• 제목/요약/키워드: disease tolerance

검색결과 290건 처리시간 0.03초

Expression of Arabidopsis thaliana SIK (Stress Inducible Kinase) Gene in a Potato Cultivar (Solanum tuberosum L. 'Taedong Valley')

  • Yoon Jung-Ha;Fang Yi-Lan;Park Eung-Jun;Kim Hye-Jin;Na Yun-Jeong;Lee Dong-Hee;Yang Deok-Chun;Lim Hak-Tae
    • Plant Resources
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    • 제8권3호
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    • pp.202-208
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    • 2005
  • Osmotic stress is one of major limiting factors in crop production. In particular, seasonal drought often causes the secondary disease in the field, resulting in severe reduction in both quality and productivity. Recent efforts have revealed that many genes encoding protein kinases play important roles in osmotic stress signal transduction pathways. Previously, the AtSIK (Arabidopsis thaliana Stress Inducible Kinase) mutants have shown to enhance tolerance to abiotic stresses, accompanying with higher expression of abiotic stress-related genes than did the wild-type plants. In this study, we have transformed potato (cv. Taedong Valley) with the AtSIK expression cassette. Both PCR and RT-PCR using AtSIK-specific primers showed stable integration and expression of the AtSIK gene in individual transgenic lines, respectively. Foliar application of herbicide ($Basta^{(R)}$) at commercial application rate (0.3% (v/v)) revealed another evidence of stable gene introduction of T-DNA which includes the bar gene for herbicide resistance. Overexpression of the AtSIK gene under dual CaMV35S promoter increased sensitivity to salt stress (300 mM NaCl), which was demonstrated by the reduction rate of chlorophyll contents in leaves of transgenic potato lines. These results suggest that possible increase of osmotic tolerance in potato plants may be achieved by antisense expression of AtSIK gene.

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Carbamoyl Phosphate Synthase Subunit CgCPS1 Is Necessary for Virulence and to Regulate Stress Tolerance in Colletotrichum gloeosporioides

  • Mushtaq, Aamar;Tariq, Muhammad;Ahmed, Maqsood;Zhou, Zongshan;Ali, Imran;Mahmood, Raja Tahir
    • The Plant Pathology Journal
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    • 제37권3호
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    • pp.232-242
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    • 2021
  • Glomerella leaf spot (GLS) is a severe infectious disease of apple whose infective area is growing gradually and thus poses a huge economic threat to the world. Different species of Colletotrichum including Colletotrichum gloeosporioides are responsible for GLS. For efficient GLS control, it is important to understand the mechanism by which the cruciferous crops and C. gloeosporioides interact. Arginine is among one of the several types of amino acids, which plays crucial role in biochemical and physiological functions of fungi. The arginine biosynthesis pathway involved in virulence among plant pathogenic fungi is poorly understood. In this study, CgCPS1 gene encoding carbamoyl phosphate synthase involved in arginine biosynthesis has been identified and inactivated experimentally. To assess the effects of CgCPS1, we knocked out CgCPS1 in C. gloeosporioides and evaluated its effects on virulence and stress tolerance. The results showed that deletion of CgCPS1 resulted in loss of pathogenicity. The ∆cgcps1 mutants showed slow growth rate, defects in appressorium formation and failed to develop lesions on apple leaves and fruits leading to loss of virulence while complementation strain (CgCPS1-C) fully restored its pathogenicity. Furthermore, mutant strains showed extreme sensitivity to high osmotic stress displaying that CgCPS1 plays a vital role in stress response. These findings suggest that CgCPS1 is major factor that mediates pathogenicity in C. gloeosporioides by encoding carbamoyl phosphate that is involved in arginine biosynthesis and conferring virulence in C. gloeosporioides.

