• 제목/요약/키워드: Inoculum dispersal

검색결과 9건 처리시간 0.024초

Development of Leaf Spot (Myrothecium roridum) and Dispersal of Inoculum in Mulberry (Morus spp.)

  • Kumar, P.M.Pratheesh;Pal, S.C.;Qadri, S.M.H.;Gangwar, S.K.;Saratchandra, B.
    • International Journal of Industrial Entomology and Biomaterials
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    • 제6권2호
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    • pp.163-169
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    • 2003
  • Studies were conducted on the effect of pruning time, host age, conidial dispersal and weather parameters on the incidence and severity of mulberry leaf spot (Myrothecium roridum). The disease severity (%) increased with increase in shoot age irrespective of pruning date. Maximum disease severity was observed in plants pruned during first week of April and minimum disease severity in plants pruned during first week of March. Significant (P < 0.01) influence of date of pruning, shoot age and their interaction was observed on severity of the disease. Apparent infection rate (r) was significantly higher during the plant growth period from day 48 to day 55. Average apparent yale was higher in plants pruned during first week of April and least in plants pruned during first week of July. The disease infection was negatively correlated to distance from the inoculum source. Leaf spot severity (%) was influenced by weather parameters. Multiple regression analysis revealed contribution of various combinations of weather parameters on the disease severity. Linear prediction model $(Y = -81.803+1.176x_2+0.765x_3) with significant $R^2$ was developed for prediction of the disease under natural epiphytotic condition.

Altering Conidial Dispersal of Alternaria solani by Modifying Microclimate in Tomato Crop Canopy

  • Jambhulkar, Prashant Prakash;Jambhulkar, Nitiprasad;Meghwal, Madanlal;Ameta, Gauri Shankar
    • The Plant Pathology Journal
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    • 제32권6호
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    • pp.508-518
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    • 2016
  • Early blight of tomato caused by Alternaria solani, is responsible for severe yield losses in tomato. The conidia survive on soil surface and old dry lower leaves of the plant and spread when suitable climatic conditions are available. Macroclimatic study reveals that highest inoculum concentration of Alternaria spores appeared in May 2012 to 2013 and lowest concentration during January 2012 to 2013. High night temperature positively correlated and significantly (P < 0.01) involved in conidial spore dispersal and low relative humidity (RH) displayed significant (P < 0.05) but negative correlation with conidial dispersal. The objective of the study was to modify microclimatic conditions of tomato crop canopy which may hamper conidial dispersal and reduce disease severity. We evaluated effect of marigold intercropping and plastic mulching singly and in consortia on A. solani conidial density, tomato leaf damage and microclimatic parameters as compar to tomato alone (T). Tomato-marigold intercropping-plastic mulching treatment (T + M + P) showed 35-39% reduction in disease intensity as compared to tomato alone. When intercropped with tomato, marigold served as barrier to conidial movement and plastic mulching prevented evapotranspiration and reduced the canopy RH that resulted in less germination of A. solani spores. Marigold intercropping and plastic mulching served successfully as physical barrier against conidial dissemination to diminish significantly the tomato foliar damage produced by A. solani.

Dispersal of Xanthomonas axonopodis pv. citri, the Causal Bacterium of Citrus Canker, on Unshiu Orange.

  • Myung, Inn-Shik;Nam, Ki-Woong;Kwon, Hyeog-Mo
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.121.1-121
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    • 2003
  • Dispersal of Xanthomonas axonopodis pv. citri, causing citrus bacterial canker disease on Unshiu orange was investigated at previously infested plots at Seogwipo in Jeju island of Korea. The bacterial pathogen overwintered in lesions started to multiply at tate May, and disease firstly observed one month after detection of phage from lesions. The disease gradually increased, however, it dispersed non-directionally to nearby plants from inoculum sources. Diseased plants were aggregated to form a cluster throughout the experiment. Population dynamics of phage on symtomless leaf surface and the disease severity were compared in the nursery, Increase of phage population on symptomless leaf surface preceded one month to that of the disease severity Population of phage increased constantly from late July to October, however, the disease severity decreased from late August to late October. It was assumed that the decrease of disease severity might be due to disease-induced defoliation.

