• Title/Summary/Keyword: rooting stage

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Comparison of Underground Root Growth Characteristics of Major Cool-Season Grasses according to Establishment Stages in Sports Turf Designed by the USGA Soil System (USGA 지반으로 설계된 스포츠 잔디밭에서 조성단계별 주요 한지형 잔디의 지하부 뿌리생육 특성 비교)

  • Kim, Kyoung-Nam
    • Horticultural Science & Technology
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    • v.33 no.2
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    • pp.166-176
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    • 2015
  • Research was initiated to investigate root growth characteristics of major cool-season grasses (CSG) and to collect basic information useful for sports turf design, construction and maintenance. Several turfgrasses were evaluated in the USGA (United States Golf Association) soil system. Turfgrass entries were comprised 3 blends and 3 mixtures of Kentucky bluegrass (KB, Poa pratensis L.), perennial ryegrass (PR, Lolium perenne L.), and tall fescue (TF, Festuca arundinacea Schreb.). Significant differences were found in root growth, rooting potential and rooting development. These characteristics increased with time after seeding, but varied with establishment stages. In early stage, root length was highest with PR, intermediate with TF and lowest with KB. Evaluation in a middle stage indicated that root growth was similar to early-stage evaluation, but decreased by 13 to 31% compared with early-stage values. Root growth of late stage increased by 34 to 85% over middle-stage root growth. Overall, thhere was not much difference in root length among treatments, with all except Mixture I reaching 22cm in root length. Rooting potential ranking was variable with establishment stage, being PR > KB > TF in early stage, PR > TF > KB in middle stage and TF > PR > KB in late stage. At the end of the study, TF was rated best for rooting development, followed by PR and finally KB. Our results showed that TF was the best species in regard to overall rooting characteristics. TF exhibited excellent rooting development with time after establishment. Bunch-type PR showed fast root growth in the early stage, but rooting quality characteristics decreased with time, especially for rooting development. By contrast, rhizomatous-type KB was poor in early-stage root growth, but rooting characteristics improved with time after establishment. These variations in rooting characteristics among CSGs were considered to arise from differences in establishment vigor, growth habit and genetic characteristics. Information on root growth, rooting potential and rooting development by establishment stages will be useful for sports turf design, construction and maintenance.

The Promotive Effect of NAA, IBA and Ethychlozate on Rooting Cuttings of Certain Ornamental Plants and Some Physiological Studies. (관상식물 삽목발근에 있어서 NAA, IBA 및 Ethychlozate의 발근촉진효과와 그 생리학적연구)