Role of Trehalose Synthesis in Ralstonia syzygii subsp. indonesiensis PW1001 in Inducing Hypersensitive Response on Eggplant (Solanum melongena cv. Senryo-nigou)

  • Laili, Nur;Mukaihara, Takafumi;Matsui, Hidenori;Yamamoto, Mikihiro;Noutoshi, Yoshiteru;Toyoda, Kazuhiro;Ichinose, Yuki
    • The Plant Pathology Journal
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    • 제37권6호
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    • pp.566-579
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    • 2021
  • Ralstonia syzygii subsp. indonesiensis (Rsi, former name: Ralstonia solanacearum phylotype IV) PW1001, a causal agent of potato wilt disease, induces hypersensitive response (HR) on its non-host eggplant (Solanum melongena cv. Senryo-nigou). The disaccharide trehalose is involved in abiotic and biotic stress tolerance in many organisms. We found that trehalose is required for eliciting HR on eggplant by plant pathogen Rsi PW1001. In R. solanacearum, it is known that the OtsA/OtsB pathway is the dominant trehalose synthesis pathway, and otsA and otsB encode trehalose-6-phosphate (T6P) synthase and T6P phosphatase, respectively. We generated otsA and otsB mutant strains and found that these mutant strains reduced the bacterial trehalose concentration and HR induction on eggplant leaves compared to wild-type. Trehalose functions intracellularly in Rsi PW1001 because addition of exogenous trehalose did not affect the HR level and ion leakage. Requirement of trehalose in HR induction is not common in R. solanacearum species complex because mutation of otsA in Ralstonia pseudosolanacearum (former name: Ralstonia solanacearum phylotype I) RS1002 did not affect HR on the leaves of its non-host tobacco and wild eggplant Solanum torvum. Further, we also found that each otsA and otsB mutant had reduced ability to grow in a medium containing NaCl and sucrose, indicating that trehalose also has an important role in osmotic stress tolerance.

Investigation of Forage Characteristics of Three Very Early-Maturing Italian Ryegrass (Lolium multiflorum Lam.)

  • Song, Yowook;Woo, Jae Hoon;Lee, Sang-Hoon;Choi, Bo Ram;Lim, Eun A;Lee, Ki-Won
    • 한국초지조사료학회지
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    • 제42권3호
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    • pp.188-194
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    • 2022
  • This study was conducted to investigate the forage characteristics of very early-maturing Italian ryegrass (IRG) three cultivars within September, 2021 to July, 2022 in Cheonan, Korea. We used three different cultivars of Italian ryegrass in this study "Greenfarm" "Greenfarm2ho" and "Greenfarm3ho" The results of heading date in this study, "Greenfarm" was recorded 3 days earlier than the other two cultivars, and its lodge tolerance score was the highest among the three. However, in case of plant length, there was no significantly difference in whole cultivars, in addition disease resistance, insect resistance and cold tolerance were not significantly different in three cultivars. The forage productivity of "Greenfarm2ho" was recorded the highest, especially the 1st harvesting of "Greenfarm2ho" yielded significantly the highest and superior to other varieties. As a result of feed value analysis, three cultivars were generally superior to overseas varieties and in particular, "Greenfarm2ho" was recorded to have excellent value because of the lowest NDF and ADF content. On the other hand, there was no significant difference in crude protein content among three varieties. In case of the monosaccharides content "Greenfarm3ho" had significantly higher glucose content than other two varieties, therefore the "Greenfarm" has advantage for preparing high quality of silage. In contrast, there was no significant difference among three varieties in fructose content.

여포 보조 T세포와 여포 조절 T세포의 균형 및 종자중심 형성 (Germinal Center Formation Controlled by Balancing Between Follicular Helper T Cells and Follicular Regulatory T Cells)

