• 제목/요약/키워드: leaf clipping

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질소시용, 예초 및 재식밀도가 한국잔디(Zoysia Japonica Steud)의 생육에 미치는 영향 (Studies on the growth of Korea Lawn Grass (Zoysia japonica Steud.)in Reponse to Nitrogen Application, Clipping Treatment and Plant Density)

  • 심재성
    • 자연과학논문집
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    • 제1권
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    • pp.61-113
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    • 1987
  • The increasing emphasis placed on the production of fine turf for lawns, golf courses, parks, and other recreational sites has led to many unsolved problems as to how such turf could be best established and mainteined. For this purpose, a series of experiments were conducted under con ditions of pot and field. The results obtained were as follows EXPERIMENT I. The effect of nitrogen fertilizer and clipping interval on Zoysia japonica. 1. Increasing the rate of nitrogen and frequent clipping increased tiller number of Zoysis japonica and the maximum number of tillers were obtained from 700 kg N application and freqnent clippings (10 days interval ) in October. Treatment of 350kg N with 10 days clipping interval increased tillers much more than those of 700 kgN with 20 and 30 days clipping intervals. 2. The average number of green leaves occurred during the growth period maximized by applying 700 kg N and clipping 10 days interval. 3. Increasing tiller numbers significantly decreased tops DM weight per tiller by clipping plants at interval of 10 and 20 days, irrespective of nitrogen applied, and with nil N, at the interval of 30 days. By applying 700 kg N, however, top DM weight per tiller increased as the number of tillers increased consistently. 4. The highest top DM weight was achieved from late August to early September by applying 350 and 700kgN. 5. During the growth period, differences in unders ( stolon + root ) DM weight occurred bynitrogen application were found between nil N and two applied nitrogen levels, whereas, at the same level of nitrogen applied, the increase in stolon DM weight enhanced by lengthening the clipping interval to 30 days. 6. Nitrogen efficiency to green leaves, stolon nodes and DM weight of root with high nitrogen was achieved as clipping interval was shortened. 7. By increasing fertilizer nitrogen rate applied, N content n the leaves and stems of Zoysiajaponica was increased. On the other hand, N content in root and stolon had little effect onfertilizer nitrogen, resulting in the lowest content among plant fractions. The largest content of N was recorded in leaves. Lengthening the clipping interval from 10 or 20 to 30 days tends to decrease the N content in the leaves and stems, whereas this trend did not appeared in stolon androot. 8. A positive correlations between N and K contents in tops and stolon were established andthus K content increased as N content in tops and stolon increased. Meanwhile, P content was not affected by N and clipping treatments. 9. Total soluble carbohydrate content in Zoysia japonica was largest in stolon and stem, and was reduced by increasing fertilizer nitrogen rate. Reduction in total soluble carbohydrate due to increased nitrogen rate was severer in the stolons and stems than in the leaves. 10. Increasing the rate of nitrogen applied increased the number of small and large vascular bundles in leaf blade, but shortened distance among the large vascular bundles. Shortening the clipping interval resulted in increase of the number of large vascular bundles but decrease ofdistance between large vascular bundles.EXPERIMENT II. Growth response of Zoysia japonica imposed by different plant densities. 1. Tiller numbers per unit area increased as plant density heightened. Differences in num ber between densities at higher densities than 120 D were of no significance. 2. Tiller numbers per clone attained by 110 days after transplanting were 126 at 40D,77 at 80D, 67 at 120D, 54 at 160D, and 41 at 200D. A decreasing trend of tiller numbers per clone with increasing density was noticable from 100 days after transplanting onwards. 3. During the growth period, the greatest number of green leaves per unit area were attainedin 90days after transplanting at 160D and 200D, and 100 days after transplanting at 40D, 80Dand 120D. Thus the period to reach the maximum green leaf number with the high plantdensity was likely to be earlier that with the low plant density. 4. Stolon growth up to 80 days after transplaning was relatively slow, but from 80 daysonwards, the growth quickened to range from 1.9 m/clone at 40D to 0.6m/clone at 200Din 200 days after transplanting, these followed by the stolon node produced. 5. Plant density did not affect stolon weight/clone and root weight/clone until 80 daysafter transplanting. 6. DM weight of root was heavier in the early period of growth than that of stolon, butthis trend was reversed in the late period of growth : DM weight of stolon was much higherthan that of root.EXPERIMENT Ill. Vegetative growth of Zoysia japonica and Zoysia matrella as affected by nitrogen and clipping height. 1. When no nitrogen was applied to Zoysia japonica, leaf blade which appeared during theAugust-early September period remained green for a perid of about 10 weeks and even leavesemerged in rate September lived for 42 days. However, leaf longevity did not exceed 8 weeks asnitrogen was applied. In contrast the leaf longevity of Zoysia matrella which emerged during the mid August-earlySeptember period was 11 weeks and, under the nitrogen applied, 9 weeks, indicating that thelife-spen of individual leaf of Zoysia matrella may be longer than that of Zoysia japorica. Clipping height had no effect on the leaf longevity in both grasses. 2. During the July-August period, tiller number, green leaf number and DM weightof Zoysia japonica were increased significantly with fertilizer nitrogen, but were not with twolevel of clipping height. This trend was reversed after late September ; no effect of nitrogen wasappeared. Instead, lax clipping increased tiller number, green leaf number and DM weight. Greenleaves stimulated by lax clipping resulted in the occurrance of more dead leaves in late October. 3. Among the stolons outgrown until early September, the primary stolon was not influencedby nitrogen and clipping treatments to produce only 2-3 stolons. However, 1st branch stoIon asaffected by nitrogen increased significantly, so most of stolons which occurred consisted of 1st branch stolons. 4. Until early September, stolon length obtained at nil nitrogen level was chiefly caused bythe primary stolons. By applying nitrogen, the primary stolons of Zoysia japonica waslonger than 1st branch stolons when severe clipping was involved and in turn, shorter than 1stbranch stolons when lax clipping was concerned. In Zoysia matrella, 1st branch stolons were muchlonger than the primary stolon when turf was clipped severely but in conditions of lax clippingthere was little difference in length between primary and 1st branch stolons. 5. Stolon nodes of both Zoysia japonica and Z. matrella were positively influenced by nit rogen, but no particular increase by imposing clipping height treatment was marked in Zoysiamatrella. Although the stolon of Zoysia japonica grew until late October, the growthstimulated by nitrogen was not so remarkable as to exceed that by nil N.

