• Title/Summary/Keyword: Apple orchard

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Characterization of Weed Occurrence in Apple Orchards (사과 과수원(果樹園)에서의 잡초발생(雜草發生) 특성(特性)에 관(關)한 연구(硏究))

  • Woo, I.S.;Pyon, J.Y.
    • Korean Journal of Weed Science
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    • v.8 no.2
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    • pp.164-168
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    • 1988
  • In order to get basic information for establishing weed control methods in apple orchards, weed distribution was surveyed at 2 locations in Chungnam Province at 15 days intervals. In apple orchard 48 weed species (18 families) were distributed and Chenopodium album and Polygonum hydropiper were dominated and Digitana sanguinalis, Portulaca oleracea, and Erigeron canadensis were also abundant among them. Highest number of weeds emerged in April and dry weight of weeds were heavy in June and October, especially in summer broadleaf weeds and winter broadleaf weeds, and winter grasses were abundant in spring. Seasonal Shannon's diversity index(H'), maximum diversity(H max'), eveness (J') for the Shannon diversity index, and Simpson index were high in apple orchards. Interspecific competition was more severe than intraspecific competition.

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Occurrence of Insect Pests and Natural Enemies in Pear Orchard with Hairy Vetch (헤어리베치 재배과원에서 해충과 천적의 발생)

  • Choi, Yong-Seok;Whang, In-Su;Park, Deog-Kee;Choe, Gwang-Ryul
    • The Korean Journal of Pesticide Science
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    • v.17 no.4
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    • pp.448-453
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    • 2013
  • We investigated the occurrence of major pests, 4 species of moths (Grapholita dimorpha Busck, Carposina sasakii Matsumura, Archips breviplicanus Walsingham, Adoxophyes orana Fischer von Roslerstamm), apple aphid (Aphis spiraecola Patch), two spotted spider mite (Tetranychus urticae Koch) and parasitoids in pear orchard with hairy vetch and cutting weeds in Yesan, Chungnam province during the flowering season and summer depression season of hairy vetch, in 2012 and 2013. The occurrence of 4 species of moths in hairy vetch plot and cutting weeds (major is finger grass, Digitaria sanguinalis, 80%) were little different but in case of apple aphid, the density in hairy vetch plot was just 95 aphids per stem at 20th June but low after then. The density of two spotted spider mite on pear leaf in hairy vetch plot was lower than in cutting weeds plot significantly. The number of parasitoids collected in hairy vetch plot during flowering season (May and June) were 398 and 798 in 2012 and 2013, respectively. The number of parasitoids collected in hairy vetch plot during summer depression season (July and August) were 114 and 172, respectively. But in cutting weeds plot, 9 and 22 in May and June, 8 and 5 in July and August. We didn't know either hairy vetch in pear orchard affected the occurrence of 4 species of moths, apple aphid and two spotted spider mite or not but was acted to be favorable for wasps, the natural enemies on the contrary. The improvement of chemical control systems through the selection of low chemicals to natural enemies with cover and green manure plants would turn effective pest management into a possibility.

Growth Control of Upper Part in 'Fuji'/M.9 Apple Tree Canopy by Cutting Time of Trunk and Plant Growth Regulators (주간 절단시기 및 생장조절제를 이용한 '후지'/M9 사과나무 수관 상단부 생장조절)

  • Sagong, Dong-Hoon;Lee, Jae-Wang;Yoon, Tae-Myung
    • Korean Journal of Environmental Agriculture
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    • v.37 no.2
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    • pp.87-96
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    • 2018
  • BACKGROUND: The vigorous shoot growth in upper part of apple tree canopy leads to poor fruit quality and flower bud formation in lower part of canopy. So, this study was conducted to develop the proper control method about the shoot growth in upper part of apple tree canopy. METHODS AND RESULTS: Trunks of 'Fuji'/M9 apple trees were cut (back pruned) to 2.5 m in tree height on 11 February (dormant) or 12 April (full bloom). Naphthalene acetic acid (NAA) was applied at 2.0% to cut surface when trunk was pruned. Prohexadione-calcium (Pro-Ca) was sprayed at 250 mg/L above 2.0 m in tree height at 23 April (petal fall). The NAA or Pro-Ca application after trunk was pruned at dormant (TR-2 and TR-3) significantly reduced shoot growth in upper part of canopy compared with the control (tree was only pruned at dormant, TR-1), but the percent of shoots showing the secondary growth of TR-3 was higher over 2 times than that of TR-2. The reduction of shoot growth in upper part of canopy by TR-2 and TR-3 increased the fruit red color from the lower part in the treating year and blooming of the lower part in the following year. CONCLUSION: Applying 2.0% NAA to cut surface of pruned apple trunk at dormant was the most effective way for stabilization of the tree vigor in upper part of the canopy in a high density apple orchard.

