RISS 학술연구정보서비스

검색
다국어 입력

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

변환된 중국어를 복사하여 사용하시면 됩니다.

예시)
  • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
  • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
닫기
    인기검색어 순위 펼치기

    RISS 인기검색어

      검색결과 좁혀 보기

      선택해제
      • 좁혀본 항목 보기순서

        • 원문유무
        • 음성지원유무
        • 원문제공처
          펼치기
        • 등재정보
          펼치기
        • 학술지명
          펼치기
        • 주제분류
          펼치기
        • 발행연도
          펼치기
        • 작성언어

      오늘 본 자료

      • 오늘 본 자료가 없습니다.
      더보기
      • 무료
      • 기관 내 무료
      • 유료
      • KCI등재

        Yield and Nitrogen Uptake under Reduced Nitrogen Fertilizer during Early Growth of Rice in the Rice-Barley Double Cropping System

        Jong Ho Seo,Hyeon Suk Cho,Chung Guk Kim,Jin Mo Lee,Seong Ho Choi 韓國作物學會 2004 Korean journal of crop science Vol.49 No.1

        N fertilizer required by rice could be reduced greatly in the rice-barley double cropping system than in the rice single cropping system. This study was conducted to investigate how much of the N fertilizer during the early stage of rice in the rice-barley double cropping system, could be saved compared to that in the rice single cropping system. This experiment was carried out at the paddy field of the National Crop Experiment Station in Suwon, Korea during three years from 1999 to 2001. Amounts of soil mineral nitrogen (SMN) and SPAD values of rice leaf during rice growing season in the rice-barley double cropping system were higher than those in the rice single cropping system under the same amount of N application during two years. Yield and N uptakes of rice at harvesting time were also higher in the rice-barley double cropping system than in the rice single cropping system during two years. Yield and N uptake of rice in the rice single cropping system were decreased when basal N fertilizer was omitted, but those reductions were not found by either omitting basal N fertilizer or omitting N fertilizer at tillering stage in the rice-barley double cropping system during 2000 and 2001. But yield and N uptakes of rice were decreased by 70 kg/10a and 2kgN/10a by the omission of both N application at basal and tillering stages in the rice-barley double cropping system in 2002. It was concluded that N fertilizer as much as tillering N fertilizer could be saved in the rice-barley double cropping system.

      • KCI등재

        Yield and Nitrogen Uptake under Reduced Nitrogen Fertilizer during Early Growth of Rice in the Rice-Barley Double Cropping System

        Seo, Jong-Ho,Cho, Hyeon-Suk,Kim, Chung-Guk,Lee, Jin-Mo,Park, Seong-Ho The Korean Society of Crop Science 2004 Korean journal of crop science Vol.49 No.1

        N fertilizer required by rice could be reduced greatly in the rice-barley double cropping system than in the rice single cropping system. This study was conducted to investigate how much of the N fertilizer during the early stage of rice in the rice-barley double cropping system, could be saved compared to that in the rice single cropping system. This experiment was carried out at the paddy field of the National Crop Experiment Station in Suwon, Korea during three years from 1999 to 2001. Amounts of soil mineral nitrogen (SMN) and SPAD values of rice leaf during rice growing season in the rice-barley double cropping system were higher than those in the rice single cropping system under the same amount of N application during two years. Yield and N uptakes of rice at harvesting time were also higher in the rice-barley double cropping system than in the rice single cropping system during two years. Yield and N uptake of rice in the rice single cropping system were decreased when basal N fertilizer was omitted, but those reductions were not found by either omitting basal N fertilizer or omitting N fertilizer at tillering stage in the rice-barley double cropping system during 2000 and 2001. But yield and N uptakes of rice were decreased by 70 kg/10a and 2kgN/10a by the omission of both N application at basal and tillering stages in the rice-barley double cropping system in 2002. It was concluded that N fertilizer as much as tillering N fertilizer could be saved in the rice-barley double cropping system.