  • Jeong, Hae-Jun;Gwak, Byeong-Hwa
    • The Journal of Natural Sciences
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    • v.1
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    • pp.115-198
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    • 1987
  • The present studies were undertaken to elucidate the influence of auxins, auxin-like substance-ethychlozate ("Figaron"),and pH and sort of rooting media on rooted propagation of certainornamental woody plant cuttings, and to see possible changes in internal compositions characterizing after root-promoting treatment as the cutting stage proceeded. The experimental check-up srevealed and summarized as seen in the following;I. Effect of three different auxin treatments on rooting cuttings: 1) Promotive influence of auxin varied according to different concentration levels, hours of dipping treatment of the auxins, and kind of plants. The greatest effect was obtained for Forsythia ksreana with NAA and IBA, for Ligustrurn obtusifolium var. variegatum with NAA and ethychlozate, for Hydrangea macrophylla, Magnolia kobus, and Magnolia liliflora with NAA, lBA and ethychlozate also. The most effective level of the promotive agents was found 200mg/l for NAA, 1000mg/l for IBA, and 200mg/l for ethychlozate. For Weigela florida and Gardenia jasminoides, range of the most effective level was shown relatively wide spread. 2) NAA was more effective at its optimal level of the rooting agent than ethychiozate for Weigela florida, Viburnum awabuki, Forsythia koreana, Acer palmatum 'Nomura', Bouga invillea glabra, Elaeagnus umbellata, Prunus tomentosa, Ligustrum obtusifolium, Pyracantha coccinea, Cestrum noctu rnum, Hydrangea macrophylla, Codiaeum variegatum, Rhododen dron lateritium, and Ilex crenata var. macrophylla, and yet ethychlozate was found either as equally as effective or more so than NAA for Zebrina pendula, Hibiscus syriacus, Fatshedera lizei, Schefflera arboricola, Campsis grandiflo ra, Ixora chinensis, Euonymus japonica, and Magnolia liliflora. On the contrary, no the auxin effect was noted with Lagerstroemia indica, Trachelospermum asiaticum, and Syringa vulgaris. This probably indicates that these species are genetically different for the auxin response.II. Effect of different pH and sorts of cutting media on rooting cuttings: 1) Bougainvillea showed best in rooting for the number and dry weight at pH 6.5, more with ethychlozate than NAA, while Ligustrum did at pH 5.0 more with NAA than ethychlozate. pH 4.0 medium resulted in the best rooting for Rhododendron with NAA, more than ethychlozate. 2) Use of cutting medium with peat: perlite: vermiculite = 1:1:1 showed to give the greatest rooting percent and dry weight, apart from considering the number of roots. This apparently meant the fact that cutting medium has more to do with root growth than root differentiation. Rhododendron yet showed results with cutting media that use of peat: perlite = 2:1 mixed is more effective on rooting than using peat alone.III. Effect of auxinic treatments on rooting cuttings and change in some cutting compositions: 1) Under the climatic conditions of July having temperature $26.3\pm$$2.4^{\circ}C$for cutting bed, new roots of Magnolia started to show up generally 20 days after the cutting was made, whereas Cestrum did much earlier than that, namely 14 days after. 2) Although total carbohydrate content of Magnolia cuttings showed no marked change without auxin treatment, it did so with the treatment, especially 30 days after the start of cutting. Cestrum cuttings demonstrated a gradual in crease in total carbohydrate content as rooting took place, and the content became reduced more with auxin than with out, just about when rooting proceeded to 14 days after the start of cutting. 3) Magnolia generally showed an increase in total nitrogen content as rooting proceeded more, and Cestrum showed a decrease in total nitrogen of cuttings. The auxin treatment exhibited no pertinent relation with change in plant nitro gen when rooting is promoted with auxin treatment. 4) An abrupt drop of total sugar and reducing sugar was noticed as Magnolia rooting started, and this reduction was parti cularly outstanding with auxin treatment. Starch content also was decreased in the later stage of cutting with auxin treatment, and was rather increased without auxin. Although sugar content soon increased as cutting started with auxin treatment in the case of Cestrum, it became reduced after rooting took place. 5) Total phenol content increased with rooting, and this was especially true when rooting started. This increase was reversed somehow regardless of auxin treatment. A decrease in phenol of Magnolia was found more striking with auxin than without in the later stage of the cutting period. 6)Avena coleoptile test for auxin-like substances presented the physiologically active factor is more in easy-to-root Magnolia liliflora than hard-to-root Magnolia kobus, and the activity of auxin-like substances was much increased with auxin treatment. The increase in the growth promoting substances was markedly pronounced when rooting just started. The active growth substances decreased in the later stage of cutting, and certain inhibitory substances started appearing. Cestrum also showed physiologically similar growth promoting substances accompanying auxin-like active substances if auxin is treated, and some strong inhibitory substances seemed to appear in the later stage of cutting. 7) Mung-bean-rooting test indicated biologically that endogenous growth substances in Magnolia all promoted mung-bean rooting, and activity of the growth substances apparently stimulated mung-bean rooting with auxin more than without. Here auxin treatment seemed to give a rise to an increased activity of endogenous growth substances in cuttings. This activity was found much greater with either NAA or IBA than ethychlozate, and showed its peak of the activity when rooting first started taking place. Certain inhibitory substances for Avena coleoptile growth strongly promoted mung-bean rooting, and it was also much like in the case of Cestrum.

