Gil Chan Saem, Hong Daeun, Duan Shucheng, Eom Seok Hyun
Department of Smart Farm Science, College of Life Sciences, Kyung Hee University, Yongin 17104, Korea.
Plants (Basel). 2022 Apr 7;11(8):1003. doi: 10.3390/plants11081003.
With allelopathic composts, potential merits for preventing initial weed infestations have been observed in crop transplantation. However, previous studies have rarely investigated whether high temperatures, generated during composting, decrease allelopathic ability. This study evaluated the thermal allelopathic effect of two coniferous plants ( and ) on germination and seedling growth using their characterized allelochemical destinations. The 90 °C dry treatment of extract exhibited stronger inhibitory effect on germination than its 30 °C dry treatment. In a range from 0.25 to 1 mg mL, the germination rate was decreased to 38.1 and 64.3% of control with extract dried at 90 and 30 °C, respectively. However, showed potent inhibition of the germination process with no statistical difference in inhibitory effects regardless of the dry temperature. Regarding seedling root growth, the allelopathic effects of aqueous extracts of both conifers were not reduced with the 90 °C treatment, but it was lost in seedling shoot growth. GC-MS/MS confirmed that high temperature treatment drastically decreased volatile contents to 53.2% in resulting in reduced allelopathic abilities. However, a relatively lower decrease to 83.1% in volatiles of accounts for less loss of the root-specific inhibitory effect on seedlings even after 90 °C treatment. Foliar tissues of both conifers with species-specific thermal resistance have potentially valuable functions regarding allelopathic use in horticultural compost processing ingredients, demonstrating their weed control ability during the early cultivation season where crops are transplanted in the facilitated area.
在作物移植中,已观察到化感堆肥在预防初始杂草侵染方面具有潜在优势。然而,以往的研究很少调查堆肥过程中产生的高温是否会降低化感能力。本研究利用两种针叶植物(和)的特征化感物质,评估了它们对种子萌发和幼苗生长的热化感效应。提取物经90℃干燥处理对种子萌发的抑制作用强于30℃干燥处理。在0.25至1mg/mL范围内,提取物经90℃和30℃干燥处理后,种子萌发率分别降至对照的38.1%和64.3%。然而,对种子萌发过程表现出强烈抑制作用,且无论干燥温度如何,抑制效果均无统计学差异。关于种子幼苗根系生长,两种针叶树水提取物的化感效应在90℃处理后并未降低,但在幼苗地上部分生长中消失。气相色谱-串联质谱(GC-MS/MS)证实,高温处理使挥发物含量大幅降低至53.2%,导致化感能力下降。然而,挥发物相对较低的降幅至83.1%,这解释了即使在90℃处理后,对幼苗根系特异性抑制作用的损失也较小。两种具有物种特异性耐热性的针叶树的叶组织在园艺堆肥加工成分的化感应用方面具有潜在的重要功能,表明它们在作物移植到便利区域的早期种植季节具有杂草控制能力。