• Title/Summary/Keyword: bud regrowth

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Effect of Bensulfuron-methyl on Bud Sprout and Regrowth from Growth Cessation in Eleocharis kuroguwai (올방개 괴경(塊莖)의 맹아(萌芽)와 재생후(再生後) 생육(生育)에 미치는 Bensulfuron-methyl 의 영향(影響))

  • Shin, H.S.;Chun, J.C.;Lee, C.K.
    • Korean Journal of Weed Science
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    • v.12 no.1
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    • pp.1-7
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    • 1992
  • The experiment was conducted to investigate effects of bensulfuron-methyl{methyl 2-((((((4,6-dimethoxypyrimidin-2-yl)amino)carbony)amino)sulfonyl)methyl)benzoate}on bud sprouting, percent regrowth, and regrowth from growth cessation in Eleocharis kuroguwai. Application of bensulfuron-methyl resulted in sprouts of two of three lateral buds in addition to the apical bud of E. kuroguwai. With bensulfuron-methyl the culms elongated from the sprouted buds were killed soon after emergence. However, the buds remained biologically active. During the period of growth cessation the tuber buds respired in a minimum rate, but respiration began to increase with regrowth. At regrowth increase in the respiration was greater in the lateral buds than in the apical bud. Days required to regrowth was 35 days in the suppressed apical bud when applied at the rate of 51 g a. i. ha bensulfuron-methyl, while the suppressed lateral buds sprouted first and second required 29 and 28 dyas, respectively. After regrowth number of new culms was two to three times greater in the lateral buds than in the apical bud.

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Differences in Regrowth and Terminal Flower Bud Formation of 'Fuji' and 'Jonagold' Apple Trees in Response to Summer Heading Back Pruning of Current Season's Shoots (신초의 하계 절단전정에 의한 사과품종 '후지' 및 '조나골드'의 2차생장과 정화아 형성의 차이)

  • Oh, Sung Do;Lee, Hee Jae
    • Horticultural Science & Technology
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    • v.17 no.3
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    • pp.333-336
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    • 1999
  • Current season's shoots on 2-year-old branches of 'Fuji' and 'Jonagold' apple trees were heading back pruned to 5 leaves from early May to mid July at about 12-day intervals. The summer heading back pruning induced regrowth on the pruned shoots with different responses between the two cultivars. Generally, greater regrowth occurred on the pruned shoots of 'Fuji' trees than on those of 'Jonagold', irrespective of the time of the heading cut. The shoots of 'Fuji' trees pruned in late May or in June exhibited greater regrowth compared with those pruned in early May or in July, whereas the summer heading back pruning in June resulted in the greatest regrowth for 'Jonagold'. The heading cut induced terminal flower bud formation on the pruned shoots, the percentage of which was higher in 'Fuji' than in 'Jonagold'. The highest percentages of terminal flower bud formation for 'Fuji' and 'Jonagold' were obtained with the heading cut in late May and in mid June, respectively. Percent flowering of the buds was similar in both cultivars, but percent fruit set was slightly higher in 'Fuji' than in 'Jonagold'. The time of the heading cut did not affect percent fruit set in both cultivars. Our results demonstrate that summer heading back pruning of current season's shoots induces regrowth and terminal flower bud formation therefrom when done at appropriate time, but the specific responses to the heading cut are cultivardependent.

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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.

Changes in Photosynthesis and Carbohydrate Reserves of 'Fuji'/M9 Apple trees in Response to Early Defoliation at Growing Period (생육기 조기낙엽에 따른 사과 '후지'/M9의 광합성과 탄수화물의 변화)

  • Jeong, Jae Hoon;Han, Jeom Hwa;Ryu, Suhyun;Han, Hyun Hee;Kwon, YongHee;Do, Gyung-Ran;Yim, Sun-Hee;Lee, Han-Chan
    • Journal of Bio-Environment Control
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    • v.26 no.4
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    • pp.291-296
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    • 2017
  • This study was conducted to evaluate the influence of early defoliation on photosynthesis and carbohydrate reserves when the source leaves of 'Fuji'/M9 apple (Malus domestica Borkh.) trees were removed during the growing period. Bud regrowth rates of 80%, 50% defoliation and non-defoliation treatments were significantly different 82.7%, 45.9% and 2.1% respectively at 30 days after treatment. In all treatments, sucrose and starch concentrations in remaining leaves decreased non-significantly during the 14-day period. No significant changes were observed for total soluble carbohydrates in non-defoliation and 50% defoliation. However, in 80% defoliated treatments, concentrations of sorbitol and total soluble carbohydrates in remaining leaves declined steadily during the 14-day period. It is thought that high sink strength increases the requirements of carbohydrate from remaining leaves more than non-defoliated. The concentrations of starch in the roots tend to decrease non-significantly as percentage of defoliation increased. Photosynthesis of remaining leaves was monitored during the 14-day period after partial defoliation treatments. Net photosynthetic rates (Pn) and stomatal conductance were significantly enhanced in the 80% defoliation. The observed photosynthetic enhancement following partial defoliation may have been due to the enhancement of osmotic potential in leaves. These results were estimated that increasing of photosynthetic rate in the partial defoliation is due to the sink carbohydrate requirements for the current year's secondary growth of buds.

