• 제목/요약/키워드: transplanting density

검색결과 148건 처리시간 0.028초

거베라에서 아메리카잎굴파리의 가해양상, 발생소장 및 색상별 유인량 (Damaged Aspects, Seasonal Fluctuations, and Attractivity of Various Colors on Liriomyza trifolii Burgess (Diptera: Agromyzidae) in Gerbera)

  • 박종대;구용수;최덕수;김상수
    • 한국응용곤충학회지
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    • 제40권2호
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    • pp.97-103
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    • 2001
  • 전남지역에서 아메리카잎굴파리에 의한 거베라 피해엽율은 정식후 1년차에 89.7%, 2년차에 85.5%이었다. 피해주에서 갱도에 의한 피해엽율과 흡즙흔에 의한 피해엽율은 각각 44.7%와 55.3%이었다 황색끈끈이트랩에 유인된 성충은 5월 하순에 정식한 경우 정식 1년차에는 초기부터 성충이 포획되어 8월 상순까지 포획량이 계속 증가하였으나 이후 8월 하순까지는 밀도가 감소하다가 9월 상순부터 다시 포획량이 증가하였다. 정식 2년차에는 4월 하순부터 성충이 포획되기 시작하여 5월 중순부터 급격히 증가하고 7월 상순까지 높은밀도를 유지하다가 7월 중순부터 점차 밀도가 감소하여 7월 하순부터는 낮은 밀도를 유지하였으나,포충망에 의한 조사는 9월 상순과 10월 하순에 높은 밀도를 유지하였다. 유충과 번데기 밀도변동은 성충발생과 비슷하였으나 번데기 발생 peak가 유충보다 일주일 가량 늦었다. 거베라에서 기생봉에 기생당한 유충수는 정식 5주째부터 많아지기 시작하여 8월 하순까지 기생율이 평균 65%로 높았으나 9월 상순부터는 50%수준이었다. 유색끈끈이트랩에 유인량은 황색에서 가장 많았으며, 트랩의 설치위치는 지상 30~60cm범위에서 포획량이 많았다.

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재식밀도와 질소시용이 오차드그라스 ( Dactylis glomerata L. ) 품종들의 분벽 소장과 수량에 미치는 영향 ( The Effect of Plant Density and Nitrogen Application on the Tillerring and the yield in cultivars of Orchargrass ( Dactylis glomerata L. ) )

  • 김정해;이호진
    • 한국초지조사료학회지
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    • 제10권1호
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    • pp.1-9
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    • 1990
  • Tillering of orchardgrass during establishment year was considered as an important factor for ground cover and forage yield. Field experiment was conducted to examine seasonal fluctuation of tiller number in three cultivars of orchardgrass; Potomac, Hall-mark, and Sumas, after transplanting with five planting density. Also, effects of plant density and nitrogen application in cultivar, Potomac were studied on tillering, forage yield and various growth characteristics in pot experiment Tillers per plant decreased with increased density and showed seasonal variations. It increased up to July, decreased during summer months, and increased again from October. Sumas had less tillers than other cultivars, especially at high density. Tillers per unit area kept high during spring. After then, there was stady decrease through summer and remained constant without affecting by planting density. Nitrogen application increased tillers per unit area in Potomac up to 20kg/10a, but decreased its tiller production at 40kg/lOa. Maximum number of tiller was obtained in the combinations of 20kg application of nitrogen with higher density than 324 plant per square meter. Forage yield increased as nitrogen application increased, while it did not respond to plant density. Forage yield had high linear correlation between LAI, leaf number with a peak at 2800 culrns. For high forage yielding, it was suggested to obtain optimum number of tillers per unit area in early season as possible, applying of adequate amount of nitrogen with relative high density depend on cultural condition.

