• 제목/요약/키워드: root dry weight

검색결과 827건 처리시간 0.027초

접목선인장의 생육 억제에 미치는 CCC, Diniconazole 처리 효과 (Effects of CCC and Diniconazole on the Growth Retarding of Grafted Cactus)

  • 최이진;정명일;김미선
    • 화훼연구
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    • 제16권4호
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    • pp.234-238
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    • 2008
  • 본 연구는 수출용 접목선인장의 연중 출하물량을 조절하는데 도움이 되기 위한 목적으로 생장억제제인 CCC와 diniconazole을 처리하여 접목선인장의 생육을 단기간 억제하는 방법을 알기 위하여 수행하였다. 비모란선인장에 diniconazole을 처리하여 구경을 조사한 결과 약 1.1mm 정도 구경이 감소하였으며 자구수는 무처리의 경우 7.2개였으나 $100\;mg{\cdot}L^{-1}$ 처리에서 6.4개로 자구수 감소에 유의성이 있었다. 산취선인장의 CCC 처리 30일 후의 생육특성을 조사한 결과 모든 처리구에서 구경, 구고, 자구수 등에 억제 효과가 있었으며 특히 $150\;mg{\cdot}L^{-1}$ 처리의 경우 무처리 보다 구경이 3.3 mm, 구고가 13.4 mm 감소하였다. 따라서 산취선인장 정식 후 재배과정에서 출하시기를 조절할 목적으로 생장억제제를 시용할 경우 $150\;mg{\cdot}L^{-1}$ CCC 처리가 가장 효과적이었다.

The effects of additive biomaterials and their mixed-ratios in growing medium on the growth of Quercus serrata container seedlings

  • Seo, Jeong Min;An, Ji Young;Park, Byung Bae;Han, Si Ho;Youn, Woo Bin;Aung, Aung;Dao, Huong Thi Thuy;Cho, Min Seok
    • 농업과학연구
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    • 제46권1호
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    • pp.93-102
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    • 2019
  • The materials of artificial soils in the production process of container seedlings have a great influence on plant growth. Peat moss, vermiculite, and perlite have been used as major components of artificial soils for many years; however, they could decrease carbon fixation carried out by the soil and cause environmental problems such as a change in the water quality. Thus, environmental friendly materials to replace them must be developed. The purpose of this study was to verify the optimum additive materials of artificial soils and their mixed ratios for the growth and seedling quality index (SQI) of Quercus serrata. Rice husk, mushroom sawdust, and pine bark were each used as an additive material and mixed into the growth medium at 10% and 20% of the total volume. There was no significant difference in the height growth of Q. serrata. The 20% mushroom sawdust decreased the root collar diameter by 23.4% compared to the control. The total dry weight was highest with the 10% rice husk and was significantly lower by 10.3% for the 20% mushroom sawdust compared to the control. Additionally, the SQI for all the treatments showed no tendency to increase compared with the control. Thus, this study showed the possibility of recycling biomaterials from agriculture and forest for seedling production. This method could reduce environmental problems and help eco-friendly nurseries to achieve a carbon negative impact by the recycling of by-products.

Induction of Systemic Resistance against Bacterial Leaf Streak Disease and Growth Promotion in Rice Plant by Streptomyces shenzhenesis TKSC3 and Streptomyces sp. SS8

  • Hata, Erneeza Mohd;Yusof, Mohd Termizi;Zulperi, Dzarifah
    • The Plant Pathology Journal
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    • 제37권2호
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    • pp.173-181
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    • 2021
  • The genus Streptomyces demonstrates enormous promise in promoting plant growth and protecting plants against various pathogens. Single and consortium treatments of two selected Streptomyces strains (Streptomyces shenzhenensis TKSC3 and Streptomyces sp. SS8) were evaluated for their growth-promoting potential on rice, and biocontrol efficiency through induced systemic resistance (ISR) mediation against Xanthomonas oryzae pv. oryzicola (Xoc), the causal agent of rice bacterial leaf streak (BLS) disease. Seed bacterization by Streptomyces strains improved seed germination and vigor, relative to the untreated seed. Under greenhouse conditions, seed bacterization with consortium treatment TKSC3 + SS8 increased seed germination, root length, and dry weight by 20%, 23%, and 33%, respectively. Single and consortium Streptomyces treatments also successfully suppressed Xoc infection. The result was consistent with defense-related enzyme quantification wherein single and consortium Streptomyces treatments increased peroxidase (POX), polyphenol oxidase, phenylalanine ammonia-lyase, and β,1-3 glucanase (GLU) accumulation compared to untreated plant. Within all Streptomyces treatments, consortium treatment TKSC3 + SS8 showed the highest disease suppression efficiency (81.02%) and the lowest area under the disease progress curve value (95.79), making it the best to control BLS disease. Consortium treatment TKSC3 + SS8 induced the highest POX and GLU enzyme activities at 114.32 µmol/min/mg protein and 260.32 abs/min/mg protein, respectively, with both enzymes responsible for plant cell wall reinforcement and resistant interaction. Our results revealed that in addition to promoting plant growth, these Streptomyces strains also mediated ISR in rice plants, thereby, ensuring protection from BLS disease.

