• 제목/요약/키워드: Salt tolerant and sensitive cultivars

검색결과 11건 처리시간 0.03초

Soil salinity shifts the community structure and diversity of seed bacterial endophytes of salt-sensitive and tolerant rice cultivars

  • Walitang, Denver I.;Ahmed, Shamim;Jeon, Sunyoung;Pyo, Chaeeun;Sa, Tongmin
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.244-244
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    • 2017
  • Soil salinity due to accumulation of salts particularly sodium chloride affects agricultural lands and their vegetation. Generally, rice is a moderately sensitive plant with some cultivars with varying tolerance to salinity. Though there are physiological differences between salt-sensitive and salt-tolerant rice cultivars, both are still affected especially during high salinity and prolonged exposure. This also ultimately affects their indigenous bacterial endophytes particularly those that inhabit the rice seed endosphere. This study investigates the dynamic structure of seed bacterial endophytes of salt-sensitive and tolerant rice cultivars grown in different levels of soil salinity. Endophytic bacterial diversity was studied Terminal-Restriction Fragment Length Polymorphism (T-RFLP) analysis. Results revealed a very interesting pattern of diversity and shifts in community structure of bacterial endophytes in the rice seeds. There is a general decrease in diversity for the salt-sensitive rice cultivar, IR29 as soil salinity increases. For the salt-tolerant cultivars, IC32 and IC37, diversity interestingly increased at moderate salinity then decreased at high soil salinity. The patterns of community structure is also strikingly different for the salt-sensitive and salt-tolerant rice cultivars. IR29 has a more even distribution of abundance, but under soil salinity, the community shifted where Curtobacterium, Pantoea, Flavobacterium and Microbacterium become the more dominant bacterial communities. For IC32 and IC37, the dominant bacterial groups under normal stress conditions were also the dominant bacterial groups during salt stress conditions. Their seed bacterial community is dominated by endophytes belonging to Microbacterium, Flavobacterium, Pantoea, Kosakonia and Enterobacter. Stenotrophomonas and Xanthomonas have not changed in terms of abundance under different salinity stress level in the salt-sensitive and salt-tolerant rice cultivars. This study showed that soil salinity greatly influenced the seed bacterial communities of rice seeds irrespective of their physiological tolerance to salinity.

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염류처리에 따른 벼의 개엽광합성에 관한 연구 (Studies on the Leaf Photosynthesis of Salt-Stressed Rice Cultivars)

  • 조동하
    • 한국자원식물학회지
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    • 제7권1호
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    • pp.97-101
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    • 1994
  • The effects of NaCl salinity on the leaf photosynthesis and water relation of two cultivars of rice(Oryza sativa L.) , the salt-tolerant cultivar Seohae and the salt-senstive cultivar Iri-380 were exam-ined. Two cultivars of rice were grown for 14 days in nutrient solution at SOmM NaCl. Comparing theieaf Na content of two cultlvars, Seohae showed high accumulation of Na content in the leaf blade, while Iri-380 showed low. The Na content in leaf blade reduced the rate of leaf photosynthesis. Salt-tolerant cultivar Seohae was less decreased the rate of leaf photosynthesis than salt- sensitive cultivarIri-380. And Seohae showed larger decreased the osmotic potential in the leaves than Iri-380. This in-dicates that in the salt-tolerant cultivar, osmotic adjustment is developed under saliniEation.

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Physiological and Genetic Responses of Salt-stressed Tunisian Durum (Triticum turgidum ssp. durum) Cultivars

  • Kim, Sang Heon;Kim, Dae Yeon;Yacoubi, Ines;Seo, Yong Weon
    • 한국작물학회지
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    • 제63권4호
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    • pp.314-321
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    • 2018
  • Durum (Triticum turgidum L. ssp. durum) is a major crop species cultivated for human consumption worldwide. In Tunisia, salt stress is one of the main problems that limit crop production. 'Mahmoudi' was selected as the most salt-sensitive out of 11 Tunisian durum cultivars. Using the salt-tolerant cultivar 'Om Rabia', resistant and susceptible cultivars were evaluated to compare genetic responses under salt stress. At the fully expanded third leaf stage, salt stress was applied by submerging the pots in 500 mM NaCl for 5 min every day for saline water irrigation in the greenhouse. The treatment was applied for 1 week and salt stress tolerance was determined by changes of growth parameters to the control condition. The salt tolerance trait index and salt tolerance index were calculated and used as selection criteria. The expression levels of TdHKT1;4, TdHKT1;5, and TdSOS1 were examined using qPCR. For further evaluation of physiological responses, salt stress (150 mM NaCl) was additionally applied for 48 h at the fully expanded third-leaf stage. Increased expression of the genes responsible for salt tolerance and proline content in tolerant durum can be used to broaden genetic diversity and provide genetic resources for the durum breeding program.

