• 제목/요약/키워드: Salinity stress

검색결과 276건 처리시간 0.026초

Induced Systemic Drought and Salt Tolerance by Pseudomonas chlororaphis O6 Root Colonization is Mediated by ABA-independent Stomatal Closure

  • Cho, Song-Mi;Kang, Beom-Ryong;Kim, Jeong-Jun;Kim, Young-Cheol
    • The Plant Pathology Journal
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    • 제28권2호
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    • pp.202-206
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    • 2012
  • Root colonization by the rhizobacterium Pseudomonas chlororaphis O6 in Arabidopsis thaliana Col-0 plants resulted in induced tolerance to drought and salinity caused by halide salt-generated ionic stress but not by osmotic stress caused by sorbitol. Stomatal apertures decreased following root colonization by P. chlororaphis O6 in both wild-type and ABA-insensitive Arabidopsis mutant plants. These results suggest that an ABA-independent stomatal closure mechanism in the guard cells of P. chlororaphis O6-colonized plants could be a key phenotype for induced systemic tolerance to drought and salt stress.

염분변화에 따른 넙치(Paralichthys olivaceus)의 스트레스 반응 (Stress Responses of Olive Flounder (Paralichthys olivaceus) to Salinity Changes)

  • 박형준;민병화
    • 한국어류학회지
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    • 제30권1호
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    • pp.1-8
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    • 2018
  • 스트레스를 유발하는 환경적인 요소 중, 염분의 변화는 어류의 성장과 생존에 있어 많은 영향을 미친다. 본 연구에서는 한국의 양식대상 어종인 넙치(P. olivaceus)를 대상으로 넙치양식에 있어 적정 염분범위를 구명하기 위하여 각 염분별(25, 20, 15 psu 및 10 psu) 조건을 통해 24시간 및 48시간 동안 노출시킨 후, 혈액생리학적 분석 및 HSP70 mRNA 발현을 조사하였다. 혈액학적 분석에서 hematocrit (Ht) 및 hemoglobin (Hb), 혈장 코티졸 (cortisol) 및 글루코스 (glucose)의 변화, aspartate aminotransferase (AST) 및 alanine aminotransferase (ALT), $Na^+$, $K^+$, $Cl^-$, $NH_3$, 삼투질농도(osmolality) 및 총 단백질(total protein, TP)는 저염분 조건인 10 psu 및 15 psu에서 다른 염분별 실험구에 비해 대부분의 항목에서 유의적인 차이를 보였다. 혈장 내 SOD (superoxide dismutase) 및 CAT(catalase) 활성에서도 마찬가지로 대조구인 자연해수의 조건보다 저염분(10 psu 및 15 psu)으로 갈수록 증가하는 경향을 보였다. 스트레스성 단백질로 알려진 HSP 70 mRNA 발현에서도 대조구보다 저염분에서 유의적인 차이를 확인하였다. 이러한 결과로, 염분변화에 의한 스트레스가 넙치의 생체방어메커니즘과 항상성 유지를 위한 결과로 혈액학적 반응, 호르몬의 분비 및 단백질 발현의 증가가 나타나는 것으로 여겨지며, 이를 바탕으로 저염분에 대비한 넙치양식에 있어 기초적인 자료로 활용될 것이 기대된다.

염화물계 제설제의 농도처리에 따른 벼과와 국화과의 종자 발아특성 (Effect of Chloride-containing Deicing Salts Concentration on the Germination Characteristics of Six Species of Asteraceae and Poaceae Seeds)

  • 양지;이재만;송희연;박선영;윤용한;주진희
    • 한국환경과학회지
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    • 제28권11호
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    • pp.907-915
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    • 2019
  • This study aims to identify the most tolerant species under salinity stress from amongst Asteraceae and Poaceae. The seeds of six species were exposed to different concentrations of $CaCl_2$ (0, 9, 18, 45, 90 mM) and NaCl (0, 17, 34, 85, 170 mM), and germination was measured once every two days. The results indicated that percent germination of the six species of Asteraceae and Poaceae seeds were affected differently by changes in salinity concentration. Seed germination was reduced as salinity levels increase, and longer mean germination times correlated to lower percent germination and earlier germination cessation. Both Asteraceae and Poaceae seeds had the highest germination rates at 18 mM $CaCl_2$ and 34 mM NaCl, and seed germination and growth were severely reduced at salinities greater than 90 mM $CaCl_2$ and 170 mM NaCl. In the seeds of Poaceae, salt resistance was strong in the order of Miscanthus sinensis Andersson, Pennisetum alopecuroides (L.) Spreng., and Phragmites communis Trin. In the seeds of Asteraceae, salt resistance was strong in the order of Dendranthema zawadskii var. latilobum (Maxim.) Kitam, Aster yomena (Kitam.) Honda, and Dendranthema boreale (Makino) Ling ex Kitam.. Overall, the germination rate was higher in Asteraceae than in Poaceae. This study demonstrated that Dendranthema zawadskii var. latilobum (Maxim.) Kitam. is the most tolerant species and that a relationship exists between the salt tolerance of percent germination and the mean germination time in the leaves.

