Kuraklık Koşullarında Bitki Davranışları
Özet
Referanslar
WWF (2014). Dünya Doğayı Koruma Vakfı. Nedir Bu Kuraklık? (Erişim Tarihi; 10/10/2024 https://www.wwf.org.tr/?2620/nedirbukuraklik).
Partigöç NS, Soğancı S. Küresel iklim değişikliğinin kaçınılmaz sonucu: Kuraklık. Resilience. 2019;3(2):287-299.
Örs S, Ekinci M. Kuraklık stresi ve bitki fizyolojisi. Derim. 2015;32(2):237-250.
Blum A, Jordan WR. Breeding crop varieties for stress environments. Critical Reviews in Plant. 1985;2(3):199-238.
Geng G, Wu J, Wang Q. et al. Agricultural drought hazard analysis during 1980–2008: a global perspective. International Journal of Climatology. 2016;1:389-399
Öğüt A. Küresel Isınma Sürecinde Örgütsel Performansın Sürdürülebilir Kılınması Açısından İşletmelerde Eko-Verimlilik Çalışmaları: Örnek uygulamalar. Konya: Selçuk Üniversitesi, Sosyal Bilimler Enstitüsü; 2008.
Mancosu N, Snyder RL, Kyriakakıs G. et al. Water scarcity and future challenges for food production. Water. 2015;7:975-992.
Şahin Ü, Kurnaz L. İklim değişikliği ve kuraklık. İstanbul Politikalar Merkezi Kuraklık Raporu, İstanbul; 2014.
Gürbüz A, Kaya M, Türkan AD. et al. Bazı nohut (Cicer arietinum L.) çeşitlerinde tane iriliği ve kuraklık stresinin çimlenme özelliklerine etkisi. Akdeniz Üni. Ziraat Fakültesi Dergisi. 2009;22(1):69-74.
Farooq M, Wahid A, Kobayashi NSMA. et al. Plant drought stress: effects, mechanisms and management. Sustainable Agriculture. 2009;29:153-188.
Kapoor D, Bhardwaj S, Landi M. et al. The impact of drought in plant metabolism: How to exploit tolerance mechanisms to increase crop production. Applied Sciences. 2020;10(16):5692.
Kutlu İ. Tahıllarda kuraklık stresi. Türk Bilimsel Derlemeler Dergisi. 2010;1:35-41.
Öztürk NZ. Bitkilerin kuraklık stresine tepkilerinde bilinenler ve yeni yaklaşımlar. Türk Tarım - Gıda Bilim ve Teknoloji Dergisi. 2015;3(5):307-315.
Anjum SA, Xie X, Wang L. et al. Morphological, physiological and biochemical responses of plants to drought stres. African Journal of Agricultural Research. 2011;6:2026-2032.
Razzaghi F, Jacobsen SE, Jensen CR. et al. Ionic and photosynthetic homeostasis in quinoa challenged by salinity and drought – mechanisms of tolerance. Functional Plant Biology. 2014;42(2):136-148.
Pirasteh‐Anosheh H, Saed‐Moucheshi A, Pakniyat H. et al. Stomatal responses to drought stress. Water Stress and Crop Plants: A Sustainable Approach. 2016;1:24-40.
Luan S. Signalling drought in guard cells. Plant, Cell & Environment. 2002;25(2):229-237.
Kalefetoğlu T, Ekmekci Y. The effects of drought on plants and tolerance mechanisms. Gazi University Journal of Science. 2005;18(4):723-740.
Smirnoff N. The role of active oxygen in the response of plants to water deficit and desiccation. New Phytologist. 1993;125:27-58.
Neumann PM. The role of cell wall adjustments in plant resistance to water deficits. Crop Science. 1995;35(5):1258-1266.
Çırak C, Esendal E. Soyada kuraklik stresi. Anadolu Tarım Bilimleri Dergisi. 2006;21(2):231-237.
Yıldız M, Kaya F, Terzi H. Kuraklık stresi ve bitki proteomiği. Gümüşhane Üniversitesi Fen Bilimleri Dergisi. 2020;10(1):286-297.
Öktüren F, Sönmez S. Bitki besin maddeleri ile bazı bitki büyüme düzenleyicileri (hormonlar) arasındaki ilişkiler. Derim. 2005;22(2): 20-32.
Fahad S, Nie L, Chen Y. et al. Crop plant hormones and environmental stress. Sustainable Agriculture Reviews. 2015;15:371-400.
Kar RK. Plant responses to water stress: role of reactive oxygen species. Plant Signaling & Behavior. 2011;6(11):1741-1745.