  • 박홍재;김도현;최제민
    • 한양메디칼리뷰
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    • 제33권1호
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    • pp.10-16
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    • 2013
  • Follicular helper T cells (Tfh) play a significant role in providing T cell help to B cells during the germinal center reaction, where somatic hypermutation, affinity maturation, isotype class switching, and the differentiation of memory B cells and long-lived plasma cells occur. Antigen-specific T cells with IL-6 and IL-21 upregulate CXCR5, which is required for the migration of T cells into B cell follicles, where these T cells mature into Tfh. The surface markers including PD-1, ICOS, and CD40L play a significant role in providing T cell help to B cells. The upregulation of transcription factor Bcl-6 induces the expression of CXCR5, which is an important factor for Tfh differentiation, by inhibiting the expression of other lineage-specific transcription factors such as T-bet, GATA3, and RORγt. Surprisingly, recent evidence suggests that CD4 T cells already committed to Th1, Th2, and Th17 cells obtain flexibility in their differentiation programs by downregulating T-bet, GATA3, and RORγt, upregulating Bcl-6 and thus convert into Tfh. Limiting the numbers of Tfh within germinal centers is important in the regulation of the autoantibody production that is central to autoimmune diseases. Recently, it was revealed that the germinal center reaction and the size of the Tfh population are also regulated by thymus-derived follicular regulatory T cells (Tfr) expressing CXCR5 and Foxp3. Dysregulation of Tfh appears to be a pathogenic cause of autoimmune disease suggesting that tight regulation of Tfh and germinal center reaction by Tfr is essential for maintaining immune tolerance. Therefore, the balance between Tfh and Tfr appears to be a critical peripheral tolerance mechanism that can inhibit autoimmune disorders.

Lactoferrin Induces Tolerogenic Bone Marrow-Derived Dendritic Cells

  • Hui-Won Park;Sun-Hee Park;Hyeon-Ju Jo;Tae-Gyu Kim;Jeong Hyun Lee;Seung-Goo Kang;Young-Saeng Jang;Pyeung-Hyeun Kim
    • IMMUNE NETWORK
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    • 제20권5호
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    • pp.38.1-38.12
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    • 2020
  • Dendritic cells (DCs) are professional antigen-presenting cells (APCs) that initiate both T-cell responses and tolerance. Tolerogenic DCs (tDCs) are regulatory DCs that suppress immune responses through the induction of T-cell anergy and Tregs. Because lactoferrin (LF) was demonstrated to induce functional Tregs and has a protective effect against inflammatory bowel disease, we explored the tolerogenic effects of LF on mouse bone marrow-derived DCs (BMDCs). The expression of CD80/86 and MHC class II was diminished in LF-treated BMDCs (LF-BMDCs). LF facilitated BMDCs to suppress proliferation and elevate Foxp3+ induced Treg (iTreg) differentiation in ovalbumin-specific CD4+ T-cell culture. Foxp3 expression was further increased by blockade of the B7 molecule using CTLA4-Ig but was diminished by additional CD28 stimulation using anti-CD28 Ab. On the other hand, the levels of arginase-1 and indoleamine 2,3-dioxygenase-1 (known as key T-cell suppressive molecules) were increased in LF-BMDCs. Consistently, the suppressive activity of LF-BMDCs was partially restored by inhibitors of these molecules. Collectively, these results suggest that LF effectively causes DCs to be tolerogenic by both the suppression of T-cell proliferation and enhancement of iTreg differentiation. This tolerogenic effect of LF is due to the reduction of costimulatory molecules and enhancement of suppressive molecules.

Remote Cardiac Rehabilitation With Wearable Devices

  • Atsuko Nakayama;Noriko Ishii;Mami Mantani;Kazumi Samukawa;Rieko Tsuneta;Megumi Marukawa;Kayoko Ohno;Azusa Yoshida;Emiko Hasegawa;Junko Sakamoto;Kentaro Hori;Shinya Takahashi;Kaoruko Komuro;Takashi Hiruma;Ryo Abe;Togo Norimatsu;Mai Shimbo;Miyu Tajima;Mika Nagasaki;Takuya Kawahara;Mamoru Nanasato;Toshimi Ikemage;Mitsuaki Isobe
    • Korean Circulation Journal
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    • 제53권11호
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    • pp.727-743
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    • 2023
  • Although cardiac rehabilitation (CR) has been shown to improve exercise tolerance and prognosis in patients with cardiovascular diseases, there remains low participation in outpatient CR. This may be attributed to the patients' busy schedules and difficulty in visiting the hospital due to distance, cost, avoidance of exercise, and severity of coronary disease. To overcome these challenges, many countries are exploring the possibility of remote CR. Specifically, there is increasing attention on the development of remote CR devices, which allow transmission of vital information to the hospital via a remote CR application linked to a wearable device for telemonitoring by dedicated hospital staff. In addition, remote CR programs can support return to work after hospitalization. Previous studies have demonstrated the effects of remote CR on exercise tolerance. However, the preventive effects of remote CR on cardiac events and mortality remain controversial. Thus, safe and effective remote CR requires exercise risk stratification for each patient, telenursing by skilled staff, and multidisciplinary interventions. Therefore, quality assurance of telenursing and multi-disciplinary interventions will be essential for remote CR. Remote CR may become an important part of cardiac management in the future. However, issues such as cost-effectiveness and insurance coverage still persist.