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Impact of Shading During Rooting Stage on Early Growth and High Temperature of Transplanted Rice (벼 이앙묘의 착근기 차광이 초기 생육과 고온에 미치는 영향)

  • Min-Ji Lee;Nam-Jin Chung;Woon-Ha Hwang
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.69 no.3
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    • pp.145-153
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    • 2024
  • Crop damage is becoming increasingly prevalent because of the impact of climate change-induced abnormal weather conditions. This is particularly evident in the delayed rooting of transplanted rice, caused by insufficient solar radiation. This delay in rooting negatively affects crop growth, resulting in reduced yield and delayed development. To investigate the effects of shading and elevated temperatures during rooting stage on the early growth of transplanted rice seedlings, seedlings that had been cultivated for 15 days were transplanted into a greenhouse and subjected to varying levels of shading, including 0%(control), 34%, 44%, and 70%. The height of transplanted seedlings increased under 34% shading but decreased under 44% or more shading compared to that of the no shading treatment. As the degree of shading increased, the stem diameter and root length of the seedlings decreased significantly inhibiting growth, dry matter weight, and seedling quality. Additionally, shading increases the nitrogen content of plants because of the absence of soluble carbohydrates, thereby weakening them. The adverse effects of shading on plant growth was further exacerbated by high temperatures. These findings suggest that inadequate, sunlight and elevated temperatures during rooting stage, subsequent to transplanting, may result in delay plant development and decreased resistance of the seedlings to pests and environmental challenges. Therefore, it is essential to develop innovative cultivation management techniques during the rooting stage to improve growth outcomes.

Rooting and Budbreak of Single-Stemmed Roses (Rosa hybrida L.) as Affected by Axillary Bud Position and Leaf Area of Cuttings (장미 식물공장 생산에서 삽수의 채취 절위와 엽면적에 따른 단경삽목묘의 발근과 신초발아 특성)

  • Kim, Wan Soon
    • FLOWER RESEARCH JOURNAL
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    • v.17 no.4
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    • pp.297-302
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    • 2009
  • This study was carried out to investigate the characteristics of rooting and bud break of single-stemmed roses (Rosa hybrida L. 'Rate Rose' and 'Teresa') as affected by axillary bud position and leaf area of cuttings derived from different growth stage of the mother shoots. In fact, both rooting and budbreak of single-stemmed roses were not influenced by growth stage of mother shoots, with showing more than 95% in all treatment related to mother shoot maturity. 'Rote Rose' required 34 days to average rooting and budbreak after cutting, whereas 'Teresa' did only 18 days to budbreak which was 9 days faster than rooting. Rooting and bud break needed more time and showed lower percent as the axillaty bud position for cuttings went down to the base of mother shoots. Especially 'Teresa' showed 12 days of delay to budbreak and 14.4% decrease in budbreak. Also, the increase in leaf area of cuttings accelerated rooting and budbreak, of which the time was shorter and the percent was higher.

In vitro Propagation and Ex vitro Rooting of Tectona grandis (L.f ), APNBV-1 Clone

