• 제목/요약/키워드: cell wall degradation

검색결과 98건 처리시간 0.03초

Impact of Three Categories of Supplements on In Sacco Ruminal Degradation of Urea-Treated and Untreated Straw Substrates

  • Srinivas, Bandla;Krishnamoorthy, U.;Jash, Soumitra
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권2호
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    • pp.195-204
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    • 2002
  • The objective of this study was to examine the impact of three categories of supplements on intake and diet induced difference on degradation of straw substrates. Sixteen crossbred cattle fitted with rumen cannula were randomly divided into 4 equal groups. Animals were fed on wheat straw ad libitum without any supplement except mineral mixture (control; $T_1$) or supplemented with concentrate mixture (CS; $T_2$) or green Lucerne (GLS; $T_3$) or urea-molasses block lick (ULS; $T_4$). Total dry matter intake in $T_2$, $T_3$ and $T_4$ was increased by 70, 54 and 49%, respectively compared to $T_1$ which was only 1.55 kg/100 kg B.Wt. Other than control animals, straw intake was less on $T_3$ than $T_2$ or $T_4$. In Sacco degradation of untreated and urea treated wheat or paddy straw in different treatments indicated that the supplements had a significant (p<0.01) impact on rapidly soluble (A) and insoluble but potentially degradable (B) fractions of straw. Urea treatment increased fraction-A but, provision of supplement improved fraction-B also. Effective degradation (ED) of OM was better on $T_2$. Rate of degradation (C) of OM and CWC was dependent on diet and type of straw but hemicellulose and cellulose were related to latter factor only. ED of cell wall carbohydrates (CWC) was similar in $T_2$ and $T_4$ but higher than $T_3$. CS was more effective in improving the degradation of both untreated and urea treated straw while ULS was effective on the former only. CS had more impact on superior quality straw while contrary was true with ULS. Although GLS improved intake and degradability of untreated and urea treated straws, its bulkiness affected the straw intake compared to other supplements.

감마선 조사에 의한 목재성질 변화에 관한 연구 (Study of the Changes in Wood Properties by Gamma Irradiation)

  • 윤민철;박병수;김익주;최종일
    • Journal of the Korean Wood Science and Technology
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    • 제40권4호
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    • pp.229-236
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    • 2012
  • 본 연구는 감마선 조사가 소나무(Pinus densiflrora), 느티나무(Zelkovas serrenata), 오동나무(Paulownia tomentosa)의 세포벽 열화, 셀룰로오스 결정화도, 휨 강도에 미치는 영향을 구명하기 위해 수행되었다. 각 목재 시편들을 100 kGy 선량의 감마선 조사 후 주사전자현미경(scanning electron microscope; SEM) 관찰 결과, 목재 세포벽 열화는 관찰되지 않았으며 휨 강도 역시 현저한 변화가 나타나지 않았다. 감마선 조사에 의한 셀룰로오스 결정화도 역시 유의한 변화가 관찰되지 않았다. 이러한 감마선에 대한 목재의 높은 안전성은 감마선 조사 기술을 재질손상 없이 목재를 가해 중인 균류와 충류 구제를 위해 적용할 수 있음을 의미한다.

감과실의 성숙과 추숙중 조직의 변화 (Changes in the cell structure during maturation and postharvest of persimmon fruits)

  • 신승렬;송준희;김순동;김광수
    • Applied Biological Chemistry
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    • 제34권1호
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    • pp.32-37
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    • 1991
  • 감과실이 성숙함에 따라 세포가 비대성장하고 세포간극이 발달하였으며 연시에서는 세포가 분리되어 독립적으로 존재하였다. 또 성숙중에는 원형질내에 small vesicle이 생기고, 완숙감과실에서 middle lamella의 분해현상을 관찰하였다. 연시에서는 세포벽과 middle lamella가 분리 용해되었다.