Study on the Possibility of Occurrence of Apple Replant Disease in Kyungpook Region (경북지역(慶北地域)사과원(園)의 개식장해(改植障害) 발생가능성(發生可能性)에 관(關)한 연구(硏究))

  • Kim, Kyu Rae
    • Current Research on Agriculture and Life Sciences
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    • v.11
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    • pp.91-99
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    • 1993
  • In order to clarify the possibility of occurrence of apple replant disease and the severity of it in Kyungbuk area, 23 apple orchard soils older than 20 years were collected and growth response of apple seedlings in the soil was tested by soil fumigation. Some factors concerned with apple replant disease in some cases were also checked. The results were as follows. 1. Plant height of apple seedlings was significantly increased in 6 apple orchards and up to 38% in a most conspicuous case by soil fumigation. 2. Fresh weight of aboveground part(except leaves), underground part and whole plant(except leaves) of apple seedlings was significantly increased in 10,4 and 9 apple orchards, respectively by soil fumigation. The response of soil fumigation was pronounced in fresh weight of aboveground part of apple seedlings, more than 50% increase in 5 apple orchards. 3. The effects of available copper and arsenic content in soil and soil nematodes population on the plant height and fresh weight of apple seedlings were not recognized as important factors causing apple replant disease. 4. Effect of soil PH on the occurrence of apple replant disease was not recognized.

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Occurrence of Weed Flora and Changes in Weed Vegetation in Orchard Fields of Korea (우리나라 과수원에 발생하는 잡초 현황과 군락 변화)

  • Lee, In-Yong;Oh, Young-Ju;Hong, Sun-Hee;Heo, Su-Jeoung;Lee, Chae-Young;Park, Kee Woong;Cho, Seng-Hyun;Kwon, Oh-Do;Im, Il-Bin;Kim, Sang-Kuk;Seong, Deok-Gyeong;Chung, Young-Jae;Kim, Chang-Seog;Lee, Jeongran;Seo, Hyun-A
    • Weed & Turfgrass Science
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    • v.6 no.1
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    • pp.21-27
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    • 2017
  • This study was investigated in order to occurrence of weed flora in orchard (apple, grape, peach, pear etc.) fields and to the establishment of weed control basic data in these weeds. And this study was survey on 2015. As a result of the study on orchard weeds, there were total of 492 weeds including 63 families. Among all the weeds, 159 species were annual, 97 species were winter annual and 236 were perennial. Each fruit tree patterns of occurrence weeds, 306 species 50 families in apple orchard, 304 species 50 families in pear orchard, 286 species 50 families in grape orchard, and 288 species 48 families in peach orchard. Dominance was the highest with Digitaria ciliaris followed by Artemisia princeps, Stellaria aquatica, Commelina communis, Acalypha australis etc. in order. And exotics weeds occurred 127 species. Trifolium repens was the highest in importance analysis and the followings were in order of Conyza canadensis, Chenopodium album, Taraxacum offcinale, Rumex crispus etc. Changes in weed vegetation in orchard during 30 years, did not very many changed. In 1990, D. ciliaris, Persicaria hydropiper, Portulaca loeracea were dominant. In 2003, D. ciliaris was the most abundant species, followed by A. australis, A. princeps species. And in 2015, also D. ciliaris was the most dominant, followed by A. princeps, S. aquatica.

Survival of Erwinia amylovora on Surfaces of Materials Used in Orchards

  • Choi, Hyun Ju;Kim, Yeon Ju;Lim, Yeon-Jeong;Park, Duck Hwan
    • Research in Plant Disease
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    • v.25 no.2
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    • pp.89-93
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    • 2019
  • Fire blight disease caused by the bacterium, Erwinia amylovora, was observed in apple and pear orchards in Korea in 2015. Since then, it has spread, sometimes over long distances to other orchards. Therefore, we examined the ability of E. amylovora to survive in soils and on the surfaces of common materials such as T-shirts, wrist bands, pruning shears, and rubber boots by both conventional PCR (cPCR) and quantitative PCR (qPCR) methods. E. amylovora was detected in all materials tested in this study and survived for sufficiently long periods to cause fire blight disease in new sites. Thus, based on the results of this study, sanitation protocols must be applied to equipment during orchard work.