• 제목/요약/키워드: Weed host

검색결과 32건 처리시간 0.105초

물달개비의 생물학적 방제인자 물달개비바구미의 생활사 및 기주특이성 (Life Cycle and Host Specificity of Tanysphyrus (Tanysphyroides) major Roelofs (Coleoptera : Curculionidae), a Possible Candidate Agent for the Biological Control of Monochoria vaginalis var. plantaginea)

  • 박진영;박재읍;이인용;권오석;박종균
    • 한국잡초학회지
    • /
    • 제31권1호
    • /
    • pp.103-111
    • /
    • 2011
  • 물달개비는 한국의 논에서 문제되는 난방제 잡초중의 하나이다. 물달개비의 생물학적 방제 인자로 물달개비바구미를 선발하였다. 생물학적 방제에 이용하기 위해 2006년과 2007년 계대사육을 실시하여 형태적, 생태적 특징을 조사하였다. 이 종은 1년에 한세대만 경과하며 성충으로 월동하고, 성충은 6월 하순부터 9월 하순까지 발생한다. 물달개비바구미는 알에서 성충까지 $22{\pm}0.7$일이 소요된다. 주요 농작물과 수생식물 60종을 대상으로 기주특이성을 조사 결과 물달개비의 생물학적 방제 곤충으로서의 가능성을 보였다.

Three Different Viruses Isolated from Typical Weed Plants that Grown Adjacent to Common Crop Fields

  • Kwon, Sun-Jung;Choi, Hong-Soo;Han, Jung-Heon;La, Yong-Joon;Kim, Kook-Hyung
    • The Plant Pathology Journal
    • /
    • 제16권6호
    • /
    • pp.297-305
    • /
    • 2000
  • Weeds are widely grown in the field and are infected by many viruses. A survey was conducted to identify viruses infecting weeds in Korea. Virus-infected weed samples including Rorippa indica (L.) Hiern, R. islandica (Oed.) Bord, Crepidiastrum denticulatum (Houtt.) Pak & Kawanno, Achyranthes japonica (Miq.) Nakai, and Chrysanthemum boreale (Makino) Makino were collected in Kyonggi Province. These weeds were grown in the greenhouse and were isolated on 10 test plants. Several virus isolates were isolated fron infected tissues and were further studied by host range assay, serological test, electron microscopy (EM), reverse transcription-polymerase chain reaction (RT-PCR) and sequencing. Each isolated virus strain was mechanically transmitted to weeds and various hosts including Nicotiana spp., Brassica spp., Vigna unguiculata, Capsicum annuum, and Cucumis sativus and showed systemic mosaic, vein clearing, necrosis, mottle, malformation, chlorosis, and/or death of host plants in some cases. Each virus was then purified using infected leaves and observed by EM. From these results three viruses were isolated and identified as Turnip mosaic virus (TuMV), Broad bean wilt virus (BBWV), and Cucumber mosaic virus (CMV). RT-PCR using virus-specific oligonucleotide primers and the cloning were conducted to determine the nucleotide sequences of coat proteins of the three viruses their amino acid sequence were deduced. The amino acid sequence homologies were about 92.7 to 99.7%, 96.2 to 97.7%, and 93.9 to 98.6% to other reported TuMV, BBWV, and CMV strains, respectively. These results suggest that many weeds may serve as primary inoculum source of diseases caused by TuMV, BBWV, CMV and that the management of these viral diseases can be achieved through weed control.

  • PDF

Biological Control of Some Serious Weeds in Dakahlia District. II. Mycoherbicial Production and Physiological Host Responses

