• Title/Summary/Keyword: 적엽

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Growth of 'Wonhwang' Pear Trees and Regrowth Rates of Stem Cuttings in Vitro as Affected by Time and Degree of Defoliation (적엽시기와 수준에 따른 '원황' 배나무의 수체생장과 기내 삽수의 재생장율 비교)

  • Kim, Byeong-Sam;Cho, Kyung-Chul;Yun, Bong-Ki;Jung, Seok-Kyu;Choi, Hyun-Sug;Han, Jeom-Hwa
    • Korean Journal of Organic Agriculture
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    • v.23 no.2
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    • pp.267-280
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    • 2015
  • The study was conducted to evaluate effects of time and degree of defoliation on growth of 'Wonhwang' pear (Pyrus pyrifolia Nakai) trees managing with low pesticides as well as regrowth of cuttings in vitro. Treatments included degree of defoliation (20% and 60%) with time of defoliation (Early-Aug, End-Aug, and Early-Sep); Early-Aug (20%), Early-Aug (60%), End-Aug (20%), End-Aug (60%), Early-Sep (20%), Early-Sep (60%), and No defoliation. No defoliation and Early-Sep (20%) defoliation increased growth of water sprouts and new shoots, which were improved by delayed defoliation or 20% of defoliation. Total-C, total-N, B, and free sugar contents increased in No defoliation-shoots but decreased in End-Aug (60%)-shoots. Delayed defoliation increased total-C, total-N, and free sugar in shoots, with high contents of C, K, Ca, Mg, and B observed for 20% of defoliation-trees. Fruit yield and weight or fruit length increased in No defoliation, End-Aug (20%) defoliation, and Early-Sep (20%) defoliation, but reduced in End-Aug (60%). Fruit soluble solids content reduced in defoliation in August. Time of defoliation did not affect the fruit yield and fruit quality, while degree of defoliation influenced yield and fruit weight and length. Defoliation at End-Aug (60%) mostly increased the leakage rates of the stem cuttings at $-18^{\circ}C$ and $-21^{\circ}C$ in vitro and reduced the germination rates at $-24^{\circ}C$ and $-27^{\circ}C$. Under comparison of time and degree of defoliation, the Early-Sep defoliation increased germination rates of the stem cuttings at $-27^{\circ}C$ in vitro, and 60% of defoliation decreased the germination rates compared to the 20% of defoliation.

Studies on the Flowering and Maturity in Sesame (Sesamum indicum L.) IV. Effects of Foliage Clipping on the Seed Maturity (참깨의 개화.등숙에 관한 연구 IV. 적엽처리가 참깨의 등숙에 미치는 영향)

  • Lee, Jung-Il;Kang, Chul-Whan;Son, Eung-Ryong
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.30 no.2
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    • pp.165-173
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    • 1985
  • The objectives of the study were to investigate the effects of foliage clipping on photosynthesis and grain filling for branch and non branch types under the polyethylene film mulch and non mulch conditions in mono cropping and second cropping after barley in sesame (Sesamum indicum L.), and to improve poor grain filling at later flowering time utilizing these data. One thousand grain weight was more decreased in branch type than in non branch type, in polyethylene film mulch condition than in non mulch condition, and in second cropping after barley than in mono cropping by clipping lower part foliage. Twentyfive percent clipping of lower part foliage showed a little increase than no clipping. Matured grain rate also showed same tendency between branch and non branch type and between mono cropping and second cropping after barley as well as 1,000 grain weight except for polyethylene film mulch. Matured grain rate of 25% foliage clipping at 30 days after flowering in non branch type presented a little increase but decreased in branch type. Clipping of higher part leaves were so serious decrease of matured grain rate that higher part leaves at late maturing time have a major role in photosynthesis. Matured grain rate of foliage clipping at 10 days after flowering was decreased in all treatments. Chlorophyll content of higher part leaves at 50% lower part foliage clipping presented 39% increase compared to same positioned leaves of non treatment, and 66% increase by 50% higher part foliage clipping in lower part leaves. Photosynthetic activity was 58% more increased in 50% lower part foliage clipping than no clipping, but seriously decreased in 50% higher part foliage clipping. Therfore, photosynthates of remained lower part leaves could not only support their own demands, but also any contribution to translocation of photosynthates from source to sink at late maturing time. Harvest index was 28% increased in 25% lower part foliage clipping and 13% decreased in 50% higher part foliage clipping compared to no clipping. Leaf area was 48% increased in 50% lower part foliage clipping compared to the same positioned leaves of no clipping, and only 5% increased in higher part foliage clipping. Productivity by foliage clipping compared to non treatment, was highly decreased in branch type than in non branch type, in second cropping after barley than in mono cropping. Little difference was detected between polyethylene film mulch and non mulch conditions. Twenty five percentage of lower part foliage clipping on mono cropping of non branch type appeared 5% and 8% yield increase in each of polyethylene film mulch and non mulch conditions compared to no clipping, and all decreased in other treatments. Mean loss of productivity by foliage clipping at 10 days after flowering was serious than clipping at 30 days after flowering. As the result, contribution to photosynthesis of source at 10 days after flowering are larger than that at 30 days after flowering in sesame. Fifty percent lower part foliage clipping at 10 days after flowering showed so the most serious yield decrease that lower part leaves at that time were considered as the main role leaves for photosynthesis.