      • (Original Articles) [Environment] Contrasting grain crop and grassland management effects on soil quality properties for a north-central Missouri claypan soil landscape

        JUNG, Won Kyo,KITCHEN, Newell R.,SUDDUTH, Kenneth A.,KREMER, Robert J. Society of the Science of Soil and Manure, Japan 2008 Soil science and plant nutrition Vol.54 No.6

        Crop management has the potential to either enhance or degrade soil quality, which in turn impacts on crop production and the environment. Few studies have investigated how crop management affects soil quality over different landscape positions. The objective of the present study was to investigate how 12 years of annual cropping system (ACS) and conservation reserve program (CRP) practices impacted soil quality indicators at summit, backslope and footslope landscape positions of a claypan soil in north-central Missouri. Claypan soils are particularly poorly drained because of a restrictive high-clay subsoil layer and are vulnerable to high water erosion. Three replicates of four management systems were established in 1991 in a randomized complete block design, with landscape position as a split-block treatment. The management systems were investigated: (1) annual cropping system 1 (ACS1) was a mulch tillage (typically ≥ 30% of soil covered with residue after tillage operations) corn (Zea mays L.)?soybean (Glycine max (L.) Merr.) rotation system, (2) annual cropping system 2 (ACS2) was a no-till corn?soybean rotation system, (3) annual cropping system 3 (ACS3) was a no-till corn?soybean?wheat (Triticum aestivum L.) rotation system, with a cover crop following wheat, (4) CRP was a continuous cool-season grass and legume system. In 2002, soil cores (at depths of 0?7.5, 7.5?15 and 15?30 cm) were collected by landscape position and analyzed for physical, chemical and biological soil quality properties. No interactions were observed between landscape and crop management. Relative to management effects, soil organic carbon (SOC) significantly increased with 12 years of CRP management, but not with the other management systems. At the 0?7.5-cm soil depth in the CRP system, SOC increased over this period by 33% and soil total nitrogen storage increased by 34%. Soil aggregate stability was approximately 40% higher in the no-till management systems (ACS2 and ACS3) than in the tilled system (ACS1). Soil aggregation under CRP management was more than double that of the three grain-cropping systems. Soil bulk density at the shallow sampling depth was greater in ACS3 than in ACS1 and ACS2. In contrast to studies on other soil types, these results indicate only minor changes to claypan soil quality after 12 years of no-till management. The landscape had minor effects on the soil properties. Of note, SOC was significantly lower in the 7.5?15-cm soil depth at the footslope compared with the other landscape positions. We attribute this to wetter and more humid conditions at this position and extended periods of high microbial activity and SOC mineralization. We conclude that claypan soils degraded by historical cropping practices will benefit most from the adoption of CRP or CRP-like management.

      • KCI등재

        한국 고랭지 배추 작부체계에 따른 토양, 배추 생산성 및 성분 특성 비교

        백계령(Gye Ryeong Bak),이정태(Jeong Tae Lee) 한국자원식물학회 2021 한국자원식물학회지 Vol.34 No.4

        김치의 재료로 우리나라에서 중요한 채소인 배추는 호냉성으로 여름에는 서늘한 고랭지역에서 주로 재배된다. 고랭지에서 배추 재배 시 주로 배추를 매년 이어짓기하거나 감자와 번갈아 가면서 재배하고 있는데, 본 연구에서는 두 가지 작부체계 하에서 토양 물리화학성, 배추 생산성 그리고 배추 무기성분의 차이를 분석하고 평가하였다. 결과적으로 토양 내 유기물, 유효인산, 칼륨(K+ )은 두 작부체계 모두 6년의 재배 이후 감소하였으며, 토양 pH는 배추 이어짓기 작부에서만 감소하였다. 표토의공극률 또한 두 작부체계에서 모두 감소하였으나 감자와 돌려짓기 작부에서는 심토의 공극률이 증가하였다. 돌려짓기 작부에서는 배추와 잎의 크기가 유의하게 높아 높은 수량을 얻었다. 식물체 분석 결과 6년의 재배 이후 두 작부체계 모두 배추의 총질소, Ca2+, Mg2+은 증가하고 총탄소와 인산함량은 감소하였는데, 총질소와 Mg2+은 이어짓기 작부에서 Ca2+은 돌려짓기 작부에서 감소하여 배추 재배 시 작부체계가 토양의 물리화학성과작물의 생산성에 영향을 줌을 시사하였다. Napa cabbage (Brassica campestris var. Pekinensis) is the main material of Kimchi so that important crop in South Korea. There are two typical napa cabbage cropping systems in the alpine area. One is cultivating napa cabbage annually while another is cultivating napa cabbage and potato biennially. In this research, we evaluated soil physiochemical properties, yield, and mineral contents of napa cabbage depending on two cropping systems. As a result, organic matter, available P2O5, exchangeable K+ was decreased after six-years of cultivation on both cropping systems. However, soil pH was only decreased in a continuous napa cabbage cropping system. Soil porosity is also decreased in both cropping systems on topsoil while is increased in rotation with potato on subsoil. The rotation system showed a significantly higher yield with a higher value of leaf and napa cabbage size than the continuous cropping system. Total nitrogen, Ca2+, and Ma2+ were increased and total carbon and phosphate decreased in both cropping systems after six-years. Especially, total nitrogen and Mg2+ were significantly higher in the continuous system while Ca2+ was higher in the rotation system. In conclusion, the cropping system influences soil physiochemical properties and plant production in an agricultural field.

