• Title/Summary/Keyword: Seed harvesting

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Tuber Yield and Size Distribution of Potato 'Dejima' (Solanum tuberosum L.) Affected by Stem Cutting Ages and Harvest Time in Aeroponics (경삽묘 연령과 수확시기가 분무경재배 씨감자 '대지'의 생육과 수량에 미치는 영향)

  • Chae, Won-Byoung;Ahn, Seung-Joon;Choi, Hak-Soon;Kwack, Yong-Bum;Goo, Dae-Hoe;Jeong, Myeong-Il
    • Journal of Bio-Environment Control
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    • v.17 no.4
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    • pp.261-265
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    • 2008
  • This study was carried out to investigate the effects of stem cutting ages and harvest time on the growth and yield of potato 'Dejima' in aeroponics. The stem cuttings were produced from in vitro plantlets and transplanted into an aeroponic system with 20, 30, 40 and 50 day-old stem cuttings (DOS). Tubers were harvested 60, 70, 80 and 90 days after transplanting (DAT) and sorted into following categories: $1{\sim}5$, $5{\sim}10$, $10{\sim}20$, $20{\sim}30$, $30{\sim}40$ and over 40 g. Plant height from the 40 DOS was the highest during the growing periods but no significant difference was observed on 75 DAT. The tuber weight increased until 90 DAT with the greatest weight of tubers in the 20 and 40 DOS. However, there was no significant difference among 20, 30 and 40 DOS in the number and weight of tubers. Harvesting at 80 and 90 DAT increased the number of tubers over 5 g, which are usually considered as appropriate for direct field planting.

A New Pod Edible Kidney Bean Variety "Hwanghyeob 1" with Yellow Pod Color (협채용 강낭콩 신품종 "황협1호")

  • Shin, Doo-Chull;Kang, Sung-Taek;Han, Won-Young;Baek, In-Youl;Chung, Myoung-Gun;Park, Keum-Yong;Kang, Nam-Suk;Hwang, Young-Hyun;Ko, Jong-Min;Suh, Duck-Yong;Kim, Ho-Yeong
    • Korean Journal of Breeding Science
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    • v.40 no.4
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    • pp.466-469
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    • 2008
  • A new kidney bean cultivar, "Hwanghyeob 1" was developed at the National Institute of Crop Science in 2005. "Hwanghyeob 1" was selected from a cross between KLG50064 and KLG50073. It has determinate growth habit, white flower, yellow pod color, oval shape of crossed section of pod at the harvesting time for edible pod, white seed coat and middle seed size (21.7 grams per 100 seeds). The average yield of edible pod of "Hwanghyeob 1" was 23.55 M/T per hectare in the yield trials which was carried out at the green house in spring and autumn in 2005. This yield level was 4 percent higher than that of the check cultivar "Kangnangkong 1".

A New Pod Edible Kidney Bean Variety "Hwanghyeob 2" with Yellow Pod Color (협채용 강낭콩 신품종 "황협2호")

  • Shin, Doo-Chull;Kang, Sung-Taek;Han, Won-Young;Baek, In-Youl;Choung, Myoung-Gun;Park, Keum-Yong;Ha, Tae-Jung;Hwang, Young-Hyun;Ko, Jong-Min;Suh, Duck-Yong;Kim, Ho-Yeong
    • Korean Journal of Breeding Science
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    • v.40 no.4
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    • pp.470-473
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    • 2008
  • A new kidney bean cultivar, "Hwanghyeob 2" was developed for edible pod kidney bean adaptable to Korean cultivation at the National Institute of Crop Science in 2005. "Hwanghyeob 2" was selected from a cross between KLG50073 and KLG50072. It has determinate growth habit, white flower, yellow pod color, oval shape of crossed section of pod at the harvesting time for edible pod. It has white seed coat and middle seed size (20.4 grams per 100 seeds). The average yield of edible pod of "Hwanghyeob 2" was 22.43 M/T per hectare in the yield trials which was carried out at the green house in spring and autumn in 2005. This yield level was 11 percent higher than that of the check cultivar "Kangnangkong 1".