수분 및 Salt Stress조건하에서 대맥품종의 발아력과 출현력의 차이 (Barley Varietal Differences in Germination and Emergence Capacity under Different Water and Salt Stress Conditions)

  • 천종은;이은섭;정동희;정태영
    • 한국작물학회지
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    • 제28권1호
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    • pp.122-127
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    • 1983
  • 본 시험은 수분 및 Salt stress 조건에서 우리나라 대맥 주요육성 품종 및 계통들의 발아력과 출현력의 품종간 차이를 구명하고자 Sucrose와 KC1 용액을 사용하여 실시하였던 바 그 결과를 요약하면 다음과 같다. 1. 수분 Stress에서 발아력의 품종간 변이는 -10 - -15bars에서 매우 컸으며 부흥, 밀양 006, 부호 보리 등이 양호하였다. 2. Salt stress에서 출현력의 품종간 변이는 약 -9bars에서 매우 컸으며 SB77415 - B -37, 조강보리, 동보리 001 등이 양호하였으며 초엽장, 유묘장과 정의 상관이 인정되었다. 3. 수분 Potential이 낮아짐에 따라 종자의 발아, 출현시기가 지연될 뿐 아니라 비율도 낮아져 초기입모가 불량하였다. 4. 수분 Stress에서 발아력과 Salt stress에서 출현력의 관계는 높은 정의 상관이 인정되었으며, 본 시험결과는 두 방법의 병용가능성과 품종간 차이를 구명하기 위해선 낮은 Potential(-9 bars)에서 실시해야 함을 제시해준다.

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Phenotypic and genotypic screening of rice accessions for salt tolerance

  • Reddy, Inja Naga Bheema Lingeswar;Kim, Sung-Mi;Yoon, In Sun;Kim, Beom-Gi;Kwon, Taek-Ryoun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.188-188
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    • 2017
  • Rice (Oryza sativa L.) is one of the major crops that is seriously impacted by global soil salinization. Rice is among those crops where most of the high-yielding cultivars are highly sensitive to salinity. The key to a plant survival under NaCl salt stress is by maintaining a high $K^+/Na^+$ ratio in its cells. Selection for salinity tolerance genotypes of rice based on phenotypic performance alone is less reliable and will delay in progress in breeding. Recent advent of molecular markers, microsatellites or simple sequence repeats (SSRs) were used to find out salt tolerant rice genotypes. In the current experiment phenotyping and genotyping studies were correlated to differentiate different rice accessions for salinity tolerance. Eight rice accessions along with check plant Dongjin were screened by physiological studies using Yoshida solution with 50mM NaCl stress condition. The physiology studies identified four tolerant and four susceptible accessions based on their potassium concentration, sodium concentration, $K^+/Na^+$ ratio and biomass. 17 SSR markers were used to evaluate these rice accessions for salt tolerance out of which five molecular markers were able to discriminate tolerant accessions from the susceptible accessions. Banding pattern of the accessions was scored comparing to the banding pattern of Dongjin. The study identifies accessions based on their association of $K^+/Na^+$ ratio with molecular markers which is very reliable. These markers identified can play a significant role in screening large set of rice accessions for salt tolerance; these markers can be utilized to improve salt tolerance of commercial rice varieties with marker-assisted selection (MAS) approach.