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크리핑 벤트그라스 훼어웨이에서 관수회수.예지물과 질소시비수준이 엽조직 및 토양 질소함유량에 미치는 효과 (A Three-year Study on the Leaf and Soil Nitrogen Contents Influenced by Irrigation Frequency, Clipping Return or Removal and Nitrogen Rate in a Creeping Bentgrass Fairway)

  • 김경남;로버트쉬어만
    • 아시안잔디학회지
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    • 제11권2호
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    • pp.105-115
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    • 1997
  • Responses of 'Penncross' creeping bentgrass turf to various fairway cultural practices are not well-established or supported by research results. This study was initiated to evaluate the effects of irrigation frequency, clipping return or removal, and nitrogen rate on leaf and soil nitrogen con-tent in the 'Penncross' creeping bentgrass (Agrostis palustris Huds.) turf. A 'Penncross' creeping bentgrass turf was established in 1988 on a Sharpsburg silty-clay loam (Typic Argiudoll). The experiment was conducted from 1989 to 1991 under nontraffic conditions. A split-split-plot experimental design was used. Daily or biweekly irrigation, clipping return or removal, and 5, 15, or 25 g N $m-^2$ $yr-^1$ were the main-, sub-, and sub-sub-plot treatments, respectively. Treatments were replicated 3 times in a randomized complete block design. The turf was mowed 4 times weekly at a l3 mm height of cut. Leaf tissue nitrogen content was analyzed twice in 1989 and three times in both 1990 and 1991. Leaf samples were collected from turfgrass plants in the treatment plots, dried immediately at 70˚C for 48 hours, and evaluated for total-N content, using the Kjeldahl method. Concurrently, six soil cores (18mm diam. by 200 mm depth) were collected, air dried, and analyzed for total-N content. Nitrogen analysis on the soil and leaf samples were made in the Soil and Plant Analyical Laboratory, at the University of Nebraska, Lincoln, USA. Data were analyzed as a split-split-plot with analysis of variance (ANOVA), using the General Linear Model procedures of the Statistical Analysis System. The nitrogen content of the leaf tissue is variable in creeping bentgrass fairway turf with clip-ping recycles, nitrogen application rate and time after establishment. Leaf tissue nitrogen content increased with clipping return and nitrogen rate. Plots treated with clipping return had 8% and 5% more nitrogen content in the leaf tissue in 1989 and 1990, respectively, as compared to plots treated with clipping removal. Plots applied with high-N level (25g N $m-^2$ $yr-^1$)had 10%, 17%, and 13% more nitrogen content in leaf tissue in 1989, 1990, and 1991, respectively, when compared with plots applied with low-N level (5g N $m-^2$ $yr-^1$). Overall observations during the study indicated that leaf tissue nitrogen content increased at any nitrogen rate with time after establishment. At the low-N level treatment (5g N $m-^2$ $yr-^1$ ), plots sampled in 1991 had 15% more leaf nitrogen content, as compared to plots sampled in 1989. Similar responses were also found from the high-N level treatment (25g N $m-^2$ $yr-^1$ ).Plots analyzed in 1991 were 18% higher than that of plots analyzed in 1989. No significant treatment effects were observed for soil nitrogen content over the first 3 years after establishment. Strategic management application is necessary for the golf course turf, depending on whether clippings return or not. Different approaches should be addressed to turf fertilization program from a standpoint of clipping recycles. It is recommended that regular analysis of the soil and leaf tissue of golf course turf must be made and fertilization program should be developed through the interpretation of its analytic data result. In golf courses where clippings are recycled, the fertilization program need to be adjusted, being 20% to 30% less nitrogen input over the clipping-removed areas. Key words: Agrostis palustris Huds., 'Penncross' creeping bentgrass fairway, Irrigation frequency, Clipping return, Nitrogen rate, Leaf nitrogen content, Soil nitrogen content.

