• 제목/요약/키워드: Dehydrin5

검색결과 5건 처리시간 0.017초

Cloning, Characterization, and Functional Analysis of Maize DEHYDRIN2

  • Paek, Nam-Chon;Jung, Hun-Ki
    • 한국작물학회지
    • /
    • 제47권2호
    • /
    • pp.116-122
    • /
    • 2002
  • Dehydrins (LEA Dll proteins) are one of the typical families of plant proteins that accumulate in response to dehydration, cold stress, abscisic acid, or during seed maturation. A 1.3-kb cDNA was cloned from a cDNA expression library of 5-day-old germinating maize scutellums under drought stress. The deduced protein sequence indicated a dehydrin gene encoding SK$_3$ LEA protein typically expressed during cold acclimation, but not by drought stress in barley and wheat. Thus, it was named maize DEHYDRIN2 (ZmDhn2). It accumulates rapidly and highly in drought-stressed scutellum and leaf tissues at any stage, but not under cold stress. ZmDhn2 gene was transformed into Arabidopsis thaliana for functional analysis under drought condition. From electrolyte leakage test, no significant difference showed between wild type and transformants under normal growth condition, but the leakage level of electrolyte in wild type plants was about 3 times as high as that in the transformed plants under drought stress. It suggests that ZmDHN2 playa role in increasing drought tolerance.

Differential expression of a poplar SK2-type dehydrin gene in response to various stresses

  • Bae, Eun-Kyung;Lee, Hyo-Shin;Lee, Jae-Soon;Noh, Eun-Woon
    • BMB Reports
    • /
    • 제42권7호
    • /
    • pp.439-443
    • /
    • 2009
  • Dehydrins are group II, late embryogenesis abundant proteins that act putatively as chaperones in stressed plants. To elucidate the function of dehydrins in poplar, we isolated the $SK_2$-type dehydrin gene Podhn from Populus alba $\times$ P. tremula var. glandulosa suspension cells and analyzed its expression following treatments of abiotic stress, wounding and plant growth regulator. Sequence homology and phylogenetic analyses indicate Podhn encodes an acidic dehydrin (pI 5.14, 277 amino acids, predicted size 25.6 kDa) containing two lysine-rich "K-segments" and a 7-serine residue "S-segment", both characteristic of $SK_2$-type dehydrins. Southern blots show Podhn genes form a small gene family in poplar. Podhn was expressed in all tissues examined under unstressed conditions, but most strongly in cell suspensions (especially in the stationary phase). Drought, salt, cold and exogenous abscisic acid (ABA) treatments enhanced Podhn expression, while wounding and jasmonic acid caused its reduction. Therefore, Podhn might be involved in ABA or stress response.

Enhanced drought tolerance by expression of hvDhn5 gene in poplar

  • Han, Mu-Seok;Noh, Eun-Woon
    • Journal of Plant Biotechnology
    • /
    • 제38권3호
    • /
    • pp.203-208
    • /
    • 2011
  • We transferred Dhn5 (dehydrin5) gene from barley to poplar to determine the effect of its expression on the transgenic poplars. The results from northern blot analysis showed that the expression level of gene varied among the transgenic lines. During their culture on tissue culture media, the transgenic poplars formed vigorous growing callus in the presence of 5% PEG. When the transgenic poplars were growing in pots and witheld watering, they stayed much healthier than nontransgenic poplars. The transgenic poplars showed higher rates of photosynthetic rates, stomatal conductance and evaporation rates under the drought stress, although there was no significant difference in soil water content within the treatments. The relative electrical conductivity of the transgenic poplars after 20% PEG treatment was lower than that of nontransgenic poplars. The results provide evidence that the expression of hvDhn5 gene conferred drought tolerance in the transgenic poplars.

CLP, Dhn5 유전자의 도입에 의한 고비사막 자생식물 Artemisia adamsii의 내건성 및 내동성 증진 (Transformation of Artemisia adamsii, Endemic to a Gobi Desert, with CLP, Dhn5 to Enhance Environmental Stress Tolerance)

  • 한규현;황철호
    • Journal of Plant Biotechnology
    • /
    • 제30권4호
    • /
    • pp.315-321
    • /
    • 2003
  • 고비사막 접경지역의 식물인 Artermisia adamsii의 내건성 및 내동성 증진을 위해 조직배양과 CLP및 Dhn5유전자의 형질전환을 수행하였다. 다양한 호르몬 농도 조건에서의 성장을 확인한 결과, 0.05mg/L의 NAA와 0.5mg/L의 BAP조건과 0.1mg/L의 NAA와 0.5mg/L의 BAP가 포함된 배지의 암조건 하에서 최적의 캘러스 생장을 확인하였으며 유전자 도입 및 유전자의 발현이 확인된 캘러스가 세포 수준에서도 내건성 및 내동성이 증진되었음을 확인하였다. 그러나 Atremisia속 다른 식물과 다르게 조직절편에서 직접 기관분화를 유도하거나 캘러스를 통한 식물체 재생에 어려움이 있어 식물체 수준에서 형질전환에 따른 환경스트레스 내성의 증진을 확인하지 못하고 있다. 앞으로 진행될 A. adamsii의 식물체 재생에 대한 연구를 통해 내동성 및 내건성이 증진된 식물체를 육성하여 고비사막 지역적응력을 조사할 예정이다.

차세대염기서열 분석을 이용한 고려인삼과 미국삼의 전사체 분석 (Characterization of Root Transcriptome among Korean Ginseng Cultivars and American Ginseng using Next Generation Sequencing)

  • 조익현;김영창;이승호;김장욱;김선태;현동윤;김동휘;김기홍;김홍식;정종욱;방경환
    • 한국약용작물학회지
    • /
    • 제22권5호
    • /
    • pp.339-348
    • /
    • 2014
  • The transcriptomes of four ginseng accessions such as Cheonryang (Korean ginseng cultivar), Yunpoong (Korean ginseng cultivar), G03080 (breeding line of Korean ginseng), and P. quinquefolius (American ginseng) was characterized. As a result of sequencing, total lengths of the reads in each sample were 156.42 Mb (Cheonryang cultivar), 161.95 Mb (Yunpoong cultivar), 165.07 Mb (G03080 breeding line), and 166.48 Mb (P. quinquefolius). Using a BLAST search against the Phytozome databases with an arbitrary expectation value of 1E-10, over 20,000 unigenes were functionally annotated and classified using DAVID software, and were found in response to external stress in the G03080 breeding line, as well as in the Cheonryang cultivar, which was associated with the ion binding term. Finally, unigenes related to transmembrane transporter activity were observed in Cheonryang and P. quinquefolius, which involves controlling osmotic pressure and turgor pressure within the cell. The expression patterns were analyzed to identify dehydrin family genes that were abundantly detected in the Cheonryang cultivar and the G03080 breeding line. In addition, the Yunpoong cultivar and P. quinquefolius accession had higher expression of heat shock proteins expressed in Ricinus communis. These results will be a valuable resource for understanding the structure and function of the ginseng transcriptomes.