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Effect of mulberry leaf picking in autumn on the non-budding and survival of grafting (추잠기의 적엽이 불발아 및 접목의 활착에 미치는 영향)

  • 김문협
    • Journal of Sericultural and Entomological Science
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    • v.5
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    • pp.1-5
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    • 1965
  • The purpose of this work is to investigate the effects of picking leaves in autumn on the non-budding and survival of grafting. The results are as follows. 1) The leaf picking in autumn causes an increase of the non-budding ratio in the following spring. When tue whole leaves picking is compared with the control, the non-budding ratio increases 46 percent. In case of tone leaves on a single stem are picked in various tray, the non-budding ratio of picked portion is higher than that of non-picked. 2) The leaf picking in autumn with winter bud being grafted on stock in the next spring, decrease the survival of grafting. In case some leaves on a single stem are picked in various way, the winter bud of picked part is always poor in survival. 3) In the event of leavf picking in autumn, the yield always decreases 7∼20 percent, especially this phenomenon becomes serious in the under half part of the stem(20%) and whole leaves picking(12%) treatments.

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Changes in Growth and Yield of Strawberry (cv. Maehyang and Seolhyang) in Response to Defoliation during Nursery Period (딸기 '매향'과 '설향'의 육묘기 자묘 적엽이 생육 및 수량에 미치는 영향)

  • Kim, Dae-Young;Kim, Tae-Il;Kim, Woon-Seop;Kang, Yun-Im;Yun, Hyung-Kweon;Choi, Jong-Myung;Yoon, Moo-Kyung
    • Journal of Bio-Environment Control
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    • v.20 no.4
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    • pp.283-289
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    • 2011
  • This study was conducted to examine the effects of defoliation treatment on the growth and yield of strawberry ($Fragaria{\times}ananassa$ cv. Maehyang and Seolhyang) during nursery period. Leaves of strawberry plantlet had been removed except two, three and four fully expanded leaves until planting date. As the intensity of defoliation was strong, the petiole length was reduced and overgrowth of strawberry plantlet was suppressed. Outer diameter of crown in defoliation treatments significantly decreased but inner diameter of crown was not significant. Number of primary roots of the 3 leaves or 4 leaves defoliation treatment generally tended to increase, but there was not significantly different among treatments. Fresh weight and leaf area in the defoliation treatments significantly decreased and the root weight were higher in partial 3 leaves or 4 leaves defoliation treatment but was not significantly different among treatments. Because T/R ratio decreased significantly as growth inhibition of above-ground part compared to underground part, it is considered easy to take rooting after plantlet plating. As the intensity of defoliation was strong, chlorophyll contents tended to decrease significantly. Reduction of the endogenous nitrogen by defoliation effectively led to promote floral differentiation at low temperature and short day condition. This promoted timing of budding and flowering and also induced uniform flowering after plantlet planting. Marketable fruit yield of 3 leaves defoliation treatment tended to be higher than the control.

The Effects of Different Degrees of Defoliation on 'Seolhyang' Strawberry's Fruit Characteristics, Plant Growth and Changes in Nonstructural Carbohydrates (적엽 수준이 '설향' 딸기의 과실 특성, 식물체 생육 및 탄수화물 변화에 미치는 영향)

  • Lee, Sang Woo;Yun, Jae Gill;Hong, Jeum Kyu;Choi, Ki Young;Park, Soo Jeong
    • Journal of Bio-Environment Control
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    • v.28 no.1
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    • pp.9-15
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    • 2019
  • This study aimed to examine the effects of different degrees of defoliation during harvest season on hydroponically cultured 'Seolhyang' strawberry's fruit characteristics, plant growth, and changes in nonstructural carbohydrates, and find an effective defoliation method. On November 29, 2013, some of the 'Seolhyang' leaves were non-defoliated and the others were defoliated remaining 9 and 5 leaves. The number of fruits and fruit weight were not significantly different in the first flower cluster but in the second, third, and fourth flower clusters decreased as the level of defoliation increased. The soluble solids content and acidity of fruits decreased in all the clusters as the level of defoliation increased. The leaf area and leaf dry weight of strawberry plant in all the treatment groups decreased from January to March and root dry weight sharply decreased during February. Thereafter, during April, the growth of plant increased. As defoliation increased, the dry weight of fruits, flower clusters, crowns, and roots decreased, and during late growing period, difference in dry weight according to the degree of defoliation was considerable. The content of carbohydrate was greater in the leaves than the fruits excepting January 30 and February 28, 2014 and in the case of strawberry plant that continuously produce fruits, the content of carbohydrate decreased in the leaves and roots. As defoliation increased, the content of carbohydrate in fruits, flower clusters, crowns, and roots decreased. Defoliation for strawberry plants is carefully done during harvest season. Twelve leaves during December and 14 leaves from January to March should be maintained, and in April when the number of leaves increases, old leaves should be defoliated.