Lang V, Mantyla E, Welin B. et al. (1994). Alterations in water status, endogenous abscisic acid content, and expression of rab18 gene during the development of freezing tolerance in Arabidopsis thaliana. Plant Physiology. 1994;104(4):1341-1349.
Eriş A. Bahçe bitkileri fizyolojisi. Uludağ Üniversitesi Ziraat Fakültesi, Bursa; 1995.
Zhang P, Fan Y, Sun X. et al. A large‐scale circular RNA profiling reveals universal molecular mechanisms responsive to drought stress in maize and Arabidopsis. The Plant Journal. 2019;98(4):697-713.
Anjum SA, Ashraf U, Zohaib A. et al. Growth and development responses of crop plants under drought stress: a review. Zemdirbyste-Agriculture. 2017;104(3):267-276.
Chaves MM, Maroco JP, Pereira JS. Understanding plant responses to drought—from genes to the whole plant. Functional Plant Biology. 2003;30(3):239-264.
Babalik Z, Baydar NG. Asmalarda kuraklık ve tuz Stresi. Avrupa Bilim ve Teknoloji Dergisi. 2021;21:358-368.
Heschel MS, Riginos C. Mechanisms of selection for drought stress tolerance and avoidance in Impatiens capensis (Balsaminaceae). American Journal of Botany. 2005;92(1):37-44.
Osakabe Y, Osakabe K, Shinozaki K. et al. Response of plants to water stress. Frontiers in Plant Science. 2014;5:86.
Chen H, Jiang JG. Osmotic adjustment and plant adaptation to environmental changes related to drought and salinity. Environmental Reviews. 2010;18(NA):309-319.
Mittler R. Oxidative stress, antioxidants and stress tolerance. Trends in Plant Science. 2002;7(9):405-410.
Pitzschke A, Forzani C, Hirt H. Reactive oxygen species signaling in plants. Antioxidants & Redox Signaling. 2006;8(9-10):1757-1764.
Ahmad P, Jaleel CA, Azooz MM. et al. Generation of ROS and non-enzymatic antioxidants during abiotic stress in plants. Botany Research International. 2009;2(1):11-20.
Xin L, Zheng H, Yang Z. et al. (2018). Physiological and proteomic analysis of maize seedling response to water deficiency stress. Journal of Plant Physiology. 2018;228:29-38.
Claussen W. Proline as a measure of stress in tomato plants. Plant Science. 2005;168(1):241-248.
Yavaş İ, Nail H, Ünay A. Bitkilerin kuraklığa dayanıklılığını artırmaya yönelik uygulamalar. Türk Tarım - Gıda Bilim ve Teknoloji Dergisi. 2016;4(1):48-57.
Hayat S, Hayat Q, Alyemeni MN. et al. Role of proline under changing environments: a review. Plant Signaling & Behavior. 2012;7(11):1456-1466.
Dolferus R. To grow or not to grow: a stressful decision for plants. Plant Science. 2014;229:247-261.
Sah SK, Reddy KR, Li J. Abscisic acid and abiotic stress tolerance in crop plants. Frontiers in Plant Science. 2016;7:571.
Graether SP, Boddington KF. Disorder and function: a review of the dehydrin protein family. Frontiers in Plant Science. 2014;5:576.
Dubey RS. Protein synthesis by plants under stressful conditions. Handbook of Plant and Crop Stress. 1999;2:365-397.
Bhargava S, Sawant K. Drought stress adaptation: metabolic adjustment and regulation of gene expression. Plant Breeding. 2013;132(1):21-32.
Kaur G, Asthir B. Molecular responses to drought stress in plants. Biologia Plantarum. 2017;61:201-209.
Fischer BB, Hideg E, Krieger-Liszkay A. Production, detection, and signaling of singlet oxygen in photosynthetic organisms. Antioxidants & Redox Signaling. 2013;18(16):2145-2162.
Nakashima K, Yamaguchi-Shinozaki K, Shinozaki K. The transcriptional regulatory network in the drought response and its crosstalk in abiotic stress responses including drought, cold, and heat. Frontiers in Plant Science. 2014;5:1-7.
Kim TH. Mechanism of ABA signal transduction: agricultural highlights for improving drought tolerance. Journal of Plant Biology. 2014;57:1-8.
Singh D, Laxmi A. Transcriptional regulation of drought response: a tortuous network of transcriptional factors. Frontiers in Plant Science. 2015;6:895.
Afzal Z, Howton TC, Sun Y, Mukhtar MS. The roles of aquaporins in plant stress responses. J. of Developmental Biology. 2016;9:1-22.
Boyer JS, James RA, Munns R, Condon TA, Passioura JB. Osmotic adjustment leads to anomalously low estimates of relative water content in wheat and barley. Functional Plant Biology. 2008;35:1172-1182.