조생 고품질 벼 신품종 '조아미' (A New Early-Maturing, High Quality Rice Cultivar 'Joami')

  • 강종래;남민희;곽도연;정진일;김대식;김정일;송유천;여운상;이종희;박노봉;박동수;이기환;조준현;김춘송;이지윤;전명기;신문식;오병근;강항원;안진곤
    • 한국육종학회지
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    • 제42권6호
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    • pp.615-622
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    • 2010
  • '조아미'는 국립식량과학원 상주출장소에서 중산간지 재배에 알맞은 고품질 벼를 육성하고자 일본품종 'Yukara'와 중국품종 'Tonggae112'가 교배된 조합에 밥맛이 좋은 '삼백벼'를 삼원교배한 이후 계통육성시험에서 YR20557-1-1-3-B-3을 선발하였고, 2004년부터 2005년까지 생산력검정시험에 공시한 결과 수량성이 높아 '상주 36호'라는 계통명을 부여하였다. '상주 36호'는 2006년부터 2008년까지 3년간 지역적응시험에서 표준품종 대비 그 수량 및 품질의 우수성을 인정받아 2008년 농작물 직무육성 신품종 선정위원회에서 국가목록등재 품종으로 선정되어 '조아미'로 명명하였다. '조아미'는 중북부평야지. 중부중산간지 및 동북부 해안지에 적응성이 높은 조생 고품질 벼 품종으로 주요특성은 다음과 같다. 1. 출수기는 중북부평야지 보비재배에서 7월 28일로 '화성벼'에 비해 15일정도 빠르고, 남부중산간지, 중부중산간지지 및 동북부 해안지 보통기 재배에서 평균 7월 30일로 '오대벼'의 출수기와 같은 조생종이다. 2. 이삭 길이는 18 cm 정도로 다소 짧고 착립밀도는 보통이며 추출은 양호한 편이다. 까락이 해에 따라 다소 발생하며 탈립은 안되는 편이다. 3. '오대벼' 대비 주당수수가 많고 수당립수는 비슷하며 등숙비율은 높지만 현미 천립중이 다소 가벼운 20.6 g의 소립종이다. 4. 쌀의 완전미율이 '오대벼' 보다 높고, 심복백이 없으며 맑고 투명하다. '오대벼'에 비해 아밀로스 함량이 낮아 밥맛이 양호하다. 5. 도열병에는 강하나 흰잎마름병과 바이러스병에는 약하며 해충에 대한 저항성은 없다. 6. 전국 9개소 3개년의 지역적응성시험에서 수량성은 5.4MT/ha으로 '오대벼' 대비 6% 증수되었다.

영하의 저온에 노출된 'Campbell Early'와 'Muscat Bailey A' 포도나무 신초의 전사체 비교 (Transcriptomic analysis of 'Campbell Early' and 'Muscat Bailey A' grapevine shoots exposed to freezing cold stress)