Effect of Defoliation and Panicle Removal at Heading Stage on Grain Weight in Rice Plant (수도 출수기의 분벽별 적엽 및 적수처리가 종실중에 미치는 영향)

  • Kim, K.H.;Lee, Y.J.;Kim, S.J.
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.27 no.1
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    • pp.20-27
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    • 1982
  • Two rice varieties were planted and four degrees of defoliated tiller num ber ratio and another four levels of defoliation-panicle removal tiller number ratio were made at heading stage of know the possibility of translocation of photosynthetic products between tillers during grain filling stage of rice plant. The more tillers defoliated in a hill, the less matured grain ratio and the less grain weight per panicle of normal tillers were found. But the matured grain ratio and the grain weight per panicle of tillers defoliated partly in a hill showed higher than those of tillers of completely defoliated plant. No differences of the matured grain ratio and the grain weight per panicle were found between different levels of defoliation-panicle removal tiller number ratio in a hill. But the matured grain ratio and the grain weight per panicle of tillers of completely defoliated plant were significantly lower than those of tillers of partly defoliation-panicle removal treatments. These results indicated that the translocation of photosynthetic products between tillers was possible during grain filling period in rice plant. Source-sink relationship can be applied to interpret the result obtained in this study.

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Fruit Quality of 'Wonhwang' Pear Trees with Low-pesticides and In Vitro Regrowth of Stem Cuttings as Affected by Time of Defoliation (시기별 적엽이 저농약 '원황'배의 과실품질과 삽수의 기내 재생장에 미치는 영향)

  • Kim, Byeong-Sam;Cho, Kyung-Chul;Ma, Kyung-Chul;Yun, Bong-Ki;Jung, Seok-Kyu;Han, Jeom-Hwa;Choi, Hyun-Sug
    • Korean Journal of Organic Agriculture
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    • v.23 no.3
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    • pp.469-480
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    • 2015
  • The study was conducted on the effects of time of defoliation on fruit quality of pear (Pyrus pyrifolia Nakai) trees, managing with low-pesticides, and regrowth of stem cuttings in vitro. Treatments included for 40% of uniform defoliation at early-August, end-August, and early-September, as well as control (no defoliation). Defoliation at early-September and control increased growth of water sprouts as well as concentrations of carbohydrates, total nitrogen, and free sugar in one-year old shoots. Defoliation at early-September and control increased fruit yield and mean fruit weight, with high soluble solids content and fruit surface color of $a^*$ observed for both defoliation at end-August and early-September. Defoliation at early-August increased rates of electrolyte leakage in stem cuttings at $-18^{\circ}C$ in vitro. There were no significantly different for germination rates of the cuttings between the treatments at -18 and $-21^{\circ}C$ in vitro, with the highest germination of the cuttings observed for defoliation at early-September and control at $-27^{\circ}C$. Therefore, orchard management should be performed to be minimized for defoliation of the spur leaves until end-August, causing from precipitation and pests.

Effect of Defoliation on the Grain Yield of Two Soybean Cultivars Grown under Different Population Densities (적엽처리가 재식밀도를 달리한 대두품종의 수량 및 수량구성요소에 미치는 영향)

  • Hong-Suk Lee
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.21 no.2
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    • pp.250-257
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    • 1976
  • Defoliation effect of two soybean cultivars on the grain yield was studied under different planting densities planted at two different planting date. Leaf removal caused a linear decrease of grain yield with increased amounts of defoliation in the case of lower population densities, while in the case of higher population densities over 40 plants per sqare meter, the slight removal of lower leaves indicated increased grain yields by 13% to 35% compared with control depending on the cultivar and planting time. The pod number per plant was the most effective factor influencing grain yield. The grain weight and the percent of matured grain become more important components for higher yield with decreased population densities depending on cultivar.

