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      Importance and production of chilli pepper; heat tolerance and efficient nutrient use under climate change conditions

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      https://www.riss.kr/link?id=A106471209

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      다국어 초록 (Multilingual Abstract)

      Chilli peppers are predominantly cultivated in open field systems under abiotic and biotic stress conditions. Abiotic and biotic factors have a considerable effect on plant performance, fruit quantity, and quality. Chilli peppers grow well in a tropic...

      Chilli peppers are predominantly cultivated in open field systems under abiotic and biotic stress conditions. Abiotic and biotic factors have a considerable effect on plant performance, fruit quantity, and quality. Chilli peppers grow well in a tropical climate due to their adaptation to warm and humid regions with temperatures ranging from 18 to 30°C. Nowadays, chilli peppers are cultivated all around the world under different climatic conditions, and their production is gradually expanding. Expected climate changes will likely cause huge and complex ecological consequences; high temperature, heavy rainfall, and drought have adverse effects on the vegetative and generative development of all agricultural crops including chilli peppers. To gain better insight into the effect of climate change, the growth, photosynthetic traits, morphological and physiological characteristics, yield, and fruit parameters of chilli peppers need to be studied under simulated climate change conditions. Moreover, it is important to develop alternative agrotechnologies to maintain the sustainability of pepper production. There are many conceivable ideas and concepts to sustain crop production under the extreme conditions of future climate change scenarios. Therefore, this review provides an overview of the adverse impacts of climate change and discusses how to find the best solutions to obtain a stable chilli pepper yield.

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      참고문헌 (Reference)

      1 IPCC (Intergovernmental Panel on Climate Change), "Working Group I Contribution to the Fifth Assessment Report of the IPCC" Cambridge University Press 2013

      2 Mammadov J, "Wild relatives of maize, rice, cotton, and soybean : Treasure troves for tolerance to biotic and abiotic stresses" 9 : 886-894, 2018

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      4 Olatunji TL, "The suitability of chili pepper(Capsicum annuum L. )for alleviating human micronutrient dietary deficiencies : A review" 6 : 2239-2251, 2018

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      6 Walters S, "Sustaining chili pepper production in Afghanistan through better irrigation practices and management" 6 : 62-68, 2016

      7 Pane C, "Short-time response of microbial communities to waste compost amendment of an intensive cultivated soil in Southern Italy" 44 : 2344-2352, 2013

      8 Casierra-Posada F, "Sensitivity of sweet pepper plants(Capsicum annuum L. )to iron excess" 83 : 382-387, 2018

      9 Pagamas P, "Sensitive stages of fruit and seed development of chili pepper(Capsicum annuum L. var. Shishito)exposed to high-temperature stress" 117 : 21-25, 2008

      10 Zhao CF, "QTL mapping for seedling traits associated with low-nitrogen tolerance using a set of advanced backcross introgression lines of rice" 133 : 189-195, 2014

      1 IPCC (Intergovernmental Panel on Climate Change), "Working Group I Contribution to the Fifth Assessment Report of the IPCC" Cambridge University Press 2013

      2 Mammadov J, "Wild relatives of maize, rice, cotton, and soybean : Treasure troves for tolerance to biotic and abiotic stresses" 9 : 886-894, 2018

      3 Sage RF, "The temperature response of C3 and C4 photosynthesis" 30 : 1086-1106, 2007

      4 Olatunji TL, "The suitability of chili pepper(Capsicum annuum L. )for alleviating human micronutrient dietary deficiencies : A review" 6 : 2239-2251, 2018

      5 Rizhsky L, "The combined effect of drought stress and heat shock on gene expression in tobacco" 130 : 1143-1151, 2002

      6 Walters S, "Sustaining chili pepper production in Afghanistan through better irrigation practices and management" 6 : 62-68, 2016

      7 Pane C, "Short-time response of microbial communities to waste compost amendment of an intensive cultivated soil in Southern Italy" 44 : 2344-2352, 2013

      8 Casierra-Posada F, "Sensitivity of sweet pepper plants(Capsicum annuum L. )to iron excess" 83 : 382-387, 2018

      9 Pagamas P, "Sensitive stages of fruit and seed development of chili pepper(Capsicum annuum L. var. Shishito)exposed to high-temperature stress" 117 : 21-25, 2008

      10 Zhao CF, "QTL mapping for seedling traits associated with low-nitrogen tolerance using a set of advanced backcross introgression lines of rice" 133 : 189-195, 2014

      11 Silva VF, "Production of chili pepper under organic fertilization and irrigation with treated wastewater" 23 : 84-89, 2019

      12 Mali SS, "Planting geometry and growth stage linked fertigation patterns : Impact on yield, nutrient uptake and water productivity of Chilli pepper in hot and subhumid climate" 249 : 289-298, 2019

      13 Mardanluo S, "Plant growth and fruit quality of two pepper cultivars under different potassium levels of nutrient solutions" 41 : 1604-1614, 2018

      14 Kim NH, "Pepper heat shock protein 70a interacts with the type III effector AvrBsT and triggers plant cell death and immunity" 167 : 307-322, 2015

      15 Scotti R, "On-farm compost : A useful tool to improve soil quality under intensive farming systems" 107 : 13-23, 2016

      16 Glass ADM, "Nitrogen use efficiency of crop plants : Physio-logical constrains upon nitrogen absorption" 22 : 453-470, 2003