Optimum Culture Condition and Seed Harvesting Time For the Superior Seed Production in Wild Vegetable (산채류 우량종자 생산을 위한 적정재배 조건 및 채종시기)

  • Ahn, Song Hee;Moon, Jung Seob;Lee, Yong Mun;Yang, Jin Ho;Kim, Dong Won;Ahn, Min Sil
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2019.04a
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    • pp.84-84
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    • 2019
  • 산채류의 종자 및 종묘는 시중 거래가격이 높게 형성되어 재배농가의 경영비 증가로 이어지고 있다. 특히 산채 꾸러미에 분류되는 작물 중 개미취(Aster tataricus), 섬쑥부쟁이(Aster glehnii ), 우산나물(Syneilesis palmata)은 주로 종묘의 형태로 공급되어 수급이 안정치 못하다. 이에 본시험은 개미취, 섬쑥부쟁이, 우산나물의 우량종자 생산을 위한 종자 결실률 향상 재배조건과 채종적기를 구명하고자 하였다. 시험작목을 전북 남원시 허브산채시험장에서 2016년 4월에 종묘를 노지에 정식하였다. 적정 채종 재배조건을 구명하기 위해 2018년 노지, 하우스, 55% 차광막을 설치한 처리구별 각 작물의 개화시기, 개화율, 생육특성, 결실률 등을 조사하였다. 또한 채종적기를 설정하기 위해서 각 작물별 개화 후 50일, 70일, 90일, 110일, 130일 간격으로 채종하여 결실률과 종자 발아율을 조사하였다. 개화가 시작된 일자는 개미취의 경우 하우스재배, 노지재배, 차광재배 순으로 빨랐으며 섬쑥부쟁이는 노지재배에서 개화시기가 가장 늦었다. 모든 작물의 개화가 종료되는 시점은 처리 간 차이가 없었다. 개화율은 개미취와 섬쑥부쟁이는 노지재배, 하우스재배, 차광재배 순으로 많았으며 우산나물은 노지재배시 개화율이 9.3%로 매우 낮았다. 개화기 생육특성을 조사한 결과 개미취는 초장과 엽폭이 차광재배, 하우스재배, 노지재배 순으로 커지는 경향이었으며, 섬쑥부쟁이는 하우스 재배에서 타 재배방법에 비해 우수하였다. 우산나물은 차광재배에서 생육이 가장 좋았다. 결실률은 개미취와 섬쑥부쟁이는 재배방법에 상관없이 결실률이 60%이상이었다. 반면 우산나물은 평균 31%로 타작물에 비해 상대적으로 결실률이 낮았으며 차광 재배일 때 43%로 가장 결실률이 좋았다. 개미취는 개화 50일 이후부터 종자 결실률이 65%이상으로 높았으며, 섬쑥부쟁이의 결실률은 개화 후 50일이 가장 좋았으며, 그 이후로 점차 결실률이 떨어지는 경향이었다. 우산나물은 개화 후 90~110일경에 가장 결실률이 높은 경향이었다. 개미취는 개화 후 70일일 때 가장 발아율이 낮았으며, 90일일 때 가장 발아율이 좋았다. 섬쑥부쟁이의 발아율은 개화 50일 이후부터 최종 채종시기까지 80%이상으로 우수하였다. 우산나물은 채종시기에 따라 발아율 정도가 매우 상이하여, 채종시기가 늦어질수록 발아율이 높아졌다. 따라서 개미취는 하우스 재배를 통해 개화 후 90일 때 채종하는 것이 가장 발아율이 좋았으며, 섬쑥부쟁이는 차광재배일 경우 개화 50일 이후에는 발아율이 90% 이상이므로 이때부터 종자비산 전까지가 채종적기로 판단된다. 우산나물은 타작물에 비해 다소 결실률이 떨어지나 차광재배 시 개화 110일 후 우량종자를 채종할 수 있을 것으로 여겨진다.