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질소시용 및 예초고가 한국 잔디(Zoysia japonica Steud.) 및 금잔디(Zoysia matrella MERR.)의 생육후기 영양생장에 미치는 영향 (Effect of nitrogen application and clipping height on the vegetative growth of Korean lawn grass (Zoysia japonica Steud.) and Manilagrass (Zoysia mat rella (L.) MERR.) during September/October)

  • 심재성;윤익석
    • 아시안잔디학회지
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    • 제1권1호
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    • pp.7-17
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    • 1987
  • The experiment with two levels of nitrogen (0. and 300kg / ha / year) and two levels of clipping height (1.5cm and 4cm) was conducted on the field during the period 3 June to 23 October 1985. Clonal lines of korean lawngrass ( Zoysia japonica Steud.) and manilagrass ( Zoysia matrella ( L.) Merr.)of Daejon origin were established in June, as individual clone in rows 30cm apart with a 40cm spacing between clones, actually 4 clones each plot. The results obtained were as follows : 1. When no nitrogen was applied to korean lawngrass, leaf blade which appeared during the August / early September period remained green for a period of about 10 weeks and even leaves emerged in late September lived for 42 days. However, leaf longevity did not exceed 8 weeks as nitrogen was applied. In contrast the leaf longevity of manilagrass which emerged during the mid - August / early September period was 11 weeks and, under the nitrogen applied, 9 weeks, indicating that the life - saen of individual leaf of manilagrass may be longer than that of korean lawngrass. Meanwhile, clipping height had no effect on the leaf longevity in both grasses. 2. During the July / August period, tiller number, green leaf number and DM weight of korean lawngrass were increased significantly with fertilizer nitrogen, but were not with two levels of clipping height. This trend was reversed after late September : no effect of nitrogen was appeared. Instead, lax clipping increased tiller number, green leaf number and DM weight. Green leaves stimulated by lax clipping resulted in the occurrance of more dead leaves in late October. 3. The increase of tiller number, green leaf number, and DM weight of korean lawngrass due to nitrogen application appeared to be of significance in early September. Unlike korean lawngrass, however, this significant increase was maintained to late October when new green leaves still emerge. Clipping height had little effect on the growth of manilagrass by early September, but since then, lax clipping stimulated leaf appearance, possibly resulting in a remained green color of manilagrass turf. 4. Among the stolons outgrown until early September, the primary stolon was not influenced by nitrogen and clipping treatments to produce only 2 - 3 stolons. However, 1st branch stolon as affected by nitrogen increased significantly, so most of stolons which occurred consisted of 1st branch stolon. 5. Until early September, stolon length obtained at nil nitrogen level was chiefly caused by lengthening the primary stolons. By applying nitrogen the primary stolons of korean lawngrass was longer than 1st branch stolons when severe clipping was involved and in turn, shorter than 1st branch stolons when lax clipping was concerned. In manilagrass, 1st branch stolons were much longer than the primary stolons when turf was clipped severely but in conditions of lax clipping, there was little difference in length between primary and 1st branch stolons. 6. Stolon nodes of both korean lawngrass and manilagrass were positively influenced by nitrogen, but no particular increases by imposing clipping height treatment was marked in manilagrass. Although the stolon of korean lawngrass was grown until late october, the growth stimulated by nitrogen was not so remarkable as to exceed that a by nil N. 7. The thickness of korean lawngrass and manilagrass was greatest in late September, but that of manilagrass did not differ significantly from that in late October. 8. The response of stolon length of korean lawngrass to lax clippings was not so great in late October as to that to severe clippings. On the other hand, the positive effect of lax clippings to stolon length in m anilagrass was confirmed even in late October.