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Exclusion of Na+ and ClIons by the central parenchyma in leaf sheaths of rice and the involvement of lamina joint

  • Neang, Sarin;Kano-Nakata, Mana;Yamauchi, Akira;Itani, Tomio;Maekawa, Masahiko;Mitsuya, Shiro
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.237-237
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    • 2017
  • Rice is highly sensitive to salt stress especially in its early growth stage, which thus is one of the major constraints in rice production. In rice plants, salt sensitivity is associated with the accumulation of $Na^+$ in the shoots, especially in the photosynthetic tissues. High salt concentrations in soil cause high $Na^+$ and $Cl^-$ transport to the shoot and preferential accumulation of those ions in older leaves, which decreases $K^+$ in the shoot, photosynthetic activity and grain yield. Salt exclusion capacity at the leaf sheath is therefore considered to be one of the main mechanisms of salt tolerance. In addition, it is suspected that the lamina joint might be involved in the salt transport from leaf sheath to leaf blade. This research aims to determine if leaf sheaths of rice exclude a large amount of $Na^+$ only or other ions such as $K^+$, $Ca^{2+}$, $Mg^{2+}$, and $Cl^-$ as well, to identify tissues in the leaf sheath, which accumulate $Na^+$, and to examine if the lamina joint is involved in the salt exclusion by the leaf sheath. The rice seedlings of salt tolerant genotype FL478 and salt sensitive genotype IR29 were independently treated with NaCl, KCl, $MgCl_2$ and $CaCl_2$, and Taichung 65 and its near-isogenic liguleless line (T65lg) were treated with NaCl. Then, the content of $Na^+$, $K^+$, $Ca^{2+}$, $Mg^{2+}$, and $Cl^-$ ions and their specific location were determined using Atomic Absorption Spectrometer, Ion Chromatograph, and Energy Dispersive X-ray Spectroscopy. Results showed that leaf sheaths of FL478 and IR29 accumulated a large amount of $Na^+$, $K^+$, $Ca^{2+}$, $Mg^{2+}$, and $Cl^-$ ons, and thus excluded them from leaf blades when treated with high concentration of each salt. When treated with NaCl, the highest $Na^+$ concentration was found in the basal part of leaf sheaths of both cultivars. Moreover, energy-dispersive X-ray spectroscopy revealed that the central parenchyma cells of the leaf sheath were the site where most Na, Cl, and K were retained under salinity in the salt tolerant genotype FL478. Also, the concentration of $Na^+$, $K^+$ and $Cl^-$ ions in leaf sheaths and leaf blades was comparable between T65 and T65lg, indicating that the lamina joint may not be involved in the exclusion of $Na^+$, $Cl^-$ and $K^+$ by the leaf sheath from the leaf blade under salinity. Therefore, we conclude that the central parenchyma cells of basal part of leaf sheath are the site that plays a physiological role to exclude $Na^+$ in the shoots of rice without the involvement of the lamina joint.

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Effects of Ozone and Soil Salinity, Singly and in Combination, on Growth, Yield and Leaf Gas Exchange Rates of Two Bangladeshi Wheat Cultivars

  • Kamal, Mohammed Zia Uddin;Yamaguchi, Masahiro;Azuchi, Fumika;Kinose, Yoshiyuki;Wada, Yoshiharu;Funada, Ryo;Izuta, Takeshi
    • Asian Journal of Atmospheric Environment
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    • 제9권2호
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    • pp.173-186
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    • 2015
  • In Bangladesh, increases in the tropospheric ozone ($O_3$) concentration and in soil salinization may lead to crop damage. To clarify the effects of $O_3$ and/or soil salinity on Bangladeshi wheat cultivars, BAW1059 (salt-tolerant) and Shatabdi (salt-sensitive) were exposed to 70-day treatments with $O_3$ (charcoal-filtered air (CF), $1.0{\times}O_3$, and $1.5{\times}O_3$) and different levels of soil salinity (0, 4, and $8dS\;m^{-1}$). In both cultivars, the whole-plant dry mass and grain yield were significantly reduced by exposure to $O_3$. Increased soil salinity caused significant reductions in whole-plant growth and yield in Shatabdi, but the reductions were negligible in BAW1059. No significant interactions between $O_3$ and salinity were detected for growth, yield, and leaf gas exchange parameters in both cultivars. We concluded that the effects of $O_3$ are not ameliorated by soil salinity in two Bangladeshi wheat cultivars, regardless of their salinity tolerance.