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Growth Characters and Life Cycle of Mungbean Per Sowing Period

  • Ji-ho Chu;Byeong-won Lee;Ji-young Kim;Seok-bo Song;Yeong-kwang Joo;Sang-ik Han
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2022.10a
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    • pp.134-134
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    • 2022
  • Mungbean is used for not only seed but sprout, so, consumption of mungbean has been on the rise in Korea. Life cycle of mungbean tends to be short among Legume. For that reason, Mungbean can be harvested for various cropping system and season per regions and farmers regardless of sowing date and harvesting date. So, Prior research is needed about growth characters and life cycle of mungbean per sowing period. Mungebean cultivar 'Dahyun' and 'Sanpo' supplied by Korea Agriculture Technology Promotion Agency(KOAT) is cultivated in wagner pot. Sowing period is proper time of seeding in Jeollanam-do and Gyeongsangnam-do that is major cultivation region of mungbean in korea from early May to mid July every 2 weeks. Length at maturity stage tends to increase from early May(sowing date: 4th May) to early July(sowing date: 5th July), but after that, It tends to decrease from mid July(sowing date: 19th July). Number of branches and nods shows a similar trend. Length of pod has no tendency and no difference per sowing date. Number of pod per plants has also no tendency per sowing date. Test plots sowing in late May has the most number of pods.(Sanpo 22.9pods, Dahyun 16.8) Number of seeds per pod tends to increase to late May and Test plots sowing in mid July has the most number of seed per pod. In case of sowing at early May, Days of emergence is 7d. its summation of temperature is 132.2℃. After that, it tends to decrease to mid June. After mid June, Days of emergence is fixed to 3d. Average temperature growing up in this season, Summation of temperature from sowing to emergence takes the lowest point in test plots sowing in mid June.(Sanpo 88.6℃, Dahyun 88.6) Days of flowering tends to fasten from early May to mid July. Two cultivar shows same level. Days of maturity tends to fasten to mid June, after that tends to slow. In case that many research results about growth characters and life cycle mungbean per sowing period are drawn, it is expected that it result in increase of cultivation area and income of farmer.

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Optimum Culture Condition and Seed Harvesting Time For the Superior Seed Production in Ligularia stenocephala (곤달비 우량종자 생산을 위한 적정재배 조건 및 채종시기)

  • Song Hee Ahn;Jung Seob Moon;Gue-Saeng Yeom;Jin Ho Yang;Min Sil Ahn
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2020.08a
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    • pp.66-66
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    • 2020
  • 쌈채소나 산나물로 알려진 곤달비(Ligularia stenocephala)의 종자나 종묘는 시장 거래가격이 높게 형성되어 재배농가의 경영비 증가로 이어지고 있다. 또한, 곤달비의 종자는 대개 농가 자가 채종으로 생산되며, 채종재배에 대한 체계가 정립되어 있지 않다. 이에 본시험은 곤달비의 우량종자 생산을 위한 종자결실률 향상 재배조건과 채종적기를 구명하고자 하였다. 전북 남원시 허브산채시험장에서 2018년 10월에 2년생 곤달비 종묘를 포장에 정식하여 시험을 실시하였다. 적정 채종 재배조건을 구명하기 위해 2019년 노지, 하우스, 55% 차광막을 설치한 노지포장에서 곤달비의 개화시기, 개화율, 생육특성, 결실률 등을 조사하였다. 더불어 채종적기를 설정하기 위해서 곤달비 개화 후 50일~100일 동안 7일 간격으로 채종하여 결실률, 채종량, 종자 발아율을 조사하였다. 곤달비의 개화는 하우스재배, 노지재배의 경우 7월 하순, 차광재배는 8월 초순 개화가 시작되었으며, 개화 최성기도 하우스재배와 노지재배가 차광재배와 비교해 15일 정도 일렀다. 하지만 개화 종료 시기는 노지재배가 가장 빨랐으며 하우스재배가 가장 늦었다. 개화율은 하우스재배, 차광재배, 노지재배 순으로 높았다. 개화기 생육특성는 차광재배일 때 초장과 화경장이 가장 컸으며, 화서수와 자방수는 하우스재배가 타 재배방법에 비해 다소 많았다. 곤달비 재배방법에 따른 결실률은 차광재배가 70.1%, 노지재배가 21.9%, 하우스재배가 15.8%이었으며, 채종량은 차광재배의 경우 10a당 39.6kg, 노지재배 4.9kg, 하우스재배 4.6kg이었다. 백립중과 종자길이, 종자너비 또한 차광재배가 타 재배방법에 비해 양호하였다. 채종시기에 따른 결실률은 채종시기가 늦어질수록 높은 값을 가졌으나, 화경당 채종량은 개화 후 70일에 85일 사이에 가장 많았다. 발아율은 노지재배의 경우 개화 후 70일 이후부터 90% 이상으로 높은 발아율을 보였고, 차광재배는 개화 후 65일부터 95% 이상의 발아율을 나타냈으나 하우스재배의 경우에는 개화 후 80일 이후부터 85% 이상으로 발아율이 양호하였다. 따라서 곤달비의 우량종자를 생산하기 위해서는 55% 차광막을 설치한 노지에서 재배하여 개화 후 65일 이후부터 종자가 비산하기 전까지 채종해야 할 것으로 여겨진다.