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사과 겹무늬썩음병에 걸린 가지로부터 분산되는 병포자의 정량적 조사법 개발 (Development of Method for Quantitative Analysis of Pycnidiospore Dispersal from the Apple Tree Stems Infected by White Rot)

  • 양희정;최창희;우현;김대희;엄재열
    • 한국식물병리학회지
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    • 제14권4호
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    • pp.325-330
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    • 1998
  • On the basis of the fact that the pycnidiospore of Botryosphaeria dothidea, the causal fungus of apple white rot is a typical water borne spore, a method for quantitative analysis of pycnidiospore dispersal from the warts produced on the diseased apple tree stem was developed. The warts on which cracks developed either on or around them were cut off at the base, and shaked in the water for 4hours at 2$0^{\circ}C$, in which condition the maximum number of spores were released. The volume of shaking solution was calculated as 1 ml per one wart. At the end of shaking, Trio, a household detergent was added to the shaking solution to the concentration of 0.1%, and shaked for additional 10 minutes at 35$^{\circ}C$ to take off the spores attached on the glass ware. One milliliter of the spore suspension thus prepared were passed through transparent membrane filter (pore size : 3.0 ${\mu}{\textrm}{m}$), and the spores attached on the filter were counted under a microscope ($\times$200) after staining them with lactophenol supplemented with aniline blue. The results thus obtained were statistically consistent when at least 30 warts were used simultaneously in single shaking. This method can be applicable in the elucidation of ecology of sporulation and spore dispersal, and also in the screening of the sporulation inhibitor which can be used in the control of the disease by reducing the inoculum density.

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수도 도열병의 역학적 연구 II. 이삭 도열병 전염원으로서의 엽위별 병반분포의 의의 (Epidemiological Studies of Blast Disease of Rice Plant II. Significance of Differential Distribution of Leaf Lesions at Different Location of Each Tiller as an Inoculum Source of Panicle Blast)

  • 박종성;류승헌;김공기
    • 한국응용곤충학회지
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    • 제22권4호
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    • pp.277-282
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    • 1983
  • 엽위별로 형성된 병반수나 병반면적율은 통일계품종에 있어서는 n-1에서 n-3까지 그리고 일본형수수품종에 있어서는 n-2에서 많았으나 통일계품종중에서도 고도로 감수성인 노풍에 있어서는 n-1(지엽)에 가장 많이 분포되어 있었다. 병반의 분포도와 시비수준과의 관계는 시비수준이 높아질수록 뚜렸하게 나타나는 경향을 보여주고 있다. 엽위별로 보면 수잉기 이후 이삭도열병의 전염원으로는 n-1에서 n-5까지의 잎위의 병반이 관여하나 주로 n-1엽과 n-2엽의 관여도가 큰 것으로 고찰되었다. 수잉기 이후의 저온역에서의 변온$(24^{\circ}C\~16^{\circ}C)$은 잎위의 병반에서의 포자 형성량을 증가시키며 포자의 형성, 이탈, 비산에 아무런 지장을 주지않고 9월말까지도 다량의 전염원을 수에 공급하고 있었다.

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cDNA Microarray Analysis of Phytophthora Resistance Related Genes Isolated from Pepper

  • Kim, Hyounjoung;Lee, Mi-Yeon;Kim, Ukjo;Lee, Sanghyeob;Park, Soon-Ho;Her, Nam-Han;Lee, Jing-Ha;Yang, Seung-Gyun;Harn, Chee-Hark
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.67.1-67
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    • 2003
  • Phytophthora blight is a devastating disease of pepper and occurs almost anywhere peppers are grown. Phytophthora blight is caused by Phytophthora capsici and this pathogen can infect every part of the plant by moving inoculum in the soil, by infecting water on surface, by aerial dispersal to sporulating lesions. Management of Phytophthora blight currently relies on cultural practices, crop rotation, and use of selective fungicides. Since these treatments are a short-term management, a classical breeding for development of resistant pepper against the Phytophthora is an alternative. So far some of the resistant cultivars have been on the market, but those are limited regionally and commercially. Therefore, ultimately an elite line resistant against this disease should be developed, if possible, by biotechnology. We have set out a series of work recently in order to develop Phytophthora resistant pepper cultivar. For the first time, the cDNA microarray analysis was peformed using an EST chip that holds around 5000 pepper EST clones to identify genes responsive to Phytophthora infection. Total RNA samples were obtained from Capsicum annuum PI201234 after inoculating P. capsici to roots and soil and exposed to the chip. .Around 900 EST clones were up-regulated and down-regulated depending on the two RNA sample tissues, leaf and root. From those, we have found 55 transcription factors that may be involved in gene regulation of the disease defense mechanism. Further and in detail information will be provided in the poster.