  • 김선애;윤해근
    • Journal of Plant Biotechnology
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    • 제43권2호
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    • pp.204-212
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    • 2016
  • 환경스트레스 중의 하나인 저온에 대한 생육기의 포도나무의 반응을 분석하고자 -$2^{\circ}C$에서 4일 동안 저온처리 한두 품종('Campbell Early'와 'Muscat Baily A')의 포도나무잎을 이용하여 전사체를 분석하였고 특이발현유전자(differentially expressed genes, DEGs)를 검색하였다. 영하의 저온에 반응한 'Campbell Early'의 DEG를 기능별로 분석한 결과 생물대사에서 17,424개, 세포구성에서 28,954개, 분자기능에서는 6,972개의 유전자와 관련이 있었다. 발현이 유도되는 유전자로는 dehydrin xero 1, K-box region and MADS-box transcription factor family protein과 MYB domain protein 36이 있으며, 억제되는 유전자로는 light-harvesting chlorophyll B-binding protein 3, FASCICLIN-like arabinoogalactan 9와 pectin methylesterase 61 등이 있었다. 'Muscat Baily A'의 DEG는 생물대사에서 1,157개, 세포구성에서 1,350개, 분자기능에서는 431개의 유전자와 관련이 있었다. 발현이 유도되는 유전자로는 NB-ARC domain-containing disease resistance protein, fatty acid hydrozylase syperfamily와 isopentenyltransferase 3이 있으며, 억제되는 유전자로는 binding, IAP-like protein 1과 pentatricopeptide repeat superfamily protein 등이 있었다. Real-time PCR을 이용하여 영하의 저온에서 특이적으로 발현하는 유전자들을 검정하였으며, InterPro Scan을 통해 단백질 도메인을 분석한 결과 두 품종 모두에서 ubiquitin-protein ligase가 가장 많았다. 영하의 저온에 노출된 신초의 전사체 정보를 바탕으로 포도나무에서 저온 내성을 발현하는 기작을 연하는 데에 분자수준의 정보를 제공하고, 내한성 포도를 육종하는데 이용될 수 있을 것이다.

노인 치매 환자의 통증 역치 및 통증 경험의 특성 (Characteristics of Pain Threshold and Pain Experience in Elderly Patients with Dementia)

  • 방현철;박기창;김민혁;이영복;노현진
    • 정신신체의학
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    • 제21권2호
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    • pp.140-146
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    • 2013
  • 연구목적 본 연구는 치매 군과 비치매 군의 통증 역치 및 통증 경험의 특성을 비교 하고자 한다. 방 법 2010년 강원 조기치매 검진사업의 일환으로 시행된 것으로, 연구 대상은 지역사회 거주중인 65세 이상 노인 8,302명이었다. 이 중, 한국판 간이정신상태검사(MMSE-KC) 점수가 저하 된 1259명을 선별했고, 이중 365명이 한국형 치매 진단평가 도구(CERAD-K)를 이용한 정밀검진을 받았다. 검사 결과 및 전문의의 판단 하에 정상, 경도인지장애, 치매 군으로 진단 후, 최종 비치매 군 90명, 치매 군 57명이(경도-중등도 알츠하이머형 치매) 분석되었다. 압통각계(Pressure algometer)를 이용하여 실험적으로 통증 역치를 측정했고, 자가보고식 검사인 Brief pain inventory(BPI)를 이용하여 통증 경험(통증 심도, 통증 방해도)을 조사했다. 집단 간 차이 분석은 Pearson Chi-Square와, 혼란변인(성별, 나이, 교육수준, GDS, 당뇨)을 보정한 ANCOVA검정을 시행했다. 결 과 인구학적 특성상 치매 환자 군에서 여성이 많고, 연령이 높고, 교육 연수가 낮았다. 통증 역치는 두 군에서 통계적으로 의미 있는 차이가 발견되지 않았다. BPI결과에서 비치매 군이 어깨 통증, 전체 통증 개수, '통상적 일'의 통증으로 인한 방해를 의미 있게 더 많이 호소했다(p<0.05). 그러나 두 군에서 통증 유병률 및 치료는 차이가 없었다. 결 론 치매 군은 비치매 군보다 통증을 더 적게 경험했다. 이는 치매 환자의 통증 역치는 보존되었으나, 내성이 증가한다는 선행 연구를 뒷받침 하는 증거로 여겨진다. 따라서, 치매 환자를 위한 적극적인 통증 사정 및 치료를 제안한다.

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