• 제목/요약/키워드: DROUGHT RESISTANCE

검색결과 126건 처리시간 0.029초

신불산 고산습지 보호지역 저서성 대형무척추동물의 군집특성 및 변화상 연구 (A Study on the Community Characteristics and Changes of Benthic Macroinvertebrates in the Conservation Area of the Shinbulsan Wetland)

  • 홍성진;정선우
    • 한국환경과학회지
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    • 제29권11호
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    • pp.1079-1088
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    • 2020
  • The Shinbulsan wetland, located in Yangsan-si, Gyeongsangnam-do, South Korea, was designated as a conservation area in 2004. The area was monitored from 2015 to 2019 to investigate the community characteristics and changes of benthic macroinvertebrates. Between 2015 and 2016, several insects of the orders Ephemeroptera, Odonata, and Hemiptera were identified, but their numbers decreased significantly in 2017 and 2018 following the loss and recovery of the moor owing to drought. During this period, there were relatively more insects of the order Diptera. Within this order, three functional feeding groups, gathering-collectors, plant-piercers, and predators were investigated. Predator species were the most abundant (83.3%), whereas gathering-collectors accounted for the largest proportion of individual insects (50.5%). Between 2015 and 2016, when the moors were stable, groups I and III had the highest community stability. After 2017, when the moors had dried up, group III effectively disappeared because of its lower relative resistance and resilience, and only taxa belonging to group I remained. The results of this study indicate that benthic macroinvertebrates that adapt early during moor formation inhabit the Shinbulsan wetland.

Functions of MAPK Cascade Pathways in Plant Defense Signaling

  • Cheong, Yong-Hwa;Kim, Min-Chul
    • The Plant Pathology Journal
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    • 제26권2호
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    • pp.101-109
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    • 2010
  • Protein phosphorylation is one of the major mechanisms for controlling many cellular processes in all living organisms. Mitogen-activated protein kinase (MAPK) cascades are known to transducer extracellular stimuli to several cellular processes, including cell division, differentiation as well as responses to various stresses. In plants, several studies have revealed that MAPK cascade pathways play an important role in responses against biotic and abiotic stresses, including wounding, pathogen infection, temperature, drought, salinity and plant hormones. It is also known that MAPK cascades-mediated signaling is an essential process in the resistance step to pathogens by regulating the activity of transcription factors. Here, the insights into the functions of MAPK cascade pathways in plant defense response signaling from Arabidopsis, tobacco and rice are described.

싸리나무에 있어서 수분공급량이 생장에 미치는 영향 (Influence of Different Soil Moisture on the Growth of Lespedeza bicolor)

  • 이호준
    • Journal of Plant Biology
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    • 제18권4호
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    • pp.143-149
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    • 1975
  • For the evaluation of drought resistance of the plant, the growth of Lespedeza bicolor Turcz. var. japonica Nakai was analyzed by the control of water content of soil: 1. The growth of leaf, stem and root showed high value in accordance with the increase of soil water content. 2. The formation of nodule was alos increased as the content of soil water became higher. 3. The highest water content of the plant was shown in the plots of 30 and 40% of water centent in soils and in the middle of the growing period (August-September). 4. The C/F ratio in the early period of the growth(July) was similar in each plot, but showed a higher value as the water centent of soil became higher at the later period(October). 5. The T/R ration increased in early period of the growth as the soil water content became higher, but it was decreased to the value of 1 in each plot.

