• 제목/요약/키워드: Root rot disease

검색결과 228건 처리시간 0.042초

녹비작물 토양환원과 태양열 소독에 의한 3년생 인삼의 뿌리썩음병 억제효과 (Effect of Green Manure Incorporation and Solarization on Root Rot Disease of 3-year-old Ginseng in Soil of Continuous Cropping Ginseng)

  • 서문원;이성우;이승호;장인복;허혜지
    • 한국약용작물학회지
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    • 제27권4호
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    • pp.284-291
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    • 2019
  • Background: Ginseng root rot disease, caused by Cylindrocarpon destructans and Fusarium solani is a major cause of replant failure in continuous cropping ginseng. Methods and Results: To control replant injury in soil infected with C. destructans and F. solani, biosolarization was performed by covering the plot with transparent polyethylene film after adding green manure of maize and sunflower for the summer season. Per 10 a, fresh and dry weight of maize was 10.1 and 2.5 tons, respectively, and that of sunflower was 8.1 tons and 1.2 tons, respectively. Mean maximum temperature at 20 cm depth was $33.2^{\circ}C$, $41.5^{\circ}C$ and $41.8^{\circ}C$ in the control, maize-incorporated and sunflower-incorporated plots, respectively. The elapsed time over $40^{\circ}C$ was 36.4 h in the maize-incorporated plot and 77.3 h in the sunflower-incorporated plot. Biosolarization increased $NO_3$ content in soil, while content of organic matter, Ca, and Mg was decreased. Electrical conductivity, $NO_3$ and $P_2O_5$ in soil significantly increased after two years of biosolarization. The number of spores of C. destructans in soil was significantly decreased by biosolarization, and sunflower treatment was more effective than maize treatment in decreasing the number of spores. Root yield of 3-year-old ginseng was significantly increased by biosolarization, however, there was no significant difference between maize and sunflower treatments. Rate of root rot in 3-year-old ginseng decreased to 16.5% with the incorporation maize and 5.0% with the incorporation of sunflower, while that in control 25.6%. Conclusions: Biosolarization was effective in inhibiting ginseng root rot by decreasing the density of root rot disease and improving soil chemical properties.

인삼 연작토양에서 관수 및 인삼뿌리 잔사물이 토양 미생물상 및 뿌리썩음병 발생에 미치는 영향 (Effects of Irrigation and Ginseng Root Residue on Root Rot Disease of 2-Years-Old Ginseng and Soil Microbial Community in the Continuous Cropping Soil of Ginseng)

  • 이성우;이승호;서문원;박경훈;장인복
    • 한국약용작물학회지
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    • 제26권5호
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    • pp.345-353
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    • 2018
  • Background: Some phenolics detected in the soil may inhibit the seed germination and seedling growth of ginseng (Panax ginseng). This study investigated the effect of irrigation and ginseng root residue addition on the soil microbial community and root rot disease in 2-year-old ginseng. Methods and Results: Each $20{\ell}$ pot was filled with soil infected with ginseng root rot pathogens, and irrigated daily with $2{\ell}$ of water for one month. After the irrigation treatment, ginseng fine root powder was mixed with the irrigated soil at a rate of 20 g per pot. In descending order, ${NO_3}^-$, electric conductivity (EC), exchangeable Na (Ex. Na) and K (Ex. K) decreased due to irrigation. In descending order, ${NO_3}^-$, EC, Ex. K, and available $P_2O_5$ increased with the additon of ginseng powder to the soil. The abundance of Trichoderma crassum decreased with irrigation, but increased again with the incorporation of ginseng powder. The abundance of Haematonectria haematococca increased with irrigation, but decreased with the incorporation of ginseng powder. The abundance of Cylindrocarpon spp. and Fusarium spp., which cause ginseng root rot, increased with the incorporation of ginseng powder. The abundance of Arthrobacter oryzae and Streptomyces lavendulae increased with irrigation. The abundance of Streptomyces lavendulae decreased, and that of Arthrobacter spp. increased, with the incorporation of ginseng powder. Aerial growth of ginseng was promoted by irrigation, and ginseng root rot increased with the incorporation of ginseng powder. Conclusions: Ginseng root residues in the soil affected soil nutrients and microorganisms, and promoted ginseng root rot, but did not affect the aerial growth of ginseng.