      • KCI등재후보

        논과 밭에서 감자-옥수수 작부체계의 수량 및 소득 비교

        배환희,이진석,손범영,김정태,김상곤,백성범 한국국제농업개발학회 2016 韓國國際農業開發學會誌 Vol.28 No.4

        To identify the limited and adaptable sowing date and select the double cropping system, two different cropping systems such as potato (Sumi, Chubaek) - maize (Ilmichal, Yanganok) and maize (Ilmichal, Yanganok) - potato (Chubaek) were conducted in paddy and upland field condition. We observed and compared plant growth characteristics, yield potential, and income at two different cropping systems. Average yield of potato (first crop, Sumi) in paddy field was higher than upland field when planted at March 20. The plant height and stem length of the second cropping potato sown at August 20 were 30 cm higher than first cropping potato sown at March 20, which is reduced about 1,500 ~ 2000 kg/ 10a of the second cropping potato yield. Stem length and the first ear height of the first cropping corn Ilmichal sown at April 15 in paddy field were 5~10 cm higher than upland field and ear property was similar. Silking date of the second cropping corn Ilmichal sown at July 3 were about 19 day earlier than the first cropping corn Ilmichal sown at April 15, However, both stem length and the first ear height of the second cropping corn Ilmichal sown at July 3 were small compared to those of sown at April 15. Ear property of Yanganok sown at June 19 and July 3 were similar in both paddy and upland field. Fresh weight yield (aerial part, kg/10a) of Yanganok sown at June 19 were 500 ~ 700 kg/10a higher than those of sown at July 3. In view of income comparison between two different cropping systems, Chubaek-Ilmichal and Chubaek-Yanganok cropping systems were best combination, Ilmichal-Chubaek and sumi- Yanganok cropping systems were worst combination in upland field. Chubaek-Ilmichal and Chubaek- Yanganok cropping systems were best combination, Ilmichal-Chubaek cropping systems was worst combination in paddy field.

      • KCI등재

        남부지역 논의 사료작물-벼 이모작 작부체계에 적합한 벼 품종의 선발

        오서영,오성환,서종호,최지수,Oh, Seo Young,Oh, Seong Hwan,Seo, Jong Ho,Choi, Jisu 한국환경과학회 2022 한국환경과학회지 Vol.31 No.5