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사과 경엽 살포용 살균제의 겹무늬썩음병균에 대한 포자형성 억제작용과 그것이 병 방제에 미치는 영향 (Suppressive Activities of Foliar Spray Fungicides for Apple Against Sporulation of Botryosphaeria dothidea, the Causal Fungus of White Rot, and Their Role in Disease Control)

  • 이동혁;조래홍;신정섭;엄재열
    • 식물병연구
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    • 제12권3호
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    • pp.240-248
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    • 2006
  • Control of white rot which is one of the most serious apple diseases in Korea has mainly relied on periodical spray of protective fungicides. As the main inoculum source of the disease is pycnidiospores produced in the warts formed on affected stems of apple tree, it can be conceivable that inhibition of spore production might be an effective means for controlling the disease. Inhibitory efficacy of eight selected fungicides against sporulation of the fungus was assessed by counting the number of spores produced at detached warts treated with the fungicides of recommended dilution. They showed diverse effect on sporulation. Carbendazim and azoxystrobin suppressed sporulation almost completely, the former irreversively. Thiram and folpet promoted sporulation as producing much more number of spores than untreated control. Others showed almost no effect on sporulation. Effects of suppression and promotion in the sporulation shown by the fungicides on the control of white rot were examined by incidences of disease and infection at the plots adopted the spray programs of which the fungicide at late May was substituted by carbendazim, azoxystrobin, folpet and thiram, respectively. Disease incidence and infection frequency at the plots sprayed former two chemicals which suppressed sporulation were much lower than those of the plots adopted latter two chemicals and untreated plot at which the fungicide spray was skipped at that time. These facts were reconfirmed in the experiments conducted with carbendazim and thiram, in which 100 fruits were bagged just prior to each spray from late May to late July for elucidating the effect of the two fungicides on the action of subsequent ones. Disease incidence and infection frequency on the fruit bagged just prior to each spray were gradually increased as the seasons going on. The increase rate at the carbendazim plot was much lower than that of thiram. Especially, the fruit infected till late July at the carbendazim plot were almost completely cured by the three fungicides, iminoctadine-triacetate, tebuconazole and samzinwang, a combined formular of iminoctadine-triacetate and difenoconazole, sprayed at late July and hence. In thiram plot, infected fruit were also cured by the 3 fungicides but not remarkable. From these results, it can be concluded that control efficiency of white rot can be greatly enhanced by selecting the fungicide capable of suppress the sporulation of white rot fungus at the season when the mass dispersal of spores is not initiated.

한국에 자생하는 붉은자루동충하초(Cordyceps pruinosa)의 분포와 균사생장에 적합한 조건 (Distribution and Favorable Conditions for Mycelial Growth of Cordyceps pruinosa in Korea)