Improvement of cadmium tolerance and accumulation of Phragmites spp. Tabarka by ethyl methane sulfonate mutagenesis

  • Kim, Young-Nam;Kim, Jiseong;Lee, Jeongeun;Kim, Sujung;Lee, Keum-Ah;Kim, Sun-Hyung
    • Journal of Plant Biotechnology
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    • 제47권4호
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    • pp.324-329
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    • 2020
  • Reed (Phragmites spp.) is a rhizomatous plant of the Poaceae family and is known as high tolerant plant to heavy metal contaminants. This plant is widely recognized as a Cd root-accumulator, but improved heavy metal tolerance and uptake capacity are still required for phytoremediation efficiency. To enhance capacity of hyperaccumulator plants, ethyl methane sulfonate (EMS) as chemical mutagen has been introduced and applied to remediation approaches. This study aimed to select EMS-mutagenized reeds representing high Cd resistance and large biomass and to investigate their ability of Cd accumulation. After 6 months cultivation of M2 mutant reeds under Cd stress conditions (up to 1,500 µM), we discovered seven mutant individuals that showed good performances like survivorship, vitality, and high accumulation of Cd, particularly in their roots. Compared to wild type (WT) reeds as control, on average, dry weight of mutant type (MT) reeds was larger by 2 and 1.5 times in roots and shoots, respectively. In addition, these mutant plants accumulated 6 times more Cd, mostly in the roots. In particular, MT8 reeds showed the greatest ability to accumulate Cd. These results suggest that EMS mutagenesis could generate hyperaccumulator plants with enhanced Cd tolerance and biomass, thereby contributing to improvement of phytoremediation efficiency in Cd-contaminated soil or wastewater. Further studies should focus on identifying Cd tolerance mechanisms of such EMS-mutagenized plants, developing techniques for its biomass production, and investigating the practical potential of the EMS mutants for phytoremediation.

Zinc-Solubilizing Streptomyces spp. as Bioinoculants for Promoting the Growth of Soybean (Glycine max (L.) Merrill)

  • Chanwit Suriyachadkun;Orawan Chunhachart;Moltira Srithaworn;Rungnapa Tangchitcharoenkhul;Janpen Tangjitjareonkun
    • Journal of Microbiology and Biotechnology
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    • 제32권11호
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    • pp.1435-1446
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    • 2022
  • Zinc-solubilizing bacteria can convert the insoluble form of zinc into soluble forms available to plants. This study was conducted to isolate and screen zinc-solubilizing actinobacteria from rhizosphere soils and to assess their effect on vegetable soybean growth. In total, 200 actinobacteria strains belonging to 10 genera were isolated from rhizosphere soil samples. Among these isolates, four showed zinc solubilization with solubilizing index values ranging from 3.11 to 3.78 on Bunt and Rovira agar supplemented with 0.1% zinc oxide. For the quantitative assay, in broth culture, strains CME34 and EX51 solubilized maximum available zinc contents of 529.71 and 243.58 ㎍/ml. Furthermore, indole-3-acetic acid (IAA) and ammonia were produced by these two strains, the strain CME34 produced the highest amount of IAA 4.62 ㎍/ml and the strain EX51 produced the highest amount of ammonia 361.04 ㎍/ml. In addition, the phosphate-solubilizing abilities in Pikovskaya's medium of CME34 and EX51 were 64.67 and 115.67 ㎍/ml. Based on morphological and biochemical characterization and 16S rDNA sequencing, the strains CME34 and EX51 were closely related to the genus Streptomyces. In a greenhouse experiment, single-strain inoculation of Streptomyces sp. CME34 or EX51 significantly increased the shoot length, root length, plant dry weight, number of pods per plant and number of seeds per plant of vegetable soybean plants compared to the uninoculated control. These findings facilitated the conclusion that the two Streptomyces strains have potential as zinc solubilizers and can be suggested as bioinoculants to promote the growth and yield of soybean.