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Acacia mangium Willd. - A Fast Growing Tree for Tropical Plantation

  • Hegde, Maheshwar;Palanisamy, K.;Yi, Jae Seon
    • Journal of Forest and Environmental Science
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    • v.29 no.1
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    • pp.1-14
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    • 2013
  • Acacia mangium is an evergreen fast-growing tropical tree, which can grow up to 30 m tall and 50 cm thick, under favorable conditions. It is a low-elevation species associated with rain forest margins and disturbed, well-drained acid soils. It is native to Papua, Western Irian Jaya and the Maluku islands in Indonesia, Papua New Guinea and north-eastern Queensland in Australia. Due to its rapid growth and tolerance of very poor soils, A. mangium was introduced into some Asian, African and western hemisphere countries where it is used as a plantation tree. A. mangium has good quality wood traits, such as a comparatively low proportion of parenchymatous cells and vessels, white and hard wood, and high calorific value. Therefore, it is useful for a variety of purposes, such as furniture, cabinets, turnery, floors, particleboard, plywood, veneer, fence posts, firewood, and charcoal. It is also being used in pulp and paper making because it has good pulp traits, with high yields of pulp, quality of kraft, and produces paper with good optical, physical and surface properties. Because there are significant provenance differences in growth rate, stem straightness, heartwood formation and frequency of multiple leaders, the productivity and quality also varies depending upon environmental conditions, so genetic improvement programmes have been undertaken in countries like Australia, India, Indonesia, Malaysia, the Philippines, Taiwan and Thailand. The programme includes provenance identifications and testing, plus tree selection and clonal multiplication, establishment of seed orchards and hybridization. The phenology, reproductive biology, fruit characteristics, silvicultural practices for cultivation, pest and diseases problems, production of improved planting stock, harvesting, wood properties and utilization have been discussed in this paper.

Effect of Seeding Date on Growth Habit and Pod Setting of Peanut in Southern Korea

  • Pae, Suk-Bok;Jung, Chan-Sik;Oh, Ki-won;Ko, Jong-Chul;Kim, Jung-Tae;Park, Chung-Berm;Kwack, Yong-Ho;Kim, Soo-Dong
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.47 no.5
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    • pp.374-378
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    • 2002
  • To evaluate growth habits, fresh pod yield potential, and possibility of early and late seeding, seeding dates were extended from March 21 to June 20 by PE mulching and non-mulching. Soil temperature, under 5cm from surface, above 15$^{\circ}C$ at 10 a.m. in early seeding reached about March 25 in mulching and April 5 to April 12 in non-mulching. Days to emergence and first flowering were accelerated owing to increasing temperature, as seeding was delayed. Days to emergence according to seeding dates reduced 21 to 8 day in mulching and 33 to 10 day in non-mulching. Days to flowering were ranged from 51 to 26 day in mulching and from 69 to 32 day in non-mulching and differences between mulching and non-mulching on each seeding date had 18 to 4 days. Early seedings till April 21 had 160-170 flowers per plant for 8 weeks, while late seedings from May 21 increased more speedily with 200 flower for 6 weeks. Harvesting of fresh peanut, at 80 days after first flowering, was possible from Aug. 1 to Oct. 7 (133-108 days to harvest) by mulching and from Aug. 19 to Oct. 12 (151 to 114 days) by non-mulching. Yields between mulching and non-mulching in early seeding until April 21 had more difference, but in late seeding after May 21 was higher and showed insignificance. Pod setting periods by early and late seeding were about 3 weeks equally. In late seeding pod setting were almost concentrated for front 15 days. In spite of difference of fresh pod weight between two seeding times, the distributions of average of seed weight showed nearly same tendency.