강피종자의 발아와 폴리아민 생합성에 대한 염류의 영향 (Influence of Salinity Treatment on Seed Germination and Polyamine Synthesis in Barnyard Grass(Echinochloa hispidula))

  • 윤솔;이수연;임효진;심명보;성좌경;김태완
    • 한국토양비료학회지
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    • 제37권1호
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    • pp.19-24
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    • 2004
  • 염류장애의 생리적 반응을 검토하고자 강피(Echinochloa hispidula) 종자를 고농도의 NaCl과 KCl 조건하에서 발아시켰다. 발아의 기간과 진전속도를 측정하였으며, 염류스트레스 조건에서의 지질과산화와 폴리아민 생합성양상을 분석하였다. 고농도 염류처리 자체는 비록 발아를 상당히 지연시킬 수는 있지만 발아를 억제하지 못하는 것으로 나타났다. 지질과산화와 폴리아민 생합성에 견주어볼 때, 강피는 염류에 내성이 것으로 사료되었다. 지질과산화와 putrescine 함량의 증가는 염류처리 후 1일 동안만 지속되었다. 이러한 결과는 초기 putrescine 증가와 지질과산화수소의 생성이 단기간 동안의 염류 내성 기작과 밀접한 관계가 있다고 결론 내릴 수 있는 근거가 되었다.

Rice genotype, parental lineage and physiological tolerance to soil salinity shapes the community structure of rice seed bacterial endophytes

  • Walitang, Denver I.;Kim, Kiyoon;Chatterjee, Poulami;Kang, Yeongyeong;Sa, Tongmin
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.342-342
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    • 2017
  • Rice seeds are a home to endophytic bacterial communities which serve as a source of the plant's endophytes. As rice undergo physiological and adaptive modifications through cross breeding in the process of attaining salinity tolerance, this may also lead to changes in the endophytic bacterial community especially those residing in the seeds. This study explores the community structure of seed bacterial endophytes as influenced by rice parental lineage, genotype and physiological adaptation to salinity stress. Endophytic bacterial diversity was studied through culture dependent technique, cloning and Terminal-Restriction Fragment Length Polymorphism (T-RFLP) analysis. Results revealed considerably diverse communities of bacterial endophytes in the interior of rice seeds. The richness of ribotypes ranges from 5-14 T-RFs corresponding to major groups of bacterial endophytes in the seeds. Endophytic bacterial diversity of the salt-sensitive IR29 is significantly more diverse compared to those of salt-tolerant cultivars. Proteobacteria followed by Actinobacteria and Firmicutes dominated the overall endophytic bacterial communities of the indica rice seeds based on 16S rDNA analysis of clones and isolates. Community profiles show common ribotypes found in all cultivars of the indica subspecies representing potential core microbiota belonging to Curtobacterium, Flavobacterium, Enterobacter, Xanthomonas, Herbaspirillum, Microbacterium and Stenotrophomonas. Multivariate analysis showed that the bacterial endophytic community and diversity of rice seeds are mainly influenced by their host's genotype, physiological adaptation to salt stress and parental lineage.

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Enhanced drought and salinity tolerance in transgenic potato plants with a BADH gene from spinach

  • Zhang, Ning;Si, Huai-Jun;Wen, Gang;Du, Hong-Hui;Liu, Bai-Lin;Wang, Di
    • Plant Biotechnology Reports
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    • 제5권1호
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    • pp.71-77
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    • 2011
  • Drought and salinity are the most important abiotic stresses that affect the normal growth and development of plants. Glycine betaine is one of the most important osmolytes present in higher plants that enable them to cope with environmental stresses through osmotic adjustment. In this study, a betaine aldehyde dehydrogenase (BADH) gene from spinach under the control of the stress-induced promoter rd29A from Arabidopsis thaliana was introduced into potato cultivar Gannongshu 2 by the Agrobacterium tumefaciens system. Putative transgenic plants were confirmed by Southern blot analysis. Northern hybridization analysis demonstrated that expression of BADH gene was induced by drought and NaCl stress in the transgenic potato plants. The BADH activity in the transgenic potato plants was between 10.8 and 11.7 U. There was a negative relationship (y = -2.2083x + 43.329, r = 0.9495) between BADH activity and the relative electrical conductivity of the transgenic potato plant leaves. Plant height increased by 0.4-0.9 cm and fresh weight per plant increased by 17-29% for the transgenic potato plants under NaCl and polyethylene glycol stresses compared with the control potato plants. These results indicated that the ability of transgenic plants to tolerate drought and salt was increased when their BADH activity was increased.