      17 김양민, "Metabolite profiling and mineral nutrient analysis from the leaves and roots of bell pepper (Capsicum annuum L. var. angulosum) grown under macronutrient mineral deficiency" 한국응용생명화학회 61 (61): 661-671, 2018

      18 Airaki M, "Metabolism of reactive oxygen species and reactive nitrogen species in pepper (Capsicum annuum L.) plants under low temperature stress" 35 : 281-295, 2012

      19 Munns R, "Mechanisms of salinity tolerance" 59 : 651-681, 2008

      20 Steiner C, "Long term effects of manure, charcoal and mineral fertilization on crop production and fertility on a highly weathered Central Amazonian upland soil" 291 : 275-290, 2007

      21 Sahitya UL, "Integrated approaches to study the drought tolerance mechanism in hot pepper(Capsicum annuum L. )" 25 : 637-647, 2019

      22 Guignard MS, "Impacts of nitrogen and phosphorus : From genomes to natural ecosystems and agriculture" 5 : 70-80, 2017

      23 Lee SG, "Impact of moderate and extreme climate change scenarios on growth, morphological features, photosynthesis, and fruit production of hot pepper" 8 : 197-206, 2018

      24 Ropokis A, "Impact of cultivar and grafting on nutrient and water uptake by sweet pepper(Capsicum annuum L. )grown hydroponically under Mediterranean climatic conditions" 9 : 1244-1251, 2018

      25 Marzaioli R, "Impact of biochar amendment on soil quality and crop yield in a greenhouse environment" 16 : 313-324, 2018

      26 Hemantaranjan A, "Heat stress responses and thermotolerance" 1 : 12-19, 2014

      27 Pérez-Jiménez M, "Heat shock, high CO2 and nitrogen fertilization effects in pepper plants submitted to elevated temperatures" 244 : 322-329, 2019

      28 Angulo-Castro A, "Growth and photochemical efficiency of photosystem ii in seedlings of two varieties of Capsicum annuum L. inoculated with rhizobacteria and arbuscular mycorrhizal fungi" 50 : 178-188, 2017

      29 Hedhly A, "Global warming and sexual plant reproduction" 14 : 30-36, 2009

      30 Röth S, "Genetic Manipulation, Plants for Mitigation of Climate Change" Springer 15-41, 2015

      31 FAO (Food and Agriculture Organization), "FAO statistics"

      32 Wang X, "Environmental costs and mitigation potential in plastic-greenhouse pepper production system in China : A life cycle assessment" 167 : 186-194, 2018

      33 Dagdelen N, "Effects of water stress at different growth stages on processing pepper(Capsicum Annum Cv. Kapija)yield water use and quality characteristics" 7 : 2167-2172, 2004

      34 Abayomi YA, "Effects of soil moisture contents and rates of NPK fertilizer application on growth and fruit yields of pepper (Capsicum spp.) genotypes" 2 : 651-663, 2012

      35 Kafizadeh N, "Effects of heat stress on pollen viability and pollen tube growth in pepper" 3 : 1159-1162, 2008

      36 Khenaka K, "Effect of Capsicum annuum cultivated in sub-alkaline soil on bacterial community and activities of cultivable plant growth promoting bacteria under field conditions" 65 : 1417-1430, 2019

      37 Jiang YW, "Drought and heat stress injury to two cool-season turfgrasses in relation to antioxidant metabolism and lipid peroxidation" 41 : 436-442, 2001

      38 Piñero MC, "Differential nitrogen nutrition modifies polyamines and the amino-acid profile of sweet pepper under salinity stress" 10 : 301-310, 2019

      39 Rubio-Wilhelmi MM, "Cytokinin-dependent improvement in Transgenic PSARK : IPT tobacco under nitrogen deficiency" 59 : 10491-10495, 2011

      40 Tao Li, "Comparative transcriptome analysis reveals differential transcription in heat-susceptible and heat-tolerant pepper (Capsicum annum L.) cultivars under heat stress" 한국식물학회 58 (58): 411-424, 2015

      41 Guo M, "Cloning and expression analysis of heat-shock transcription factor gene CaHsfA2 from pepper (Capsicum annuum L.)" 13 : 1865-1875, 2014

      42 Kumar A, "Biochar potential in intensive cultivation of Capsicum annuum L. (sweet pepper) : Crop yield and plant protection" 98 : 495-503, 2018

      43 Syuhada AB, "Biochar as soil amendment : Impact on chemical properties and corn nutrient uptake in a Podzol" 96 : 400-412, 2016

      44 Souri MK, "Benefits of organic fertilizers spray on growth quality of chili pepper seedlings under cool temperature" 42 : 650-656, 2019

      45 Mateos RM, "Antioxidant systems from pepper (Capsicum annuum L.): Involvement in the response to temperature changes in ripe fruits" 14 : 9556-9580, 2013

      46 Challinor AJ, "Adaptation of crops to climate change through genotypic responses to mean and extreme temperatures" 119 : 190-204, 2007

      47 Sohi S, "A review of biochar and its use and function in soil" 105 : 47-82, 2010

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2026 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2017-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2016-03-31 학술지명변경 한글명 : 농업과학연구 -> Korean Journal of Agricultural Science
      외국어명 : JOURNAL OF AGRICULTURAL SCIENCE -> Korean Journal of Agricultural Science
      KCI등재후보
      2015-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
      2013-04-01 평가 등재후보 탈락 (기타)
      2011-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
      2009-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.28 0.28 0
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0 0 0 0.1
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