• Title/Summary/Keyword: foliar treatment

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Foliar Application of Growth Bioregulators Influences Floral Traits, Cormassociated Traits and Chemical Constituents in Gladiolus grandiflorus L.

  • Sajjad, Yasar;Jaskani, Muhammad Jafar;Qasim, Muhammad;Akhtar, Gulzar;Mehmood, Asim
    • Horticultural Science & Technology
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    • v.33 no.6
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    • pp.812-819
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    • 2015
  • Gladiolus is one of the most popular cut flowers in the world floral market and is highly attractive to consumers. The production of poor-quality gladiolus spikes is one of the most important hurdles to obtaining high prices for this crop. The main objectives of this study were to improve the quantitative characteristics of gladiolus spikes, to increase propagule production and to enhance chemical constituent levels in leaves to help improve plant growth. We performed foliar application of bioregulators, including polyamines (putrescine and spermine) and vitamins (ascorbic acid and thiamine), at different concentrations (0, 0.1, 0.4, 0.7 and 1 mM) to gladiolus plants at the three leaf, five leaf and slipping stages. Application of 1 mM putrescine was the most effective treatment, with prominent effects on economically important spike traits including spike length (55.53 cm), spike diameter (7.53 mm), florets per spike (13.99), first floret diameter (9.66 cm) and first floret weight (4.90 g), followed by spermine treatment. The 1 mM putrescine treatment also had positive effects on corm-associated traits including corm diameter and corm weight, with values of 4.57 cm and 26.16 g compared to 3.47 cm and 17.16 g in control plants, respectively. The contents of chemical constituents in leaves, including total chlorophylls ($8.06mg{\cdot}g^{-1}$), total carotenoids ($1.66mg{\cdot}g^{-1}$), total soluble sugars ($4.75 mg{\cdot}g^{-1}$) and phenolics ($0.89mg{\cdot}g^{-1}$) increased in response to foliar application of 1 mM putrescine compared to the control. Ascorbic acid and thiamine also had positive effects on various plant morphological traits and chemical constituents in leaves compared to control plants, but the growth-promoting effects of polyamines were more pronounced. Hence, applying polyamines to gladiolus leaves will help improve spike production and increasing propagule (cormel) yields.

Growth Responses of two Tree Species Exposed to Simulated Acidic Rain and Ozone (산성비와 오존에 대한 두 수종의 생장반응)

  • Lee, Woong-Sang
    • The Korean Journal of Ecology
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    • v.17 no.2
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    • pp.131-141
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    • 1994
  • One-year-old yellow-poplar (Liriodendron tulipifera L.) and sweetgum (Liquidambar styraciflua L.) seedlings were exposed to 0.10 ${\mu}l/l\;O_3$and simulated acid rain at pH 3.0 for ten consecutive weeks. Shoot height growth (SHG), fresh weight (FWT), dry weight (DWT), apparent plastochron duration (APD) and foliar nutrient concentrations were measured. None of growth measurements, except the apparent plastochron duration (APD), were significantly affected by any treatment in yellow-poplar seedlings. APD was approximately 30% higher in seedlings exposed to $0.1{\mu}l/l\;O_3$ + pH 5.6 solution than any other treatment. Ozone significantly reduced SHG of sweetgum seedlings by 24% at the end of the ten-week fumigation. There were also significant effects of single and combined effects of ozone and simulated acid rain on APD in sweetgum. APD was significantly increased by 19.8% and 25.7% in seedlings exposed to $0.1{\mu}l/l\;O_3$ and pH 5.6 solution, respectively, and resulted in 46.1% higher APD in seedlings exposed to $0.1{\mu}l/l\;O_3$ + pH 5.6 solution compared with seedlings exposed to $0.0{\mu}l/l\;O_3$ + pH 3.0 solution. Phosphorus and sulphur were significantly greater in seedlings exposed to simulated rain at pH 3.0 compared with pH 5.6 for both species. Foliar S concentration was higher in seedlings exposed to $0.0{\mu}l/l\;O_3$ + pH 3.0 than in seedlings exposed to any other treatment in sweetgum. Ozone significantly increased Ca in sweetgum seedlings, however, ozone reduced Ca in yellow-poplar. Ozone also reduced S and Mg in sweetgum seedlings.