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Regrowth of Buds and Flower Bud Formation in Kiwifruit as Affected by Early Defoliation (조기낙엽에 따른 참다래(골드러쉬) 무착과 유목 액아의 발아와 착화)

  • Kwack, Yong-Bum;Kim, Hong Lim;Chae, Won-Byoung;Lee, Jae Han;Lee, Eung Ho;Kim, Jin Gook;Lee, Yong Bok
    • Korean Journal of Environmental Agriculture
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    • v.32 no.3
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    • pp.201-206
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    • 2013
  • BACKGROUND: Kiwifruit, which was introduced to Korea in late 1970s, is a warm-temperate fruit tree, whose leaves are easily damaged by wind because of their large size. To produce high quality fruits, efficient windbreak is necessary to protect leaves until harvest. In Korea, typhoons from July onwards usually influence the production of kiwifruit. Damages from typhoons include low fruit quality in the current year and low flowering ratio the following year. This study was conducted to investigate the effect of early defoliation of kiwifruit vines from July to October on the regrowth of shoot axillary buds the current year and bud break and flowering the following year. METHODS AND RESULTS: Scions of kiwifruit cultivar 'Goldrush' were veneer grafted onto five-year-old Actinidia deliciosa rootstocks, planted in Wagner pots (13L) and grown in a rain shelter. Kiwifruit leaves in the proximity of leaf stalk were cut by lopping shears to simulate mechanical damage from typhoon since only leaf stalks were left when kiwifruit vines were damaged by typhoons. Kiwifruit vines were defoliated from July 15 to October 14 with one monthintervals and degrees of defoliation were 0, 25, 50, 75 and 100%. All experiments were conducted in the rain shelter and replicated at least five times. Defoliation in July 15 resulted in a high regrowth ratio of 20-40% regardless of degree of defoliation but that in August 16 showed only 5.8% of regrowth ratio in the no defoliation treatment; however, more than 25% of defoliation in August 16 showed 17-23% of regrowth ratio. In September 15, regrowth ratio decreased further to less than 10% in all treatments and no regrowth was observed in October 14. Percent bud break of all defoliation treatments were not significant in comparison to 64.7% in no defoliation except for 42.1% and 42.9% in 100% defoliation in July 15 and August 16, respectively. Floral shoot in the no defoliation treatment was 70.2% and defoliation of 50% or less resulted in the same or increased floral shoot ratio in July 15, August 16, and September 15; however, defoliation in October 14 showed no difference in all treatments. In flower number per floral shoot, 2-3 flowers appeared in no defoliation and only 1 flower was observed when the vines were defoliated more than 50% in July 15 and September 15. In October 14, contrary to the floral shoot ratio, flower number decreased with increased defoliation. CONCLUSION(S): Therefore, it is suggested that dormancy of 'Goldrush' axillary buds, was started in August and completed in October. The effect of defoliation on bud break of axillary buds the following year was insignificant, except for 100% defoliation in July 15 and August 16. From July 15 to September 15, floral bud ratio was significantly reduced when more than 50% of leaves were defoliated compared to no defoliation. Also, the number of flowers per flower-bearing shoot the following year decreased by less than 50% when compared to no defoliation, and this decrease was more prominent in September 15 than July 15 and August 16.

Regrowth of Axillary Buds the Current Season and Early Growth and Development the Following Year in Fruiting Young Kiwifruit as Affected by Early Defoliation (조기낙엽에 따른 참다래 착과 유목의 당년 재발아와 익년 초기생장)

  • Kwack, Yong-Bum;Kang, Seong-Mo;Kim, Hong Lim;Kim, Mok-Jong;Kim, Seong-Cheol;Lee, Yong-Bok
    • Korean Journal of Environmental Agriculture
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    • v.34 no.4
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    • pp.288-293
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    • 2015
  • BACKGROUND: This study was conducted to investigate the effect of the unexpected early loss of leaves on a newly-bred kiwifruit on the regrowth of axillary buds the current season and the early growth and development the following year.METHODS AND RESULTS: The vines were defoliated on Jul. 18, Aug. 16, and Sep. 17 in 2012 and on Jul. 16, Aug. 13, and Sep. 12 in 2013. The vines were defoliated 0 (control), 50, and 100% of the total number of leaves on a vine. The regrowth of axillary buds at 30 days after defoliation increased in proportion to defoliation degrees regardless of the defoliated time. Defoliation the previous season did not influence percent budbreak the next season. Percentage of floral shoots of the control vines was 27.4%, each bearing 2-3 flowers. In those vines defoliated 100% in August and September, however, percent floral shoots and number of flowers significantly reduced.CONCLUSION(S): Defoliation in July, August, and September didnot affect percent budbreak the following year regardless of degrees of defoliation. A 100% defoliation in August and September significantly reduced flowering the following year compared to the control; that in August resulted in no floral buds at all.