        To identify rice (Oryza sativa L.) cultivars suitable for Italian ryegrass (Lolium multiflorum Lam.)-rice double cropping systems, we investigated the yield and grain quality of four different midseason maturing rice cultivars ('Daebo', 'Haepum', 'Haiami', and 'Samdeog') and four midseason-to-late maturing rice cultivars ('Hyunpoom', 'Saeilmi', 'Saenuri', and 'Samkwang') in single rice cropping and Italian ryegrass-rice double cropping systems in paddy fields of Miryang, South Korea. We found that organic matter and available P<sub>2</sub>O<sub>5</sub> content slightly decreased, whereas Na content increased, in the soil where Italian ryegrass was cultivated during winter compared to that in the soil that remained fallow during winter. The pH, electrical conductivity, organic matter, and contents of K<sup>+</sup>, Ca<sup>2+</sup>, Mg<sup>2+</sup>, and Na<sup>+</sup> decreased, whereas the available P<sub>2</sub>O<sub>5</sub> content slightly increased, in the soil where rice was harvested in both single and double cropping systems. However, compared to the optimum soil conditions for rice cultivation, available P<sub>2</sub>O<sub>5</sub> and K<sup>+</sup> content were high and Mg<sup>2+</sup> content was low in both single and double cropping systems. At the heading stage, the culm length and leaf color slightly increased in most of the rice cultivars, whereas the panicle length and number slightly decreased, in the double cropped system. After harvesting, spikelet number and milled rice yield did not show a significant difference between single and double cropping systems. However, the ripened grain rate and weight per thousand grains increased slightly in the 'Saeilmi' and 'Samkwang' cultivars but remained either stable or slightly low in other cultivars in the double cropping system. The milled rice yield was high (> 500 kg/10a) in 'Daebo' and 'Haepum' among midseason maturing rice cultivars, and in 'Saeilmi' and 'Saenuri' among midseason-to-late maturing rice cultivars, in both single and double cropping systems. The head rice rate was high in midseason maturing rice cultivars in the double cropping systems, reaching > 70% in 'Haepum' and 'Haiami' cultivars, whereas it decreased in most midseason-to-late maturing rice cultivars (excluding 'Samkwang' cultivar), in double cropping systems. Particularly, it exceeded > 70% in the 'Saenuri' cultivar in both single and double cropping systems. The protein content in milled rice increased, whereas the amylose content either remained stable or slightly increased, in double cropping systems. The Toyo taste value decreased in all midseason-to-late maturing rice cultivars and slightly increased in the 'Daebo' and 'Haiami' cultivars among midseason maturing rice cultivars in double cropping systems. However, Toyo taste values in the 'Haepum', 'Haiami', and 'Saenuri' cultivars exceeding > 80% in both single and double cropping systems. Therefore, we recommend 'Haepum', 'Haiami', and 'Saenuri' cultivars as candidates for Italian ryegrass-rice double cropping systems due to high yield, head rice rate, and Toyo taste value.