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Heat Shock Proteins: A Review of the Molecular Chaperones for Plant Immunity

  • Park, Chang-Jin;Seo, Young-Su
    • The Plant Pathology Journal
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    • 제31권4호
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    • pp.323-333
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    • 2015
  • As sessile organisms, plants are exposed to persistently changing stresses and have to be able to interpret and respond to them. The stresses, drought, salinity, chemicals, cold and hot temperatures, and various pathogen attacks have interconnected effects on plants, resulting in the disruption of protein homeostasis. Maintenance of proteins in their functional native conformations and preventing aggregation of non-native proteins are important for cell survival under stress. Heat shock proteins (HSPs) functioning as molecular chaperones are the key components responsible for protein folding, assembly, translocation, and degradation under stress conditions and in many normal cellular processes. Plants respond to pathogen invasion using two different innate immune responses mediated by pattern recognition receptors (PRRs) or resistance (R) proteins. HSPs play an indispensable role as molecular chaperones in the quality control of plasma membrane-resident PRRs and intracellular R proteins against potential invaders. Here, we specifically discuss the functional involvement of cytosolic and endoplasmic reticulum (ER) HSPs/chaperones in plant immunity to obtain an integrated understanding of the immune responses in plant cells.

Molecular Cloning and Characterization of Soybean Cinnamoyl CoA Reductase Induced by Abiotic Stresses

  • So, Hyun-Ah;Chung, Eun-Sook;Cho, Chang-Woo;Kim, Kee-Young;Lee, Jai-Heon
    • The Plant Pathology Journal
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    • 제26권4호
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    • pp.380-385
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    • 2010
  • Suppression subtractive hybridization was used to isolate wound-induced genes from soybean. One of the wound-induced genes, gmwi143 designated as GmCCR, showed high homology with genes encoding cinnamoyl-CoA reductase (CCR; EC 1.2.1.44). Deduced amino acid sequences encoded by GmCCR showed the highest identity (77%) with those of Acacia CCR. There are 2 CCR genes highly homologous to GmCCR in soybean genome based on Phytozome DB analysis. RNA expression of GmCCR was specifically induced by local and systemic wounding, drought, high salinity or by ultraviolet stress. Our study suggests that GmCCR may be involved in resistance mechanism during abiotic stresses in plants.

인천국제공항 착륙대 녹지지역의 잔디식재를 위한 한국잔디류 시공법 비교 (Comparison of Construction Methods with Zoysiagrass at the New Incheon International Airport)

  • 이상국;이정호;주영규
    • 아시안잔디학회지
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    • 제16권2호
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    • pp.75-83
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    • 2002
  • The back-filled soil of the New Incheon International Airport construction site was reclaimed with sea sand in near the Young-Jong island. The primary study was carried out from August 1993 to June 1997 to study soil amendment and to select salt resistance turfgrass species. This study dealt with low maintenance area that included most part of open space of airport site. The second experiment, from October 1996 to August 1998, focused on soil amendment and selection of turfgrass species for alongside runway where turf area was maintained. Through two previous studies, propagation methods with zoysiagrass were tested for alongside runway and surrounding areas at 1998. The study of construction methods with zoysiagrass, vegetative propagation showed better results on visual quality and cover rating compare with seeding propagation. However, significant different between vegetative and seeding propagation was not showed on visual quality and drought tolerance after one year of plot establishment. The cover rating by seeding construction methods reached in excess of 70% of limitation suggested by the Incheon International Airport Cooperation. Zoysia net and sprigging net methods were the most suitable where there requires rapid and high rate of ground cover. Seeding propagation should be acceptable to obtain a resonable cover rating where there allows relatively longer period of completion. Therefore, it should be possible to attain a proper rating of ground cover on the site of open space, alongside runway or areas similar to the New Incheon International Airport which is being built on dredged seashore sand. However, the methods of soil amendment, selecting salt tolerance species, and proper construction procedure should be considered at the a time.

