• Title/Summary/Keyword: apple diseases

Search Result 82, Processing Time 0.024 seconds

Dieback of Apple Tree by Major Soil Borne Diseases in Chungbuk Province from 2013 to 2015 (2013-2015년 충북에서 주요 토양병에 의한 사과나무 고사 실태)

  • Lee, Sung-Hee;Kwon, Yeuseok;Shin, Hyunman;Kim, Ik-Jei;Nam, Sang-Yeong;Hong, Eui Yon;Kwon, Soon-Il;Kim, Daeil;Cha, Jae-Soon
    • Research in Plant Disease
    • /
    • v.22 no.3
    • /
    • pp.198-201
    • /
    • 2016
  • Recently, severe dieback of apple tree has occurred in the apple orchards of Chungbuk province. Dieback rate and its casual agents have been investigated on the Chungbuk province apple orchards in 2013-2015. Out of 29,265 apple trees in the 27 orchards throughout Chungbuk province, 4,000 apple trees (13.7%) showed dieback symptoms. The causes of dieback were Phytophthora rot (50.4%), violet root rot by Helicobasidium sp. (27.1%), rodents (10%), white root rot by Rosellinia sp. (6.3%), and freezing injury (6.3%). Compared to previous reports published in 1995 and 2006, Phytophthora rot was the most dominant disease, which is thought to be due to high temperature during growing season and the increase of lowland cultivation. Results of this study will be useful to establish of the management strategy of apple tree dieback that has been increased recently.

Ecology of Marssonina Blotch Caused by Diplocarpon mali on Apple Tree in Kyungpook, Korea (사과나무 갈색무늬병의 발생생태)

  • Kim, Dong-Ah;Lee, Soon-Won;Lee, Joon-Tak
    • Current Research on Agriculture and Life Sciences
    • /
    • v.16
    • /
    • pp.84-95
    • /
    • 1998
  • Apple Marssonina blotch, caused by Diplocarpon mali, which has been increasing on apple trees and become one of the most serious diseases on apple trees in Korea since the begining of 1990's. In this study, ecology of Marssonina blotch including disease incidence and spore dispersals was surveyed from 1992 to 1995 in Kyungpook, and factors influencing the incidence of the disease were analyzed. Marssonina blotch began to occur on apple leaves in June and was observed commonly in most of apple orchards after August, and increased rapidly in September. The incidence of this disease was high at the year of low temperature and a lot of precipitation. The conidia discharge began to occur in May and continued to October, and the peak period of spore release was in August and usually more than 70% of total spore release of the year released from August to September. The incidence of the disease was high in the northern and mountain are as such as Yeongjoo, Chungsong, Andong, and relatively low in the southern areas such as Kunwi, Yongchon. Jonathan cultivar was the most susceptible to Marssonina blotch, and Jonagold, Sekaiichi was secondly susceptible and the next Fuji was more susceptible than Tsugaru. The incidence of the disease was relatively high in orchards which cultivation management of irrigation, drainage, air circulation, fertilization, and fungicide spraying were poor.

  • PDF

Isolation and Production of Antibiotic Substance from Streptomyces sp. S-1110 Antagonistic to Multiple Apple Mold Diseases (사과 곰팡이병에 길항하는 Streptomyces sp. S-1110의 분리 및 길항 물질의 생산)

  • Shin, Jin-Ho;Kim, Eun-Jung;Park, Sun-Ji;Rhee, In-Koo;Shin, Jae-Ho
    • Korean Journal of Environmental Agriculture
    • /
    • v.28 no.3
    • /
    • pp.289-294
    • /
    • 2009
  • Concerning about the negative impact of chemical pesticides on human health and the environment has been leading to dramatic increase of research in natural product-based pesticides. An antagonistic bacterium Streptomyces sp. S-1110 was isolated from apple farm soil. The culture filtrate of the strain showed growth inhibition effects to apple pathogenic fungi, Botryosphaeria dothidea, Colletotrichum gloeosporioides and Rhizoctonia solani. The unidentified antibiotic substances from the strain kept antagonistic activity either after heat treatment at $121^{\circ}C$ for 1 h or pH treatment at range of pH 3 - pH 12 for 24 h. The substances also prevented apple fruit from spoiling by inoculated two pathogenic molds, B. dothidea and C. gloeosporioides. These results suggested that the isolated strain would be useful as a biocontrol agent to control apple spoiling occurred from mold.

