• 제목/요약/키워드: Disease and Insect Pest

검색결과 77건 처리시간 0.029초

기후변화가 벼 병해충 피해면적 발생에 미치는 영향분석 (An Analysis of Impacts of Climate Change on Rice Damage Occurrence by Insect Pests and Disease)

  • 정학균;김창길;문동현
    • 한국환경농학회지
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    • 제33권1호
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    • pp.52-56
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    • 2014
  • BACKGROUND: It is known that impacts of climate change on damage occurrence by insect pests and diseases are increasing. The negative effects of climate change on production will threaten our food security. It is needed that on the basis of analysis of the impacts, proper strategies in response to climate change are developed. METHODS AND RESULTS: The objective of this paper is to estimate impacts of climate change on rice damage occurrence by insect pests and diseases, using the panal model which analyzes both cross-section data and time series data. The result of an analysis on impacts of climate change on rice damage occurrence by pest insect and disease showed that the damage occurrence by Rice leaf roller and Rice water weevil increased if temperature increased, and damage occurrence by Stripe, Sheath blight, and Leaf Blast increased if precipitation(or amount of sunshine) increased(or decreased). CONCLUSION: Adaptation strategies, supplying weather forecasting information by region, developing systematical strategies for prevention of damage occurrence by pest insect and disease, analyzing the factors of damage occurrence by unexpected pest insect and disease, enforcing international cooperation for prevention of damage occurrence are needed to minimize the impacts of damage occurrence on rice production.

Tomato Yellow Leaf Curl China Virus Impairs Photosynthesis in the Infected Nicotiana benthamiana with βC1 as an Aggravating Factor

  • Farooq, Tahir;Liu, Dandan;Zhou, Xueping;Yang, Qiuying
    • The Plant Pathology Journal
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    • 제35권5호
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    • pp.521-529
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    • 2019
  • Tomato yellow leaf curl China virus is a species of the widespread geminiviruses. The infection of Nicotiana benthamiana by Tomato yellow leaf curl China virus (TYLCCNV) causes a reduction in photosynthetic activity, which is part of the viral symptoms. ${\beta}C1$ is a viral factor encoded by the betasatellite DNA ($DNA{\beta}$) accompanying TYLCCNV. It is a major viral pathogenicity factor of TYLCCNV. To elucidate the effect of ${\beta}C1$ on plants' photosynthesis, we measured the relative chlorophyll (Chl) content and Chl fluorescence in TY-LCCNV-infected and ${\beta}C1$ transgenic N. benthamiana plants. The results showed that Chl content is reduced in TYLCCNV A-infected, TYLCCNV A plus $DNA{\beta}$ (TYLCCNV A + ${\beta}$)-infected and ${\beta}C1$ transgenic plants. Further, changes in Chl fluorescence parameters, such as electron transport rate, $F_v/F_m$, NPQ, and qP, revealed that photosynthetic efficiency is compromised in the aforementioned N. benthamiana plants. The presense of ${\beta}C1$ aggravated the decrease of Chl content and photosynthetic efficiency during viral infection. Additionally, the real-time quantitative PCR analysis of oxygen evolving complex genes in photosystem II, such as PsbO, PsbP, PsbQ, and PsbR, showed a significant reduction of the relative expression of these genes at the late stage of TYLCCNV A + ${\beta}$ infection and at the vegetative stage of ${\beta}C1$ transgenic N. benthamiana plants. In summary, this study revealed the pathogenicity of TYLCCNV in photosynthesis and disclosed the effect of ${\beta}C1$ in exacerbating the damage in photosynthesis efficiency by TYLCCNV infection.

무농약 유기재배 사과원의 병해충 발생 및 관리 실태 (Current status on the occurrence and management of disease, insect and mite pests in the non-chemical or organic apple orchards)