Weed Population Dynamics under Climatic Change

  • Bir, Md. Shahidul Haque;Eom, Min Yong;Uddin, Md. Romij;Park, Tae Seon;Kang, Hang Won;Kim, Do Soon;Park, Kee Woong
    • Weed & Turfgrass Science
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    • 제3권3호
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    • pp.174-182
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    • 2014
  • This paper provides some of the scientific background on how projected environmental conditions could affect weeds and weed management in crops. Elevated $CO_2$ levels may have positive effects on crop competitiveness with $C_4$ weeds, but these are generally outnumbered by $C_3$ species in weed populations. Moreover, higher temperatures and drought will favor $C_4$ over $C_3$ plants. The implementation of climate change adaptation technologies, such as drought-tolerant germplasm and water-saving irrigation regimes, will have consequences for crop-weed competition. Rainfed production systems are thought to be most vulnerable to the direct effects of climate change and are likely to face increased competition from $C_4$ and parasitic weeds. Biotic stress-tolerant crop cultivars to be developed for these systems should encompass weed competitiveness and parasitic-weed resistance. In irrigated systems, indirect effects will be more important and weed management strategies should be diversified to lessen dependency on herbicides and mechanical control, and be targeted to perennial rhizomatous ($C_3$) weeds. Water-saving production methods that replace a weed-suppressive floodwater layer by intermittent or continuous periods of aerobic conditions necessitate additional weed management strategies to address the inherent increases in weed competition. Thus, climatic conditions have a great effect on weed population dynamics all over the world.

토양수분(土壤水分)이 피복용식물(被覆用植物)의 생장(生長) 및 수분경제(水分經濟)에 미치는 영향(影響) (Soil Moisture Influence on Growth of Cover Vegetations and Water Economy)

