• 제목/요약/키워드: Soilborne

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Soilborne Diseases of Mulberry and their Management

  • Sharma, D.D.;Naik, V.Nishitha;Chowdary, N.B.;Mala, V.R.
    • International Journal of Industrial Entomology and Biomaterials
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    • 제7권2호
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    • pp.93-106
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    • 2003
  • Soilborne diseases pose a serious problem for mulberry cultivation during nursery plantation and established gardens, which cause severe loss in revenue generation of mulberry growers as compared to foliar diseases. Various soilborne diseases affect mulberry. Among them, root knot and root rot affect the established plantation resulting in severe loss in leaf yield apart from deterioration in leaf quality, which is a pre-requisite in successful sericulture to get the good quality of cocoons. Besides, stem-canker, cutting rot, collar rot and die-back, affect the initial establishment and survivability of mulberry plantation in nursery. The problem is difficult to handle, due to the complex nature of the diseases and also involvement of various biotic and abiotic factors. This is compounded by the occurrence of disease complex (especially nematode + soilborne pathogenic microbes) in established mulberry gardens, which facilitates quick spread of the disease and enhance the plant mortality, resulting substantial loss in leaf yield. Therefore, prevention and timely control measures need to be taken up to protect the mulberry plants from different soilborne plant pathogens. In this review article, symptomatology, epidemiology, disease cycle and control measures of soilborne diseases of mulberry are discussed.

국내 토양병해 발생현황과 종합 관리방안 (Present Status of Soilborne Disease Incidence and Scheme for Its Integrated Management in Korea)

  • 김충회;김용기
    • 식물병연구
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    • 제8권3호
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    • pp.146-161
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    • 2002
  • 최근 연작장해의 주원인으로 지적되는 토양병해의 발생은 매우 심각한 양상을 띄고 있다. 그 예로 배추 무사마귀병, 마늘 흑색썩음균핵병, 감자의 풋마름병, 고추 역병, 토마토 시들음병 , 수박의 CGMMV 등을 들 수 있으며 이 모두 시급히 해결하지 안되는 현실문제다. 토양병 발생이 이렇게 심각해진 것은 특정작물의 주산단지화 및 주년 생산체계, 시설원예의 보편화에 의한 획일적인 작부체계 내지는 동일작물 연작에 의해 토양환경이 급속히 악화된데 그 근본 원인이 있으며 이외에 수량 및 품질위주의 품종 육성에 의해 작물의 병 저항성을 소홀히 한 점이나 화학비료 위주의 경종방법 등도 토양병 발생을 부추기는 한 원인으로 지적되고 있다. 토양병 발생에 대한대책으로 그 원인을 찾아 제거하는 방법이 가장 효율적이라고 생각되는바 장기적인 대책으로 지역의 현실여건 및 경제성을 고려한 합리적 작부체계의 개발·운용, 작물별로 피해가 심한 다수 병해를 대상으로 한 복합저항성 품종의 육성 ·보급, 농토배양 및 토양개량을 통한 악화된 토양환경의 개선을 들 수 있고 단기적인 대책으로는 간편한 토양소독 기술의 개발·보급, 신속·정확한 토양병 예찰기술의 정립이 긴급하다. 이를 위하여 토양병 전문연구자의 육성 및 현장문제 해결을 위한 공동연구의 활성화 등에 국가적인 차원에서의 적극적인 지원이 요청되고 있다.

잔디 뿌리병 병원균인 Rhizoctonia solani의 성장을 저해하는 미생물 선발 (Screening of Potent Biofungicide for the Growth Inhibition of Soilborne Pathogenic Fungi, Rhizoctonia solani)

  • 이은열;이재화
    • 생명과학회지
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    • 제13권3호
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    • pp.355-358
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    • 2003
  • 식물 병원성 진균인 Rhizoctonia solani에 대한 길항능이 있는 Trichoderma 계열의 미생물 균주를 선별하였다. R. solani의 성장을 저해하는 능력이 우수한 균주를 선별하기 위하여 일차적으로 PDA 평판에서 inhibition zone을 측정하였고, 병원성 진균의 세포벽을 용해시킬 수 있는 세포외 효소인 glucanase 및 chitinase 활성을 분석하였다. 4∼5 mm 이상의 inhibition zone을 보여주었고, glucanase 및 chitinase 활성이 우수한 Trichoderma sp. UK-3와 T. viride 균주들을 선별할 수 있었다.

Infection Mechanism of Pathogenic Exduate by Soil-Borne Fungal Pathogens : A Review

  • Lim, You-Jin;Kim, Hye-Jin;Song, Jin-A;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제45권4호
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    • pp.622-627
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    • 2012
  • The processes to determine the composition, dynamics, and activity of infection mechanisms by the rhizosphere microflora have attracted the interest of scientists from multiple disciplines although considerable progress of the infection pathways and plant-pathogen interactions by soil borne fungal pathogens have been made. Soilborne pathogens are confined within a three-dimensional matrix of mineral soil particles, pores, organic matter in various stages of decomposition and a biological component. Among the physical and chemical properties of soils soil texture and matric water potential may be the two most important factors that determine spread exudates by soil borne fungal pathogens, based on the size of the soil pores. Pathogenic invasion of plant roots involves complex molecular mechanisms which occur in the diffuse interface between the root and the soil created by root exudates. The initial infection by soilborne pathogens can be caused by enzymes which breakdown cell wall layers to penetrate the plant cell wall for the fungus. However, the fate and mobility of the exudates are less well understood. Therefore, it needs to develop methods to control disease caused by enzymes produced by the soilborne pathogens by verifying many other possible pathways and mechanisms of infection processes occurring in soils.