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Chemical Composition, Herbage Yield and Nutritive Value of Panicum antidotale and Pennisetum orientale for Nili Buffaloes at Different Clipping Intervals

  • Sarwar, Muhammad;Mahr-un-Nisa, Mahr-un-Nisa;Khan, M. Ajmal;Mushtaque, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제19권2호
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    • pp.176-180
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    • 2006
  • This study was carried out to establish clipping interval of Pennisetum orientale (PO) and Panicum antidotale (PA) to get maximum biomass production with optimal nutritional value for Nili buffaloes. Two clipping intervals i.e. $CI_1$, and $CI_2$ (clipped after every one and two months, respectively) were studied for both grasses. The data on various parameters were compared with PO and PA each clipped at 4 months of age (control). Leaf to stem ratio in both PO and PA declined with increasing clipping interval. Concentration of dry matter (DM) and organic matter (OM) increased (p<0.05) whereas crude protein contents decreased with increasing clipping interval in both grasses. Crude protein and dry herbage yields in PO and PA increased (p<0.05) with increasing clipping interval. The DM and neutral detergent fiber (NDF) digestibilities of PO and PA in ruminally cannulated buffalo bulls decreased (p<0.05) due to more lignification with increasing clipping interval. Ruminal extent of digestion, rate of disappearance of DM and neutral detergent fiber of PO and PA decreased in buffaloes while ruminal lag time of these nutrients increased significantly (p<0.05) with increasing clipping interval. The results from the study imply that two month clipping interval for both PO and PA grasses favored higher biomass with greater nutritional value for Nili buffaloes and sustained grass vigor.

Influence of Re-growth Interval on Chemical Composition, Herbage Yield, Digestibility and Digestion Kinetics of Setaria sphacelata and Cenchrus ciliaris in Buffaloes

  • Mahr-un-Nisa, Mahr-un-Nisa;Khan, M. Ajmal;Sarwar, Muhammad;Mushtaque, M.;Murtaza, G.;Lee, W.S.;Kim, H.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제19권3호
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    • pp.381-385
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    • 2006
  • This study examined the influence of re-growth periods on chemical composition, biomass production, nutritive value and digestion kinetics of Setaria sphacelata (SS) and Cenchrus ciliaris (CC) in ruminally cannulated buffalo bulls. Two re-growth intervals i.e. clipping every month ($CI_1$) and clipping after every two months ($CI_2$) were compared with the control (clipped after 4 months). Mean values of leaf to stem ratio in SS and CC grasses were decreased (p<0.05) with increasing re-growth interval. The lowest leaf to stem ratio was recorded in control plots of both grasses. In both grasses, increasing growth period increased the concentrations of dry matter (DM), neutral detergent fiber (NDF) and organic matter (OM) and decreased crude protein (CP). Mean dry herbage, OM and CP yields of SS and CC were increased (p<0.05) with increasing re-growth interval. Ruminal DM and NDF digestibilities of SS and CC were decreased (p<0.05) with increasing interval. Ruminal rate of DM and NDF disappearance was higher while the ruminal lag time of these nutrients was lower with monthly than with bi-monthly clipping interval. The results from present study imply that SS and CC clipped after every two months is more beneficial than when clipped every month or every four months in terms of optimal biomass with adequate nutritional value for buffaloes.

