• 제목/요약/키워드: 종근

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Effects of Seedling Ages on Growth and Yield of Cynanchum wilfordii $H_{EMSLY}$ (백하수오(白何首烏)의 묘령(苗齡)에 따른 생육(生育)과 수량(收量))

  • Choi, In-Sik
    • Korean Journal of Medicinal Crop Science
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    • v.6 no.2
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    • pp.121-125
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    • 1998
  • This experiment was carried out to investigate the effects of direct seeding and planting of seedlings in different ages on yield and yield characteristics of Cynanchum wilfordii $H_{EMSLY}$. Emergence date was three days earlier in direct seeding compared to May 14 in plots planted with one - or three - year - old seedlings. Petiole length was 16cm and 26cm longer in direct seeding and 1 - year - old seedlings, respectively, compared to 279cm in plot of 3 - year - old seedling. Root diameter was 0.4cm thicker in direct seeding and 0.5cm thicker in 1 - year - old seedlings compared to 1.0cm in seedlings of three years old. Root length was 7.2cm shorter in direct seeding, but was 0.6cm longer in 1 - year - old seedlings than 32.2cm in seedlings of three years old. Yield increased by 29 % in direct seeding and 55% in seedlings of one year old compared to 1,403kg/l0a in 3 - year - old seedlings. In cultivation of Cynanchum wilfordii $H_{EMSLY}$, the suitable planting methods were direct seeding or the use of 1 - year - old seedlings which were profitable at higher density as $50{\times}10cm$.

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Effect of Seed tuber Weight on Growth and Yield in Polygonatum stenophyllum Max (황정종근 크기가 생육 및 수량에 미치는 영향)

  • 최인식
    • Korean Journal of Plant Resources
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    • v.9 no.1
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    • pp.23-29
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    • 1996
  • Chungbuk native Polygnatum stenophyllum Max. for used in this experiment were regional groups that collected at Cheongju and Jecheon, and then classified by seed tuber weights as 15, 30, 45, 60g. Shoot emergency time was faster about $4\sim7$days in Chengju regional group than that of Jecheon. In different seed tuber weights, shoot emergency time was the faster, seed tuber weight was the heavier. All of growth factors such as plant height, stem length and leaf length were worse Cheongju regional group in compared with that of Jecheon but leaf width was not different. Yields per 10a in both of Cheongju and Jechon were 1,600kg. After due consideration to seed tuver cost, approximately 40g is regarded as the most suitable weight for cultivation of Polygnatum stenophyllum Max.

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Effects of Size of Rhizome on Top Part Growth in Saururus chinensis Baill (종근 크기가 삼백초의 경엽생육에 미치는 영향)

  • Nam, Sang-Young;Kim, In-Jae;Kim, Min-Ja;Rho, Chang-Woo;Min, Kyeong-Beom;Lee, Cheol-Hee;Jong, Seung-Keun;Kim, Hong-Sig
    • Korean Journal of Plant Resources
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    • v.20 no.5
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    • pp.471-474
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    • 2007
  • This study was conducted to provide basic data for productivity of Saururus chinensis Baill. depending on rhizome size. The kinds of the treatment were 4 including below 5mm of rhizome size. Major results were summarized as follows. Sprouting was earlier in above 9mm of rhizome size and the number of last sprouting was increased $84{\sim}109%$ compared with 8.0 $individual/m^2$ of 6mm of rhizome size. Growth of stem showed a good tendency in 6mm of rhizome size with the longer stem length and the thicker stem but the number of tiller was more rhizome was more thicker. Though the number of commercial leaf was more above 9mm of rhizome size leaf length, leaf width and the number of noncommercial leaf did not showed difference by rhizome size. Dry weight of commercial foliar in 9mm of rhizome size over was increased $35{\sim}37%$ compared with 6mm of rhizome size. Therefore, rhizomes size above 9mm showed most effective for increasing sprout and wight of stem and leaves of Saururus chinensis.