  • 최경희;이동혁;송양익;남종철;이순원
    • 한국유기농업학회:학술대회논문집
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    • 한국유기농학회 2009년도 하반기 학술대회
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    • pp.45-56
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    • 2009
  • 2005년부터 2008년에 걸쳐 무농약 유기 농산물 인증을 받은 사과원의 변동상황을 조사하였고, 무농약 유기재배 사과원에서 병해충 발생과 관리 실태 파악을 목적으로, 2006년에는 17명을, 2009년에는 13명을 대상으로 심각한 피해를 야기하는 문제병해충과 병해충 관리를 위해서 사용하는 친환경 농자재에 대해서 설문조사를 실시하였다. 또한, 2007년에는 무농약 유기 농산물 인증을 받은 음성 무주 장성 영주 의성 청송 칠곡 지역의 10개 사과원을 대상으로, 2009년에는 충주 예산 영덕 지역의 3개 사과원을 추가한 13개 사과원을 대상으로 피해를 많이 주고 있는 병해충의 발생상황과 병해충 관리를 위해서 사용하는 친환경 농자재에 대해서 방문조사를 실시하여 다음과 같은 결과를 얻었다. 2005~2008년에 걸쳐 사과에 무농약농산물 인증을 받은 농가는 각각 9, 24, 42, 48농가였으며, 유기농산물(전환기유기농산물 포함) 인증을 받은 농가는 각각 5, 4, 11, 30농가로서, 2005년 대비 2008년에 무농약농산물은 5.3배, 유기농산물은 6배가 증가하였다. 무농약 유기 농산물 인증 사과원에서 문제병해는 갈색무늬병, 탄저병, 겹무늬썩음병, 그을음(점무늬)병이었는데, 석회유황합제와 석회보르도액을 사용하는 사과원의 경우에 2006년과 2007년에 비하여 2009년에는 갈색무늬병, 탄저병, 겹무늬썩음병의 피해가 적었고, 그을음(점무늬)병은 심하지는 않았지만 문제가 되었다. 문제해충은 2006년과 2007년에는 사과혹진딧물, 복숭아순나방, 복숭아심식나방이었으나, 2009년은 교미교란제, 난황유, 기계유유제를 사용하는 사과원의 경우에 이들 해충의 피해는 크게 적어진 반면에, 일부 사과원에서 사과유리나방과 사과면충이 새롭게 문제 되었다.

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산초나무 잎녹병균의 중간기주 및 형태학적 특징 (Morphological Features of Coleosporium xanthoxyli and Its Alternate Host in Korea)

  • 이승규;김경희;이총규;김동원;황진현
    • 식물병연구
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    • 제10권4호
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    • pp.279-284
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    • 2004
  • 경상남도 진주와 하동지역의 산초나무 재배단지에서 잎녹병에 의한 피해가 매년 지속적으로 발생하고 있다. 산초나무 잎에 형성된 여름포자세대의 녹포자세대 기주를 밝히고 녹병균을 동정하기 위하여 본 병해의 발생지 주변 곰솔에서 채집된 녹포자를 산초나무에 인공접종하였다. 그 결과 산초나무에서 성공적으로 여름포자가 형성되어 이 녹병균은 녹포자세대를 곰솔에서, 여름포자 및 겨울포자세대를 산초나무에서 형성하는 장세대형 생활사를 갖는 C. xanthoxyli로 동정하였다. 대부분의 형태적 형질은 기존 기록과 일치하였으나 녹포자와 여름포자의 표면돌기 수에는 차이가 있었다. 곰솔과 산초나무에서 채집된 C. xanthoxyli의 건조표본을 이용하여 녹포자세대 및 여름포자세대의 형태학적 특징을 기술하였다. 경남 진주와 하동지역에서 조사된 산초나무에서의 최초 병발생시기는 6월 하순${\sim}$7월 초순이었으며 8월 중의 이병엽율은 17.8%${\sim}$58.7%이었다.

서해안 곰솔림에서의 리지나뿌리썩음병 발생 및 확산 유형 (Occurrence of Rhizina Root Rot in a Black Pine (Pinus thunbergii) Forest Located at the Western Coastal Area in Korea and Its Spreading Patterns)