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1주기 수확을 끝낸 팽이버섯(Flammulina velutipes) 재래용 톱밥배지 분해의 현미경적 특징 (Microscopical Characteristics of Softwood Sawdusts Cultivated with Enokitake (Flammulina velutipes))

  • 이광호;김윤수;이성진;채정기
    • 한국자원식물학회지
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    • 제14권2호
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    • pp.102-107
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    • 2001
  • 팽이버섯 1주기를 수확한 폐배지 톱밥을 버섯재배 용으로 재활용 할 수 있는지를 알아보고자 팽이버섯을 재배한 침엽수재 의 톱밥을 현미경적 관찰을 통해 그 분해정도와 분해양태를 파악하였다. 아울러 팽이버섯 재배에 사용된 톱밥의 수종 식별도 실시하였다. 팽이버섯 재배용으로 사용된 톱밥의 수종은 대부분 소나무속 경송류로 식별되었고 극히 일부만 미송 (Douglas-fir)톱밥이 존재하였다. 팽이버섯 1주기를 수확한 폐배지 소나무 톱밥에는 균사에 노출된 부분과 방사조직에서 균사의 밀도가 높게 나타났다. 팽이버섯균의 공격을 받은 세 포벽은 박벽화현상과 침식현상을 보였으나, 이 같은 부후양태를 보인 세포벽은 극히 일부에 지나지 않았다. 이상의 현미경 관찰결과 팽이버섯을 1주기 수확한 소나무 톱밥은 버섯재배용으로 재활용하기에 충분한 세포벽 물질을 보유하고 있는 것으로 나타났다.

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Micromorphological and Chemical Characteristics of Cengal (Neobalanocarpus heimii) Heartwood Decayed by Soft Rot Fungi

  • Kim, Yoon Soo;Singh, Adya P.;Wong, Andrew H.H.;Eom, Tae-Jin;Lee, Kwang Ho
    • Journal of the Korean Wood Science and Technology
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    • 제34권2호
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    • pp.68-77
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    • 2006
  • The heartwood of cengal (Neobalanocarpus heimii) is known to have a high degree of decay resistance by virtue of its high extractive content. After 30 years in ground contact an utility pole of this tropical hardwood was found to be degraded only in the surface layers by cavity-forming soft rot fungi. The present work was undertaken 1) to characterize the degradation of cengal heartwood from the aspect of ultrastructure and chemistry and 2) to investigate the correlation between soft rot decay and its extractive microdistribution in wood tissues. The chemical analysis of cengal heartwood revealed the presence of a high amount of extractives as well as lignin. The wood contained a relatively high amount of condensed lignin and the guaiacyl units. Microscopic observations revealed that vessels, fibers and parenchyma cells (both ray and axial parenchyma) all contained extractives in their lumina, but in variable amounts. The lumina of fibers and most axial parenchyma were completely or almost completely filled with the extractives. TEM micrographs showed that cell walls were also impregnated with extractives and that pit membranes connecting parenchyma cells were well coated and impregnated with extractives. However, fungal hyphae were present in the extractive masses localized in cell lumina, and indications were that the extractives did not completely inhibit fungal growth. The extent of cell wall degradation varied with tissue types. The fibers appeared to be more susceptible to decay than vessels and parenchyma. Middle lamella was the only cell wall region which remained intact in all cell types which were severely degraded. The microscopic observations suggested a close correlation between extractive microdistribution and the pattern and extent of cell wall degradation. In addition to the toxicity to fungi, the physical constraint of the extractive material present in cengal heartwood cells is likely to have a profound effect on the growth and path of invasion of colonizing fungi, thus conferring protection to wood by restricting fungal entry into cell walls. The presence of relatively high amount of condensed lignin is also likely to be a factor in the resistance of cengal heartwood to soft rot decay.