Biological Control of White Rot in Apple Using Bacillus spp. (Bacillus spp.를 이용한 사과 겹무늬썩음병의 생물학적 방제)

  • Ha-Kyoung Lee;Jong-Hwan Shin;Seong-Chan Lee;You-Kyoung Han
    • Research in Plant Disease
    • /
    • v.29 no.4
    • /
    • pp.390-398
    • /
    • 2023
  • Apple white rot, caused by Botryosphaeria dothidea, is one of the important diseases in Korea. B. dothidea can cause pre- and postharvest decay on apple fruit as well as canker and dieback of apple trees. In this study, we isolated bacteria from the trunk of apple trees and tested their antagonistic activity against B. dothidea. Five bacterial isolates (23-168, 23-169, 23-170, 23-172, and 23-173) were selected that were most effective at inhibiting the mycelial growth of the pathogens. The isolate 23-172 was identified as Bacillus amyloliquefaciens and four isolates 23-168, 23-169, 23-170, and 23-173 were identified as Bacillus velezensis by RNA polymerase beta subunit (rpoB) and DNA gyraseA subunit (gyrA) gene sequencing. All isolates showed strong antagonistic activity against B. dothidiea as well as Colletotrichum fructicola and Diaporthe eres. All isolates exhibited cellulolytic, proteolytic and phosphate solubilizing activities. In particular, two isolates 23-168, 23-169 were shown to significantly reduce the size of white rot lesions in pretreated apple fruits. These results will provide the basis for the development of a fungicide alternative for the control of white rot of apple.

Reducing Fungicidal Spray Frequency for Major Apple Diseases by Increasing the Spray Interval from 15 to 25 days

  • Lee, Dong-Hyuck;Shin, Ho-Cheol;Cho, Rae-Hong;Uhm, Jae-Youl
    • The Plant Pathology Journal
    • /
    • v.25 no.3
    • /
    • pp.270-279
    • /
    • 2009
  • During the course of a study to develop a spraying program at 15-day spray intervals, two important findings were identified allowing for further reduction of spray frequency by increasing the spray interval. In evaluating the contribution of fungicides from a 15-day spray interval program, control of white rot, which is of prime importance in Korea, was not affected, in spite of the extended spray interval caused by omitting the fungicides during the season. In another experiment assessing the duration of the protective activities of several key fungicides used in the 15-day spray interval program, infection control was maintained for almost 30 days for some fungicide. Based on these two findings, a basic spraying program with a 25-day spray interval was developed. This program was modified for four successive years to improve the control efficacy against bitter rot and Marssonina blotch, which sometimes causes as much damage as white rot.

Development and Improvement of fungicidal spray program for apple production.

  • Lee, Hyun-Jik;Cho, Rae-Hong;Shin, Jung-Sup;Kim, Jung-Nam;Yoon, Ji-Hyun;Uhm, Jae-Youl
    • Proceedings of the Korean Society of Plant Pathology Conference
    • /
    • 2003.10a
    • /
    • pp.109.2-109
    • /
    • 2003
  • A basic spray program for apple in which fungicides are scheduled to spray at 15-day interval from petal fall to late August was formulated on the properties of several selected fungicides. In order to improve it, experimental plots, completely randomized block with 3 replications, were prepared in an orchard of 15 years old Fuji cultivar, and the spray programs in which only one chemical in the basic spray program was substituted with others were applied to each plot. It was revealed that only single substitution of the fungicide in the basic spray program makes a great differences in the control of white rot and bitter rot, and that the control property of the fungicides against the two diseases was quite variable even by the time of application. A simila! ! r trial was conducted in 2002 with a new basic spray program that was formulated with fungicides that have shown best control in each spraying time in the previous trial, similar results were obtained. Applying this method, the usefulness of certain fungicide in the spray program for apple could be properly assessed. Anthracnose of Robinia pseudo-acacia L. caused by Collectotrichum spp.

  • PDF

First Report of Fruit Rot Caused by Fusarium decemcellulare in Apples in Korea

  • Lee, Seung-Yeol;Park, Su-Jin;Lee, Jae-Jin;Back, Chang-Gi;Ten, Leonid N.;Kang, In-Kyu;Jung, Hee-Young
    • The Korean Journal of Mycology
    • /
    • v.45 no.1
    • /
    • pp.54-62
    • /
    • 2017
  • In 2014, abnormal brown spots were observed on Hongro apples in fields in Gyeongsangbuk-do Province and during low-temperature storage. The spots were round, blight brown, and different from the symptoms of previously reported apple diseases. A fungal pathogen was isolated and cultured on potato dextrose agar, and it was morphologically similar to Fusarium decemcellulare. A pathogenicity test showed the same brown spots on both wounded and unwounded Hongro and Fuji apple cultivars. RPB1 and RPB2 sequences of F. decemcellulare KNU-GC01 matched with those of F. decemcellulare NRRL 13412 (98.3% and 97.6% similarities, respectively); both strains clustered together in the phylogenetic tree, indicating their close relationship at the species level. Therefore, F. decemcellulare is a newly reported pathogen that causes brown spots on apples in Korea.