  • Ramesh, Kommalapati;Chandra, Mouli Kalla;Vijaya, Tartte
    • Journal of Forest and Environmental Science
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    • v.25 no.2
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    • pp.119-126
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    • 2009
  • An efficient in vitro plant regeneration system was developed through shoot proliferation from axillary buds of Tectona grandis (L.f), APNBV-1 (Andhra Pradesh North Badrachalam Venkatapuram-1) clone. Multiple shoots of high quality were produced in vitro from axillary bud explants. An average of 4.39 shoots/explant were obtained on Murashige and Skoog's (MS) medium supplemented with plant growth regulators (PGRs) benzyl amino purine (BA), kinetin (KN), indole acetic acid (IAA), gibberillic acid ($GA_3$), growth adjuvants casein hydrolysate (CH), adenine sulphate (Ads) and antioxidants ascorbic acid, polyvinyl pyrrollidine (PVP). Eighty five percent of rooting was observed in ex vitro rooting media containing IBA and vermiculite. In ex vitro rooting, single shoots with 2 to 3 nodes were subjected to IBA of different concentrations at different periods of time intervals. Direct rooting in vermiculite at 500 ppm concentration of IBA resulted in 4.3 number of roots with 2 cm length. Minimum response of rooting and length of roots were recorded at 100 ppm concentration of IBA. Planlets were transferred to plastic bags for short acclimatization stage in green house where they survived at 95%.

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Response to Low Temperature of Rice Cultivars for Mid- Northern Area at Rooting Stage after Transplanting (중북부 지방 벼 장려품종의 활착기 저온반응의 차이)

  • 김기식;사종구;허범량
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.34 no.2
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    • pp.170-176
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    • 1989
  • Experiments were conducted to find out varietal responses of low temperature; 14$^{\circ}C$ and 12$^{\circ}C$. at rooting stage of the recommended rice varieties in middle boreal area. The varieties showed discoloration resistance are Sobaegbyeo. Baegambyeo. Hwaseongbyeo Chiagbyeo. Dobongbyeo and Daeseongbyeo. varieties wi th no root growing under low temperature are Taebaegbyeo. Samgangbyeo. Baegyangbyeo. Pungsanbyeo and Sangpungbyeo. The varieties showed dark green leaf color and high rooting rate are Sangpungbyeo. Chiagbyeo. Odaebyeo. Unbongbyeo. Dobongbyeo. Hwaseongbyeo. Sobaegbyeo and Daeseongbyeo. light-green of leaf color and low rate of rooting are Taebaegbyeo. Baegyangbyeo. Samgangbyeo and Nongbaegbyeo.

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Estimating Potential Growth of Single-node Cuttings for Applying Single-stemmed Rose to Factory System (장미 공장생산시스템 적용을 위한 Single-node 삽목묘의 잠재생장)

  • Kim, Wan-Soon;Lee, Yong-Beom;Nam, Yoon-Il;Kim, Hyung-Jun
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 2001.04b
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    • pp.79-80
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    • 2001
  • This study was conducted to estimate rooting and shooting in single-node cuttings (SNC) of roses 'Rote Rose' and 'Teresa' to several conditions: growth stage, node position, and leaf area of cutting, so that single-stemmed roses (SSR) could be used in rose factory system. There was no effects of growth stage of flowering shoots far cutting on the rooting and shooting of SNC in both of the two cultivars. However, the node position and leaf area of cuttings significantly affected the rooting and shooting of SNC: the speed was accelerated with larger leaf area and upper node cuttings, but the rate showed little difference as above 95%. Based on above results, rooting and shooting in SNC was forced by leaf area mainly, followed by node positions. On the other hand, flowering rate of shoots from SNC was improved mainly with larger leaf area in cuttings. Shoots of 45cm-longer, qualified for rose factory system, increased with lower node and larger leaf area significantly. Therefore, it could be said that the potential growth of shoots from SNC would be influenced mainly by leaf area, followed by node position on cutting.

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Study on the Salt Tolerance of Rice and Other Crops in Reclaimed Soil Areas 12. On the Salt Tolerance of the Rice Seeldings Grown under the Land and Water Conditions in the Reclaimed Salty Areas (간척지에서 수도 및 기타작물의 내염성에 관한 연구 12. 육묘와 수묘의 염분간척지에서의 내염성에 관하여)