  • Abdel-Fattah, Gamal M.
    • Mycobiology
    • /
    • 제30권2호
    • /
    • pp.96-101
    • /
    • 2002
  • Four pathogenic fungal isolates belonging to different genera including Alternaria, Fusarium and Curvularia were isolated from selected diseased weeds growing in the fields in Dakahalia district. The inoculum of these pathogenic fungi specific to weeds were cultured, standardized and formulated as alginate pellets containing mycelium plus culture filtrate. These mycoherbicides were evaluated for disease severity(DS). Maximum DS was obtained with the alginate pellets of mycelium filtrate Fusarium solani. Physiological changes of the treated weed were determined 5 aiid 10 days after treatments. As compared to the healthy weeds, all mycoherbicide formulations significantly decreased the amount of photosynthetic pigments and subsequently soluble and insoluble sugars in the infected weeds. The mycoherbicide formulation of F. solani had the greatest effect on lowering to the abovementioned amount in the leaves of Chenopodium murale. Generally, treatment of weed leaves with the specific mycoherbicide led to a highly significant increase in total phenol content when compared to the healthy control weed. C. murale infected with the mycoherbicide formulation of F. solani had higher levels of phenolic compounds than those other treated weeds particularly after 10 days of inoculation.

Population of Rice Stripe Virus-Viruliferous Insect and Natural Weed Host of Rice Stripe Virus.

  • Park, Jin-Woo;Jin, Tae-sung;Shin, Dong-bum;Park, Byung-ryul;Kim, Jin-young;Oh, In-suk;Lee, B. C.;T. H. Noh;S. J. Ko
    • 한국식물병리학회:학술대회논문집
    • /
    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
    • /
    • pp.140.2-141
    • /
    • 2003
  • Among over-wintering small brown planthoppers, population of the rice stripe virus (RSV)-viruliferous insects was surveyed throughout the country in late April of 2003 by using DAS-ELISA. Averaged population of the RSV-viruliferous insects in this year was 2.1%, which was lower than that of last year of 3.7%. However, the insect population in Seoul, Incheon and Kyeonggi areas were relatively high showing 6.7%, 6.2% and 2.6%, respectively. Based on the survey results, it was expected that overall occurrence of RSV on rice could be decreased in this year, except certain areas. Ovarial transmission rate of RSV by the insects on diseased rice samples collected from 10 areas ranged from 22.2% to 77.8%. Among 35 graminous weed species collected from rice fields in Ganghwa and Kimpo in 2002 and 2003, common reed and formosens were found to be infected by RSV. The result indicates that those weeds are potential alternative natural hosts of the RSV Further studies on ecological and pathological impacts of the alternative natural host of RSV are being processed.

  • PDF

Life Cycle-Based Host Range Analysis for Tomato Spotted Wilt Virus in Korea

  • Kil, Eui-Joon;Chung, Young-Jae;Choi, Hong-Soo;Lee, Sukchan;Kim, Chang-Seok
    • The Plant Pathology Journal
    • /
    • 제36권1호
    • /
    • pp.67-75
    • /
    • 2020
  • Tomato spotted wilt virus (TSWV) is one of the plant viruses transmitted by thrips and causes severe economic damage to various crops. From 2008 to 2011, to identify natural host species of TSWV in South Korea, weeds and crops were collected from 5 regions (Seosan, Yesan, Yeonggwang, Naju, and Suncheon) where TSWV occurred and were identified as 1,104 samples that belong to 144 species from 40 families. According to reverse transcription-polymerase chain reaction, TSWV was detected from 73 samples from 23 crop species, 5 of which belonged to family Solanaceae. Additionally, 42 weed species were confirmed as natural hosts of TSWV with three different life cycles, indicating that these weed species could play an important role as virus reservoirs during no cultivation periods of crops. This study provides up-to-date comprehensive information for TSWV natural hosts in South Korea.

쌍자엽 식물아강(관속식물문 : 피자식물강)의 잡초가해 곤충상 (Phytophagous Insect Fauna of Dicotyledoneae(Tracheophyta : Angiospermae) Weeds)