      • KCI등재

        중부지역 평야지 논 이용 밭작물 2년 3모작 작부모형 개발

        심강보,조현민,신명나,한아름,채미진,김정주,이석기,전원태 한국작물학회 2022 한국작물학회지 Vol.67 No.4

        ABSTRACT This study aimed to develop a cropping system to use limited crop-land with optimum efficiency, whileconsidering management from farmers. To establish the cropping system involving a two-year rotation of three crops, three typesof cropping system were evaluated in Suwon (Seogcheon series) and Anseong (Geumcheon series) in the middle plain area usingsix crops from 2018 to 2019: maize-perilla-onion, potato-sesame-garlic, and maize-sesame-onion. The crop productivity andincome of the cropping systems involving food-, oilseed-, and horticultural crops were analyzed, and the optimal cropping systemwas reviewed. The total yield of each crop was as follows: maize 1,281 kg, potato 4,837 kg, perilla 125 kg, sesame 120 kg, onion6,503 kg, and garlic 1,027 kg per 10a. However, in terms of gross profit, the potato was more than 3.8 times more profitable thancorn, sesame was 1.8 times more profitable than perilla, and garlic was more than 2.8 times more profitable than onions. As aresult, in terms of net income, the potato-sesame-garlic cropping system produced the highest income per unit area. Sesameseedlings were planted after the potato harvest, thereby solving the problem of competition between the first and last crops. Overall, this study confirmed that the potato-sesame-garlic cropping system, a two-year rotation of three crops, contributed to theimprovement of upland crop productivity and farmers’ income and was an overall effective cropping system. 적 요우리나라의 쌀 과잉 문제를 해소하면서 경지이용률과 식량자급률을 향상시키기 위한 논 이용 작부체계는 주로 1년2모작으로, 특히 남부지역에 비해 낮은 경지이용률을 보이는 중부지역의 기상적 특성을 고려한 새로운 형태의 작부모형 개발이 요구된다. 농가 수익성과 노동력 효율적 배분 등경영적 측면을 고려하면서 제한된 토지를 최대한 효율적으로 이용하기 위해 식량작물, 유지작물, 원예작물을 연계한 2년 3모작 작부체계를 도입하여 생산량과 소득을 분석하고최적 작부체계를 검토하였다. 수량성 측면에서 10a 당 옥수수가 감자보다 3배 이상이었고, 들깨가 참깨보다 5 kg 가량높았고, 양파가 마늘보다 6.3배 이상 높았다. 그러나, 조수익측면에서 감자가 옥수수보다 3.8배 이상 높았고, 참깨가 들깨보다 1.8배 높았으며, 마늘이 양파보다 2.8배 이상 높은 것으로 산출되었다. 결과적으로, 순소득 측면에서 ‘옥수수-들깨-양파’ 또는 ‘옥수수-참깨-양파’ 보다 ‘감자-참깨-마늘’을연계한 작부체계가 동일 면적에서 상대적으로 높은 소득을보이는 것을 확인하였다. 1모작 작물인 감자와 2모작 작물인참깨의 재배기간이 겹치는 문제는 감자 수확기 동안 참깨를육묘하고, 감자 수확 후 참깨 유묘를 이식하는 방법을 통해1모작 작물과 2모작 작물 간의 재배기간 겹침 문제를 해소할 수 있었다. 따라서, 본 시험에서 확인한 ‘감자-참깨-마늘’연계 2년 3모작 작부모형이 중부 평야지 논 이용 밭작물의생산성 향상과 소득 작물을 연계한 농가소득 향상에 합리적인 작부체계로써 기여할 수 있는 것으로 생각된다.