In Vitro Antagonistic Effects of Bacilli Isolates against Four Soilborne Plant Pathogenic Fungi

  • Kim, Wan-Gyu;Weon, Hang-Yeon;Lee, Sang-Yeob
    • The Plant Pathology Journal
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    • 제24권1호
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    • pp.52-57
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    • 2008
  • Twenty isolates of Bacillus spp. obtained from livestock manure composts and cotton-waste composts were tested for in vitro antagonistic effects against soilborne plant pathogenic fungi, Fusarium oxysporum, Phytophthora capsici, Rhizoctonia solani AG-4, and Sclerotinia sclerotiorum. Seven isolates of Bacillus spp. had antagonistic effects on mycelial growth of all the isolates of F. oxysporum tested. The bacterial isolate RM43 was the most effective to inhibit the mycelial growth of the fungal isolates. Twelve isolates of Bacillus spp. had antagonistic effects on mycelial growth of all the isolates of P. capsici tested. The bacterial isolates M34 and M47 were very effective to inhibit the mycelial growth of the fungal isolates. Thirteen isolates of Bacillus spp. had antagonistic effects on mycelial growth of all the isolates of R. solani AG-4 tested. The bacterial isolates M27 and M75 were very effective to inhibit the mycelial growth of the fungal isolates. Fourteen isolates of Bacillus sp. had antagonistic effects on mycelial growth of all the isolates of S. sclerotiorum tested. The bacterial isolates M49 and M75 were very effective to inhibit the mycelial growth of the fungal isolates. The antagonistic effects of most Bacillus spp. isolates against the isolates of the four fungi differed depending on the fungal species and the isolates of each fungus. The bacterial isolates M27 and M75 were the most effective to inhibit the mycelial growth of all four fungi.

Effective Screening of Antagonist for the Biological Control of Soilborne Infectious Disease (Damping-Off)

  • LEE BAEK-SEOK;LEE HYANG-BOK;CHOI SUNG-WON;YUN HYUN-SHIK;KIM EUN-KI
    • Journal of Microbiology and Biotechnology
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    • 제15권4호
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    • pp.701-709
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    • 2005
  • An efficient method of selecting an antagonistic strain for use as a biological control agent strain was developed. In this improved method, the surface tension reduction potential of an isolate was included in the 'decision factor,' in addition to two other factors; the growth rate and pathogen inhibition. By using a statistically designed method, an isolate from the soil was selected and identified as Bacillus sp. GB 16. In the pot test, this strain showed the best performance among the isolated strains. The lowest disease incidence rate and fastest seed growth were observed when the Bacillus sp. GB 16 was used. The action of the surface tension reducing component was assumed to enhance the wetting, spreading, and residing of the antagonistic strain in the rhizosphere. This result showed that the improved selection method was quite effective in selecting the best antagonistic strain for the biological control of soilborne infectious plant pathogens.

Identification and Characterization of the Antifungal Substances of a Novel Streptomyces cavourensis NA4

  • Pan, Hua-Qi;Yu, Su-Ya;Song, Chun-Feng;Wang, Nan;Hua, Hui-Ming;Hu, Jiang-Chun;Wang, Shu-Jin
    • Journal of Microbiology and Biotechnology
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    • 제25권3호
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    • pp.353-357
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    • 2015
  • A new actinomycete strain NA4 was isolated from a deep-sea sediment collected from the South China Sea and showed promising antifungal activities against soilborne fungal pathogens. It was identified as Streptomyces cavourensis by morphological, physiological, and phylogenetic analyses based on its 16S rRNA gene sequence. The main antifungal components were isolated and identified from the fermentation culture as bafilomycins B1 and C1. These compounds exhibited significant antifungal activities and a broad antifungal spectrum. The results suggest that the Streptomyces cavourensis NA4 and bafilomycins B1 and C1 could be used as potential biocontrol agents for soilborne fungal diseases of plants.

Biological Control of Oomycete Soilborne Diseases Caused by Phytophthora capsici, Phytophthora infestans, and Phytophthora nicotianae in Solanaceous Crops

  • Elena Volynchikova;Ki Deok Kim
    • Mycobiology
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    • 제50권5호
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    • pp.269-293
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    • 2022
  • Oomycete pathogens that belong to the genus Phytophthora cause devastating diseases in solanaceous crops such as pepper, potato, and tobacco, resulting in crop production losses worldwide. Although the application of fungicides efficiently controls these diseases, it has been shown to trigger negative side effects such as environmental pollution, phytotoxicity, and fungicide resistance in plant pathogens. Therefore, biological control of Phytophthora-induced diseases was proposed as an environmentally sound alternative to conventional chemical control. In this review, progress on biological control of the soilborne oomycete plant pathogens, Phytophthora capsici, Phytophthora infestans, and Phytophthora nicotianae, infecting pepper, potato, and tobacco is described. Bacterial (e.g., Acinetobacter, Bacillus, Chryseobacterium, Paenibacillus, Pseudomonas, and Streptomyces) and fungal (e.g., Trichoderma and arbuscular mycorrhizal fungi) agents, and yeasts (e.g., Aureobasidium, Curvibasidium, and Metschnikowia) have been reported as successful biocontrol agents of Phytophthora pathogens. These microorganisms antagonize Phytophthora spp. via antimicrobial compounds with inhibitory activities against mycelial growth, sporulation, and zoospore germination. They also trigger plant immunity-inducing systemic resistance via several pathways, resulting in enhanced defense responses in their hosts. Along with plant protection, some of the microorganisms promote plant growth, thereby enhancing their beneficial relations with host plants. Although the beneficial effects of the biocontrol microorganisms are acceptable, single applications of antagonistic microorganisms tend to lack consistent efficacy compared with chemical analogues. Therefore, strategies to improve the biocontrol performance of these prominent antagonists are also discussed in this review.