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경종조건에 따른 벼 이형주의 발생양상과 특성 (Occurrence and Characteristics of Off-type Rice as affected by Cultural Practice)

  • 김동관;권오도;신해룡;진일두;정병관
    • 한국작물학회지
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    • 제46권6호
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    • pp.429-433
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    • 2001
  • 경종조건에 따른 벼 이형주의 발생양상과 특성은 다음과 같다. 1.벼 이형주의 발생량은 종자의 자가 채종년수가 증가할수 록 많았고, 직파재배 포장에서 이앙재배 포장보다 2배 가량 많았다. 2. 재배벼의 재배포장에 장립적미와 단립적미를 인위적으로 산파 하였을 때 담수표면산파 재배에서 기계이앙 재배보다 발생량이 많고 간장이 길고 주당 유효경수가 많았으며, 장립적미가 단립적미보다 이런 특성들을 많이 지녔다. 3. 이앙재배 포장에서 이형주가 재배벼의 포기 밖에서 발생하는 비율은 농가관행재배의 경우 0∼6%인 반면, 장립적미와 단립적미를 인위적으로 산파하였을 때는 70.6∼91.1% 이기 때문에 농가포장에서 발생하는 이형주군의 대부분은 종자흔입에 의해 발생하는 것으로 보아진다.

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재식밀도를 달리한 한국 잔디의 생장반응 (Growth Response of Korean Lawngrass (Zoysia Japonica Steud.) Imposed by Different Plant Densities)

  • 심재성
    • 아시안잔디학회지
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    • 제3권1호
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    • pp.5-12
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    • 1989
  • Tiller numbers per Unit area were increased as plant density heightened followed by little difference in tiller number in 110 days after transplanting(ll0DAT), this being caused by the immediate increment of tiller since' 90DAT During the growth period, the greatest number of green leaves per unit area was attained in 90DAT of both 160-density and 200-density plots, and in l00DAT of 40-, 80-, and I 20-density plots. Thus, the period to reach the maximum green leaf number with the high plant density was earlier than with the' low plant density. The increment of plant density increased the DM weight of ahoveground part and, with 40-densitytreatment. DNI weight was increased 6.1 times as much up to 110DAT as up to 7ODAT but 2 to 2.9 times with other ehe'nsity treatments. The' rate of increase in stolon length was greatest at the period between 80 and 90DAT when DM weight of stolon showed a large increment. Meanwhile, the average number of stolon was 1.7 at 70DAT but was increased up to 10 at 110DAT probably due to accelerative appeance of Ist stolon branch since 8.0DAT. DM weight of stolon was found to exceeded that of root after 90DAT Thus it was concluded that, when turfs is estahlished from sprig. it may be desirable for first mowing practice to be made at least within l00 days after planting.

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이앙 시기와 재식 밀도에 따른 이탈리안 라이그라스의 생육 및 종실 수량 특성 평가 (Transplanting Date and Planting Density Affect the Growth Characteristics and Seed Yield of Italian Ryegrass)

  • 이윤호;김정원;박혁진;김현기;장현수;김대욱;윤종탁
    • 한국작물학회지
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    • 제68권4호
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    • pp.438-444
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    • 2023
  • 본 연구는 IRG의 파종 시기에 가을 장마로 파종 시기가 지연되는 문제점을 이앙 재배로 보완하고자 IRG의 이앙시기 및 재식 밀도에 따른 생육 및 종실 수량 특성에 결과이다. 1. 이앙 시기는 10월 20일, 10월 30일 그리고 11월 10일에 하였으며, 재식 밀도는 3.3 m2 당 50주, 70주와 80주로 설정하였다. 2. 초장, 엽면적지수, 군락피복률은 이앙 시기에 따라서 유의한 차이를 보였고, 특히 10월 20일 이앙이 10월30일과 11월 10일 이앙에 비해 높았다. 재식 밀도간에는 유의한 차이를 보이지 않았다. 3. 월동 전후 경수와 건물중 차이는 10월 20일이 10월 30일과 11월 30일에 비해 높았다. 4. 수량구성요소에서 단위 면적당 이삭수, 건물중 및 종실수량이 10월 20일 이앙이 다른 이앙일에 비해 높았고 1000립중 차이는 나지 않으며, 재식밀에서는 70주와 80주간에는 이삭수, 건물중 및 종실 수량 차이는 보이지 않았지만 50주가 다소 낮았다. 5. 안정적인 종자 생산을 위해서는 11월 이전과 70주와 80주로 이앙을 하게 되면 월동전 개체 확보가 경수로 이어져서 수량 확보를 기대 할 수 있다.