Sowing Method in Plug Tray for Production of Plug Seedlings of Rehmannia glutinosa (Gaertn.) Libosch. ex Steud. (지황의 공정묘 생산을 위한 플러그 트레이 파종 방법)

  • Jeong Hun Hwang;Eun Won Park;Hee Sung Hwang;So Yeong Hwang;Jin Yu;Seung Jae Hwang
    • Journal of Bio-Environment Control
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    • v.32 no.3
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    • pp.210-216
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    • 2023
  • Conventionally, the seeds of Rehmannia glutinosa (Gaertn.) Libosch. ex Steud. have been directly sown at the field without using the plug seedling method. Plug seedlings have the advantage of promoting germination and convenient transplanting. However, there is little information about propagation of R. glutinosa using the plug seedling method. This study was conducted to investigate the optimal seed rhizome length, diameter, and sowing direction of R. glutinosa for establishing the plug seedling method. Seed rhizome length and diameter were separated by 1, 2, 3 cm and 0.3-0.5, 0.6-1.0, 1.1-1.5 cm, respectively. And seed rhizomes were sown in vertical and horizontal directions. The survival rate in 1 cm length of seed rhizomes was lower than in other treatments. The leaf length, leaf width, number of leaves, SPAD, leaf area, and fresh and dry weights of shoot and roots were the greatest in 3 cm length of seed rhizomes. As the seed rhizome diameter decreased, the growth characteristics of R. glutinosa tended to increase. When R. glutinosa was sown horizontal direction, the leaf length, leaf width, number of leaves, and leaf area were significantly higher than in the vertical direction. In conclusion, when sowing seed rhizome in a plug tray, using a length of 3 cm, a diameter of less than 1 cm, and sowing in a horizontal direction is considered an appropriate sowing method for R. glutinosa.

Shoot yield and growth characteristics of Pteridium spp. according to the dickness of sowed seed root (고사리의 종근 규격에 따른 파종 2년차 신초 출현양상 및 수량성)

  • Moon, Jung-Seob;Ahn, Song-Hee;Lee, Yong-Mun;Yang, Jin-Ho;Kim, Dong-Won
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.10a
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    • pp.90-90
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    • 2018
  • 고사리(Ferns)는 고사리 속(Pteiidium spp.)에 속하는 양치식물의 총칭으로서 우리나라에는 22과 70속 272종이 분포되어 있는 것으로 보고되었다. 고사리의 어린 순에는 가식부 100g 당 칼슘 15.0mg, 칼륨 185.0mg 등이 함유되어 있으며 골다공증, 심혈관질환 등에 효과가 있고 식이섬유로 인해 변비 예방에도 유용한 것으로 알려져 있다. 2017년 기준 우리나라의 고사리 재배면적은 3,280ha 수준으로 그중 전라북도의 고사리 재배는 재배면적 285ha이며 연간 생산량 1,985톤으로 전국 생산량의 21%를 차지하고 있어 전라북도의 산채 재배작목 중 중요한 비중을 차지하고 있다. 고사리 재배는 정식 후 수확기간이 길고 제초노력 등의 노동력 의존도가 상대적으로 낮아 최근 재배면적이 늘어나고 있는 추세이나, 종근의 적정 규격 등에 대한 기준이 제시되지 않아 경영비 부담이 큰 실정이다. 본 연구는 고사리 종근 규격을 종근 두께 기준 A등급($14.1{\pm}3.31mm$), B등급($8.3{\pm}1.88mm$), C등급($3.3{\pm}2.31mm$)로 구분하여 표고 500m의 허브시험장 연구포장에 3월 28일 정식한 후 2018년 4월부터 신초 출현양상 및 수량성을 조사하였다. 파종 2년차 고사리 신초의 출현양상은 4월 11일부터 출현을 시작하여 6월 11일 까지 빠르게 증가하여 7월 9일 이후 고온기이후 증가세가 완만해지는 경향을 보였고 9월 10일까지 누적 신초수는 A 등급 파종구에서 80.0개를 보였다. 신초 출현 후 포자엽이 전개되어 상품성을 상실하기까지의 포자엽 전개일수는 주 수확시기인 4~5월에는 5.3~6.7일이 소요되었으나, 포자엽 전개이후 울폐가 이루어지는 8~9월에는 9.7~11.7일이 소요되어 생육 초기 차광에 의한 전개일수 연장효과가 기대되었다. 생육기간 동안 조사시기별 신초의 두께는 6월 11일과 9월 11일 조사한 신초에서 굵어지는 경향을 보였고, 상품성 있는 고사리 신초의 규격을 신초장 20cm로 포자엽 전개 직전으로 한정하여 수확을 실시한 결과 파종 2년차 수확은 4월18일 이후 4회 이루어졌으며 신초의 생체중은 5.2~6.0g/개의 범위로 종근 규격 간에는 차이가 인정 되지 않았다. 4월 18일에서 5월 8일까지의 수확기간 동안 누적 신초 수확량은 A 등급과 B 등급의 종근을 파종한 처리에서 각 32.2개/$m^2$, 30.3개/$m^2$로 C 등급 파종구에 비해 유의하게 수확 신초수가 증가하였다. 단위면적당 신초 수량성은 4월 30일 3회차 수확시부터 종근 규격간 차이가 있었으며 누적 신초수량은 A 등급과 B 등급 파종구에서 각 183.3kg/10a, 169.9kg/10a로 유의하게 높았는데 이는 파종된 종근의 두께에 따라 상품성 있는 신초 출현수가 유의하게 증가된 때문으로 판단되었다.