근동질유전자 계통인 찰벼와 메벼의 전엽과 절영처리에 따른 등숙특성 비교 (Comparison of Grain Filling Characteristics by Source-Sink Size Control in Glutinous and Non-glutinous Near Isogenic Line of Rice)

  • 김춘송;안종국;정일민;강항원;이재생;고지연;박성태
    • 한국작물학회지
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    • 제49권3호
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    • pp.243-250
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    • 2004
  • 본 시험은 찰벼의 수량제한요인을 알아내기 위하여 찰$.$메근동질유전자 계통인 화청찰벼와 와청벼를 공시하여 공급부위(잎)와 수용부위(영화)의 조절이 등숙에 미치는 영향을 구명함으로써 찰벼의 수량증대를 위한 기초자료를 얻고자 수행하였으며, 그 결과는 다음과 같다. 1. 이삭당 총립중과 편균립중의 감소경향은 두 품종 모두 차엽처리구 < 지엽처리구 < 상위 1, 3엽처리구 < 상위 1,2엽처리구 < 상위 1, 2, 3엽처리구 순이었다. 상위 1, 2, 3엽 제거에 의한 총립중과 평균립중의 감소율은 화청찰벼에 비하여 화청벼에서 컸다. 2. 화청벼와 화청찰벼 모두 전엽처리에 의한 고밀도립비율과 등숙율이 2차지경보다 1차지경에서 높았다. 3. 화청벼와 화청찰벼 모두 영화의 절제처리에 의하여 이삭당 총립수와 총립중이 대조구에 비하여 감소한 반면 평균입중과 등숙율은 증가되었다. 대조구와 비교한 평균입중의 증가율은 1, 2차지경립 및 상$.$하위지경립의 절제구 모두에서 화청찰벼가 화청벼보다 높았다. 4. 영화의 조절의 의하여 두 품종 모두 고밀도립비율과 등숙립비율이 증가되었으며 고밀도립비율은 화청찰벼가 화청벼에 비하여 높았던 반면에, 등숙립비율은 화청벼에서 높은 결과를 보였다.