인삼내생균 Bacillus velezensis CH-15의 인삼뿌리썩음병 방제 효과 (Biological Efficacy of Endophytic Bacillus velezensis CH-15 from Ginseng against Ginseng Root Rot Pathogens)

  • 김도현;;이정관;이승호
    • 식물병연구
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    • 제28권1호
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    • pp.19-25
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    • 2022
  • 인삼은 수천 년 동안 동아시아에서 재배된 중요한 약용 식물이다. 일반적으로 같은 포장에서 4-6년 동안 재배되기 때문에 다양한 병원균에 노출된다. 그 중 인삼뿌리썩음병이 가장 큰 피해를 주는 주요 원인이다. 본 연구에서는 건강한 인삼에서 내생균을 분리하고, 인삼뿌리썩음병원균에 대해 길항작용을 갖는 내생균을 선발하였다. 분리된 17개 균주 중, 3개 균주가 인삼뿌리썩음병원균에 길항작용을 나타냈으며 인삼뿌리썩음병균이 생산하는 곰팡이독소인 라디시콜에 내성을 보였다. 우수한 길항효과와 라디시콜 저항성을 갖는 Bacillus velezensis CH-15를 선발하여 추가 실험을 수행하였다. 인삼 뿌리에 CH-15를 접종하면 병원균의 균사 생장을 억제할 뿐만 아니라 질병의 진행도 억제하였다. CH-15는 또한 바실로마이신 D, 이투린 A, 바실리신, 서팩틴 생합성 유전자를 갖고 있었다. 또한 CH-15 배양여액은 병원균 생장과 분생포자 발아를 억제하였다. 본 연구는 내생균 CH-15가 인삼뿌리썩음병 병원체에 대해 길항작용을 하고 인삼뿌리썩음병의 진행을 억제함을 보여주었으며 이 균주가 인삼뿌리썩음병을 억제하는 미생물 제제가 될 수 있을 것으로 기대한다.

Neopestalotiopsis clavispora에 의한 딸기 뿌리썩음병 한국 내 발생 (Crown and Root Rot of Strawberry Caused by Neopestalotiopsis clavispora in Korea)

  • 박경미;한인영;이석민;최시림;김민철;이흥수
    • 한국균학회지
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    • 제47권4호
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    • pp.427-435
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    • 2019
  • 최근 경남 산청, 함양의 딸기 재배지역의 육묘하우스에서 딸기 묘목의 뿌리와 관부를 썩게 하고 지상부의 생육을 저해하며 최종적으로 식물체를 시들게 하는 뿌리썩음병(가칭)증상이 발생하였다. 이러한 병반을 나타내는 딸기 식물체 뿌리와 관부로부터 병원균을 분리하고 균학적 특성을 조사하였으며, 유전자 염기서열 분석과 계통학적 분석을 수행하였다. 그 결과, 딸기 육묘과정에서 발생한 뿌리썩음병(가칭)의 병원균은 Neopestalotiopsis clavispora로 확인되었으며, 건전한 딸기 식물체를 대상으로 접종실험을 수행한 결과 딸기에 대한 병원성을 확인하였다. 지금까지 국내에서 N. clavispora에 의한 딸기 뿌리썩음병이 보고되지 않았으므로 본 연구결과를 바탕으로 이병을 딸기뿌리썩음병으로 국내 최초로 보고한다.

Root Rot of Moth Orchid Caused by Fusarium spp.

  • Kim, Wan-Gyu;Lee, Byung-Dae;Kim, Woo-Sik;Cho, Weon-Dae
    • The Plant Pathology Journal
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    • 제18권4호
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    • pp.225-227
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    • 2002
  • Moth orchid plants with yellowing blight and root rot symptoms were collected, and a total of 54 isolates of Fusarium spp. was obtained from roots and leaf bases of the diseased plants. The isolates were identified based on their morphological characteristics. Out of the 54 isolates of Fusarium spp., 42 isolates were identified as F. solani, 5 isolates as F. oxysporum, and 7 as F. proliferatum. Isolates of the three Fusarium spp. were tested for pathogenicity to moth orchid plants by artificial inoculation. All the Fusarium spp. induced root rot of the host plants. The symptoms progressed up to the basal part of the leaves, which later caused yellowing blight. The symptoms induced on the plants by artificial inoculation with the Fusarium spp. isolates were similar to those observed in greenhouses. The present study reveals that F. oxysporum, F. proliferatum, and F. solani cause root rot of moth orchid, and that F. solani is the main pathogen of the disease.

