• Title/Summary/Keyword: Apple leaves

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Ascospore Infection and Colletotrichum Species Causing Glomerella Leaf Spot of Apple in Uruguay

  • Alaniz, Sandra;Cuozzo, Vanessa;Martinez, Valentina;Stadnik, Marciel J.;Mondino, Pedro
    • The Plant Pathology Journal
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    • v.35 no.2
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    • pp.100-111
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    • 2019
  • Glomerella leaf spot (GLS) caused by Colletotrichum spp. is a destructive disease of apple restricted to a few regions worldwide. The distribution and evolution of GLS symptoms were observed for two years in Uruguay. The recurrent ascopore production on leaves and the widespread randomized distribution of symptoms throughout trees and orchard, suggest that ascospores play an important role in the disease dispersion. The ability of ascospores to produce typical GLS symptom was demonstrated by artificial inoculation. Colletotrichum strains causing GLS did not result in rot development, despite remaining alive in fruit lesions. Based on phylogenetic analysis of actin, ${\beta}$-tubulin and glyceraldehyde-3-phosphate dehydrogenase gene regions of 46 isolates, 25 from fruits and 21 from leaves, C. karstii was identified for the first time causing GLS in Uruguay and C. fructicola was found to be the most frequent (89%) and aggressive species. The higher aggressiveness of C. fructicola and its ability on to produce abundant fertile perithecia could help to explain the predominance of this species in the field.

Effects of Tree-spray of Calcium Formate Compound Extracted from Oyster Shell and Active Agent on the Calcium Concentration, Fruit Skin Shape, and Quality of 'Fuji' Apple Fruit (굴 껍데기에서 개미산으로 추출한 칼슘화합물과 활성제의 수관살포가 사과 '후지' 과실의 칼슘농도, 과피 형태 및 품질에 미치는 영향)

  • Moon, Byung-Woo;Kang, In-Kyu
    • Journal of Bio-Environment Control
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    • v.16 no.1
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    • pp.21-26
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    • 2007
  • This study was carried out to investigate the effects of tree-spray of calcium formate compound extracted from oyster shell with several active agents on the calcium concentration, fruit skin shape and quality of 'Fuji' apple. The tree-spray of calcium formate compound extracted from oyster shell (Os-CaF, $52.4\;mg{\cdot}kg^{-1}$) appeared to have more effectiveness on the calcium translocation into leaves, fruit skin and flesh than control. Addition of adjuvants to Os-CaF increased calcium concentration of 'Fuji' apple when sprayed three times before harvest. Among the active agents examined, the treatment ascorbic acid and poly-vinyl alcohol (PVA) in leaves, Ag-colloidal and PVA in fruit skin, ascorbic acid, Ag-colloidal, and PVA in fruit flesh exhibited highest effectiveness. Fruit qualities (fruit weight, firmness, soluble solids, acidity and Hunter value) were not affect by Os-CaF on different concentrations and solutions of active agents.

Effects of Tree-spray of Organic Calcium Compounds on the Mineral Nutrition Concentration, Russet Occurrence and Fruit Quality in 'Fuji' Apple at Harvest (사과 '후지'에서 유기 칼슘화합물의 수관살포가 과실의 무기성분 농도, 동녹 발생 및 과실 품질에 미치는 영향)

  • Moon, Byung-Woo;Lee, Young-Cheul;Jung, Hae-Woong
    • Journal of Practical Agriculture & Fisheries Research
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    • v.14 no.1
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    • pp.47-59
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    • 2012
  • The effects of organic calcium compounds (ACa) tree-spray for late growing stage on the mineral nutrition concentration of fruit, russet and quality in 'Fuji' apple were investigated. Optimum spray concentration of leaves by ACa tree-spray during late growth stage were ranged 125 times among 1,000 times. Also, Optimum concentration of fruits was effected to 125 times. Optimum spray times of leaves effected by ACa 500 times tree-spray during late growth stage were effective in one times (Sept. 25) and three times (Sept. 25, Oct. 5, 15). Also, Optimum times concentration of fruit skin was effected to one times (Sept. 25) and fruit flesh was effected two times (Sept. 25, Oct. 5) and three times (Sept. 25, Oct. 5, 15). Phytotoxicity by tree-spray of ACa concentration and times different not occur to leaf and fruit.