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Plant growth promoting effect of 4-quinolinone metabolites from Pseudomonas cepacia and 4-quinolinone-3-carboxylate derivatives on red pepper plant (Capsicum annum) (Pseudomonas cepacia로부터 유래한 4-quinolinone 대사물질과 4-quinolinone-3-carboxylate 유도체의 고추(Capsicum annum)에서의 생장촉진 효과)

  • Moon, Surk-Sik;Myung, Eul-Jae;Cho, Soon-Chang;Park, Jae-Bum;Chung, Bong-Jin
    • The Korean Journal of Pesticide Science
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    • v.6 no.2
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    • pp.64-71
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    • 2002
  • Plant growth promoting activity of quinolinone metabolites, 2-(2-hepteny)-3-methyl-4-quinolinone (1), 2-heptyl-3-methyl-4-quinolinone, and 2-nonyl-3-methyl-4-quinolinone, produced by Pseudomonas cepacia and ethyl 2-methyl-3-alkyl-4-quinolinone carboxylates chemically synthesized were tested by using seed-germination assay, growth increments in plant height after foliar applications. Plant height increment, fresh weight, and the number of fruits were measured after seed-soaking and drench treatment. Compound 1 among the natural products showed a consistent growth promoting effect in seed-germination and plant height after a foliar application. After a seed-soaking and drench treatment, compound 1 and synthetic ethyl 2-methyl-4-quinolinone-3-carboxylate (5) showed a significant enhancement in fresh weight and the number of fruits after harvest. Compound 1 and 5 increased the number of fruits per plant by 44% and 84% over the control, respectively.

Effects of Boron Applications on Flower Spike Dieback of Statice (Limonium spp.)

  • Choi, Chang-Hak;Jeong, Dong-Chun;Lee, Jin-Jae;Song, Young-Ju;Ahn, Byung-Koo;Lee, Jin-Ho
    • Korean Journal of Soil Science and Fertilizer
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    • v.46 no.3
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    • pp.209-215
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    • 2013
  • This study was conducted to investigate the effects of boron treatments on flower spike dieback of Statice (Limonium spp.) grown in soilless hydroponic and soil cultures under rain shelter system. The growth of Statice was gradually improved with increasing boron applications in the hydroponics, but not in soil culture with boron treatment as foliar spray or soil application. The degree of flower spike dieback in 6 levels (0, no dieback incidence to 5, very severe dieback incidence) ranged between 0.5 with boron application and 4.4 with no boron treatment. The content of boron in Statice flower spike increased with increasing rates of boron applications in the hydroponics, but the contents of P, Mg, and N were not affected by the boron application. However, K content was highest with no boron treatment. In soil culture, incidence of flower spike dieback decreased with foliar spray or soil application of boron. Therefore, boron application was effective in reducing flower spike dieback and improving cut-flower productivity and its quality, and the recommended rates of boron application were $50{\sim}80{\mu}gL^{-1}$ for hydroponics culture whereas 0.2% borex or ${\geq}0.4kg\;10a^{-1}$ boric acid by foliar spray application for soil culture.

Response of Korean Ginseng (Panax ginseng C. A. Meyer) to 2, 4- D II. Effects of 2, 4-D Foliar Application on Photosynthesis, Ethylene Gas Production and Plant Growth (제초제 2, 4-D에 대한 고려인삼의 반응 II. 2, 4-D의 경엽처리가 인삼엽의 광합성, 에칠렌가스 발생 및 지상부 생육에 미치는 영향)