Predicting rock brittleness indices from simple laboratory test results using some machine learning methods

  • Davood Fereidooni;Zohre Karimi
    • Geomechanics and Engineering
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    • 제34권6호
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    • pp.697-726
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    • 2023
  • Brittleness as an important property of rock plays a crucial role both in the failure process of intact rock and rock mass response to excavation in engineering geological and geotechnical projects. Generally, rock brittleness indices are calculated from the mechanical properties of rocks such as uniaxial compressive strength, tensile strength and modulus of elasticity. These properties are generally determined from complicated, expensive and time-consuming tests in laboratory. For this reason, in the present research, an attempt has been made to predict the rock brittleness indices from simple, inexpensive, and quick laboratory test results namely dry unit weight, porosity, slake-durability index, P-wave velocity, Schmidt rebound hardness, and point load strength index using multiple linear regression, exponential regression, support vector machine (SVM) with various kernels, generating fuzzy inference system, and regression tree ensemble (RTE) with boosting framework. So, this could be considered as an innovation for the present research. For this purpose, the number of 39 rock samples including five igneous, twenty-six sedimentary, and eight metamorphic were collected from different regions of Iran. Mineralogical, physical and mechanical properties as well as five well known rock brittleness indices (i.e., B1, B2, B3, B4, and B5) were measured for the selected rock samples before application of the above-mentioned machine learning techniques. The performance of the developed models was evaluated based on several statistical metrics such as mean square error, relative absolute error, root relative absolute error, determination coefficients, variance account for, mean absolute percentage error and standard deviation of the error. The comparison of the obtained results revealed that among the studied methods, SVM is the most suitable one for predicting B1, B2 and B5, while RTE predicts B3 and B4 better than other methods.

비파괴적 RGB 이미지 분석을 활용한 들잔디 '제니스'에서의 답압으로 인한 마모 스트레스 정량적 분석 (Quantitative Evaluation of Wear Stress Due to Traffic in Zoysia japonica cv. 'Zenith' Using Non-Destructive RGB Imagery Analysis)

  • 정재경;정은설;진언주;윤준혁;전권석;김진중;배은지
    • 한국환경농학회지
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    • 제42권2호
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    • pp.121-130
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    • 2023
  • The RGB (red, green, and blue) imagery analysis is an important remote sensing tool, which estimates the effect of environmental stress on turfgrass growth and physiology. Therefore, this study investigated the effect of continuous wear stress treatment on Zoysia japonica through RGB imagery analysis. The results of the growth measurement showed that the plant height substantially decreased, after nine hours of treatment with no considerable difference thereafter. Dry weight measurement showed a substantial difference in the morphological growth characteristics of the aerial part of the turfgrass, but none in the stolon and root zone. This could be attributed to the short period of compaction treatment. The ROS (reactive oxygen species) analysis showed that ROS rapidly increased due to wear stress treatment. The MDA content increased during the traffic process, whereas the green pixels increased and decreased repeatedly; however, overall, the trend declined but the overall trend decreased. Thus, this study confirmed that MDA was effective in reflecting the wear stress of turfgrass; however, it could through RGB image analysis.