Physicochemical Treatment for the Reduction of Fusarium spp. Infested in Adlay (Coix lacryma-jobi L.) Seeds (율무 종자 오염 Fusarium 속 진균 저감화를 위한 이화학적 처리)

  • An, Tae Jin;Kim, Young Guk;Hur, Mok;Lee, Jeong Hoon;Lee, Yun Ji;Cha, Sun Woo;Oh, Sang Keun
    • Korean Journal of Medicinal Crop Science
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    • v.23 no.6
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    • pp.460-467
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    • 2015
  • Background : The aim of the present study was to identify an effective physicochemical control method to reduce Fusarium species infestation in adlay (Coix lacryma-jobi L.) before and after harvesting. Methods and Results : We observed that prochloraz emusifiable concentrate and hexaconazol prochloraz emusifiable concentrate strongly inhibited the mycelial growth of 10 Fusarium species. Strong growth inhibitions and cell lysis were observed following treatment with 4% NaOCl solution. The total number of fungi detected were lower follwing treatment with thiophanatemethyl triflumizole wettable powder ($1.1{\times}10^4CFU/g$), hexaconazol prochloraz emulsifiable concentrate ($1.2{\times}10^4CFU/g$), carboxin thiram dustable powder ($1.6{\times}10^4CFU/g$) and prochloraz emulsifiable concentrate ($1.7{\times}10^4CFU/g$) than in the non-treated control ($7.7{\times}10^4CFU/g$). The reduction of Fusarium fungi varies with the concentration and soaking time of NaOCl solution. Fungal detection was not observed after soaking in NaOCl solution for 24 h and harmful effects were not observed for plant growth by NaOCl after soacking for 6 - 12 h. Conclusion : Soaking seed for 6 - 12 h in 4% NaOCl could be an effective method of disinfectant treatment for the control of Fusarium fungi in adlay seeds.

Quantitative Changes in Phenolic Compounds of Safflower (Carthamus tinctorius L.) Seeds during Growth and Processing

  • Kim, Eun-Ok;Lee, Jun-Young;Choi, Sang-Won
    • Preventive Nutrition and Food Science
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    • v.11 no.4
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    • pp.311-317
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    • 2006
  • Phenolic compounds in safflower seeds were recently found to stimulate bone formation and increase plasma HDL cholesterol levels in estrogen deficient rats, and to inhibit melanin synthesis. Nine phenolic compounds: $N-feruloylserotonin-5-O-{\beta}-D-glucoside,\;8'-hydroxyarctigenin-4'-O-{\beta}-D-glucoside,\;luteolin-7-O-{\beta}-D-glucoside$, N-(p-coumaroyl)serotonin, N-feruloylserotonin, 8'-hydroxy arctigenin (HAG), luteolin (LT), $acacetin-7-O-{\beta}-D-glucuronide$ (ATG) and acacetin (AT), were quantified by HPLC in safflower (Carthamus tinctorius L.) seeds during growth and processing. During growth, levels of the nine phenolic compounds in the seeds increased progressively with increasing growth stages, reached a maximum on July 30 (42nd day after flowering), and then remained relatively constant. During the roasting process, levels of phenolic compounds, except HAG, LT and AT, generally decreased with increased roasting temperature and time, whereas those of HAG, LT and AT increased progressively with increased roasting temperature and time. During the steaming process, levels of other phenolic compounds except HAG and AT generally tended to increase with increased steaming time, whereas those of HAG and AT were scarcely changed. During the microwave treatment, quantitative changes of phenolic compounds were similar to the roasting process, although there were some differences in levels of phenolic compounds between two heat treatments. These results suggest that the steamed safflower seeds after harvesting on late July may be useful as potential dietary supplement source of phenolic compounds for prevention of several pathological disorders, such as atherosclerosis and osteoporosis and aging.