  • 임형빈
    • Journal of Plant Biology
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    • v.13 no.4
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    • pp.23-31
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    • 1970
  • The rice variety, Kwanok, was reared in the water and land beds and transplanted to the reclaimed soil area, having an average salt concentration of 0.39%. Two levels of the moderate and late season cultures with 4 treatments were used. The K and Si contents of the stem part of land bed seedlings were somewhat smaller, but total carbohydrate remarkably larger, the C/N ratio was accordingly greater than water bed seedlings. The rooting ability of land bed seedlings was vigorous markedly in culture solutions, to which added various concentrations of NaCl, The rooting ability of each seedling water not much declined in theculturing solution of up to 9.4mmhos/cm, (0.6%) of salt concentration, but it was drastically declined in the salt concentration over that. It seemed that the critical salt concentration for the rooting rice plant. The land bed seedlings in each salty condition markedly decreased compared with the water bed seeldings in transpiration rate and it showed a stronger drought resistance and contained a large amount of chlorophyll at transplanting stage, and also showed higher stability of chlorophyll at rooting stage in the salt treatment. The number of panicles, panicle weight, number of grains per panicle and ratio of matured grains of the rice plant grown by the land bed seedlings were much greater and 1,000 grain weight was less than from water bed seedlings. The cultural practices with the land bed seedlings increased the rough rice yields by 15% and 11%, respectively, compared with the yields of the moderate and late season cultures by water bed seedlings.

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Micropropagation of Echinosophora koreensis Nakai, a Korean Endemic Species in Danger, Using Axillary Buds

  • Hyunseok Lee
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2020.12a
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    • pp.60-60
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    • 2020
  • To establish in vitro axillary bud culture conditions of Echinosophora koreensis Nakai, one of Korean endemic endangered species famous for beautiful flowers, we tested the influence of plant growth regulators (PGRs) in shooting and rooting stage from in vitro plants. In shoot multiplication, addition of 6-benzylaminopurine (BA) to the media induced 2.5 to 3 shoots per bud during 4 weeks of culture. And media including 0.5 mg L-1 thidiazuron (TDZ) produced 3 to 4 shoots per bud. However, zeatin and isopentenyl adenine (2-ip) were not successful to increase shoot number, and the combination treatments of BA with other PGRs were also not effective. Shoots were smaller than 2 cm in length, in most of the treatments. In rooting, naphthalene acetic acid (NAA) treatments in the range of 0.5 to 4.0 mg L-1 appeared to increase rooting rate by 10% to 60% approximately when compared with the control but roots developed with callus clusters. Indole butyric acid (IBA) addition had little effect on rooting (below 10%), while some roots were longer than in NAA treatments and some shoots were longer on high IBA concentrations (4.0 to 8.0 mg L-1). It is suggested that micropropagation is a highly applicable and promising to multiplication and conservation of rare and endangered endemic species.

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Study on the Salt Tolerance of Rice and Other Crops in Reclaimed Soil Areas 11. On the Histological Differences Between the Roots of the Salt, Land and Water Bed Seedlings of Rice and their Rooting in Saline Soil (간척지에서 수도 및 기타작물의 내염성에 관한 연구 11. 수도의 염분묘 및 수묘근의 조직학적 차이와 염분지에서의 발근에 관하여)

  • 임형빈
    • Journal of Plant Biology
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    • v.13 no.4
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    • pp.13-22
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    • 1970
  • The rice variety, Kwanok, was reared in the water, land and salt seed beds and transplanted to the reclaimed soil area having an average of 0.48% salt content (0.67% at the end of April). The plant height of land bel seedlings at transplanting stage was short but the dry-weight/plant-height ratio was large and the rooting ability was vigorous remarkably after transplantation in the salty area. The central cylinder, vessels, sclerenchyma, endodermis and other mechanical tissues of the root of land bed seedlings were well developed while the size of cortical cell layers were small. The cytoplasm of the cortical parenchyma at the root tips seemed to be most abundant in the land bed seedlings. The formation of the aerial cavity in the cortex of primary root was rapid and it seemed that the developmental mechanism of the aerial cavity in the rice plant roots was related to the development of the lateral roots.

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