      • KCI등재

        작부형태가 보리의 토양전염성 Bymovirus 발생과 매개균(Polymyxa graminis)의 밀도 변화에 미치는 영향

        박종철,노태환,김미정,이상복,박철수,강천식,이정준,김태수 한국식물병리학회 2010 식물병연구 Vol.16 No.2

        In this study, changes in virus disease occurrence and yield were monitored in conventional cropping system(rice-barley) and soybean-barley double cropping system in virus-prone area for 5 years. Also, changes in the density of Polymyxa graminis, a fungal vector, was investigated. In assay tests, mixed infection of Barley yellow mosaic virus (BaYMV) and Barley mild mosaic virus (BaMMV) was observed. Disease severity was in the range of 7~9 in conventional cropping system. In continuous cropping of soybean-barley and 3-yearfallow land, disease severity also was around 7. However, disease severity was reduced to medium level (5)when barley cultivation was paused for one or two years in soybean-barley cropping. When barley cultivation was paused for a year, the density of P. graminis, a fungal vector for BaYMV and BaMMV, reduced in barley root and soil. Similarly, barley growth was also enhanced by adopting fallow seasons. Compared with the fifth year of conventional cropping, the number of tillers per ㎡ was increased by 158 when barley cultivation was paused for an year in soybean-barley cropping. When soybean and barley were cultivated continuously or complete fallow period was extended to three years, plant height and the number of tillers of barley were decreased. Yield components of barley in soybean-barley cropping were superior to those in rice-barley cropping. Compared with the fifth year of conventional cropping and soybean-barley cropping, culm length of barley was 1.3~2.3cm higher and the number of tillers per m2 was 36~90 higher when barley cultivation was paused for one or two years. However, those in continuous cropping of soybean-barley and 3-year-fallow land were lower compared with conventional cropping. Similarly, yield was increased when barley cultivation was paused for one or two years in the third, forth, and fifth years when compared with conventional cropping. 보리바이러스 발생 상습 논에서 관행(벼+보리)과 콩+보리의 작부체계가 보리의 바이러스병 발생과 수량에 미치는 영향을 5개년간 조사하였고, 윤작과 바이러스 매개균(Polymyxa graminis)의 밀도 변화를 검정하였다. 보리 감염 바이러스 종류를 검정한 결과 Barley yellow mosaic virus(BaYMV)와 Barley mild mosaic virus(BaMMV)가 혼합감염 되어 나타났다. 발병정도는 관행에서는 4년차를 제외하고는 7~9로 조사되었다. 반면 콩+보리 연작이나3년 동안 휴경한 경우는 발병정도가 7정도로 관행과 비슷한 결과를 보였다. 콩+벼 작부체계 중에서 보리를 1년 또는 2년(1년/2년) 휴경하면서 콩을 재배한 경우 발병정도가 중 정도(5)로 감소하는 결과를 보였다. 작부형태에 따른 BaYMV와 BaMMV의 매개균인 P. graminis의 보리 뿌리와 토양 중 밀도 변화를 조사하였다. 보리를 1년 휴경한 처리에서 보리 뿌리와 토양 중 매개균의 밀도가 가장 낮아졌다. 콩을 재배하면서 보리를 1년 휴경한 처리에서 5년차에는 관행에 비해 초장은 비슷하였으나, 경수는 158개/㎡ 많아 생육이 좋은 결과를 보였다. 콩과 보리를 연작하거나 3년간 보리와 콩을 재배하지 않고 휴경한 경우에는 관행에 비해 초장이나 경수 등 생육이 저조한 결과를 보였다. 수확기에 간장 등 수량 구성요소가 관행에 비해 보리+콩의 윤작처리에서 좋은 경향을 보여 콩과의 윤작 처리가 수량에도 영향을 미친 것으로 나타났다. 간장은 보리를 1년/2년 휴경한 처리에서 5년차에 관행과 보리+콩 연작 처리에 비해 1.3~2.8cm 컸고, 수수도 36~90개/㎡ 많게 조사되었다. 그러나 콩+보리 연작이나 3년간 휴경한 처리에서는 관행에 비해 낮게 조사되었다. 수량성에서도 보리를 1년/2년 휴경한 처리에서는 3년차, 4년차,5년차에서 모두 관행에 비해 수량이 많아지는 결과를 보였다.

      • KCI등재

        풋땅콩 작부체계와 수확 후 잔존 유기물의 친환경적 효과

        金正泰,裵石福,朴香美,尹乙洙,金旼兌,崔震龍 韓國作物學會 2003 Korean journal of crop science Vol.48 No.6

        땅콩의 완전종실생산을 위해서는 150-180일의 생육기간이 소요되나 풋땅콩용으로 출하하면 총생육일수를 20-30일 정도 단축할 수 있을 뿐만 아니라 수확후 지상부 잔존유기물도 많이 남게 된다. 땅콩재배기간 단축에 따른 풋땅콩-무, 보리, 마늘과의 relay-cropping system에서 수확후 잔존 유기물의 토양환원 유무에 따른 각 작물들의 생육과 토양의 이화학성, 미생물상의 변화양상에 관한 기초자료를 얻어 남부지역 풋땅콩 안정생산기술을 확립하고자 수행한 시험결과를 요약하면 다음과 같다. 1. 작부체계별 시험후 토양경도는 풋땅콩 단작에서 가장 높았고, 토양 공 극율은 풋땅콩 단작 대비무, 보리, 마늘과 2모작 작부체계 처리에서 높 았으며 수확후 잔존유기물을 환원하였을 때 더욱 높아졌다. 2. 단작의 풋땅콩은 보리, 마늘과 2모작 작부체계상에서 재배된 풋땅콩에 비하여 도복 및 병 발생이 심하였다. 작부체계별 풋땅콩 수량은 단작에 비하여 풋땅콩-보리 및 풋땅콩-마늘 작부체계에서 증수하였으나, 유기 물 환원에 따른 수량 차이는 없었다. 3. 풋땅콩 후작의 마늘과 보리의 수량은 유기물 환원에 의하여 증대되었다. 4. C/N율이 높은 보리짚의 토양 환원에서 질소무기량이 증가하였고, 풋땅콩-보리와 풋땅콩-마늘의 작부체계에서 Pseudomonas spp.균 및 Trichoderma spp.균의 밀도가 높아져 풋땅콩의 친환경 작부체계로 추정되었다 A new demand for vegetable peanut (Arachis hypogaea L.) in Korea has increased farmers interest in growing vegetable peanut. Compared to grain peanut production, vegetable peanut production enables the growth period to be shortened by 20 or 30 days and farmers to adopt various cropping systems and to return crop residues in the soil. With the purpose of establishing desirable cropping systems for sustainable vegetable peanut production, three field experiments were conducted from 2000 to 2001 at Milyang, the southeastern part of Korea. Main focuses were given into the effect of cropping systems for vegetable peanut production on each crop's yield and soil sustainability. The cropping systems investigated were single vegetable peanut, peanut-radish-green barley, peanut-barley, and peanut-garlic cropping system, with or without crop residue incorporation in the soil. Among the cropping systems investigated for sustainable vegetable peanut production, peanut-only and peanut-radish-green barley cropping systems showed vulnerable to diseases and lodging while peanut-barley and peanut-garlic cropping systems showed higher stability in response to diseases and lodging, consequently leading to higher yield potential of vegetable peanut production. In the peanut-barley cropping system, both barley and peanut residues returned to the soil played an important role in soil improvement as well as in significantly increased grain yield of peanut and barley. A particular notice was taken to the pronounced increase in Trichoderma population and the amount of nitrogen mineralization induced by the returned barley residue. Soil structure, compactness, pH, and fertility were positively influenced by the returned crop residues, which apparently increased sustainability in vegetable peanut production systems.