미동정 부후균에 의한 소나무재의 Lignin 분해와 주사전자현미경(SEM)을 이용한 관찰 (Lignin Degradation of Pine Wood by Unidentified Decay Fungi and Observation by Scanning Electron Microscope)

  • 박헌;민경희
    • Journal of the Korean Wood Science and Technology
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    • 제31권4호
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    • pp.71-80
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    • 2003
  • 목재의 주성분 중 가장 분해가 어려운 리그닌을 분해하는 균주를 선발하기 위해 산림지역에서 채취한 부후목과 자실체로부터 균을 분리하였다. 리그닌 분해능은 활엽수보다 미생물 분해가 어렵다고 알려진 침엽수인 소나무재에 미생물을 처리하여 Klason 리그닌 정량을 통해 조사하였다. 또한 선발균에 의한 소나무재의 분해과정과 부후정도를 주사전자현미경(Scanning Electron Microscope ; SEM)을 이용해 조사하였다. 선발 균주 중 CJ-6에서 소나무 리그닌의 분해율이 49.48%로 가장 높았으며, 이것은 리그닌 분해 우수 균주로 알려진 Trametes versicolor의 40.58%와 비교해 보았을 때 리그닌 분해력이 더 우수하였다. 균주들 중 리그닌 분해력이 좋게 나타난 2개의 균주를 대상으로 부후에 의한 목재조직의 변화를 관찰하였는데 두 균주의 부후형이 비슷한 경향을 나타내었다. 부후 20일 경과에서는 균사의 침입은 있었으나 아직 목재는 건전한 상태를 유지하고 있었으며, 60일 간의 부후에서는 부후가 어느 정도 진행되어 가도관 벽과 방사조직의 세포벽의 일부가 분해되어 있음을 알 수 있었다. 100일간 부후가 진행된 경우에는 부후가 상당히 진행되어 가도관 세포벽 안쪽이 분해가 많이 진행되어 있었으며, 방사조직의 세포벽이 많이 분해되어 있어 세포간의 구별이 어려웠다.

Plant Cell-Wall Degradation and Glycanase Activity of the Rumen Anaerobic Fungus Neocallimastix frontalis MCH3 Grown on Various Forages

  • Fujino, Y.;Ushida, K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권5호
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    • pp.752-757
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    • 1999
  • Studies were made of digestion of timothy (Pheleum pretense) hay, tall fescue (Festuca elatior) hay, and rice (Oryza sativa) straw in pure cultures of rumen anaerobic fungus, Neocallimastix frontails MCH3. The fungus was inoculated on ground forages (1%, w/v) in an anaerobic medium and incubated at $39^{\circ}C$. Incubation was continued for 24, 48, 72 and 96 h. The losses of dry matter, xylose and glucose of forage during incubation were determined at the end of these incubation periods. Xylose and glucose were considered to be released from xylan and cellulose, respectively. The digested xylan to digested cellulose (X/C) ratios of the substrate were calculated. Xylanase and carboxymethyl cellulose (CMCase) of culture supernatant and residual substrate was measured at the same time. The X/C ratios in the cultures on timothy hay and rice straw were greater than 0.5 in the first 24-h incubation period. The values were smaller than 0.3 in tall fesque. The ratio of xylanase activity to that of CMCase in the first 24-h incubation period correlated well with the traits in X/C ratio. However xylanase activity was still superior to CMCase in the following incubation period (48 to 96 h), although the glucose (designated as cellulose) was more intensively digested than xylose (designated as xylan). The production of these polysaccharidases appeared to correlate with substrate cell-wall sugar composition, xylose to glucose ratios, at the beginning of fast growing period.

애기장대 MYB7 유전자의 리그닌 생합성 억제 조절 (AtMYB7 Acts as a repressor of lignin biosynthesis in Arabidopsis)