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Effect of Diameter and Length of Root on Yield in Rehmannia glutionosa Libosch (지황(地黃) 종근(種根)의 굵기와 길이가 수양(收量)에 미치는 영향(影響))

  • Choi, In-Sik;Park, Jae-Seong;Cho, Jin-Tae;Son, Seok-Yong;Han, Dong-Ho;Chung, In-Myeong;Lee, Jung-Ii
    • Korean Journal of Medicinal Crop Science
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    • v.3 no.3
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    • pp.173-180
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    • 1995
  • This experiment was carried out to clarify the effect of root diameter and length on yield in Rehmannja glutionosa on experimental fields of Chungbuk Provincial Rural Development Ad­ministration. Emergance date was faster Sand 10 days with root diameter 3mm and 9mm than that of root diameter 6mm. Emergance ratio was high in the order of 6mm >7mm > 9mm with root diameter, and bolting ratio was increased in the order of 9mm > 6mm > 3mm with root diameter. Leaf length had no differences betwere root diameter and length, and leaf width had same tendency. Content of inorganic matter such as T - N, $P_2O_5,\;K_2O,\; C_aO,\;M_gO$ was high measuring date was delayed, and higher in root than leaf. Sugar content was higher in November than in October and had no differences with root diameter, but was more de­creased as the root length was longer. Yield was increased 9 % with root diameter 9mm. Comparing with root length, yield was higer 5% with 6cm than that of 1, 172kg/10a with 3cm, and decreased 25% with 9cm. And the profitable root was considered root diameter 8mm and root length 6cm.

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Optimization of In vitro Cultures for Production of Seedling and Rootstock of Rehmannia glutinosa(Gaertn.) DC. (지황 배양묘 및 종근 생산을 위한 기원검증 및 최적기내배양조건 확립)

  • Kang, Young Min;Lee, Ka Youn;Kim, Mi Sun;Choi, Ji Eun;Moon, Byeong Cheol
    • Journal of agriculture & life science
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    • v.50 no.5
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    • pp.81-93
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    • 2016
  • Rehmannia glutinosa(Gaertn.) DC. is a herbaceous perennial plant and belonging to the Scrophulariaceae and used as roots for medicinal part and purpose. R. glutinosa is and usually used for fresh rehmannia root or prepared rehmannia root. However, it is very difficult to propagate using the seeds because of lack germination so it is propagated using the vegetative method as the rootstock. Currently, propagation and harvesting using the rootstock of R. glutinosa has difficulties about production of the high quality and quantity in R. glutinosa because of root rot disease. To optimize in vitro cultures and to improve the rootstock and seedling of R. glutinosa after morphological and genetical determination, 5 plant culture media (MS, DJ, LS, QL, and WPM) were used in this study then WPM was selected for better growth, for multiplication condition(WPM + IAA 1.0 mg/L + IBA 0.5 mg/L), and for root enlargement condition(WPM + NAA 0.1 mg/L) of R. glutinosa. Based on these results, in vitro seedlings of R. glutinosa were transferred to soil for acclimation with environment adaptation and shown the positive effects about root enlargement and root formation. Therefore, it can be used for high quality of R. glutinosa production and production of the rootstock based on propagation using in vitro seedlings of R. glutinosa.

