With medical use of hemp, many medicinal cultivars were bred worldwide. Propagating cultivar using seed has a high cost. On the other hand, vegetatively propagating cultivar has various merits including short breeding period and uniformity. This study aimed to determine optimal conditions for propagating hemp after cutting, including sterilizing of rooting media, rooting hormone, and mixing ratio of growing media and sand of rooting media. Korean landrace strain of hemp plant was grown in Wagner pot (size: 1/2,000 a) for 60 days. Its branches were cut to 70∼80 mm in length and used for cutting slips. The rooting medium, a horticultural nursery medium, was autoclaved for 3 hours at 120 ℃. The mixing ratio of sand and nursery media was 9:1, 7:3, 5:5, or 3:7 in weight. Cutting slips were coated with rooting hormone (1-naphthylacetamide 0.4%) just before planting. Cutting materials were planted in a tray pot of 72 cells and grown in a walk-in-chamber for 28 days with a temperature of 25 ℃ and an intensity of radiation of 800 μmol/㎡/sec. Seedling rates were 61.1%, 77.8%, and 63.0% for mixing ratios of 1:9, 3:7, and 5:5 of sand mixed with horticultural nursery medium. These seedling rates were significantly higher than a seedling rate of 31.5 % for a mixing ratio of 7:3. Root lengths were 97 mm, 91 mm, and 81 mm for mixing ratios of 1:9, 3:7, and 5:5 of sand mixed with horticultural nursery medium. These root lengths were significantly longer than a root length of 37 mm for a mixing ratio of 7:3. Rooting rates were 81.1 % and 91.2 % for slips coated with rooting hormone and sterilized rooting media, respectively. They were 40.0 % and 18.3 % for slips not coated with rooting hormone or sterilized rooting media, respectively. Thus, for vegetative propagating (cutting) of medicinal hemp, sterilizing of rooting media and coating slips with rooting hormone will be essential to conducting the propagation process.
본 실험은 일당귀의 개화 후 일수에 따른 종자 등숙 특성을 알아보고자 수행하였다. 2019년 농촌진흥청 약용작물과 시험 포장에서 채종한 종자를 시험재료로 사용하였다. 개화 후 일수에 따라 종자 무게와 발아율이 조사되었고, 등숙 과정 동안 종자 내에서 배종비(E:S ratio)가 측정되었다. 결과적으로는 각 소화서마다 개화 후 일수가 증가할수록 종자 무게가 유의적으로 증가하였으며, 각 소화서에서 발아가 시작되는 시기는 차이가 있었다. 또한 종자 내에서 배의 길이는 계속해서 성장하여 배종비가 높아지는 것을 관찰하였다. 일당귀는 다양한 소화서에서 꽃이 피기 때문에 종자의 배종비가 종자 발아에 영향을 미칠 수 있다. 본 연구를 바탕으로 일당귀의 우량 종자 생산을 위해서는 개화 후 50일부터 70일경이 가장 적합한 것으로 사료된다.