• 제목/요약/키워드: salicylic acid (SA)

검색결과 106건 처리시간 0.031초

닭의장풀의 기공닫힘에 미치는 살리실릭산과 그 유사물의 효과 (Effect of salicylic acid and its analogues on stomatal closing in Commelina communis L.)

  • 이준상
    • 한국환경과학회지
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    • 제4권4호
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    • pp.15-15
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    • 1995
  • ABA와 SA는 같은 조건하에서 기공 닫힘에 대하여 다른 효과를 나타냈다. 활짝 열린 기공에 1 mM Salicylic acid(SA)를 첨가 하였을 때, 열린 기공 크기의 22%가 감소하였다. 그러나 1mM ABA는 열린 기공 크기를 73%나 감소시켰다. SA용액의 광흡수 스펙트라 조가 셜과 SA가 1시간 내에 분해 되었다. 따라서, 분리표와 배양 동안에 SA 용액을 20분 마다 갈아 주었다. 그 결과 심지어 10$mu$M SA도 기공 닫힘을 크게 유도하였으며, 기공 닫힘에 대한 SA의 효과는 pH에 크게 으존적이었다. 1mM SA에 의하여 유도된 기공크기의 감소는 낮은 pH(pH 7.2, 5%; pH 6.2, 40%; pH 5.2, 78%)에서 가장 효과적이었다. 따라서, SA를 배양액에 있는 분리 표피에 적절히 처리하면 기공 닫힘에 대한 효과는 ABA와 거의 같다.

닭의장풀의 기공닫힘에 미치는 살리실릭산과 그 유사물의 효과 (Effect of salicylic acid and its analogues on stomatal closing in Commelina communis L.)

  • 이준상
    • 한국환경과학회지
    • /
    • 제4권4호
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    • pp.317-321
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    • 1995
  • ABA와 SA는 같은 조건하에서 기공 닫힘에 대하여 다른 효과를 나타냈다. 활짝 열린 기공에 1 mM Salicylic acid(SA)를 첨가 하였을 때, 열린 기공 크기의 22%가 감소하였다. 그러나 1mM ABA는 열린 기공 크기를 73%나 감소시켰다. SA용액의 광흡수 스펙트라 조가 셜과 SA가 1시간 내에 분해 되었다. 따라서, 분리표와 배양 동안에 SA 용액을 20분 마다 갈아 주었다. 그 결과 심지어 10$\mu$M SA도 기공 닫힘을 크게 유도하였으며, 기공 닫힘에 대한 SA의 효과는 pH에 크게 으존적이었다. 1mM SA에 의하여 유도된 기공크기의 감소는 낮은 pH(pH 7.2, 5%; pH 6.2, 40%; pH 5.2, 78%)에서 가장 효과적이었다. 따라서, SA를 배양액에 있는 분리 표피에 적절히 처리하면 기공 닫힘에 대한 효과는 ABA와 거의 같다.

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효모세포벽추출물에 의한 고추내 salicylic acid 생성유도 (Induction of Salicylic Acid Production in Pepper by Yeast Cell Wall Extract)

  • 강대선;조수묵;강희완
    • 한국균학회지
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    • 제40권4호
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    • pp.299-302
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    • 2012
  • 효모추출물 4 mg/mL를 고추유묘에 경엽 및 뿌리 관주처리 24시간 후에 salicylic acid(SA)함량을 ultra high performance liquid chromatography(UHPLC)분석방법으로 측정한 결과 yeast cell wall extract(YCWE)처리구에서 대조구의 SA처리구와 동일한 peak가 검출되어 SA가 생성 유도 되는 것으로 확인 되었다. SA는 YCWE를 경엽처리 48시간 후 20.29 ${\mu}g/g$으로 가장 높게 나타났으며 관주처리보다 약 3.7배의 높은 SA검출함량을 보였으나 처리 후 72시간부터는 점차적으로 SA함량이 감소하는 양상을 보였다.

Induction of a Salicylic Acid Glucosyltransferase, AtSGT1, Is an Early Disease Response in Arabidopsis thaliana

  • Song, Jong Tae
    • Molecules and Cells
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    • 제22권2호
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    • pp.233-238
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    • 2006
  • Endogenous salicylic acid (SA) and its predominant conjugates, SA 2-O-${\beta}$-D-glucoside (SAG) and the glucose ester of SA (SGE), increase dramatically during plant defense responses. Here I report the isolation and characterization of an Arabidopsis thaliana UDP-glucose:SA glucosyltransferase1 (AtSGT1) gene using a tobacco SGT gene previously reported, whose product catalyzes the formation of both SAG and SGE. The recombinant AtSGT1 protein had significant activities with SA and benzoic acid, and synthesized SAG and SGE. Northern blot analysis showed that AtSGT1 was rapidly induced both by exogenous SA and infection with the bacterial pathogen Pseudomonas syringae, indicating that pathogen-inducible AtSGT1 expression is an early disease response and may be involved in the accumulation of glucosyl SA during pathogenesis.