  • 조재성;원준연;신최순
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.36 no.2
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    • pp.107-111
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    • 1991
  • This study was conducted to define the effect of 2, 4-D foliar application on the plant growth. photosynthesis ability and ethylene gas production of the ginseng plant. Neither abnomal foliar changes occured nor any inhibition in the leaf and stem growth was resulted for the plants treated with 2,4-D concentrated three times of the recommended dosage. The angle of petiole to the stem became wider by 2, 4-D foliar application. The higher concentration treatment of 2,4-D made the petiole angle significantly wider. Foliar application of the herbicide 2,4-D inhibited photosynthesis of the ginseng leaf. The inhibition rate of photosynthesis was significantly increased with the application concentration of 2, 4-D. Inhibition in photosyn-thesis ability by 2,4-D application with doubled concentration was recovered in three days after treatment. When 2,4-D was treated with a concentration tripled the recommended dosage, 12 days were needed to recover the photosynthesis ability of the ginseng leaf. Ethylene gas was not detected from the ginseng plants treated with 2 times concentrated 2, 4-D. However, the ginseng plants produced 0.03-0.04 ppm ethylene gas when the application rate was increased 3 times. The amount of ethylene gas produced by ginseng plant treated with 3 times concentrated 2, 4-D was only 1/20 compared with the amount produced by the soybean plant treated with the recommended dosage of 2, 4-D.

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Effect of Methylobacterium oryzae CBMB20 Inoculation and Methanol Spray on Growth of Red Pepper (Capsicum annuum L.) at Different Fertilizer levels (메탄올 살포와 Methylobacterium oryzae CBMB20 접종이 고추의 생육이 미치는 영향)

  • Chauhan, Puneet Singh;Lee, Gil-Seung;Lee, Min-Kyoung;Yim, Woo-Jong;Lee, Gyeong-Ja;Kim, Young-Sang;Chung, Jong-Bae;Sa, Tong-Min
    • Korean Journal of Soil Science and Fertilizer
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    • v.43 no.4
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    • pp.514-521
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    • 2010
  • Fertilizers, plant growth promoting microbes and plant growth regulators should be combined together and used in order to achieve a maximal plant growth and yield in modern sustainable and ecological agricultural systems. In this study rhizosphere inoculation of Methylobacterium oryzae CBMB20 and foliar application of methanol were tested for their ability to promote the growth of red pepper plant at different levels of organic fertilizer. Rhizosphere inoculation of M. oryzae CBMB20 and foliar spray of methanol could promote red pepper plant growth and yield, and the growth promoting effect induced by the combined treatment of M. oryzae CBMB20 inoculation and foliar spray of methanol was more distinctive. This result suggests that a synergistic growth promoting effect of methanol spray and M. oryzae CBMB20 inoculation can be obtained in the combined treatment of the two growth promoting factors. The growth promoting effect was more significant in the lower fertilization rate, and the plant growth was not significantly different between 100 and 300% fertilizer treatments where both M. oryzae CBMB20 inoculation and foliar spray of methanol were included. This result indicates that, with the plant growth promoting effect of M. oryzae CBMB20 and methanol, fertilizer application rate can be profoundly reduced without any significant decreases in biomass accumulation and yield of crops.

Effects of Fertilizer and Regulator Application on Shortening of Plant Height and Yield of Sesame (시비방법과 생장조정제 처리가 참깨 초장단축 및 수량에 미치는 영향)

  • 정병관
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.36 no.3
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    • pp.259-265
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    • 1991
  • This experiment was carried out to find of shortening degree of plant height and seed yield of sesame by different treatment of fertilizer and regulator application. Treatment of higher yield was compost, foliar spraying of Tachigaren chemicals and pinching + 1. 5 times as much as control application of 3 elements which was nitrogen, phosphate, potassium. Especially, Tachigaren chemicals plot was showed increasing lodging resistance because of shortening stem of 6cm compare with control plot and more 8% than control plot in seed yield. Expectant treatment of seed yield was application of compost 2,000Kg per l0a. Foliar spraying of Tachigaren chemicals at 6 leaves full-open of main stem was expected higher yield as well as shortening stem.