Biomass partitioning and physiological responses of four Moroccan barley varieties subjected to salt stress in a hydroponic system

  • Said Bouhraoua;Mohamed Ferioun;Srhiouar Nassira;Abdelali Boussakouran;Mohamed Akhazzane ;Douae Belahcen;Khalil Hammani;Said Louahlia
    • Journal of Plant Biotechnology
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    • 제50권
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    • pp.115-126
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    • 2023
  • A hydroponics experiment was performed to study the physiological and biochemical changes in Moroccan barley (Hordeum vulgare L.) varieties cultivated under salt stress conditions. Four barley varieties were grown under exposure to three salt concentrations, including 0, 200, and 300 mM NaCl. The ANOVA for both salt stress-sensitive and resistant varieties indicated that salt treatment represented the main source of variability in all studied traits. Salt treatment significantly reduced root and shoot dry weight (RDW and SDW), relative water content (RWC), and chlorophyll content (Chl a, Chl b, and Chl T). However, increases in electrolyte leakage (EL) along with proline and total soluble sugar (TSS) contents were recorded. In addition, large variations in all measured traits were found between varieties. The 'Massine' and 'Laanaceur' varieties displayed relatively higher RDW and SDW values. The 'Amira' and 'Adrar' varieties showed lower RWC values and Chl contents than those of the controls indicating their relative sensitivity to salt stress. Principal component analysis revealed that most of the variation was captured by PC1 (72% of the total variance) which grouped samples into three categories according to salt treatment. Correlation analyses highlighted significant associations between most parameters. Positive relationships were found between RDW, SDW, RWC, Chl content, and soluble proteins contents, while all of these parameters were negatively associated with EL intensity, proline content, and TSS content. The results from this study showed that the 'Massine' and 'Laanaceur' varieties were relatively salt-tolerant. These two salt-tolerant varieties present a good genetic background for breeding of barley varieties showing high salt tolerance.

임해 간척지에서 모래상토 층에 모세관수 차단 층의 도입이 염류 집적과 켄터키블루그래스 생육에 미치는 영향 (Effects of Capillary Rise Interruption Layer on Salt Accumulation and Kentucky Bluegrass (Poapratensis L.) Growth in Sand Growing Media Established Over the Reclaimed Saline Soil)

  • 라하유;양근모;최준수
    • 한국잔디학회:학술대회논문집
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    • 한국잔디학회 2011년도 제24차 정기총회 및 학술발표회
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    • pp.5-8
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    • 2011
  • 본 연구는 임해 간척지와 염분의 농도가 높은 관수조건에서 모세관수의 차단층이 염류집적과 켄터키블루그래스의 생육에 미치는 영향을 알아보고자 수행되었다. 생육지반으로는 표토 30cm, 차단층 20cm가 10cm 두께의 간척지 토양위에 조성되었다. 표토로는 태안군 부남 호에서 준설된 모래가 사용되었으며 유기물은 부피비 5%로 혼합되었다. 30cm 직경의 PVC 주름관을 절단하여 지반구조 용기가 제작되었고 바닥은 PVC망사를 이용하여 토양의 이동을 차단하였다. 용기는 5cm 깊이의 저수조에 설치되었으며 저수조에는 $3-5dsm^{-1}$ 염도의 희석 바닷물이 채워졌다. 켄터키블루그래스는 뗏장을 사용하여 조성되었으며 $2Sm^{-1}$로 희석된 바닷물이 관수원으로 사용 되었고 일평균 5.7mm의 관수가 3일 간격으로 수행되었다. 차단층을 생략한 지반은 봄철에 염분의 집적이 최대를 보여 토양전기전도도가 $5.4dSm^{-1}$에 달하였으며 SAR은 34.0을 보였고 차단층설치구의 토양전기전도도 인 $4.6dSm^{-1}$과 SAR 8.24에 비해 현저하게 높은 염의 집적을 보였다. 차단층의 소재별 차이를 볼 때 콩자갈과 조사의 사용 시 토양중 Na농도가 가각 16%와 25% 감소하였고 토양전도도는 7%와 13%감소하였다. 차단층 처리구의 켄터키부루그래스 품질은 평균 가시적 평가 8.3을 보여 차단층을 생략한 처리구의 평균 가시적 평가 7.9 보다 높았다. 콩자갈과 조사 차단층 소재는 차단층을 생략한 경우에 비해 켄터키블루그래스의 가시적 품질을 각각 4.1%, 4.0% 증가 시켰으며, 뿌리의 길이를 50%와 38%, 뿌리의 건중을 35%와 17% 증가 시켰다. 상토층의 Na 함량도 콩자갈과 조사 차단층에 의해 각각 16%와 25% 감소하였으며 토양 전기전도도도 7%와 13% 감소하였다.

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