Evaluation of the Herbal Extract Mixture for the Effects of Hair-Regrowth Compared to 3% Minoxidil; Elongation of Anagen Period on C3H Mice (모발생장기 유도 C3H 생쥐에 있어서 미녹시딜과 생약추출 혼합 조성물의 모발 재성장 유도 효능)

  • 이계호;한선일;박길흥;권영이
    • YAKHAK HOEJI
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    • v.47 no.1
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    • pp.14-19
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    • 2003
  • The hair cycle consists of three phases, growth (anagen), involution (catagen) and quiescence (telogen) phases. In order to evaluate hair re-growth effect of herbal extracts mixture containing the 70% ethanol extracts of Polygoni Multiflori Radix, Mori Cortex Radicis, Gingko Biloba Folium and Pine bud, we have examined the induction of the anagen phase and/or elongation of the anagen period using C3H mice. Morphological examination was done by Hattori' and Ogawa's method. Enzyme activities of ${\gamma}$-glutamyl transpeptidase (${\gamma}$-GT) and alkaline phosphatase (ALP) was detected by Bessey-Lovry-Brock's method. Enzyme activity as a biochemical marker of hair cycle was investigated in the third hair cycle period of C3H mice after depilation. 3% Minoxidil treated group and herbal extract mixture treated group were shown 3 days earlier initiation of anagen than control group. In cycling mouse skin, ${\gamma}$-GT activity is pronounced during anagen and greatly diminished during telogen. Herbal extract mixture has shown promising hair re-growth effect on hair follicular cycles of C3H mice.

Effect of Nitrogen Fertilization and cutting management on the Carbohydrate Reserves, Regrowth, and Dry Matter Yeild of Sorghum-Sudangrass Hybrid[Sorghum bicolor(L.)Moench]for Forage Production I. Effect of nitrogen fetilization and cutting height on the appearance, dry weight and death of new bud after cutting of sorghum-sudangrass hybrid (질소시비수준과 예취관리가 수단그라스계 잡종 [ Sarghum Bicolor ( L. ) Moench ] 의 저장탄수화물함량 , 재생 및 수량에 미치는 영향 I. 질소시비수준과 예취높이가 수단그라스계 잡종의 예취후 신지의 발생 , 건물량 및 고사에 미치는 영향)

  • Seo, Sung;Kim, Dong-Am
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.3 no.2
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    • pp.58-66
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    • 1983
  • This experiment was carried out to investigate the effects of the nitrogen rates and cutting heights on the appearance dry weight and death of new bud (branch and tiller) of sorghum-sudangrass hybrid (Sorghum bicolor (L.) Moench). The cultivar used in the present study was Pioneer 988. The experiment was arranged as a split plot design and undertaken in the Experimental Livestock Farm of Agriculture Coll., Seoul Nat'l Univ. in Suweon, 1981 and 1982. The results obtained are summarized as follows: 1. The appearance and death of branch and tiller were not influenced with high nitrogen fertilization. 2. The frequency of the branching was decreased as the low stubble height, and the rate of the tillering was decreased in the high stubble height. 3. The yield of forage mostly depended on the tiller regardless of cutting height, and minor portion of the yield was resulted from the branch. 4. The low cutting height resulted in the increased number of dead bud (p<0.05).

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Effect of Nitrogen Fertilization and Cutting Management on the Carbohydrate Reserves, Regrowth, and Dry Matter Yeild of Sorghum-Sudangrass Hybrid[Sorghum bicolor(L.)Moench] II. Effect of nitrogen fertilization and cutting height on the dead stubble and carbohydrate reserves in stubble of sorghum-sudangrass hybrid (질소시비수준과 예취관리가 수단그라스계 잡종 [Sarghum Bicolor (L.) Moench]의 저장탄수화물함량, 재생 및 수량에 미치는 영향. II. 질소시비수준과 예취높이가 수단그라스계 잡종의 그루터기 고사와 저장탄수화물함량에 미치는 영향)

  • Seo, Sung;Kim, Dong-Am
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.3 no.2
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    • pp.67-76
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    • 1983
  • This experiment was carried out to investigate the effects of the different nitrogen rates and cutting heights on the dead stubble after cutting, and the carbohydrate reserved in stubble of sorghum-sudangrass hybrid (Sorghum bicolor (L.) Moench) Pioneer 988. The experiment was undertaken in the Experimental Livestock Farm of Agriculture Coll., Seoul Nat'l Univ. In Suweon, 1981 and 1982. The results obtained are summarized as follows: 1. The dead stubble after cutting was found to be great with high rate of nitrogen fertilizer and low cutting height. It was also learned that the rainfall during forage cutting period made the dead stubble increased. 2. A significant higher (p<0.05) carbohydrate reserves in the stubble was observed in the high stubble height at the first cutting time and 6th through 7th day after the first cutting. The results indicate that the high stubble height reserves more carbohydrate for the early regrwoth stage after the first cutting when comparing with the low stubble. 3. The content of carbohydrate reserves was influenced by climete. Drought is caused to high content of carbohydrate, whereas, rain is caused to low content of that. The critical soluble carbohydrate content causing the death of stubble supposed to be 3 to 6% at least. 4. It is suggest that carbohydrate reserves in plant do not play a distinctive role for the regrowth in a summer annual forage like sorghum-sudangrass hybrid, but it might be rather influenced by the other factors, for example, environmental conditions at harvest and new bud.

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