      • KCI등재

        작부체계에 따른 잡초관리 연구 동향과 방향

        이지현,신명나,구본일,심강보,전원태 한국작물학회 2021 Korean journal of crop science Vol.66 No.4

        The present study was conducted to propose future research directions for weed management by examining the current trends of research on weed occurrence according to cropping systems. The cropping systems are developed for the efficient use of arable land, and the weed flora changes according to the management practices of a given cropping system. In particular, weed occurrence can be reduced by altering the soil environment. In addition, cultivation methods, such as tillage, affect the weed seed bank in the soil, thus altering the pattern of weed occurrence. Here, we propose three weed management practices according to the cropping system. First, it is necessary to develop a model that can classify weed species by analyzing young seedlings and can predict the flora in the field. Second, it is important to manage the cropping system history and establish a database of agricultural information, which can be linked to meteorological and geographic data. Third, it is critical to estimate the weed occurrence and soil seed bank dynamics, based on which a cropping system platform and digitalization technology can be developed. In the future, the prediction of weed occurrence and control according to the cropping system will contribute to sustainable agriculture by reducing the use of herbicides and solving the problems of resistant weeds. 본 연구는 작부체계에 따른 잡초 발생의 연구 동향을 고찰함으로써 향후 잡초관리의 연구 방향을 제안하고자 수행하였다. 작부체계는 경지를 효율적으로 이용하기 위해 발달했으며, 작부체계에 따라 잡초 발생도 상이하였다. 특히토양 환경을 변화시킴으로써 잡초 발생을 경감시킬 수 있다. 또한 경운 등 경종적 방법은 종자은행의 영향으로 잡초발생 양상이 달라진다. 따라서 작부체계 시 세 가지 잡초관리 기술의 방향을 제안하고자 한다. 첫째, 초기 발생한 잡초를 영상 분석하여 초종을 구분하고, 본답 군락을 예측할수 있는 모델 개발이 필요하다. 둘째, 작부체계 이력을 관리하고 영농정보의 데이터베이스를 구축하여 이를 기상·지리 정보 등의 정보들과 연계하는 것이 필요하다. 셋째, 잡초 발생량과 토양 종자은행 역학관계를 추정하고 작부체계 플랫폼과 디지털화 기술 개발이 필요하다. 향후 다양한 작부체계에서 잡초 발생량 예측 및 방제는 농약 사용량을 줄이고, 저항성 잡초 문제 해결의 가능성 등 지속 가능한 농업에 기여할 것으로 생각된다.

      연관 검색어 추천

      이 검색어로 많이 본 자료

      활용도 높은 자료

      해외이동버튼