• Title/Summary/Keyword: Lignification

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Impacts of Phosphorus on Lignification and Carbohydrate Metabolism in Relation to Drought Stress Tolerance in Kentucky Bluegrass (Poa pratensis L.)

  • Kim, Dae-Hyun;Lee, Bok-Rye;Park, Sang-Hyun;Kim, Tae-Hwan
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.42 no.2
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    • pp.120-126
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    • 2022
  • The objective of this study was to determine effects of phosphorus on lignification and carbohydrate metabolism in Kentucky bluegrass under drought stress. Drought stress was induced by reducing of water to plants in pots. Two types of phosphorus were applied as potassium phosphate (PO43-; P) or potassium phosphonate (PO33-; PA) in drought-stressed plants. Drought had significant negative effects on plant growth, as revealed by reduced biomass of shoot. Drought-induced increase of lignin content was concomitant with the increase of phenylalanine ammonia-lyase (PAL). Soluble sugar content was highly increased but fructan content was largely decreased by drought stress. However, the application of phosphorus was efficient to ameliorate the adverse effects of drought. PA application improved reduced shoot growth and relative water content, and inhibited lignification synthesis with a reduction of PAL activity. P or PA application maintained soluble sugar and fructan content at similar levels to controls under drought stress. These results indicate that phosphorus application may mitigate the drought stress by inhibiting the lignification and promoting the fructan assimilation.

Lignification in Relation to the Influence of Water-deficit Stress in Brassica napus

  • Lee, Bok-Rye;Zhang, Qian;Kim, Tae-Hwan
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.34 no.1
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    • pp.15-20
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    • 2014
  • To investigate lignification process and its physiological significance under water-deficit condition, the responses of peroxidases, polyphenol oxidase (PPO) and phenylalanine ammonia-lyase (PAL) in relation to leaf water status to the short term of water deficit treatment in the leaves with different maturities in forage rape were measured. The significant decrease in relative water content (RWC) and leaf osmotic potential (${\Psi}{\pi}$) were apparent after 5 d of water-deficit treatment. The activity of guaiacol peroxidase (GPOD), ascorbate peroxidase (APOD), coniferyl alcohol peroxidase (CPOD), and syringaldazine peroxidase (SPOD) was depressed especially in middle and old leaves when compared with that of control leaves. On the other hand, in young leaves, a significant increase in CPOD (+34%) and SPOD (+24%) activity as affected by water-deficit treatment was apparent. The activation of PAL and PPO was observed in middle and old leaves for PAL and in young and middle leaves for PPO. These results suggest that peroxidases in middle and old leaves did not involve in lignification under mild water-deficit stress, whereas CPOD and SPOD in young leaves participate in lignification by a coordination with PAL and PPO to incorporate phenol and lignin into the cell walls.

Caffeoyl Shikimate Esterase has a Role in Endocarp Lignification in Peach (Prunus persica L.) Fruit

  • Liu, Jinyi;Hu, Xiao;Yu, Jia;Yang, Aizhen;Liu, Yueping
    • Horticultural Science & Technology
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    • v.35 no.1
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    • pp.59-68
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    • 2017
  • Caffeoyl shikimate esterase (CSE) is a key enzyme in lignin synthesis in Arabidopsis thaliana. To determine the role of CSE in lignification of the endocarp in peach (Prunus persica L.) fruit, we cloned and characterized the P. persica CSE homolog, which we designated PpCSE. The 954 - bp PpCSE gene encoded a 317 - amino acid polypeptide. PpCSE expression patterns in the mesocarp and endocarp changed during peach fruit development. There was no significant difference between the expression levels of PpCSE in the mesocarp and endocarp at 39 and 44 days after full bloom (DAFB), but the expression level of PpCSE in the endocarp at 50 and 55 DAFB was 80.73 and 72.75 times higher, respectively, than that in the mesocarp. During peach fruit development, PpCSE expression in the endocarp increased rapidly; the relative PpCSE expression level at 50 DAFB was 122.70 times higher than that at 39 DAFB. At the protein level, CSE was detected in the peach fruit endocarp at 50 and 55 DAFB. Our study suggests that PpCSE expression during peach fruit development is closely related to the degree of endocarp lignification.

