• Title/Summary/Keyword: 하순

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Influence of bulb nematode, Ditylenchus dipsaci, on growth and yield of garlic (마늘구근선충이 마늘의 생육 및 수량에 미치는 영향)

  • Han S.C.;Cho H.J.
    • Korean journal of applied entomology
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    • v.19 no.3 s.44
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    • pp.153-155
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    • 1980
  • In pot experiment, relations between bulb nemationde, Ditylenchus dipsaci, and growth and yield of garlic were followed. There was no effect of height growth on bulb nematode, but growth of volume was reduced at more than 250 nematodes per pot. Yield loss of garlic was more than $20\%$ when nematode density was about 30 per bulb in late-April. Tolerance limit should be about 20 nematodes per bulb at early growing stage. Reproduction of bulb nematode was good when initial population had been low.

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Seasonal Occurrence of Azalea Lace Bug Stephanitis Pyrioides (Hemiptera: Tingidae) on Chonbuk (전북지역에 발생하는 진달래방패벌레(노린재목:방패벌레과)의 발생소장)

  • 황창연;최선우
    • Korean journal of applied entomology
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    • v.37 no.1
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    • pp.49-52
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    • 1998
  • This study was carried to investigate the seasonal occurrence of Step17~initisp yr-ioide.~ Scott (Hemiptera : Tingidae) in a azalea field at Wan.1~. Chonbuk, Korea in 1994. S, pyr-ioic1c.c had LIP to four generations in Chonbuk. The peaks of adult population for each generation were late May, mid-July. late-August, iuid mid-October. respectively. S. pyrioidrs overwintered as egg stage within the midribs of the host leaves.

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Gonadal Maturation of Rhinogobius brunneus

  • Gye, Myung-Chan
    • Proceedings of the Korean Society of Developmental Biology Conference
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    • 2001.08a
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    • pp.42-44
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    • 2001
  • 연중 밀어 (Rhinogobiw brumeu)의 생식소 성숙을 조사하였다. 난소 및 정소의 성숙은 체장 60 mm 이상의 개체에서 뚜렷하였다. 난소는 원추형이며 정소는 쐐기모양으로 복강의 등쪽에 위치한다. 연중 성성숙지수 (gonadosomatic index)의 변화는 암컷 0.19 - 14.28 수컷 0.15-13.34로 산란시기는 5월 하순부터 6월 초순의 하계번식 어류로 사료된다. 성숙기에서 산란기에 이르는 동안 난소내 난자의 성숙정도는 불균질하며 전체 밀어 군집내에서 7월 하순까지도 성성숙지수 (GSI)가 비교적 높게 유지되는 것으로 보아 1차 산란 이후에도 소규모의 산란이 하계에 걸쳐 진행되는 것으로 사료된다. 생식소의 발달은 동계에 시작되어 난소내 난자는 춘계와 하계에 걸쳐 성장이 일어나 지름 0.5 mm의 성숙난자를 형성한다. 이 시기의 정소는 성숙한 정자가 세정관내를 가득 채우고 있다. 정자의 길이는 45 um 이며 두부의 직경은 5 um이며 미토콘드리아를 갖는 중편이 두부 기저부에 함입된 형태이며 첨체를 갖지 않는다.

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Seasonal Occurrence of Smaller Clearwing Moth, Synanthedon tenuis in Sweet Persimmon Orchards (단감원에서 애기유리나방의 발생소장)

  • 이규철;박정규
    • Korean journal of applied entomology
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    • v.42 no.2
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    • pp.165-167
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    • 2003
  • The seasonal occurrence of smaller clearwing moth (Synanthedon tenuis) was monitored with sex pheromone traps in sweet persimmon orchards in Gimhae and Jinju in 1998, 2001, and 2002. Results indicated that it occurred in two generations a year. The first generation of the moth occurred from mid-May to early July, and the second one_from late July to late September, showing the peaks in early June and early to mid-August, respectively.

Effects of Planting and Harvest Times on the Forage Yield and Quality of Spring and Summer Oats in Mountainous Areas of Southern Korea (남부산간지에서 봄과 여름 조사료 귀리의 파종과 수확 시기에 따른 조사료 품질과 생산성 변화)

  • Shin, Seonghyu;Lee, Hyunjung;Ku, Jahwan;Park, Myungryeong;Rha, Kyungyoon;Kim, Byeongju
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.66 no.2
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    • pp.155-170
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    • 2021
  • Oats (Avena sativa L.) represent a good forage crop for cultivation in regions with short growing periods and/or cool weather, such as the mountainous areas of southern Korea. In this study, using the Korean elite summer oat varieties 'High speed' and 'Dark horse', we aimed to determine the optimal time to plant and harvest forage oats seeded in spring and summer in a mountainous area. Seeds were planted three times from late February and early August at 9- or 10-days intervals, respectively, and plants were harvested three times from late May to October at 10-day intervals. The experiment was carried out in an upland field (Jangsu-gun Jeonbuk) in 2015 and 2016. We investigated the changes in forage yield (FY) and quality [crude protein (CP) and total digestible nutrient (TDN) contents] based on the time of planting and harvest. Neither the forage quality nor yield of either spring and summer oats was significantly influenced by the time of planting. The CP of spring oats harvested three times at 10-day intervals from late May was 12.0%, 8.2%, and 6.5%, thereby indicating a reduction with a delay in the time of harvest. In summer oats, CP ranged from 8.4% to 8.7%, although unlike CP in spring oats, was not significantly influenced by the time of harvest. For both forage types, harvest time had no significant effect on TDN. The FY of spring oats harvested in late May and early and mid-June was 10.2, 18.7, and 19.5 ton ha-1, respectively, with that of oats harvested on the latter two dates being significantly increased by 83% and 91%, respectively, compared with that in late May. Similarly, the FY of spring oats harvested in late October and early and mid-November was 7.1, 12.5, and 12.1 ton ha-1, respectively, with that of oats harvested on the latter two dates being significantly increased by 75% and 71%, respectively, compared with that in late October. Taking into consideration forage yield and quality (not less than 8% CP), it would be profitable to plant spring oats in the mountainous areas of southern Korea until March 15 and harvest around June 10, whereas summer oats could be beneficially planted until August 25 and harvested from early November.