Salicylic Acid 정량을 위한 Europium-Salicylic Acid 복합체의 계면활성제 증감 형광법에 관한 연구 (Study of Surfactant Sensitized Fluorescence of Europium-Salicylic Acid Complex for the Determination of Salicylic Acid)

  • ;;김소연;조해진;이상학;김영호;서정기
    • 응용화학
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    • 제15권1호
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    • pp.29-32
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    • 2011
  • Surfactant enhanced fluorescence (FL) of europium-salicylic acid (SA) complex has been studied. It was observed that weak FL of Eu(III) at the wavelength of 589 nm and 612 nm was found to be enhanced after addition of salicylic acid and cetyltrimethylammonium bromide (CTAB) surfactant upon excitation at 395 nm. Under optimized condition, FL intensity of Eu(III) at 612 nm responded linearly with the concentration of SA in the range of 5.5×10-9 to 1.5×10-6 M of SA. The detection limit was calculated from the calibration curve(3Sb/m) as 9.27×10-9 M.

GUS Expression Driven by Promoter of AtSAGT1 Gene Encoding a Salicylic Acid Glucosyltransferase 1 in Arabidopsis Plants

  • Sendon, Pamella Marie;Park, Jong-Beum;Park, Soon-Ki;Song, Jong Tae
    • Current Research on Agriculture and Life Sciences
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    • 제31권2호
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    • pp.83-87
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    • 2013
  • AtSAGT1 encodes a salicylic acid (SA) glucosyltransferase enzyme that catalyzes the formation of SA glucoside and SA glucose ester. Here, the AtSAGT1 gene expression patterns were determined in AtSAGT1 promoter::GUS transgenic Arabidopsis plants. As a result, the factors regulating the induction of AtSAGT1 were identified as pathogen defense response, wound response, exogenous application of SA, and jasmonic acid treatment.

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Salicylic Acid as a Safe Plant Protector and Growth Regulator

  • Koo, Young Mo;Heo, A Yeong;Choi, Hyong Woo
    • The Plant Pathology Journal
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    • 제36권1호
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    • pp.1-10
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    • 2020
  • Since salicylic acid (SA) was discovered as an elicitor of tobacco plants inducing the resistance against Tobacco mosaic virus (TMV) in 1979, increasing reports suggest that SA indeed is a key plant hormone regulating plant immunity. In addition, recent studies indicate that SA can regulate many different responses, such as tolerance to abiotic stress, plant growth and development, and soil microbiome. In this review, we focused on the recent findings on SA's effects on resistance to biotic stresses in different plant-pathogen systems, tolerance to different abiotic stresses in different plants, plant growth and development, and soil microbiome. This allows us to discuss about the safe and practical use of SA as a plant defense activator and growth regulator. Crosstalk of SA with different plant hormones, such as abscisic acid, ethylene, jasmonic acid, and auxin in different stress and developmental conditions were also discussed.

Regulation of Salicylic Acid and N-Hydroxy-Pipecolic Acid in Systemic Acquired Resistance

  • Gah-Hyun, Lim
    • The Plant Pathology Journal
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    • 제39권1호
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    • pp.21-27
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    • 2023
  • In plants, salicylic acid (SA) is a central immune signal that is involved in both local and systemic acquired resistance (SAR). In addition to SA, several other chemical signals are also involved in SAR and these include N-hydroxy-pipecolic acid (NHP), a newly discovered plant metabolite that plays a crucial role in SAR. Recent discoveries have led to a better understanding of the biosynthesis of SA and NHP and their signaling during plant defense responses. Here, I review the recent progress in role of SA and NHP in SAR. In addition, I discuss how these signals cooperate with other SAR-inducing chemicals to regulate SAR.

Application of Jasmonic Acid Followed by Salicylic Acid Inhibits Cucumber mosaic virus Replication

  • Luo, Ying;Shang, Jing;Zhao, Pingping;Xi, Dehui;Yuan, Shu;Lin, Honghui
    • The Plant Pathology Journal
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    • 제27권1호
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    • pp.53-58
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    • 2011
  • Systemic acquired resistance is a form of inducible resistance that is triggered in systemic healthy tissues of local-infected plants. Several candidate signaling molecules emerged in the past two years, including the methylated derivatives of well-known defense hormones salicylic acid (SA) and jasmonic acid (JA). In our present study, the symptom on Cucumber mosaic virus (CMV) infected Arabidopsis leaves in 0.1 mM SA or 0.06 mM JA pre-treated plants was lighter (less reactive oxygen species accumulation and less oxidative damages) than that of the control group. JA followed by SA (JA${\rightarrow}$SA) had the highest inhibitory efficiency to CMV replication, higher than JA and SA simultaneous co-pretreatment (JA+SA), and higher than a JA or a SA single pretreatment. The crosstalk between the two hormones was further investigated at the transcriptional levels of pathogenesis-related genes. The time-course measurement showed JA might play a more important role in the interaction between JA and SA.

Lemna gibba $G_3$Salicylic Acid와 Dimethylsulfoxide의 영향 (Influence of Salicylic Acid and Dimethylsulfoxide on Flowering in Lemna gibba $G_3$)

  • 맹주선
    • Journal of Plant Biology
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    • 제27권4호
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    • pp.215-222
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    • 1984
  • The reversal effect of salicylic acid(SA) on inhibition of flowering in Lemna gibba $G_3$ grown on ${NH_4}^+$-free 1/2H medium under continuous light is modified by ${PO_4}^{2-}$- and $Ca^{2+}$ levels. Dimethylsulfoxide(DMSO) either depresses the SA effect in ${NH_4}^{1}$-free 1/2H medium or amplifies it in E medium. The dual action of DMSO determined by relative levels of macro and micronutrient components is discussed.

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