인삼 연작지에서 윤작물 작부체계가 토양화학성 및 인삼뿌리썩음병 발생에 미치는 영향 (Effect of Crop Rotation System on Soil Chemical Properties and Ginseng Root Rot after Harvesting Ginseng)

  • 이성우;이승호;박경훈;장인복;;서문원
    • 한국약용작물학회지
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    • 제25권4호
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    • pp.244-251
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    • 2017
  • Background: The application of crop rotation systems may reduce the occurrence of soil-borne diseases by releasing allelochemicals and by subsequent microbial decomposition. Methods and Results: For reduction of ginseng root rot by the crop rotation system, after harvesting 6-year-old ginseng, fresh ginseng was grown along with continuous cultivation of sweet potato, peanut, and bellflower. Growth of 2-year-old ginseng was significantly inhibited in the continuous cultivation than in the first cultivation. Sweet potato, peanut and bellflower cultivations assisted in obtaining normal yields of ginseng in the first year after the harvest of 6-year-old ginseng. Salt concentration, potassium and sodium contents were gradually decreased, and, organic matter was gradually increased through cirp rotation. Phosphate, calcium and magnesium contents were not altered. The density of the root rot fungus was gradually decreased by the increase in crop rotation; however it was decreased distinctly in the first year compared to the second and third year. The severity of root rot disease tended to decrease gradually by the increase of crop rotation. Conclusions: Short-term crop rotation for three years promoted the growth of ginseng, however root rot infection was not inhibited significantly, although it was somewhat effective in lowering the density of the root rot pathogen.

Antagonistic Bacillus species as a biological control of ginseng root rot caused by Fusarium cf. incarnatum

  • Song, Minjae;Yun, Hye Young;Kim, Young Ho
    • Journal of Ginseng Research
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    • 제38권2호
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    • pp.136-145
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    • 2014
  • Background: This study aimed to develop a biocontrol system for ginseng root rot caused by Fusarium cf. incarnatum. Methods: In total, 392 bacteria isolated from ginseng roots and various soils were screened for their antifungal activity against the fungal pathogen, and a bacterial isolate (B2-5) was selected as a promising candidate for the biocontrol because of the strong antagonistic activity of the bacterial cell suspension and culture filtrate against pathogen. Results: The bacterial isolate B2-5 displayed an enhanced inhibitory activity against the pathogen mycelial growth with a temperature increase to $25^{\circ}C$, produced no pectinase (related to root rotting) an no critical rot symptoms at low [$10^6$ colony-forming units (CFU)/mL] and high ($10^8CFU/mL$) inoculum concentrations. In pot experiments, pretreatment with the bacterial isolate in the presumed optimal time for disease control reduced disease severity significantly with a higher control efficacy at an inoculum concentration of $10^6CFU/mL$ than at $10^8CFU/mL$. The establishment and colonization ability of the bacterial isolates on the ginseng rhizosphere appeared to be higher when both the bacterial isolate and the pathogen were coinoculated than when the bacterial isolate was inoculated alone, suggesting its target-oriented biocontrol activity against the pathogen. Scanning electron microscopy showed that the pathogen hyphae were twisted and shriveled by the bacterial treatment, which may be a symptom of direct damage by antifungal substances. Conclusion: All of these results suggest that the bacterial isolate has good potential as a microbial agent for the biocontrol of the ginseng root rot caused by F. cf. incarnatum.

인삼 뿌리썩음병 발병에 미치는 환경 요인 (Environmental Factors on the Development of Root Rot on Ginseng Caused by Cylindrocarpon destructans)

  • 이중섭;한경숙;이성찬;소재우;김두욱
    • 식물병연구
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    • 제20권2호
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    • pp.87-94
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    • 2014
  • 인삼 재배지에서 가장 큰 피해를 나타내고 있는 뿌리썩음병원균은 Cylindrocarpon destructans로 연작장해의 원인으로 작용하고 있다. 2011과 2012년에 걸쳐 인삼 뿌리썩음병 발병포장으로부터 뿌리를 수집하여 병징 구분 후 57종의 C. destructans를 분리하였다. 분리한 뿌리썩음병원균중에서 34균주(61%)는 병원성이 낮았으며, 21균주(37%)는 무상처 접종에서도 병반을 형성하여 강한 병원성을 나타내었다. 또한 이들 분리균들을 PDA 배지에서 15일 배양한 결과 최적의 생장온도는 $20^{\circ}C$였으며, $35^{\circ}C$에서는 병원성에 관계없이 모두 생장하지 못하였다. 병원성에 따라 균총의 색과 균사의 생장정도에 차이를 나타내었다. 강한 병원성 균주는짙은 갈색을 나타낸 반면 병원성이 약한 균주들은 베이지색 또는 옅은 갈색을 나타내었다. pH 변화에 따른 균사 생장에 미치는 효과 조사를 위해 수경 재배한 결과 pH 7.0에서 보다 pH 5.0에서 균사생장이 양호하였다. 뿌리에서의 상처는 pH 변화와 관계없이 발병도를 더욱 증가시켰다. 인위적으로 조성한 발병 토양에 1-4년생 인삼뿌리를 이식하여 재배한 결과 2년생 뿌리에서 가장 감수성이었으며, 발병률도 79.5%로 가장 높았다. 뿌리썩음병 발병정도는 토양 내 접종 병원균의 밀도에 따라 영향을 받는 것으로 나타났으며, 병원균 접종농도 $3.5{\times}10^2cfu/g$ 처리구 보다 $2.0{\times}10^3cfu/g$ 처리구에서 높았다.