  • 김원찬
    • Journal of Applied Biological Chemistry
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    • 제59권3호
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    • pp.215-220
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    • 2016
  • 식물의 이차생장의 결과로 생산되는 바이오매스의 대부분은 식물의 이차세포벽에 축적된다. 식물의 이차세포벽은 크게 셀룰로스, 헤미셀룰로스, 리그닌이라는 3가지 물질로 구성되며 이들 중 페놀성 복합 화학 물질인 리그닌은 셀룰로스나 헤미셀룰로스와 달리 알코올 발효과정의 저해 물질로이다. 따라서, 식물의 이차세포벽 생합성의 과정을 조절함으로 전체 바이오매스의 생산량과 조성을 바이오 에너지 생산을 위해 최적 조건으로 조절함으로써 바이오 에탄올 생산을 최대화할 수 있을 것이다. 본 연구에서는 애기장대 유래 MYB7 유전자를 CaMV35S 프로모터 조절 하에서 과별현되게 한 식물체와 식물의 전사조절에서 하위 특정 유전자의 발현을 저해시키는 것으로 잘 알려진 SRDX 융합 단백질 즉, MYB7-SRDX 과발현체를 제작하여 그 특성을 조사하였다. 그 결과 MYB7 전사조절 인자가 리그닌의 생합성을 억제 조절한다는 결과를 관찰하였다. 이는 MYB7 전사조절인자를 이용하면 바이오 에탄올 발효과정에 저해 물질로 작용하는 리그닌을 경감시킬 수 있는 기초 자료로 사용할 수 있을 것이다.

해양에서 열화된 완도선 수침고목재의 화학적.미시형태적 변화 (Chemical and micromorphological changes of archaeological waterlogged wood degraded in marine situations.)

  • 김익주
    • 보존과학연구
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    • 통권11호
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    • pp.87-105
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    • 1990
  • Chemical and micro morphological changes of archaeological waterlogged woods from shipwrecked materials in marine situations were investigated which were submerged in seabed for over 900 years. Tested Wood species were Pinusdensiflora, Zelkova serrata, Quercus acutissima and Camellia japonica. The obtained results were summarized as follows; Chemical analysis showed that lignin content was increased, whereas the amout of holocellulose was heavily decreased in the degraded archaeological lwoods(DAW), when compared to the recent woods. The amount of alkalineextractives in the DAW was extremley high. IR spectra showed that disappearance of absortion band at $1,730㎝^-1$ intensity increase at 1,600, 1,500 and $1,270㎝^-1$ and the emergence of single band around $1,050㎝^-1$.Microscopic investigation showed that cell wall of latewood tracheids and fiber in the DAW were severely degraded while, early wood tracheids less degraded. Degradation in the cell wall was mainley occurred in $S_2$layer, while the middle lamella was the least degraded. The micro morphological characteristics of DAW were separation of secondary wall from middle lamella, cavities aligned with micro fibril angle in $S_2$layer and granular appearance of secondary wall by the bacterial attack.

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MORPHOLOGICAL STUDY BY SCANNING ELECTRON MICROSCOPY OF RUMEN DEGRADATION OF WHEAT STRAW TREATED WITH AMMONIA AND SULPHUR DIOXIDE

  • Song, Y.H.;Shimojo, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제6권2호
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    • pp.265-270
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    • 1993
  • Ammonia and/or sulphur dioxide treated and untreated wheat leaf sheaths were compared for cell wall digestion by incubation with rumen liquor for 24 and 48 hours. Scanning electron microscope (SEM) was used to study the relative rate and extent of cell wall digestion. Treated wheat straw leaf sheaths were distorted, with more distortion observed in ammonia and sulphur dioxide combined treatment than any other treatment. Rumen liquor digestion for 24 hours of untreated leaf sheath showed disrupted phloem, partially ruptured parenchyma and vascular tissues and further partially distorted inner bundle sheaths and vascular bundle after 48 hours incubation. Sulphurated leaf sheaths showed extensive degraded parenchyma and sclerenchyma material in 24 hours incubation, however, all tissues were irregulary shaped in 48 hours incubation. In ammoniation, epidermal cell walls and small vascular bundles began to disintegrate by 24 hours incubation, extensively changed structure and degraded epidermal tissue by 48 hours incubation. Combination treatment of leaf sheaths degraded all cell walls of parenchyma, phloem and vascular bundle by 24 hours incubation, however, structures only of inner bundles sheath with extended land, sclerenchyma and cutinized epidermal cell walls remained.