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

  • 이정일;강철환;손응룡
    • 한국작물학회지
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    • 제30권2호
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    • pp.165-173
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    • 1985
  • 참깨의 초형에 따른 비닐피복과 작기 그리고 적엽시기와 적엽부의별 적엽이 참깨의 동화기관과 종실의 결실.등숙에 미치는 영향을 구명하여 후기등숙불량을 최소화하기 위한 기초자료로 이용코자 일련의 시험을 실시한 결과 다음과 같은 결론을 얻었다. 1. 개화 후 25일 하위엽 적엽에 따른 천립중 변동은 분지형은 단경형보다, 비닐피복구는 무피복 보다, 맥후작은 단작 보다 천립중 감소가 컸다. 단경형 단작 하위적엽에서는 상위삭 천립중이 약간 증가하는 경향을 보였으나 맥후작과 분지형에서는 감소되었다. 2. 하위적엽에 의한 등숙립 비율변동은 분지형은 단경형 보다, 맥후작은 단경 보다 등숙립 비율의 감소가 컸으며 비닐피복 간에는 대차 없었다. 단경단작 25% 적엽에서 상위삭의 등숙립 비율은 무처리대비 약 6%의 증가를 보였으며 맥후작과 분지형에서는 감소되었다. 3. 개화 후 30 일.단경형.하위 25% 적엽에서 무처리에 비하여 약간의 등숙률 증가를 보였으나 분지형에서는 감소되었으며 상위적엽에 의하여 등숙률이 크게 떨어져 이 시기의 동화중심엽은 상위엽으로 추정되었고 단경형보다는 분지형의 하위엽이 등숙후기까지도 엽의 활력을 잘 유지하는 것으로 생각되었다. 개화 후 10 일 적엽구에서는 단경.분지형 공히 큰 폭으로 등숙립 비율이 떨어졌다. 4. 하위 50 % 적엽에서 상위엽의 엽록소 함량은 같은 위치의 무처리 엽에서 보다 39%가 더 증가되었으며 상위 50% 적엽에 의하여 하위엽의 엽록소 함량은 무처리 대비 66%가 증가되어 한 쪽엽 적엽에 의하여 반대에 위치한 엽의 엽록소 함량이 증가하는 보상작용이 인정되었다. 5 하위 50% 적엽에 의하여 광합성은 무처리에 비하여 58 %의 증가를 보였으나 상위 50 % 적엽에서는 Omg$CO_2$/d$m^2$/hr로서 잔존 하위엽에서 생성한 동화양분은 그 엽의 자체의 호흡에 의한 소모도 충족시키지 못하여 생식생장 후기 상위적엽에 의하여 광합성 작용은 치명적 손상을 받을 뿐만 아니라 잔존 하위엽의 광합성 기여도는 낮을 것으로 인정되었다. 6. 수확지수에서는 하위 25% 적엽에 의하여 무처리 대비 28%의 증가를 보인 반면 상위 50% 적엽에서는 무처리에 비하여 13% 감소되었다. 7. 하위 50% 적엽에서 잔존 엽면적은 같은 위치의 무처리엽 면적에 비하여 48 %가 증가되었으나 상위적엽에서는 5% 증가에 그쳐 적엽에 의하여 신생 상위엽의 엽면적 증대는 큰 반면에 노쇠한 하위엽의 엽면적 증대는 거의 없었다. 8. 적엽에 따른 수량차는 분지형이 단경형에서 보다, 맥후작이 단작에서 보다 무처리에 비하여 감수폭이 터 컸으며 비닐피복 간에는 큰 차이를 보이지 않았다. 9. 단경.단작 하위 25 % 적엽에서 비닐피복과 무피복 공히 수량이 무처리에 비하여 각각 5 %와 8 %가 증가하였으며 타 적엽구에서는 감수되었다. 10. 개화 후 10 일 적엽구에서는 무처리에 비하여 34 % 감수된 반면 개화 후 30 일 적엽구에서는 무처리 대비 24 % 감수에 그쳐 개화 후 10일 엽에서의 동화물질 생산 기여도가 개화 후 30 일 엽에서 보다 더 높았던 것으로 인정되었으며 개화 후 10 일에는 단경.분지형 공히 하위 50 % 적엽구에서 가장 많은 감수를 보여 이 시기의 광합성 활동 중심엽은 하위엽인 것으로 추정되었다.

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예초관리에 따른 Kentucky bluegrass의 품종간의 생육과 Thatch 축적 I. 예초잔여물의 제거 하에서의 품종간의 차이 (The Growth and Thatch Accumulation of Kentucky Bluegrasses as Affected by Cutting Management. Varietal Differences under Removing Clipping Residues)

  • 윤용범;이주삼
    • 아시안잔디학회지
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    • 제6권1호
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    • pp.29-37
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    • 1992
  • This experiment was carried out in order to study the changes of morphological characters of the growth and thatch accumulation in :3 varieties of Kentucky bluegrass under removing clipping residues as affected by cutting management. The varieties used were Park, Kenhiuc and Newport.The results obtained are as follows; 1. The dry weight of leaf. stem and number of tiller was highest at 22. June and lowest at 21. Aug in alt varieties. And then the dry weight of rhizome, root and thatch increased with growth progressed) Tabte 3). 2. The relationship of the dry weight of biological yield and number of tillers was quadratic ally increased in the growth stage of spring($R^2$= 0.982**), and linearlly increased in the growth stage of autumn(r 0.944*)(Fig. 1). :3. The dry weight of thatch increased as an exponentially equation in alt :3 varieties of Kentucky blue-grass(Fig. 2). Thatch increased rate(TIR) can used to estimate the specifying a quantity of thatch accumulation from the turf. Thatch increase rate equation as follows. where TH$_2$ is the dry weightof thatch at T$_2$ survey time and TH$_1$ is the dry weight of thatch at $TH_1$ is the dry weight of thatch at $T_1$ survey time. $TIR(mg/cm^2/day)=\frac{Ln\;TH_2 - Ln\; TH_1}{T_2 - T_1}$ 4. Correlation coefficients between the dry weight of thatch and leaf weight was -0.633(P>0.05), and number of tiller of tillers was -0.666(P>0.5), respectively. It means that thatch accumu-lation increased with growth depression of leaf and stem.