Effect of Calcium on the Apple Varieties Resistance to Alternaria Leaf Spot and Mycelial Growth of Alternaria mali Roberts (Ca물질(物質)이 사과나무 반점낙엽병(斑點落葉病) 발생(發生) 및 병원균(病原菌)의 균사생육(菌絲生育)에 미치는 영향(影響))

  • Yoon, J.T.;Lee, J.T.
    • Korean journal of applied entomology
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    • v.26 no.4 s.73
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    • pp.239-244
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    • 1987
  • This studies was carried out to find the effect of inorganic matters of Apple Leaves on the occurrence of Alternaria leaf spot and calicium compounds on mycelial growth of Alternaria mali. Diseased leaf rate of Alternaria leaf spot of susceptible apple varieties was 84.8%, moderate resistant 8.1% and resistant 0.3% respectively and in No. of lesion per leaf, the tendency was same. CaO contents of apple leaves was contained much in the resistant varieties than susceptible one. It was estimated that calcium is one of factors on resistance to apple leaf spot by the results of relations among CaO contents and diseased leaf rate from July to August and No. of lesion per leaf was correlated significantly as r=-0.551, r=-0.585, -0.485 but in T-N, $P_2O_5,\;K_2O,\;MgO,\;Na_2O$, there was no difference among varieties. Then, growth of Alternaria mali was possible in the media of which pH ranged up to $11{\sim}13$, and calcium has effect of inhibition on growth of Alternaria mali.

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Studies on The Nutrition of Apple Trees with Reference to The Bark Necrosis Disease

  • Park, Young-Dae;Kim, Yung-Sup;Lee, Dong-Suk
    • Applied Biological Chemistry
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    • v.5
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    • pp.43-47
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    • 1964
  • Leaf analysis was used as a means of diagnosis of unknown apple bark disease. The results obtained from analysis may be summarized as follow; Manganese is one of the most important element in the development of the bark disease. Evidence supporting this view was presented in 1962 by writers. Diseased symtom appears about 904 ppm of manganese and on average, manganese content of diseased leaves was 4 times as high as that of healty leaves. There is a significance between the reducible manganese in soil and the absorption of manganese in diseased leaves. Consequently, the disease should be considered manganese toxicity and may be the same one described by Berg as "Internal Bark Necrosis." In order to prevent the bark disease, plant absorption of manganese must be decreased with increasing soil pH, or by other means.

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State of Knowledge of Apple Marssonina Blotch (AMB) Disease among Gunwi Farmers

  • Posadas, Brianna B.;Lee, Won Suk;Galindo-Gonzalez, Sebastian;Hong, Youngki;Kim, Sangcheol
    • Journal of Biosystems Engineering
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    • v.41 no.3
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    • pp.255-262
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    • 2016
  • Purpose: Fuji apples are one of the top selling exports for South Korea bringing in over $233.4 million in 2013. However, during the last few decades, about half of the Fuji apple orchards have been infected by Apple Marssonina Blotch disease (AMB), a fungal disease caused by Diplocarpon mali., which takes about 40 days to exhibit obvious visible symptoms. Infected leaves turn yellow and begin growing brown lesions. AMB promotes early defoliation and reduces the quality and quantity of apples an infected tree can produce. Currently, there is no prediction model for AMB on the market. Methods: The Precision Agriculture Laboratory (PAL) at the University of Florida (UF) has been working with the National Academy of Agricultural Science, Rural Development Administration, South Korea to investigate the use of hyperspectral data in creating an early detection method for AMB. The RDA has been researching hyperspectral techniques for disease detection at their Apple Research Station in Gunwi since 2012 and disseminates its findings to the local farmers. These farmers were surveyed to assess the state of knowledge of AMB in the area. Out of a population of about 750 growers, 111 surveys were completed (confidence interval of +/- 8.59%, confidence level of 95%, p-value of 0.05). Results: The survey revealed 32% of the farmers did not know what AMB was, but 45% of farmers have had their orchards infected by AMB. Twenty-five percent could not distinguish AMB from other symptoms. Overwhelmingly, 80% of farmers strongly believed an early detection method for AMB was necessary. Conclusions: The results of the survey will help to evaluate the outreach programs of the RDA so they can more effectively educate farmers on the identifying, treating, and mediating AMB.

Population density and internal distribution range of Erwinia amylovora in apple tree branches

  • Mi-Hyun Lee;Yong Hwan Lee
    • Korean Journal of Agricultural Science
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    • v.49 no.4
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    • pp.881-892
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    • 2022
  • Fire blight in apple and pear orchards, caused by Erwinia amylovora, is a global problem. Ongoing outbreaks have occurred since 2015. In 2020, 744 orchards were infected compared with 43 orchards in 2015 in Korea. When are insufficient. In Korea, all host plants in infected orchards are buried deeply with lime to eradicate the E. amylovora outbreak within a few days. Apple trees with infected trunks and branches and twigs with infected leaves and infected blooms were collected from an apple orchard in Chungju, Chungbuk province, where fire blight occurred in 2020. We used these samples to investigate the population density and internal distribution of E. amylovora on infected branches and twigs during early season infections. Infected branches and twigs were cut at 10 cm intervals from the infected site, and E. amylovora was isolated from tissue lysates to measure population density (colony-forming unit [CFU]·mL-1). The polymerase chain reaction was performed on genomic DNA using E. amylovora specific primers. Real-time polymerase chain reaction (PCR) was performed to detect E. amylovora in asymptomatic tissue. The objective of these assays was to collect data relevant to the removal of branches from infected trees during early season infection. In infected branches, high densities of greater than 106 CFU·mL-1 E. amylovora were detected within 20 cm of the infected sites. Low densities ranging from 102 to 106 CFU·mL-1 E. amylovora were found in asymptomatic tissues at distances of 40 - 75 cm from an infection site.