  • 추호렬;우건석;;박영도
    • 한국응용곤충학회지
    • /
    • 제31권4호
    • /
    • pp.496-508
    • /
    • 1992
  • 한국산 쌍자엽식물아강에 속하는 잡초가해곤충과 기주특이성을 조사한 결과 잡초 39속 54종으로부터 곤충이 가장 많이 채집된 것은 마디풀목으로 22속 24종이었고 쐐기풀목과 중심자목에서는 17속 17종이 채집되었다. 그외의 목에서는 쥐방울덩굴목의 1속 1종에서 통화 식물목의 12속 12종까지 다양하였다. 쐐기풀목에서 채집된 17종의 곤충중 삼과의 환삼덩굴에서 Bares sp. 바구미가 기주특이성을 나타내면서 잎을 산공형으로 가해하고 있었고, 마디 풀목에서는 참소리쟁이와 소리쟁이에서 소리쟁이진딧물과 좀남색잎벌레의 가해능력이 뛰어났으며 기주특이성이 있었다. 여뀌류와 고마리에서는 잎벌레인 Lypesthes japonicus의 가해능력이 가장 우수하였고 길쭉바구미류(Lixus spp.)도 빈번하게 채집되었다. 그리고 개여뀌에서는 처음으로 백합관총채벌레가 채집되었다. 며느리밑씻개에서는 미동전된 자나방이, 며느리 배꼽에서는 털꼭지바구미(Miarus atricolor)의 가해가 심하였다. 중심자목에서는 흰명아주와 명아주에서 애남생이잎벌레가 기주특이성을 나타내면서 잎을 가해하고 있었다. 한편, 콩밭에서 콩잎을 가해하고 있던 담배거세미나방 유충이 하층식물인 명아주와 개비름의 잎을 심하게 가해하고 있었는데 잡초가 해충발생에 영향을 미친다는 것이 확인되었다. 도금양목의 달맞이꽃류에서는 벼룩잎벌레(Altica oleracea)가 종종 채집되었고 통화식물목의 까마중은 목화진딧물의 피해를 받고 있었으며 홍다리줄벼룩잎벌레(Phylliodes brettinghami)가 처음으로 채집되었다. 질경이목의 질경이에서는 노린재류외에 줄무늬긴발벼룩잎벌레(Longitarsus scutellaris), 보라잎벌레(Hemipyxis plagioderoides)가 처음으로 기록되면서 기주특이성을 나타내었다. 노린재류도 많은 잡초에서 빈번하게 채집되었으나 가해유무는 확인하기 어려웠고 섬서구메뚜기도 많은 종류의 잡초를 가해하고 있었다.

  • PDF

Occurrence of Leaf Spot Disease Caused by Alternaria crassa (Sacc.) Rands on Jimson Weed and Potential Additional Host Plants in Algeria

  • Bessadat, Nabahat;Hamon, Bruno;Bataille-Simoneau, Nelly;Chateau, Corentin;Mabrouk, Kihal;Simoneau, Philippe
    • The Plant Pathology Journal
    • /
    • 제36권2호
    • /
    • pp.179-184
    • /
    • 2020
  • A leaf spot pathogen Alternaria sp. was recovered from jimson weed, tomato, parsley, and coriander collected during surveys of blight diseases on Solanaceae and Apiaceae in Algeria. This species produced large conidial body generating long apical beaks that tapered gradually from a wide base to a narrow tip and short conidiophores originating directly from the agar surface. This species exhibited morphological traits similar to that reported for Alternaria crassa. The identification of seven strains from different hosts was confirmed by sequence analyses at the glyceraldehyde-3-phosphate dehydrogenase, RNA polymerase second largest subunit, and translation elongation factor 1-alpha loci. Further the pathogen was evaluated on jimson weed, coriander, parsley, and tomato plants, and this fungus was able to cause necrotic lesions on all inoculated plants. A. crassa is reported for the first time as a new species of the Algerian mycoflora and as a new potential pathogen for cultivated hosts.