Effect of Sowing Time on Flower Bud Differentiation in Chicory (Cichorium intybus L.) (파종시기가 Chicory의 화아분화에 미치는 영향)

  • Bae Jong-Hyang;Han Suk-Kyo
    • Journal of Bio-Environment Control
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    • v.15 no.3
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    • pp.283-288
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    • 2006
  • Characteristics of the rootstock formation and flower bud differentiation according to sowing time for production of the high quality rootstock in Chicory (Cichorium intybus L.) was investigated. The flower bud initiation was on the 17th of July after sowing in April, the 2nd of July after sowing in May, the 30th of July after sowing in June and the 1st of October after sowing in July. But they didn't differentiate after sowing in August and September. The days required from germination to flower bud initiation and accumulated temperature depended on the weather. If the outside air temperature was high, the days required were less, If the outside air temperature was low, the days required were greater, the accumulated temperature was similar to the days required in this experement, too. The rootstock sown from April to July wasn't good enough to be use because the flower bud differentiation was generated before harvestable weight. the weight of rootstock was sown in September wasn't heavy enough in weight because the outside air temperature was too low for it to grow well. The plant grows slow and steady through out winter. The rootstock sown in August was havestable 200g in 90 days after sowing before the flower bud differentiated. The best sowing time for the production of high quality rootstock of Chico in the climate of Korea is researched to be August.

Growth and Yield by the Different Seeding Methods and Cultivating Root Weight in Atractylodes macrocephala Koidz (백출(Atractylodes macrocephala Koidz)의 파종방법과 종근중에 따른 생육과 수량)

  • 김수용;권오흔;조지형
    • Korean Journal of Plant Resources
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    • v.17 no.2
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    • pp.183-188
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    • 2004
  • This study was conducted to investigate the effects on the growth and yield by the different seeding methods and cultivating root weight in Atractylodes macrocephata Koidz. Seeding distances were different such as 5${\times}$5 cm, 5${\times}$10 cm, 10${\times}$10 cm, 10${\times}$15 cm by the hand seeder and 15 cm seeding in drill. Emergence date, plant height were not significantly changed with seeding space, but the number of leaf, fresh weight of above-ground part and fresh weight of root were increased in the sparse seeding compared with the dense seeding. The highest fresh root yield was 1,012 kg/10 a at the 5${\times}$5 cm. Roots yield was increased in the sparse seeding compared with the dense seeding, but the highest number of roots above 16 g yield was observed at the 10${\times}$10 cm seeding distance. Emergence date was faster 1∼3 day root weight above 6 g than that root weight 5 g. The plant height, number of stem and fresh weight of above-ground part were more increased as the root weight was heavier. The growth of underground part were more increased as the root weight was heavier, yield was increased about 27% to 112% compared with root weight above 6 g than that 134.6 kg/10 a with root 5 g.

Dormancy Characteristics in Chicory (Cichorium intybus L.) Root (치커리 뿌리의 휴면 특성)

  • Bae, Kang-Soon;Kim, Ho-Cheol;Bae, Jong-Hyang
    • Journal of Bio-Environment Control
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    • v.15 no.4
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    • pp.417-420
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    • 2006
  • To investigated the dormancy of chicory (Cichorium intybus L.) for production of high quality rootstocks, growth characteristics and abscisic acid (ABA) contents was conducted. The accumulation hours below $5^{\circ}C$ in field was increased slowly from October 7 to December 3, but there after increased largely. The rootstock weights was increased from the end of October to December 3, there after was not changed to December 3. ABA contents within the rootstock was not changed from October 7 to December 3, and there was suddenly increased for two weeks to December 24. As results of the sudden changed date of accumulation hours below $5^{\circ}C$, stopped date and period of rootstock growth, and sudden changed period of ABA contents, chicory has internal dormancy for two weeks from December 3 and low temperature requirement hours for the dormancy breaking is about 240.