Cultural Conditions for Mass Production of Antagonistic Bacillus subtills CAP134 (길항균 Bacillus subtillis CAP134의 대량생산을 위한 배양조건)

  • 박흥섭;조정일
    • Korean Journal of Organic Agriculture
    • /
    • v.5 no.1
    • /
    • pp.87-99
    • /
    • 1996
  • Cultural conditions for mass production of the antagonistic bacteria, Bacillus subtills CAP134 against pathogens causing major airborne diseases to apple tree, effect of temperature, pH, carbon and nitrogen source in the culture broth were investigated. The bacterial growth was most vigorous when the temperature and pH of the culture broth was 30~$35^{\circ}$C, and 7, respectively. As for carbon source, dextrose was best followed in order by dextrose(monosaccharides)>sucrose(disaccharides)$\geq$saccharose(di-saccharides)>starch (polysaccharides). Among different sugars, bacterial growth was favored by in the order of brown, black and white sugars, indicating that the bacterial growth might be promoted by the minor elements presented as impurities in the less purified sugars. As for nitrogen source, organic forms were better to bacterial growth than inorganic forms, that is polypeptone was best followed in order by soy sauce, soybeen milk and inoganic nitrogens. Differences in bacterial growth among different forms of inorganic nitrogen were negligible.

  • PDF

Cultural Conditions for Mass Production of Bacillus subtilis CAP141 (Bacillus subtilis CAP141의 고농도 배양조건)

  • 조정일;박흥섭
    • Korean Journal of Organic Agriculture
    • /
    • v.6 no.1
    • /
    • pp.85-98
    • /
    • 1997
  • Cultural conditions for mass production of the antagonistic bacteria, Bacillus subtills CAP141 against pathogens causing major airborne diseases to apple trees, effects of temperature, pH, carbon and nitrogen source in the culture broth were investigated. The bacterial growth was most vigorous when the temperature and pH of the culture broth was 30~35$^{\circ}$C and 7, respectively. As for carbon source, dextrose was best followed in order by dextrose(monosaccharide) > sucrose(disaccharide) $\geq$ saccharose (market disaccharides) > starch (polysaccharieds). Among different sugars, bacterial growth was favored by in the order of brown, black and white supars, indicating that the bacterial growth might be promoted by the minor elements presented as impurities in the less purified sugars. As for nitrogen source, organic forms were better to bacterial growth than inorganic forms, that is polypeptone was best followed in order by soy sauce, soybeen milk and inorganic nitrogens. Differences in bacterial growth among different forms of inorganic nitrogen were negligible.

  • PDF

Phytophthora Diseases of Apple in Korea: Ⅰ. Occurrence of a Destructive Collar Rot Caused by P. cactorum (사과의 역병: Ⅰ. Phytophthora cactorum에 의한 줄기역병의 발생)

  • Lee, Hyeong-Jin;Cho, Weon-Dae;Kim, Wan-Gyu
    • Korean Journal Plant Pathology
    • /
    • v.13 no.3
    • /
    • pp.139-144
    • /
    • 1997
  • A destructive collar rot of apple caused by a species of Phytophthora has widely occurred in Kyungbuk and less extended in Chungbuk, Chungnam and Chunbuk provinces of Korea. Significantly higher incidence of the disease was observed on cv. Fuji when M26 or M9 was used as dwarfing stocks. Incidence of the disease at several orchards in Uisung, Kunwi, Yesan and Muju ranged from 45 to 80%. Twenty-five isolates of the causal fungus were collected and all isolates were identified as P. cactorum on the basis of their cultural and morphological characters. The fungus produced markedly papillate and broadly ovoid deciduous sporangia both on agar and in water, and a short pedicel was attached to each sporangium. Oospores were readily formed on clarified V8 agar by single isolates and all the antheridia were paragynous. The fungus neither grew nor produced oospores under 5 and over 33$^{\circ}C$. The destructive collar rot of apple caused by P. cactorum has not been reported in Korea previously.

  • PDF