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Effect of Foliar Spray of Urea on Urease Activity in various Plant Leaves (요소엽면시비(尿素葉面施肥)가 Urease활성(活性)에 미치는 영향(影響))

  • Hong, Jong-Uck;Lee, Hyo-Sa
    • Applied Biological Chemistry
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    • v.24 no.1
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    • pp.15-20
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    • 1981
  • Changes of urease activity in plant leaves following foliar application of urea were investigated with soybean, rye, tomato, radish and cabbage which were actively growing in a field. In this experiment, the procedure of the enzyme assay included incubation of the reaction mixture at $60^{\circ}C$ for 3 hr in order to inactivate heat unstable enzmes which may utilize ammonia produced by urease. The leaves with urea application showed somewhat higher urease specific activities for 2-4 days immediately after the foliar spray as compared with controls. The most difference of the specific activies between urea treatment and control was usually observed 2 days after urea application regardless of the plants. The difference of the specific activities disappeared completely 4 or 5 days following urea treatment. Protein contents in the leaves of soybean and tomato were increased for about 5 days after urea treatment, while no significant difference was found with rye, radish and cabbage. Urea application showed slightly lower ammonia concentration in the leaves which had higher urease activities. These results suggest that foliar spray of urea is very effective when nitrogen supply is required for rapid growth.

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Variation of Soil and Leaf in a 'Wonhwang' Pear Orchard Appled by Selenium Solution (셀레늄 처리방법에 따른 '원황' 배 과원의 토양 및 수체 변화)

  • Choi, Hyun-Sug;Kim, Wol-Soo;Kim, Hyun-Ji;Choi, Kyeong-Ju;Lee, Youn
    • Korean Journal of Organic Agriculture
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    • v.18 no.4
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    • pp.541-548
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    • 2010
  • This study was established on which the selenium (Se), known as one of the functional elements in the human body, treatment was the most effective for the Se uptake in the soil and tree. Se treatments included foliar application, soil fertigation, and trunk injection. Se fertigation and control had similar soil $P_2O_5$, K, and Mg concentrations, and calcium and Se concentrations in the soil were greater on the control and Se fertigation, respectively. Leaf characteristics were not different among the treated trees. No differences were observed for the leaf K and Ca concentrations among the treated trees, and foliar Mg was greater on the Se treated trees than the control. Se foliar application and trunk injection had greater Se concentrations in the leaves and fruits than the Se fertigation and control.

Paromomycin Derived from Streptomyces sp. AG-P 1441 Induces Resistance against Two Major Pathogens of Chili Pepper

  • Balaraju, Kotnala;Kim, Chang-Jin;Park, Dong-Jin;Nam, Ki-Woong;Zhang, Kecheng;Sang, Mee Kyung;Park, Kyungseok
    • Journal of Microbiology and Biotechnology
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    • v.26 no.9
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    • pp.1542-1550
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    • 2016
  • This is the first report that paromomycin, an antibiotic derived from Streptomyces sp. AG-P 1441 (AG-P 1441), controlled Phytophthora blight and soft rot diseases caused by Phytophthora capsici and Pectobacterium carotovorum, respectively, in chili pepper (Capsicum annum L.). Chili pepper plants treated with paromomycin by foliar spray or soil drenching 7 days prior to inoculation with P. capsici zoospores showed significant (p < 0.05) reduction in disease severity (%) when compared with untreated control plants. The disease severity of Phytophthora blight was recorded as 8% and 50% for foliar spray and soil drench, respectively, at 1.0 ppm of paromomycin, compared with untreated control, where disease severity was 83% and 100% by foliar spray and soil drench, respectively. A greater reduction of soft rot lesion areas per leaf disk was observed in treated plants using paromomycin (1.0 μg/ml) by infiltration or soil drench in comparison with untreated control plants. Paromomycin treatment did not negatively affect the growth of chili pepper. Furthermore, the treatment slightly promoted growth; this growth was supported by increased chlorophyll content in paromomycin-treated chili pepper plants. Additionally, paromomycin likely induced resistance as confirmed by the expression of pathogenesis-related (PR) genes: PR-1, β-1,3-glucanase, chitinase, PR-4, peroxidase, and PR-10, which enhanced plant defense against P. capsici in chili pepper. This finding indicates that AG-P 1441 plays a role in pathogen resistance upon the activation of defense genes, by secretion of the plant resistance elicitor, paromomycin.