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한국에 있어서의 'Kresek'에 관한 연구 III. 품종저항성 및 균주에 따른 도체내에서의 균증식과 발병과의 관계 ('Kresek' Disease in Korea III. Varietal Resistance, and Relationship among Pathotype, Multiplication in the Tissue and Disease Development)

  • 최용철;조용섭
    • 한국응용곤충학회지
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    • 제19권1호
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    • pp.51-55
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    • 1980
  • 수도 흰빛마름병 이병엽과 Kresek 발병주로부터 분리한 I균군(각5균주), II균군(각4균주)의 18균주를 "밀양23호"및 "유신" 품종 5엽기의 전개엽에 침접종한후 수도체내에서의 균증식과 병반장율 및 Kresek 발병율을 비교조사하여 균주간차이를 비교하였고, 밀양23호외28품종에 대해 II, IV균군을 사용하여 침접종및 근단접종법으로 품종간 저항성을 조사한 결과 1. 각균주간 수도체내에서의 증식은 큰 차이를 볼수 없었으나 "Kresek"발병주로부터 분리된 균주가 병반장률이 약간 높은 경향을 나타내었다. 2. Kresek 발병은 흰빛잎마름병 이병주에서 분리한 균주와 "Kresek"발병주로부터 분리한 균주간에는 아무런차이를 인정할수 없었고, 모두 발병을 볼수있었다. 3. Kresek에 대한 품종저항성에서는 흰빛잎마름병의 저항성반응과 비슷한경향을 나타내고 있으나 Wase Aikoku 품종군에서도 발병을 볼수있었다. 4. 황옥품종군인 "IR20"은 Kresek에라해 고도의 저항성반응을 나타내었다. 5. 접종반응으로는 근단접종법에서 침접종법에 비해 더욱 많은 발병율을 볼수있었다.

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부식산 함유 액상비료 시비에 따른 크리핑 벤트그래스의 생육과 품질 변화 (Growth and Quality Changes of Creeping Bentgrass by Application of Liquid Fertilizer Containing Humic Acid)

  • 김영선;이태순;조성현;이긍주
    • Weed & Turfgrass Science
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    • 제6권3호
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    • pp.272-281
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    • 2017
  • 본 연구는 부식산 함유 액비(LFHA)의 시비에 따른 잔디의 생육과 품질의 변화를 평가하기 위해 수행하였다. 처리구는 대조구(CF), HA-1 ($CF+1ml\;m^{-2}LFHA$), HA-2 ($CF+2ml\;m^{-2}LFHA$), and HA-3 ($CF+4ml\;m^{-2}LFHA$)로 구분되었다. LFHA 처리 전후에 토양화학성은 차이를 나타내지 않았다. LFHA처리구와 대조구를 비교하였을 때, HA-2처리구와 HA-3처리구의 잔디 품질은 9월, 10월 및 11월 조사에서 높았고, 잔디예지물은 10월 27일 조사에서 증가하였다. 줄기 밀도, 뿌리 길이, 잎조직 내 질소, 인산 및 칼륨의 함량은 LFHA처리구에서 증가하였다. 잔디예지물은 잎 조직 내 인산 및 칼리함량이나 줄기 밀도와 정의 상관성을 보였고, 부식산 함유 액비는 잔디 밀도, 잔디예지물 및 잎조직 내 질소 및 인산함량과 각각 정의 상관성을 나타내었다. 이 결과들을 종합해 볼 때, 크리핑 벤트그래스에서 부식산 함유 액비의 시비는 잔디의 잎 조직 중 질소와 인산의 흡수가 증가하여 잔디예지물과 밀도가 증가하는 것을 확인 할 수 있었다.