녹비작물 재배가 토양화학성 및 인삼뿌리썩음병 발생에 미치는 영향 (Effect of Green Manure Crop Cultivation on Soil Chemical Properties and Root Rot Disease in Continuous Cropping Field of Ginseng)

  • 이성우;박경훈;이승호;장인복
    • 한국약용작물학회지
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    • 제25권1호
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    • pp.1-9
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    • 2017
  • Background: Some plants have harmful effects on fungi and bacteria as well as other plants. Incorporating such plant into soil as green manure is effective in reducing population densities of soil pathogens. Methods and Results: Twenty-three species of green manure crops were cultivated after the harvest of 6-year-old ginseng and then incorporated into the soil at the flowering stage. The following year, the root rot ratio of 2-year-old ginseng and soil chemical properties were investigated. In the absence of green manure addition, the $NO_3$ content, electric conductivity (EC), and K content decreased by 95%, 79% and 65%, respectively. In the presence of green manure addition, $P_2O_5$ and $NO_3$ contents reduced by 41% and 25%, respectively. The "survived root ratio" of 2-year-old ginseng significantly increased by 56.2%, 47.5%, and 47.3%, in the Sorghum sudanense, Ricinus communis and Helianthus tuberosus treatment, respectively. In addition, there was a significant increase in the "survived root ratio" in the Secale cereale, Chrysanthemum morifolium, Atractylodes macrocephala, and Smallanthus sonchifolius treatments. The "survived root ratio" of ginseng showed a significant positive correlation with the soil pH and a negative correlation with the $NO_3$ contents, and EC. Conclusions: Cultivation of plant form the Chrysanthemum family as green manure, using mainly the rhizomes was effective for the control of root rot disease of ginseng.

Variation in the Resistance of Japanese Soybean Cultivars to Phytophthora Root and Stem Rot during the Early Plant Growth Stages and the Effects of a Fungicide Seed Treatment

  • Akamatsu, Hajime;Kato, Masayasu;Ochi, Sunao;Mimuro, Genki;Matsuoka, Jun-ichi;Takahashi, Mami
    • The Plant Pathology Journal
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    • 제35권3호
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    • pp.219-233
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    • 2019
  • Soybean cultivars susceptible to Phytophthora root and stem rot are vulnerable to seed rot and damping-off of seedlings and young plants following an infection by Phytophthora sojae. In this study, the disease responses of Japanese soybean cultivars including currently grown main cultivars during the early growth stages were investigated following infections by multiple P. sojae isolates from Japanese fields. The extent of the resistance to 17 P. sojae isolates after inoculations at 14, 21, and 28 days after seeding varied significantly among 18 Japanese and two US soybean cultivars. Moreover, the disease responses of each cultivar differed significantly depending on the P. sojae isolate and the plant age at inoculation. Additionally, the treatment of 'Nattosyo-ryu' seeds with three fungicidal agrochemicals provided significant protection from P. sojae when plants were inoculated at 14-28 days after seeding. These results indicate that none of the Japanese soybean cultivars are completely resistant to all tested P. sojae isolates during the first month after sowing. However, the severity of the disease was limited when plants were inoculated during the later growth stages. Furthermore, the protective effects of the tested agrochemicals were maintained for at least 28 days after the seed treatment. Japanese soybean cultivars susceptible to Phytophthora root and stem rot that are grown under environmental conditions favorable for P. sojae infections require the implementation of certain practices, such as seed treatments with appropriate agrochemicals, to ensure they are protected from P. sojae during the early part of the soybean growing season.