  • 이수욱
    • 한국산림과학회지
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    • 제33권1호
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    • pp.1-32
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    • 1977
  • 황폐림지(荒廢林地)의 토양(土壤)이 배지(培地)로 될 때 경사별(傾斜別) 토양수분상태(土壤水分狀態)를 파악(把握)하고 여러가지 토양수분상태(土壤水分狀態)가 피복용(被覆用)의 식물(植物)의 생장(生長)에 미치는 영향과 피복식물(被覆植物)의 수분요구도(水分要求度) 및 내건성(耐乾性)을 관찰(觀察), 조사(調査)하고 토양수분(土壤水分)이 결핍(缺乏)된 환경에서 시비효과(施肥效果) 및 수분이용(水分利用) 효율(效率)을 구명(究明)하므로서 보다 합리적(合理的)이며 효과적(效果的)인 황폐림지(荒廢林地) 지피식생조성방법(地被植生造成方法)에 관련(關聯)되는 이론적(理論的) 배경(背景)을 모색(摸索)하기 위하여 본(本) 연구(硏究)가 실시(實施) 되었다. 본(本) 연구과정(硏究過程)은 야외시험(野外試驗)과 온실시험(溫室試驗)으로 구성(構成)되어 있으며 야외(野外) 시험(試驗)은 건기(乾期)와 우기(雨期)에 걸쳐 3 경사지(傾斜地)에서 4 시비수준(施肥水準) 2 파종방법(播種方法)에 대한 피복식물(被覆植物)(아까시나무, 싸리, 새)의 생장상태(生長狀態)를 조사분석(調査分析) 하였다. 온실시험(溫室試驗) 3 수분처리(水分處理), 4 시비수준(施肥水準)에 대한 피복식물(被覆植物)의 생장(生長)을 신장생장(伸長生長), 중량생장(重量生長)으로 조사분석(調査分析) 하였다. 현지(現地)의 입지환경(立地環境) 및 토양수분상태(土壤水分狀態)의 변화(變化)를 측정(測定)하기 위하여 기온(氣溫) 온도(溫度), 강우량(降雨量) 등(等)이 조사부분(調査分析) 되었고 토양수분측정용(土壤水分測定用) Soil cell을 경사별(傾斜別)로 모두 24개(個) 설치(設置) 조사(調査)하였다. 화강편마암(花崗片麻岩)을 모재(母材)로 하는 본황폐림지(本荒廢林地)는 경사도(傾斜度)에 따라 토심(土深) 및 토성(土性)이 다르게 나타나며 이러한 토양조건(土壤條件)은 경사도별(傾斜度別) 토양수분체계(土壤水分體系)를 지배(支配)한다. 완경사지(緩傾斜地) ($17^{\circ}$)는 토심(土深)이 20cm 이상(以上)이며 토성(土性)은 양토(壤土)로서 우기(雨期)동안에 토양수분(土壤水分)은 항상 위조점(萎凋點) 이상(以上)의 유효수분(有效水分)을 보지(保持)하고 있으며, 중경사지(中傾斜地)($25^{\circ}$)는 토심(土深)이 15cm, 토성(土性)은 사질양토(砂質壤土)로서 우기(雨期)동안 토양수분(土壤水分)은 때때로 위조점(萎凋點) 가까이 까지 떨어졌다. 그러나 급경사지(急傾斜地) ($37^{\circ}$)는 토심(土深)은 10cm, 토성(土性)은 사질양토(砂質壤土)로서 우기(雨期)에도 토양수분(土壤水分)이 때때로 위조점(萎凋點) 이하(以下)로 떨어졌다. (표(表) 6 참조) 이상(以上)과 같은 연구(硏究)에 의하여 얻어진 결과(結果)를 요약(要約)하면 다음과 같다. 1. 본연구재료(本硏究材料)로 쓰인 3가지 식물(植物)의 초기생장기간중(初期生長期間中)의 수분요구도(水分要求度)의 상대적(相對的) 수준(水準)을 분석(分析)할 때 다음과 같은 결론(結論)을 얻을 수 있다. 즉(卽) 아까시 나무는 수분요구도(水分要求度)가 높고 (자연보수력수준(自然保水力水準) 내건성(耐乾性)은 비교적(比較的) 약(弱)하다. 싸리는 수분요구도(水分要求度)가 낮고(유효수분(有效水分)의 50%수준(水準)) 내건성(耐乾性)은 강(强)하다. 새는 수분요구도(水分要求度)가 보통(普通)이며 내건성(耐乾性)은 비교적(比較的) 약(弱)하다. 2. 피복용(被服用) 식물(植物)의 토양수분(土壤水分) 조건(條件)에 따른 시비효과(施肥效果)는 수분(水分)이 적을 때에는 잘 나타나지 않으나 수분(水分)이 충분(充分)할 때에는 매우 잘 나타난다. 즉(卽) 토양수분(土壤水分)과 시비처리(施肥處理)의 상호작용(相互作用)이 식물생장(植物生長)에 미치는 영향은 매우 크다. 3. 피복용(被服用) 식물(植物)의 토양수분조건(土壤水分條件)에 따른 양분요구도(養分要求度)는 다음과 같다. 초기생장시(初期生長時) 토양수분(土壤水分)이 건조(乾燥)하면 3 식물(植物)이 모두 낮은 시비수준(施肥水準)에서 생장(生長)이 좋고 토양수분(土壤水分)이 적윤(適潤)하면 아까시 나무와 새는 높은 시비수준(施肥水準)에서 생장(生長)이 좋게 나타난다. 후기생장시(後期生長時) 3 식물(植物) 모두 토양수분수준(土壤水分水準) 의 증가(增加)와 함께 높은 시비수준(施肥水準)이 생장(生長)에 주는 효과(效果)가 컸다. 4. 시비수준별(施肥水準別) 수분이용효율(水分利用效率)은 아까시 나무와 새의 경우 건조지(乾燥地)에 있어서는 낮은 시비수준(施肥水準)(1g 수준(水準))의 수분이용효율(水分利用效率)이 높고 적윤지(適潤地)에 있어서는 높은 시비수준(施肥水準)(3g 수준(水準))의 수분이용효율(水分利用效率)이 높았다. 싸리의 경우 모든 수분조건하(水分條件下)에서 공(共)히 낮은 시비수준(施肥水準)(1g 수준(水準))의 이용효율(利用效率)이 높았다. 5. 아까시 나무와 싸리는 인산(燐酸)의 요구도(要求度)가 인정(認定)되나 새는 인정(認定)되지 않으며 황폐림지(荒廢林地) 토양수분결핍(土壤水分缺乏)은 식물(植物)의 인산흡수(燐酸吸收)를 저해(沮害)한다.