Studies of Plant Tumor Induction (Pat 2) On the Study of Peroxidase Activities of Tumor Tissues Developed on Tomato Stem in Outdor Conditions. (식물의 암종유발에 관한 연구 2 (제 2 ) 에서 도마도 줄기에 유발된 의 Peroxidase Activitiy 에 대하여)

  • 이민재;홍순우;최영길
    • Korean Journal of Microbiology
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    • v.4 no.2
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    • pp.5-10
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    • 1966
  • The relationships between tumor score and peroxidase activities of tomato stems infected with Agrobacterium tumefaciens strain A6Kl, B6, T372 11BNV6, 11BV7 and wounded stem as a control were examined in relation to crown gall tumor development on purpose to study the lignification of tumor tissue which is affected to the development of crown gall tumor. As the previous paper has been mentioned the fact that the induction of tumor tissues were inhibited or limited in the lignified stem of host plant. It was presumed that the activities of peroxidase related to the development of lignification were decreased during the period of tumor development. But the experimental result in this experiment shows that the peroxidase activities of crown gall tumor-tissues infected with the A. tumefaciens strains which are already known as virulent are increasing during four weeks, however, in the strain 11BNV6 and wound the peroxidase activities are decreasing on the second week after the inoculation of the bacteria strains. These results could be explained on the basis of that possible regulatory agents of lignification which were accumulated in tumor tissues, IAA, ascorbic acid, glutathion(GSH) and caffeic acid esters, were postulated to act as antioxidants which has been suggested by Stafford. Total nitrogen contents in relation to crown gall tumor development were determined for the detection of protein synthesis related to the enzyme activities which are increasing in the time of plant growth. Generally six groups are contained the largest amount of nitrogen on the second week after the inoculation of the bacterium. Comparing to the tumor score, it is presumed that the all of enzyme activities including peroxidase in tumor tissues are increasing from the second week through the third week after the inoculation of bacterium and the protein synthesis is stimulated under the most appropriated temperature during the above periods.

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Immunohistochemical Localization of Endogenous IAA in Peach (Prunus persica L.) Fruit during Development

  • Zhang, Wei;Li, Yang;Shi, Mengya;Hu, Hao;Hua, Baoguang;Yang, Aizhen;Liu, Yueping
    • Horticultural Science & Technology
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    • v.33 no.3
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    • pp.317-325
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    • 2015
  • Peach (Prunus persica L.) is a model species for stone fruit studies within the Rosaceae family. Auxin plays an important role in the development of peach fruit. To reveal the distribution of auxin in the tissues of peach fruit, immunohistochemical localization of IAA was carried out in the seed, mesocarp, and endocarp in developing peach fruit using an anti-indole-3-acetic acid (anti-IAA) monoclonal antibody. A strong IAA signal was observed throughout the outer and inner integument during peach fruit development, and the distribution was zonal. The IAA signal was mainly focused in mucilage layers in the outer integument. The outer integument may function to produce or store IAA in the seed; a strong IAA signal was detected in the cells around the vascular tissue, whereas a weak IAA signal was located in the vascular tissues. In the mesocarp, the cells around the vascular bundle tissue gave rise to an IAA signal that increased in the late phase of fruit growth, which coincided with a significant increase in fruit growth. The distribution of IAA, however, was changed when fruit was treated with auxin transport inhibitors NPA (1-N-naphthylphthalamic acid) or TIBA (2, 3, 5-triiodobenzoic acid); in mesocarp tissues, an IAA signal was detected mainly in vessels of the treated fruit. During the critical period of endocarp lignification, the vessel lignification process was negatively correlated with IAA signal. The present results confirmed that the distribution of IAA was different in various tissues of peach fruit according to the developmental stage. This research provides cytological data for further study of the regulatory mechanism of auxin in peach fruit.

Effects of Soil Moisture Control and Dormancy Breaking Agents on Bud Burst and Fruiting for Double Cropping System in a Year in 'Kyoho' Grapes (포도 '거봉' 2기작재배를 위한 하계휴면타파에서 토양수분 조절과 휴면타파제 처리가 발아에 미치는 영향)

  • 오성도;김용현;최동근
    • Journal of Bio-Environment Control
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    • v.11 no.2
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    • pp.61-66
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    • 2002
  • Double cropping system in a year in Kyoho grapes (Vitis labruscana L.) has currently been attempted in the plastic greenhouse. One of the problems in double cropping system is the promotion of bud break in summer season and shoot fertility. Effects of the control of soil moisture tension near the root zone and treatments of bud dormancy breaking agents on bud breaking in summer were examined to promote the bud break for the second fruiting. The lignification of shoots was induced in July or August by the control of soil moisture tension in root zone environment. The first shoot growth was almost the same as that in common plastic greenhouses. The highest bud break value appeared in the plot of cyanamide chemicals mixed with merit blue as over 75% bud break rate. The bud break rate in the discontinuing plot in irrigation showed significantly higher in bud break than that in the continuing plot in irrigation. Despite of the final high bud break rate, the time of bud break was irregular.