수온과 염분이 참전복, Haliotis discuss hannai의 혈림프액 성상과 유리아미노산 조성에 미치는 영향 (Effects of Temperature and Salinity on the Hemolymp Characteristic and Composition of Free Amino Acid of the Abalone, Haliotis discuss hannai)

  • 양성진;이정용;황형규;민병화;신윤경;명정인
    • 한국해양생명과학회지
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    • 제1권1호
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    • pp.50-55
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    • 2016
  • 본 연구결과 glucose, NH3, AST, ALT는 4℃일 때 가장 높게 나타났으며, glucose와 AST는 4℃일 때 다른 염분구보다 26 psu에서 유의하게 높았다. 참전복에는 총 18가지 FAA가 존재하였으며, taurine, arginine, glutamic acid, alanine, glycine, lysine이 전체의 90% 가량을 차지하는 우점 FAA로 나타났다. Taurine은 30 psu 이상에서는 수온 간 유의한 차이가 없었으나, 26 psu에서는 6, 8℃일 때 유의하게 증가하였다. Glycine은 수온이 낮아질수록 유의하게 감소하여 6℃일 때 가장 높게 나타났다. 따라서 참전복은 30~34 psu, 8~10℃에서의 조건으로 수송 시 스트레스를 최소화할 수 있을 것으로 여겨진다.

The effects of salt stress and prime on germination improvement and seedling growth of Calotropis procera L. seeds

  • Taghvaei, Mansour;Khaef, Nazila;Sadeghi, Hossein
    • Journal of Ecology and Environment
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    • 제35권2호
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    • pp.73-78
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    • 2012
  • $Calotropis$ $procera$ L. is a perennial shrub distributed in saline areas of deserts of South Asia. Salt stress is a very challenging subject in arid and semi-arid areas. Germination stage is very sensitive and many plants do not germinate in saline soil. The objective of this study was identifying the salinity effect on seed germination of $Calotropis$ $procera$ L. The experimental design was a complete randomized block design with NaCl and $CaCl_2$ at five levels of isobar concentrations: 0.0, -0.01, -0.05, -0.1, and -0.15 MPa. Osmotic potential had significant effects ($P$ < 0.01) on germination percentage, germination rate, shoot length, root length, and seedling dry weight. All seedling characteristics decreased with decrease in osmotic potential. Shoot length and root length decreased more than the seedling characteristics. Germination was completely inhibited in -0.1 Mpa. Priming with NaCl and $CaCl_2$ (-0.1 MPa) for four days had significant effects ($P$ < 0.01) on the germination percentages. Priming improved the seedling characteristics in all samples, especially in -0.05 Mpa, but a decrease with decrease in osmotic potential.

Salt Tolerance in Plants - Transgenic Approaches

  • Sangam S.;Jayasree D.;Reddy K.Janardhan;Chari P.V.B.;Sreenivasulu N.;Kishor P.B.Kavi
    • Journal of Plant Biotechnology
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    • 제7권1호
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    • pp.1-15
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    • 2005
  • Salinity is one of the major limiting factors for agricultural productivity. In plants, accumulation of osmolytes plays a pivotal role in abiotic stress tolerance. Likewise, exclusion or compartmentation of $Na^+$ ions into vacuoles provides an efficient mechanism to avert deleterious effects of $Na^+$ in the cytosol. Both vacuolar and plasma membrane sodium transporters and $H^+-ATPases$ can provide the necessary ion homeostasis. A variety of crop plants were engineered with respect to the synthesis of osmoprotectants and ion-compartmentation, but there are other cellular pathways involved in the salinity responses that are still not completely explored. Genomics approaches are increasingly used to identify genes and pathway changes involved in salt-tolerance. The new knowledge may be used via guided genetic engineering of multiple genes to create crop plants with significantly increased productivity in saline soils. This review surveys how plants deal with high salt conditions and how salt tolerance can be improved by transgenic approaches.