이탈리안 라이그라스 품종별 NaCl 처리가 발아 및 초기생육에 미치는 영향 (Effects of Sodium Chloride Treatment on Seed Germination and Seedling Growth of Italian Ryegrass Cultivars)

  • 이상훈;최기준;이동기;문진용;김기용;지희정;박형수;이기원
    • 한국초지조사료학회지
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    • 제34권2호
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    • pp.108-113
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    • 2014
  • 이탈리안 라이그라스의 발아 및 초기 생육단계에서 내염성 수준 정도를 조사하기 위하여 in vitro 조건에서 다양한 염농도 조건에서 그린팜, 플로리다80, 코원어리 및 화산101호 품종을 이용하여 염해에 대한 반응을 발아율과 산화 스트레스 관련 효소들의 활성을 통해 조사하였다. 저농도의 NaCl 처리구에서는 모든 품종에서 발아율의 차이가 1~3% 정도 감소하는 경향을 보였으며 250 mM 이상의 NaCl 처리구에는 화산101호 품종을 제외한 모든 품종에서 50% 이상의 발아율 감소를 보였다. 또한, NaCl 농도가 높아질수록 발아에 걸리는 시간이 지연되었으며, 350 mM NaCl이 첨가된 처리구에는 화산101호 품종만이 치상 10일후에 발아가 시작하여 12% 정도 발아하였다. NaCl 농도에 따른 shoot과 root의 길이와 생초와 건조 후 무게의 변화도 만생종으로 갈수록 더 생육이 우수한 것으로 타나났다. 품종별간의 잎 조직에서 항산화효소 활성을 분석 결과 고염 조건 (150 mM NaCl)에서 POD 활성은 대조군과 유사한 수준으로 확인 되었다. 반면 APX 활성은 플로리다80과 코윈어리 품종에서는 증가하는 경향을, 화산101 품종에서는 감소하는 경향이 나타났으나 유의적인 수준에서 차이는 확인되지 않았다. 반면 그린팜 품종에서는 유의적인 수준에서 고염 처리에 의한 APX 활성이 감소되는 경향이 나타났다. 지속적으로 in vitro screening을 통해 선발된 계통들은 향후 특성평가와 인공교배를 통해 내염성 이탈리안 라이그라스 개발에 필요한 유용한 육종모재로 활용될 수 있을 것으로 판단된다.

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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수분장애(水分障碍) 및 염장애(鹽障碍)하에서 수도체(水稻體)중 효소수준(酵素水準) 및 유기대사산물(有機代謝産物)과 무기(無機)이온 함량의 변화 (Changes in the Contents of Some Metabolites and Ions and in Some Enzyme Levels in Rice Plants Grown under Water-and Salt-stressed Condition)

  • 박노동
    • Applied Biological Chemistry
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    • 제25권3호
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    • pp.135-141
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    • 1982
  • Pot에 재배(栽培)한 수도(水稻) 진주벼와 이리 348호(號)에 수분 결핍과 염장애를 유도한 다음 몇가지 유기대사산물(有機代謝産物)과 무기(無機)이온의 함량(含量)을 측정(測定)하고 관계되는 몇가지 효소활성(酵素活性)을 측정(測定)하여 비교검토(比較檢討)하였다. 비내염성(非耐鹽性)으로 알려진 이리 348호(號)가 부적환경조건(不適環境條件)에서 수분손실(水分損失)이 심하고 proline의 함량(含量)도 많았다. 2품종(品種) 모두 부적환경조건(不適環境條件)에서 조단백질, 총유리아미노산, proline, polypheonol화합물(化合物)이 증가(增加)됐으나 환원량(環元糧)은 수분장애구(水分障碍區)에서만 축적(蓄積)되었다. 조단백질에 대한 유기용질(有機溶質)의 비(比)는 진주벼의 부적환경구(不適環境區)에서만 증가한 반면 이리 348호(號)에서는 변화가 없었다. 부적환경구(不適環境區)에서 황성(活性)이 증가(增加)한 효소(酵素)로는 protease, ${\alpha}-amylase$, phosphorylase가 있으며, 특히 조단백질에 대한 총유리아미노산의 비(比)의 증가(增加)는 protease에 의한 단백질의 가수분해(加水分解)에 기인했다. $Na^+$$Cl^-$의 함량은 이리 348호(號)에서 진주벼에서 보다 높았다. $Na^+/Ca^{2+}$과 양이온의 일가(一價)/이가(二價)의 값들은 진주벼에서 항상 낮았고, $K^+/Na^+$은 진주벼에서 높았다. 그러므로 이러한 값이 염해(鹽害)와 한발(旱魃)에 대한 저항성과 어떠한 상관(相關)이 있는지 더욱 연구(硏究)할 필요가 있다고 본다.

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