  • 이승규;김경희;김연태;박주용;이상현
    • 식물병연구
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    • 제11권2호
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    • pp.208-212
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    • 2005
  • 2002년 6월에 서해안의 태안군 남면 달산3리에 위치한 약 20ha의 곰솔림내 27개소에서 각 개소당 평균 10나무씩 무리를 지어 합계 294그루가 고사한 상태로 발견되었다. 2002년 6월부터 2004년 8월까지 4개 고정조사구에서 죽거나 죽어가고 있는 나무의 상태와 피해지에서 발생하고 있는 파상땅해파리버섯의 위치를 조사한 결과, 1) 피해목이 최초 고사목 발생장소로부터 불규칙 동심원을 이루면서 확산양상을 보이고 있으며, 2) 파상땅해파리버섯이 죽은 나무의 주변에서 집중적으로 발생하고, 3) 나무를 고사시킬 수 있는 해충이나 병원체가 발견되지 않아이 지역에서의 나무집단고사는 리지나뿌리썩음병원균(Rhizina undulate)에 의한 것으로 판단되었다. 피해지토양의 이화학적 특성에 대한 조사결과, 피해지 토양의 pH는 $4.6\~5.79$이었으며, 토양양료수준도 대단히 낮은 상태이었다. 태안 피해지에서는 리지나뿌리썩음병 발생의 중요한 유인인자로 알려져 있는 모닥불 등 '불'을 사용한 흔적이 발견되지 않았으므로 본 병해 발생과 관련된 다양한 환경적 유인에 대한 정밀검토가 필요할 것으로 사료된다.

경기도 벼 재배 농가를 위한 농업기상 및 병해충예찰 정보시스템 (Information System for Agricultural Weather and Disease and Insect Pest Management for Rice Growers in Gyeonggi-do, Korea)

  • 홍순성;강위수;조성인;김진영;박경렬;한용규;박은우
    • 한국농림기상학회:학술대회논문집
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    • 한국농림기상학회 2003년도 춘계 학술발표논문집
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    • pp.87-87
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    • 2003
  • The Gyeonggi-do Agricultural Research and Extension Services has developed a web-site (http://www.epilove.com) in collaboration with EPINET to provide information on agricultural weather and rice disease and insect pest management in Gyeonggi-do. Weather information includes near real-time weather data monitored by automated weather stations (AWS) installed at rice paddy fields of 11 Agricultural Technology Centers (ATC) in Gyeonggi-do, and weekly weather forecast by Korea Meteorological Administration (KMA).(omitted)

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Distribution patterns of Monochamus alternatus and M. saltuarius (Coleoptera: Cerambycidae) in Korea

  • Kwon, Tae-Sung;Lim, Jong-Hwan;Sim, Sang-Jun;Kwon, Young-Dae;Son, Sung-Kil;Lee, Kooi-Yong;Kim, Yeon-Tae;Park, Ji-Won;Shin, Chang-Hoon;Ryu, Seok-Bong;Lee, Chong-Kyu;Shin, Sang-Chul;Chung, Yeong-Jin;Park, Young-Seuk
    • 한국산림과학회지
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    • 제95권5호
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    • pp.543-550
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    • 2006
  • Distribution patterns of two pine sawyer species (Monochamus alternatus which is the main vector insect and M. saltuarius which is the potential insect vector of the pine wood nematode) were investigated in Korea. The data were collected at 89 study sites which were chosen to cover the whole region of South Korea. The selected pine trees were killed in early April and left for I year in the pine stands to be egg-laid by the pine sawyers. Emergence of the beetles from the dead pine trees was checked from early April to late July. M. saltuarius was the most abundant in the mid to northern areas of South Korea, whereas M. alternatus in Jeju-do, southernmost island of Korea. Considering temperature distribution patterns in areas where the two species occur, their thermal distribution boundary may be formed around $13.2^{\circ}C$ of annual mean temperature. The hypothesized distribution map of the two Monochamus species under the invasion of pine wilt disease is suggested on the base of thermal distribution of Korean peninsula.

기상환경과 병해충 발생 및 그 대책 (Meteorological Condition and Pest Management)