Influence of Seasonal incidence and Defoliation Degree of Marssonina Blotch on Fruit Quality and Shoot Growth of 'Fuji'/M.9 Apple Tree (갈색무늬병의 시기별 이병 및 낙엽 정도가 '후지'/M.9 사과나무의 과실품질 및 신초생장에 미치는 영향)

  • Park, Moo-Yong;Sagong, Dong-Hoon;Kweon, Hun-Joong;Do, Yun-Su;Song, Yang-Yik;Lee, Dong-Hyuk
    • Horticultural Science & Technology
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    • v.31 no.5
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    • pp.523-530
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    • 2013
  • This study investigated the influence of seasonal incidence and defoliation degree caused by Marssonina blotch (Diplocarpon mali Harada et Sawamura) on shoot growth and fruit quality of 'Fuji'/M.9 apple tree. The occurrence of marssonina blotch in Gunwi region was observed from the mid of July 2009, and percentage of defoliation was about 10% in the end of October. In 2010, that started in the early of June. By the end of September, percentage of defoliation was 20% and it reached 50% in late October. Secondary growth of terminal shoot in 2010 was three times as much as that in 2009. In 2009, the soluble solid contents and the red color (hunter a value) during fruit maturation increased to $13.8^{\circ}Brix$ and 16.2, respectively. In 2010, the soluble solid content during fruit maturation remained in the $12.1-12.6^{\circ}Brix$ range after early October, and the red color began to increase after the end of September when the percentage of defoliation was 20%. As for fruit quality by defoliation degree, the red color decreased when defoliation percentage of bourse shoot at the end of October was more than 30%. Fruit weight and soluble solids also decreased when defoliation percentage was more than 50%. Fruit length and diameter of over 30% defoliation treatments begun to decrease after the middle of August, compared with those of under 30% defoliation treatment. Photosynthetic rate of the leaves that was located at the secondary growth of bourse shoot was similar to that of leaves which was located at the middle of bourse shoot. However, the size and the soluble solid content of fruit were not affected by photosynthesis activities of bourse shoot leaves which was develop in the secondary shoot growth.

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
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    • v.16
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    • pp.84-95
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    • 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.

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Changes in Photosynthesis and Carbohydrate Reserves of 'Fuji'/M9 Apple trees in Response to Early Defoliation at Growing Period (생육기 조기낙엽에 따른 사과 '후지'/M9의 광합성과 탄수화물의 변화)

  • Jeong, Jae Hoon;Han, Jeom Hwa;Ryu, Suhyun;Han, Hyun Hee;Kwon, YongHee;Do, Gyung-Ran;Yim, Sun-Hee;Lee, Han-Chan
    • Journal of Bio-Environment Control
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    • v.26 no.4
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    • pp.291-296
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    • 2017
  • This study was conducted to evaluate the influence of early defoliation on photosynthesis and carbohydrate reserves when the source leaves of 'Fuji'/M9 apple (Malus domestica Borkh.) trees were removed during the growing period. Bud regrowth rates of 80%, 50% defoliation and non-defoliation treatments were significantly different 82.7%, 45.9% and 2.1% respectively at 30 days after treatment. In all treatments, sucrose and starch concentrations in remaining leaves decreased non-significantly during the 14-day period. No significant changes were observed for total soluble carbohydrates in non-defoliation and 50% defoliation. However, in 80% defoliated treatments, concentrations of sorbitol and total soluble carbohydrates in remaining leaves declined steadily during the 14-day period. It is thought that high sink strength increases the requirements of carbohydrate from remaining leaves more than non-defoliated. The concentrations of starch in the roots tend to decrease non-significantly as percentage of defoliation increased. Photosynthesis of remaining leaves was monitored during the 14-day period after partial defoliation treatments. Net photosynthetic rates (Pn) and stomatal conductance were significantly enhanced in the 80% defoliation. The observed photosynthetic enhancement following partial defoliation may have been due to the enhancement of osmotic potential in leaves. These results were estimated that increasing of photosynthetic rate in the partial defoliation is due to the sink carbohydrate requirements for the current year's secondary growth of buds.