Weeding Efficacy of Sulfonylurea Resistance Weed, Monochoria (Monochoria vaginalis) with Brown Leaf Blight Caused by BWC01-54

  • Hong, Yeon-Kyu;Lee, Bong-Choon;Song, Seok-Bo;Hwang, Jae-Bok;Park, Sung-Tae
    • The Plant Pathology Journal
    • /
    • 제21권1호
    • /
    • pp.77-82
    • /
    • 2005
  • A summer annual weed of monochoria (Monochoria vaginalis) grows in the edges of rice paddies, ditches, and moist upland throughout Korea. It is very difficult to control with herbicide because of its sulfonylurea resistance. It is very competitive with fast growing pattern, that can cause reducing yields of rice. Brown leaf blight of monochoria (Monochoria vaginalis) occurred naturally in rice paddy, is first reported in Korea. The fungal isolate BWC01-54 was successfully isolated from the diseased leaves of monochoria. The fungus BWC 01-54 was grown well at $25-28^{\circ}C$, conidia of the greysh black brown mycelia were abundant produced on PDA at 15 days. The fungus was grown well in potato dextrose broth at $28^{\circ}C$ and fully grown within 10 days in 250 ml of flask. In host and pathogenicity test, conidia suspension of BWC01-54 was the most effective to control of monochoria compare to others isolates. Typical symptoms having pin point brown lesions were formed on stem and leaf and which severely affected the whole plants ware blighted within two weeks, respectively. Under paddies field condition, conidial suspension of the fungus BWC01-54 gave around 90% control. Therefore, we conclude that the fungus may have a potential as a biological control agent against sulfonylurea resistance weed in rice paddy.

Tolerance: An Ideal Co-Survival Crop Breeding System of Pest and Host in Nature with Reference to Maize

  • Kim, Soon-Kwon
    • 한국작물학회지
    • /
    • 제45권1호
    • /
    • pp.59-70
    • /
    • 2000
  • In nature, plant diseases, insects and parasites (hereafter called as "pest") must be co-survived. The most common expression of co-survival of a host crop to the pest can be tolerance. With tolerance, chemical uses can be minimized and it protects environment and sustains host productivity and the minimum pest survival. Tolerance can be applicable in all living organisms including crop plants, lifestocks and even human beings. Tolerant system controls pest about 90 to 95% (this pest control system often be called as horizontal or partial resistance), while the use of chemicals or selection of high resistance controls pest 100% (the most expression of this control system is vertical resistance or true resistance). Controlling or eliminating the pests by either chemicals or vertical resistance create new problems in nature and destroy the co-survial balance of pest and host. Controlling pests through tolerance can only permit co-survive of pests and hosts. Tolerance is durable and environmentally-friend. Crop cultivars based on tolerance system are different from those developed by genetically modified organism (GMO) system. The former stabilizes genetic balance of a pest and a host crop in nature while the latter destabilizes the genetic balance due to 100% control. For three decades, the author has implemented the tolerance system in breeding maize cultivars against various pests in both tropical and temperate environments. Parasitic weed Striga species known as the greatest biological problem in agriculture has even been controlled through this system. The final effect of the tolerance can be an integrated genetic pest management (IGPM) without any chemical uses and it makes co-survival of pests in nature.in nature.

  • PDF

Identification of Leonurus sibiricus as a Weed Reservoir for Three Pepper-Infecting Viruses

  • Kwon, Sun-Jung;Choi, Gug-Seoun;Yoon, Ju-Yeon;Seo, Jang-Kyun;Choi, Hong-Soo
    • The Plant Pathology Journal
    • /
    • 제32권1호
    • /
    • pp.65-69
    • /
    • 2016
  • In plant virus ecology, weeds are regarded as wild reservoirs of viruses and as potential sources for insect-mediated transmission of viruses. During field surveys in 2013-2014, three Leonurus sibiricus plants showing virus-like symptoms were collected from pepper fields in Daegu, Seosan, and Danyang in Korea. Molecular diagnosis assays showed that the collected L. sibiricus samples were infected with either Tomato spotted wilt virus (TSWV), Pepper mild mottle virus (PMMoV), or Beet western yellow virus (BWYV), respectively. Since this is the first identification of TSWV, PMMoV, and BWYV from L. sibiricus, complete genome sequences of three virus isolates were determined to examine their phylogenetic relationships with the previously reported strains and isolates. Phylogenetic analyses performed using full genome sequences of the viruses showed the isolates of TSWV and PMMoV obtained from L. sibiricus are closely related to the pepper isolates of the corresponding viruses. Our results suggest that L. sibiricus could act an alternative host and reservoir of viruses that cause damages in pepper fields.