  • 현재선
    • 한국작물학회지
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    • 제27권4호
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    • pp.361-370
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    • 1982
  • The effects of climatic factors on organisms lire variable and complex, and it, however, can be interpreted in terms of those on the distribution and those on the population densities. The distribution of an organism may largely be determined by the temperatures, except some temporal organisms which are depended on the air mass movements. Population density of an organism is determined by various climatic factors, such as previous winter temperature, temperature of growing season and rainfall. The start of growing season of the rice plants has been shifted to earlier since last decade in Korea. This may mean that the overall climatic condition during the growing season might be considerably different from those in past years, and such a difference in climatic conditions might have close relation with the recent status of the diseases and insect pests through direct effects on the physiology and population dynamics of the organisms, as well as through on the biotic associations of the pest organisms. The white back planthopper and brown planthopper have become the key insect pests in Korea in recent years. They are migratory and have high reproductive pontentials and more generations than average residential insects. The synchronization of the migrants and physiological condition of the rice plants seems to be the important factors in relation to the recent outbreaks of these insects; the high reproductive rate can be obtained with the growth stage of rice being 30-50 days after transplanting. The modication of the microclimate associated with high plant density and some other introduced new cultural techniques also have some relation with the outbreak. The key diseases of the rice are the blast disease, sheath blight and the bacterial leaf blight. For the rice blast, the seedling blast and leaf blast during the early growing season and the neck blast, have become more serious, the former may be related to hotbed nursery and the later may be related to the high humidity in early August, and synchronization of the heading time which has been shifted to early part from middle or late part of August. In general, for the rice diseases, the development of the new races have been the most serious which are largely resulted from the introduction of the new varieties, but it also seems to be related with the prolonged periods of the favorable condition associated with the shifted growing seasons. In general, the diseases and insect pest problems have become much more variable and complex, and control measures should be based on the thorough knowledge of the ecology of the pest organisms, that is, effects of various environmental factors on the disease cycle; spore release, spore deposition, infection, colonization and sporulation of the disease organisms, and those on the development, reproductive potentials, dispersal, age specific responses of the insects. The well organized real-time pest management systems, such as alfalfa weevil management system developed at the Purdue University in U.S., is the prime importance for the implementation of the pest management principles.

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Characteristics of the Infection of Tilletia laevis Kuhn (syn. Tilletia foetida (Wallr.) Liro.) in Compatible Wheat

  • Ren, Zhaoyu;Zhang, Wei;Wang, Mengke;Gao, Haifeng;Shen, Huimin;Wang, Chunping;Liu, Taiguo;Chen, Wanquan;Gao, Li
    • The Plant Pathology Journal
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    • 제37권5호
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    • pp.437-445
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    • 2021
  • Tilletia laevis Kuhn (syn. Tilletia foetida (Wallr.) Liro.) causes wheat common bunt, which is one of the most devastating plant diseases in the world. Common bunt can result in a reduction of 80% or even a total loss of wheat production. In this study, the characteristics of T. laevis infection in compatible wheat plants were defined based on the combination of scanning electron microscopy, transmission electron microscopy and laser scanning confocal microscopy. We found T. laevis could lead to the abnormal growth of wheat tissues and cells, such as leakage of chloroplasts, deformities, disordered arrangements of mesophyll cells and also thickening of the cell wall of mesophyll cells in leaf tissue. What's more, T. laevis teliospores were found in the roots, stems, flag leaves, and glumes of infected wheat plants instead of just in the ovaries, as previously reported. The abnormal characteristics caused by T. laevis may be used for early detection of this pathogen instead of molecular markers in addition to providing theoretical insights into T. laevis and wheat interactions for breeding of common bunt resistance.

Internet-based Information System for Agricultural Weather and Disease and Insect fast management for rice growers in Gyeonggi-do, Korea

  • S.D. Hong;W.S. Kang;S.I. Cho;Kim, J.Y.;Park, K.Y;Y.K. Han;Park, E.W.
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.108.2-109
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    • 2003
  • The Gyeonggi-do Agricultural Research and Extension Services has developed a web-site (www.epilove.com) in collaboration with EPINET to provide information on agricultural weather and rice disease and insect pest management in Gyeonggi-do. Weather information includes near real-time weather data monitored by automated weather stations (AWS) installed at rice paddy fields of 11 Agricultural Technology Centers (ATC) in Gyeonggi-do, and weekly weather forecast by Korea Meteorological Administration (KMA). Map images of hourly air temperature and rainfall are also generated at 309m x 309m resolution using hourly data obtained from AWS installed at 191 locations by KMA. Based on near real-time weather data from 11 ATC, hourly infection risks of rice blast, sheath blight, and bacterial grain rot for individual districts are estimated by disease forecasting models, BLAST, SHBLIGHT, and GRAINROT. Users can diagnose various diseases and insects of rice and find their information in detail by browsing thumbnail images of them. A database on agrochemicals is linked to the system for disease and insect diagnosis to help users search for appropriate agrochemicals to control diseases and insect pests.

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