  • 신재철;부샨쓰레스타;이원호;박영진;김수영;정광열;김호경;김태웅;성재모
    • 한국균학회지
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    • 제32권2호
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    • pp.79-88
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    • 2004
  • 붉은자루동충하초는 땅속의 죽은 풀쐐기 원형 번데기를 기주로 하여 1개 또는 $3{\sim}4$개의 곤봉형 자좌를 형성한다. 붉은색을 띠는 자좌는 머리와 자루의 경계가 명확하며 머리는 곤봉형이다. 크기는 $1{\sim}3\;cm$의 크기로 반묻힌형의 자낭각이 조밀하게 분포하며. 자낭각의 크기는 $360{\sim}400{\times}180{\sim}200\;{\mu}m$이다. 자낭은 $150\;{\mu}m$의 크기를 가지며, 둘레는 $2.8{\sim}3.5\;{\mu}m$이다. 중앙에 실모양의 끈으로 연결되어 있는 양끝에 자낭포자를 형성하며, 크기는 $124{\sim}141\;{\mu}m$의 크기를 가진다. 자낭포자는 2차 포자로 분열하지 않으며, 자낭포자의 각 세포들이 직접 발아하여 균사로 된다. 불완전세대는 Mariannaea속으로 분생자경의 4개${\sim}$5개의 파일라이드를 가졌고 크기가 $15{\sim}24{\times}2{\sim}3\;{\mu}m$이며 분생포자가 둥근 방추형이며 크기가 $4{\sim}6{\times}1.8{\sim}2.4{\mu}m$인 것으로 보아 Mariannaea elegans Samson으로 동정하였다. 균사의 생장은 YMA와 SDAY에 pH 7로 맞추고 $25^{\circ}C$로 배양하면 균사의 생장도 좋았고 균총의 밀도도 높았다. 탄소원은 Dextrin에서 가장 좋은 균사 생장과 균체량이 많았으며 다음으로 Lactose, Saccharose와 sucrose에서 균사 성장이 좋았으며 질소원은 peptone, yeast extract, trypeptone에서 균사 생장과 액체배지의 균사량도 많았다. C/N비는 1:1의 비율에서 균사의 생장과 밀도가 양호하였으며 적정량은 12.5 g/1에서 균사의 생장과 밀도가 양호하였다. 무기염류에서는 $KH_2PO_4$가 다른 무기염류에 비해 좋게 나타났다. 붉은자루동충하초의 대량 배양을 위하여 액체배지로는 YMA와 SDAY 배지에서 가장 많은 건조 균체량을 얻을 수 있었으며, 이 배지에 6개의 절편을 넣고 7일간 배양하면 많은 건조 균체량를 얻을 수 있었다.

벼 이삭목도열병(病)의 감염(感染)에 관(關)한 연구(硏究) (Studies on Neck Blast Infection of Rice Plant)