New curing method using gaseous oxidant on sweet potato (Ipomoea batatas)

  • Jin, Hyunjung;Kim, Wook
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.39-39
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    • 2017
  • In Asia, sweet potato (Ipomoea batatas) is a very important crop for starch production. Approximately 74.3% of the total sweet potato production quantity is produced in Asia (FAO, 2014) and China is the largest producer of sweet potato. Post-harvest management is particularly important because it is difficult to maintain the quality as well as quantity of sweet potatoes. Despite the importance of post-harvest management, researches on sweet potato have been focused on production-related study such as breeding of new variety, improved techniques of cultivation, so there is limited research on storage after harvest. Curing is a normal practice after sweet potato harvest to promote wound healing and extend postharvest storage life. In Korea, harvested sweet potatoes are usually cured for 4 to 7 days at $30-33^{\circ}C$ and 80-95% relative humidity within one week. Since the optimum storage temperature of sweet potato is regarded as $15-20^{\circ}C$, additional facilities and costs are required to raise the temperature for curing. However, the majority of small farmers do not have the capacity to provide additional facilities and costs. This study was initiated to suggest a new curing method to accelerate the wound healing by applying chemical oxidation to the wound surface of sweet potato. Oxidative stress is known to play an important role in the synthesis of secondary metabolites including lignin. In addition, chemical oxidation can be applied to prevent spoilage caused by microorganisms. Powerful gaseous oxidant with excellent penetration ability and superior sterilization effect was selected for this study. Lignification, weight loss, and spoilage rate of artificially wounded sweet potatoes were investigated after oxidant fumigation. There were clear differences in morphological analysis such as lignification pattern, lignin deposition color, and continuity of lignified cell layers between oxidant-fumigated sweet potatoes and control. These results show that gaseous oxidant can be used to supplement or replace the curing practice, to improve shelf-life as well as curing cost reduction.

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Influence of Seedling Weight on Agronomic Characters and Their Relation with Bolting in Angelica gigas Nakai (참당귀 묘 중양별 생육특성과 추대와의 관계)

  • 안상득;유창연;조동하
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.39 no.5
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    • pp.426-430
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    • 1994
  • To establish the proper size of seedling of A. gigas, different weight of seedlings were used for this study. Agronomic characters including plant height, number of leaf, leaf length, number of inflorescence, fresh weight and rate of bolting of the aerial parts, root length, root diameter, number of lateral root and root weight of the underground parts were determined and correlation coefficients among them were estimated. Growth of A. gigas showed the significant vigor for all the characters of the aerial parts along with increasing of seedling weight, but root weight in yield decreased in proportion to increasing of seedling weight due to lignification of the root tissue. When the smaller seedlings were transplanted, bolting rates decreased to about 16% as compared with the traditional size of seedlings. Correlation coefficients between aerial and root characters in A. gigas were negative, and the characters such as plant height, number of leaf, number of inflorescence and fresh weight per plant showed highly significant correlation with the rate of bolting which is one of the characters having great influence on yield.

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Control of Basal Stem Rot Disease in Oil Palm by Supplementation of Calcium, Copper, and Salicylic Acid

  • Bivi, M. Shahul Hamid Rahamah;Paiko, Adamu Saidu;Khairulmazmi, Ahmad;Akhtar, M.S.;Idris, Abu Seman
    • The Plant Pathology Journal
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    • v.32 no.5
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    • pp.396-406
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    • 2016
  • Continuous supplementation of mineral nutrients and salicylic acid (SA) as foliar application could improve efficacy in controlling basal stem rot (BSR) disease in oil palm seedling. It is revealed from the results that the highest disease severity index (58.3%) was recorded in T8 treatments at 9 months after inoculation. The best disease control was achieved by T7 treatments (calcium/copper/SA [Ca/Cu/SA]) (5.0%) followed by T1 (5.5%), T5 (5.8%), T3 (8.3%), T6 (8.3%), T4 (13.3%), and T2 (15.8%) treatments. Continuous supplementation of Ca/Cu/SA was found to be the most effective in controlling the disease and the high performance liquid chromatography results showed the detection of ergosterol at very low concentration in the treated samples. Moreover, the transmission electron microscopy analysis results clearly indicated that T7 treatment was also enhancing lignification, which was responsible for the thickness of the secondary cell walls and middle lamella compared to untreated samples. It was therefore, concluded that continuous supplementation of minerals nutrients and SA could effectively suppress disease severity by reducing ergosterol activity and also improve the process of lignification in the treated plants. Furthermore, this treatment also managed to delay the onset of BSR symptoms and promote the growth of the seedlings and eventually suppress the BSR disease.