莓植株在Wagner的盆栽水培系统中生长,养分溶液要么每周更新4次,要么不完全更新。未更新的营养液每两周或每四周进行一次电降解。在未更新的营养液中和每两周进行一次ED处理,草莓植株的生长和产量下降,但在每隔四个星期施以ED时,在未更新的营养液中草莓生长和产量得到改善。研究发现,每隔4周,在未更新的含ED的营养液中草莓植株的水果产量就可以完全恢复(〜99%),而在我们先前的研究中,与更新的营养液相比,草莓的采收率为71%。因此,我们建议每隔4周将ED应用于未更新的营养液中,每2周间隔2 h,以避免在封闭的水培系统中草莓产生自体毒性。

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