Referanslar
WWF (2014). Dünya Doğayı Koruma Vakfı. Nedir Bu Kuraklık? (Erişim Tarihi; 10/10/2024 https://www.wwf.org.tr/?2620/nedirbukuraklik).
Partigöç NS, Soğancı S. Küresel iklim değişikliğinin kaçınılmaz sonucu: Kuraklık. Resilience. 2019;3(2):287-299.
Örs S, Ekinci M. Kuraklık stresi ve bitki fizyolojisi. Derim. 2015;32(2):237-250.
Blum A, Jordan WR. Breeding crop varieties for stress environments. Critical Reviews in Plant. 1985;2(3):199-238.
Geng G, Wu J, Wang Q. et al. Agricultural drought hazard analysis during 1980–2008: a global perspective. International Journal of Climatology. 2016;1:389-399
Öğüt A. Küresel Isınma Sürecinde Örgütsel Performansın Sürdürülebilir Kılınması Açısından İşletmelerde Eko-Verimlilik Çalışmaları: Örnek uygulamalar. Konya: Selçuk Üniversitesi, Sosyal Bilimler Enstitüsü; 2008.
Mancosu N, Snyder RL, Kyriakakıs G. et al. Water scarcity and future challenges for food production. Water. 2015;7:975-992.
Şahin Ü, Kurnaz L. İklim değişikliği ve kuraklık. İstanbul Politikalar Merkezi Kuraklık Raporu, İstanbul; 2014.
Gürbüz A, Kaya M, Türkan AD. et al. Bazı nohut (Cicer arietinum L.) çeşitlerinde tane iriliği ve kuraklık stresinin çimlenme özelliklerine etkisi. Akdeniz Üni. Ziraat Fakültesi Dergisi. 2009;22(1):69-74.
Farooq M, Wahid A, Kobayashi NSMA. et al. Plant drought stress: effects, mechanisms and management. Sustainable Agriculture. 2009;29:153-188.
Kapoor D, Bhardwaj S, Landi M. et al. The impact of drought in plant metabolism: How to exploit tolerance mechanisms to increase crop production. Applied Sciences. 2020;10(16):5692.
Kutlu İ. Tahıllarda kuraklık stresi. Türk Bilimsel Derlemeler Dergisi. 2010;1:35-41.
Öztürk NZ. Bitkilerin kuraklık stresine tepkilerinde bilinenler ve yeni yaklaşımlar. Türk Tarım - Gıda Bilim ve Teknoloji Dergisi. 2015;3(5):307-315.
Anjum SA, Xie X, Wang L. et al. Morphological, physiological and biochemical responses of plants to drought stres. African Journal of Agricultural Research. 2011;6:2026-2032.
Razzaghi F, Jacobsen SE, Jensen CR. et al. Ionic and photosynthetic homeostasis in quinoa challenged by salinity and drought – mechanisms of tolerance. Functional Plant Biology. 2014;42(2):136-148.
Pirasteh‐Anosheh H, Saed‐Moucheshi A, Pakniyat H. et al. Stomatal responses to drought stress. Water Stress and Crop Plants: A Sustainable Approach. 2016;1:24-40.
Luan S. Signalling drought in guard cells. Plant, Cell & Environment. 2002;25(2):229-237.
Kalefetoğlu T, Ekmekci Y. The effects of drought on plants and tolerance mechanisms. Gazi University Journal of Science. 2005;18(4):723-740.
Smirnoff N. The role of active oxygen in the response of plants to water deficit and desiccation. New Phytologist. 1993;125:27-58.
Neumann PM. The role of cell wall adjustments in plant resistance to water deficits. Crop Science. 1995;35(5):1258-1266.
Çırak C, Esendal E. Soyada kuraklik stresi. Anadolu Tarım Bilimleri Dergisi. 2006;21(2):231-237.
Yıldız M, Kaya F, Terzi H. Kuraklık stresi ve bitki proteomiği. Gümüşhane Üniversitesi Fen Bilimleri Dergisi. 2020;10(1):286-297.
Öktüren F, Sönmez S. Bitki besin maddeleri ile bazı bitki büyüme düzenleyicileri (hormonlar) arasındaki ilişkiler. Derim. 2005;22(2): 20-32.
Fahad S, Nie L, Chen Y. et al. Crop plant hormones and environmental stress. Sustainable Agriculture Reviews. 2015;15:371-400.
Kar RK. Plant responses to water stress: role of reactive oxygen species. Plant Signaling & Behavior. 2011;6(11):1741-1745.