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Effects Water Stress on Physiological Traits at Various Growth Stages of Rice

  • Choi, Weon-Young;Park, Hong-Kyu;Kang, Si-Yong;Kim, Sang-Su;Choi, Sun-Young
    • 한국작물학회지
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    • 제44권3호
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    • pp.282-287
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    • 1999
  • The object of this study was to determine the difference of the time course changes of transpiration, diffusion resistance and photosynthetic rate of rice at several different growth stages subjected to soil moisture stress (SMS) and recovery by irrigation. A japonica rice cultivar 'Dongjinbyeo', was grown under flooded condition in a plastic container filled with silty loam soil. At 5 main growth stages, the container was treated by SMS until initial wilting point (IWP) and then reirrigated. The duration of SMS until IWP were the longest, 13 days for tillering stage, and the shortest, 7 days for panicle initiation and meiosis stage. The transpiration rate rapidly decreased during SMS and the transpiration rate at IWP of the stressed plant showed 10∼20% compared with control, and the transpiration rate of stressed plant at most growth stages also recovered rapidly after irrigation and then reached 100% of control within a week. The shoot photosynthetic rate in all growth stages rapidly decreased by SMS, and the rates at IWP of stressed plants were de-creased nearly to 0%, beside the treatment at tillering stage. The recovery degree of photosynthetic rate by irrigation ranged from 20 to 90%, showed higher at early growth stages of SMS treatment than that of later stages. At all growth stages the leaf diffusion resistance of stressed plants was over 3 times that of the control resulting from a rapid increase at 3 to 5 days after draining for SMS, and showed quick recovery by irrigation within 3 days after drainage. The above physiological parameters changed in close relation with the decrease of the soil matric potential after SMS. These results indicate that at all main growth stages of rice plants the transpiration and photosynthesis reduction by stomatal closure reponded sensitively to the first stage of SMS closely related with decrease of soil water potential, while those recovery pattern and recovered degree by irrigation are little different by growth stage of rice.

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내건성 및 BPH 내성 계통의 육성을 위한 농업형질 고정여부 조사 (Investigation into Whether Agronomic Traits Are Fixed for the Breeding of Drought Tolerance and BPH-resistant Crosses)

  • 이소영;김은경;박재령;김경민
    • 생명과학회지
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    • 제30권9호
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    • pp.798-803
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    • 2020
  • 1960년대 후반 인디카 품종과 자포니카 품종의 교잡에 의하여 새로운 통일형 벼 품종을 육성했고 그 재배기술을 확립했으며, 현재까지 이 재배기술을 이용하여 소비자들의 기호에 맞게 그리고 극한환경에 대응할 수 있는 다양한 품종들이 만들어졌다. 서로 다른 작물끼리 교배하여 얻은 F1을 가지고 반복적인 세대 진전을 통하여 도입을 원하는 우량한 유전자원의 형질이 더 이상 분리되지 않을 때 교배시킨 형질이 고정되었다고 볼 수 있으며 비로소 신품종이 될 수 있다. 본 연구에서는 가뭄에 저항성을 띠는 HV23 계통을 모품종인 Ilmi와 교배한 집단과 벼멸구에 내성을 갖는 Drimi2ho와 교배한 집단의 F4, F5, 그리고 F6의 농업형질을 조사하여 고정 여부를 확인했다. HV23와 Drimi2ho/HV23 계통의 F5, F6를 비교하였을 때 그리고 Ilmi/HV23 계통의 F4, F5를 비교하였을 때 모두 유의하지 않은 정도의 형질 변이가 나타났기 때문에 농업형질이 고정되었다고 판단할 수 있었다. 일반적인 계통 육종법은 품종개량에 10년 이상의 시간이 드는 반면 본 연구에서는 4-5년 만에 형질이 고정되었음을 확인하였다.