토양수분의 과, 부족이 연초의 생장과 증발산량에 미치는 영향 (EFFECT OF SOIL mOISTURE CONDITiON ON THE GROWTH AND EVAPOTRANSPIRATION OF THE TOBACCO PLANT)

  • 홍순달;이윤환;김재정;조성진
    • 한국연초학회지
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    • 제7권1호
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    • pp.15-23
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    • 1985
  • Growth response and evapotranspiration of tobacco as to each soil moisture condition treated with different height of ground water table such as 30cm, 100cm, 170cm, and 230cm were investigated. The results obtained were as follows; 1. Soil water potential in the rhizosphere (25cm depth from surface) treated with ground water table (G.W.T) of 230 cm was less than -6.5 bar at 60 days after transplanting. 2. Dry weight of leaves per plant was the highest in the pot treated with 100 cm G.W.T and was the lowest in the pot treated with 230 cm G.W.T.. Leaves/Stem ratio of dry weight was the lowest in the pot treated with 230 cm G.W.T. This would show that extension of leaves as compared with elongation of stem was suppressed. .3. In the roster stress condition of 230 cm G.W.T., extension of leaves was continued until the latter growth stage, Relative growth rate of leaf area per plant of the pot with 30 cm G.W.T. was the highest through all growth period after fixation of G.W.7., but owing to lower density of leaf, the dry weight of leaves per plant was less rather than that of the pot with 170 cm G.W.T. at 64 days after transplanting. 4. The highest evapotranspiration per plant per day was shown at the 45th day after transplanting in the pots with 30cm and 100cm G.W.T. and at 60 days in the pots with 170cm and 230cm G.W.T respectively. 5. In the soil moisture conditions with 30cm and 100cm G.W.T., evapotranspiration per plant per hour was much higher in the daytime that at night as well as in clear day than in rain-cloudy day owing to loner relative humidity , but in the water stress condition with 230 cm G.W.T., that was much lower. 6. Total evapotranspiration per plant during the whole growing period of 64 days was in order of 30cm > 100 cm > 170 cm > 230 cm G.W.T.. Total evapotranspiration for 34 days after fixation of G.W.T was much higher at night than in the daytime in case of water stress conditions i.e 170cm and 230cm G.W.T. but in normal condition of the pots with 30cm and 100cm G.W.T. that was much higher in the daytime than at night. 7. Leaf water potential of the 3rd and 6th leaf from top at 64 days after transplanting was in order of 100cm > 30 cm > 170cm > 230cm G.W.T. The reason why leaf water potential in the pot with 30cm was less than that in the pot with 100cm G.W.T. would be the abnormal turgidity with low density of cell substrates by the excess water absorption in the pot with 30cm G.W.T..

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파에서 정식초기 파총채벌레의 경제적피해수준 설정 (Economic Injury Level of Thrips tabaci (Thysanoptera: Thripidae) on Welsh onions (Allium fistulosum L. var) in the Early Transplanting Stage)

  • 강택준;조명래;김형환;전흥용;김동순
    • 한국응용곤충학회지
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    • 제50권4호
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    • pp.289-293
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    • 2011
  • 파정식 초기 파총채벌레의 경제적피해허용수준을 설정하기 위하여 온실에서 파총채벌레 접종기간에 따른 파의 생육, 피해 및 수량을 조사하였다. 파 정식초기에는 파총채벌레 접종기간(즉 가해정도)에 따른 수량감소율은 5일, 10일, 15일, 20일 접종기간에서 각각 17.0%, 53.3%, 38.4%, 80.8%로 증가하였다. 파총채벌레 발생정도와 파 수량감소 관계를 구명하기 위하여 파총채벌레 누적밀도일(Cumulative Insect Days, CID)과 수량 감수량(%) 간 회귀분석을 실시한 결과 비선형식인 logistic 모형에 잘 적용되었다. 이 식으로부터 경험적인 수익한계(Gain Threshold) 5%와 통상적 상품화율(93%)를 감안한 수량 감소율 12% 수준에서 파총채벌레 경제적피해허용수준은 30 CID로 추정되었다. 또한 요방제밀도는 경제적피해수준의 80%가 되는 24 CID로 추정되었다. 본 결과는 더 개선된 모형이 개발될 때까지 파 생육초기 파총채벌레 관리에 유용하게 활용될 수 있을 것으로 판단되었다. 또한 파 노지포장에서 생육후기(정식 후 120일 접종) 파총채벌레 피해가 파 수량에 미치는 영향을 검토한 결과, 파 생육후기에는 낮은 밀도에서 오히려 수량이 증가하였고, 그 후 밀도가 더 증가함에 따라 수량이 감소하는 등 전형적인 보상적 반응(over-compensatory response)을 보였다.

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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