Lang V, Mantyla E, Welin B. et al. (1994). Alterations in water status, endogenous abscisic acid content, and expression of rab18 gene during the development of freezing tolerance in Arabidopsis thaliana. Plant Physiology. 1994;104(4):1341-1349.
Eriş A. Bahçe bitkileri fizyolojisi. Uludağ Üniversitesi Ziraat Fakültesi, Bursa; 1995.
Zhang P, Fan Y, Sun X. et al. A large‐scale circular RNA profiling reveals universal molecular mechanisms responsive to drought stress in maize and Arabidopsis. The Plant Journal. 2019;98(4):697-713.
Anjum SA, Ashraf U, Zohaib A. et al. Growth and development responses of crop plants under drought stress: a review. Zemdirbyste-Agriculture. 2017;104(3):267-276.
Chaves MM, Maroco JP, Pereira JS. Understanding plant responses to drought—from genes to the whole plant. Functional Plant Biology. 2003;30(3):239-264.
Babalik Z, Baydar NG. Asmalarda kuraklık ve tuz Stresi. Avrupa Bilim ve Teknoloji Dergisi. 2021;21:358-368.
Heschel MS, Riginos C. Mechanisms of selection for drought stress tolerance and avoidance in Impatiens capensis (Balsaminaceae). American Journal of Botany. 2005;92(1):37-44.
Osakabe Y, Osakabe K, Shinozaki K. et al. Response of plants to water stress. Frontiers in Plant Science. 2014;5:86.
Chen H, Jiang JG. Osmotic adjustment and plant adaptation to environmental changes related to drought and salinity. Environmental Reviews. 2010;18(NA):309-319.
Mittler R. Oxidative stress, antioxidants and stress tolerance. Trends in Plant Science. 2002;7(9):405-410.
Pitzschke A, Forzani C, Hirt H. Reactive oxygen species signaling in plants. Antioxidants & Redox Signaling. 2006;8(9-10):1757-1764.
Ahmad P, Jaleel CA, Azooz MM. et al. Generation of ROS and non-enzymatic antioxidants during abiotic stress in plants. Botany Research International. 2009;2(1):11-20.
Xin L, Zheng H, Yang Z. et al. (2018). Physiological and proteomic analysis of maize seedling response to water deficiency stress. Journal of Plant Physiology. 2018;228:29-38.
Claussen W. Proline as a measure of stress in tomato plants. Plant Science. 2005;168(1):241-248.
Yavaş İ, Nail H, Ünay A. Bitkilerin kuraklığa dayanıklılığını artırmaya yönelik uygulamalar. Türk Tarım - Gıda Bilim ve Teknoloji Dergisi. 2016;4(1):48-57.
Hayat S, Hayat Q, Alyemeni MN. et al. Role of proline under changing environments: a review. Plant Signaling & Behavior. 2012;7(11):1456-1466.
Dolferus R. To grow or not to grow: a stressful decision for plants. Plant Science. 2014;229:247-261.
Sah SK, Reddy KR, Li J. Abscisic acid and abiotic stress tolerance in crop plants. Frontiers in Plant Science. 2016;7:571.
Graether SP, Boddington KF. Disorder and function: a review of the dehydrin protein family. Frontiers in Plant Science. 2014;5:576.
Dubey RS. Protein synthesis by plants under stressful conditions. Handbook of Plant and Crop Stress. 1999;2:365-397.
Bhargava S, Sawant K. Drought stress adaptation: metabolic adjustment and regulation of gene expression. Plant Breeding. 2013;132(1):21-32.
Kaur G, Asthir B. Molecular responses to drought stress in plants. Biologia Plantarum. 2017;61:201-209.
Fischer BB, Hideg E, Krieger-Liszkay A. Production, detection, and signaling of singlet oxygen in photosynthetic organisms. Antioxidants & Redox Signaling. 2013;18(16):2145-2162.
Nakashima K, Yamaguchi-Shinozaki K, Shinozaki K. The transcriptional regulatory network in the drought response and its crosstalk in abiotic stress responses including drought, cold, and heat. Frontiers in Plant Science. 2014;5:1-7.
Kim TH. Mechanism of ABA signal transduction: agricultural highlights for improving drought tolerance. Journal of Plant Biology. 2014;57:1-8.
Singh D, Laxmi A. Transcriptional regulation of drought response: a tortuous network of transcriptional factors. Frontiers in Plant Science. 2015;6:895.
Afzal Z, Howton TC, Sun Y, Mukhtar MS. The roles of aquaporins in plant stress responses. J. of Developmental Biology. 2016;9:1-22.
Boyer JS, James RA, Munns R, Condon TA, Passioura JB. Osmotic adjustment leads to anomalously low estimates of relative water content in wheat and barley. Functional Plant Biology. 2008;35:1172-1182.