  • 김홍기;박종성
    • 농업과학연구
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    • 제12권2호
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    • pp.206-241
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    • 1985
  • 이 연구(硏究)는 목도열병(病)의 감염시기(感染時期)와 조직내(組織內) 감염속도(感染速度) 및 감염(感染)에 영향(影響)을 미치는 전염원(傳染源)의 소재(所在), 엽초내외의 제조건(諸條件) 등(等)을 구명(究明)하여 합리적(合理的)인 방제체계(防除體系)를 확립(確立)하는 자료(資料)를 얻고자 실시(實施)하였다. 1. 벼 이삭목도열병(病)의 감염(感染) 최성기(最盛期)는 수잉기(穗孕期)였으며 그 다음이 출수기(出穗期)로 이 시기(時期)에 대부분의 이삭목이 감염(感梁)되고 있었다. 그러나 통일계(統一系) 품종(品種)은 출수후(出穗後)에도 환경(環境)에 따라 높은 감염(感染) 가능성(可能性)을 갖고 있었다. 2. 벼 이 삭목도열병(病)의 잠복기간(潛伏期間)은 자연조건하(自然條件下)에서 10~22일(日)로 그 변동복(變動福)이 넓었다. 인공접종시(人工接種時) 이삭이 어릴수록 잠복기간(潛伏期間)은 짧았고 감염속도(感染速度)가 심(甚)했으나 지엽절(止葉節) 밖으로 추출(抽出)한 이삭목은 잠복기간(潛伏期間)도 길고 발병률(發病率)도 낮았으며 조직내(組織內) 감염속도(感染速度)가 늦었다. 3. 이삭목도열병(病)의 약제방제(藥劑防除) 적기(適期)는 도열병균(稻熱病菌)의 감염(感染) 최성기(最盛期)와 잠복기간(潛伏期間)을 고려(考慮)할 때 속효성(速效性) 약제(藥齊)는 출수(出穗)5~10일전(日前), 지효성(遲效性) 약제(藥齊)는 10~15일전(日前)으로 추정(推定)된다. 4. 도열병균(病菌) 포자(胞子)의 엽초내 침투(浸透)는 주(主)로 지엽(止葉)을 포함(包含)한 상위(上位) 3개엽(個葉)에서 이루어졌고 강우(降雨)나 이슬, 일액(溢液) 등(等)과 함께 엽초 봉합부(縫合部)에서 침윤현상(浸潤現象)에 의해 이루어졌으며 침투율(浸透量)은 수도(水稻)의 생육기간중(生育期間中) 수잉기(穗孕期)가 가장 많았다. 포자(胞子)의 엽초내 침투(浸透)는 엽설(葉舌)이 크게 저지(沮止)하고 있었다. 5. 엽초내에 침투(浸透)한 포자(胞子)의 이삭에의 부착량(附着量)은 형태적(形態的)으로 복잡(複雜)한 수수절(穗首節)과 수축절(穗軸節)이 가장 많았고 이에는 모용(毛茸)와 퇴화지경(退化枝梗)이 크게 영향(影響)을 미치고 있어 이들이 목도열병(病) 감염(感染)을 조장(助長)하고 있었다. 6. 벼 이삭목도열병(病) 감염(感染) 가능(可能) 포자농도(服子濃度)는 계통간(系統間) 차이(差異)가 있어 통일계(統一系) 품종(品種)은 일반계(一般系)보다 낮은 100개(個) 이하(以下)의 포자농도(胞子濃度)에서도 쉽게 감염(感染)이 되었으며 발병지수(發病指數)도 매우 높아 그 피해(被害)가 더욱 심(甚)했다. 7. 벼 이삭목도열병(病)과 상관(相關)이 높은 이삭목의 질소함량(窒素含量)과 규소함량(硅數含量)은 벼 생육기간(生育時期)에 따라 큰 차이(差異)가 있어 질소함량(窒素含量)은 수잉기(穗孕期)에서 출수기(出穗期)로 갈수록 증가(增加)를 보였고 그 후 다소(多少) 감소(減少)하고 있었다. 규소함량(硅數含量)은 수잉기(穗孕期)로부터 점차 증가(增加)하고 있어 이들 체내성분(體內成分)의 변화(變化)가 목도열병(病)의 발병(發病)을 조장(助長)하고 있었다. 8. 도열병균(稻熱病菌) 포자(胞子)의 비산(飛散)은 대다수 수직(垂直) 방향(方向)으로 상승(上昇)또는 하강(下降)하여 도체(稻體)에 부간(附看)하였으며 수평(水平)으로 이동(移動)하는 포자(胞子)는 극(極)히 적어 출수후(出穗後)의 이삭목에 부간(附看)하는 포자수(胞子數)가 적으므로 출수후(出穗後) 목도열병(病) 감염율(感染率)은 매우 낮을 것으로 추정(推定)되었다. 도체(稻體) 상하위간(上下位間)의 온도차(溫度差)에 의(依)한 공기(空氣)의 이동(移動)은 포자비산(胞子飛散)에 대(對)한 하나의 원인(原因)이었다. 9. 출온기(出穩期)를 전후(前後)한 포자비산(胞子飛散)이 가장 목도열병발병(病發病)과 상관(相關)이 높았으며 지엽(止葉)을 포함(包含)한 상위(上位) 3개엽(個葉)에 형성(形成)된 병반(病斑)이 출수(出穗)를 전후(前後)한 시기(時期)에 포자형성량(胞子形成量)이 많아 직접(直接) 목도열병(病) 전염원(傳染源)으로서 크게 작용(作用)하고 있었다. 10. 엽초내 환경조건(環境條件)은 목도열병(病) 감염(感染)에 극(極)히 호적(好適)하여 엽초내에서 도열병균(病菌)의 침해(侵害)를 받는 경우 품종(品種)의 내병성(耐病性), 시복수준(施服水準)의 차이(差異)에 관계(關係)없이 이삭목이나 지경(枝梗), 인, 마디, 마디사이 등(等) 도체(稻體)의 어느 부위(部位)라도 감염(感染)이 이루어졌다. 11. 엽초내에 침투(浸透)한 우고균(優古菌) 중에서 벼 갈색엽고병균(病菌)인 Gerlachia oryzae 만이 발병(發病)을 다소(多少) 조장(助長)할 뿐 기타(其他)의 균(菌)들은 영향(影響)이 적었으며 품종(品種)의 출수소요일수(出穗所要日數)의 장단(長短)이 목도열병(病) 감염(感染)과 관련(關連)이 있는 것으로 추정(推定)되었다.

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