تعداد نشریات | 44 |
تعداد شمارهها | 1,303 |
تعداد مقالات | 16,020 |
تعداد مشاهده مقاله | 52,487,089 |
تعداد دریافت فایل اصل مقاله | 15,214,013 |
A key role of penconazole in biomass production and responses to different soil moisture levels in Satureja sahendica Bornm. | ||
Journal of Plant Physiology and Breeding | ||
مقاله 4، دوره 9، شماره 2، اسفند 2019، صفحه 31-46 اصل مقاله (755.83 K) | ||
نوع مقاله: Research Paper | ||
شناسه دیجیتال (DOI): 10.22034/jppb.2019.10460 | ||
نویسندگان | ||
Rozita Mazloumi Oskouiee* 1؛ Mohammad Reza Shakiba2؛ Adel Dabbag Mohammadi Nassab2؛ Hassan Monirifar3 | ||
1PhD Student, Department of Ecophysiology, Faculty of Agriculture, University of Tabriz, Tabriz, Iran. | ||
2Department of Ecophysiology, Faculty of Agriculture, University of Tabriz, Tabriz, Iran. | ||
3Horticulture and Crops Research Department, East Azarbaijan Agricultural and Natural Resources Research and Education Center, AREEO, Tabriz, Iran. | ||
چکیده | ||
Drought stress is a significant environmental factor retarding plant growth as well as productivity. Plants adapt to environmental stress via numerous strategies such as changes in plant height, biomass, carbohydrate content and phytohomnonal levels. Therefore, a split plot experiment based on randomized complete block design with three replications was carried out to determine possible drought tolerance mechanisms in Satureja sahendica Bornm. induced by penconazole (PEN). The determined water (100, 60 and 30% FC) and PEN (0, 10 and 20 mg.l-1) levels were applied. Result showed that drought stress significantly decreased plant height, fresh and dry weight, indoleacetic acid (IAA), gibberellic acid (GA) and induced accumulation of carbohydrates, glucose, sucrose, fructose and abscisic acid (ABA). PEN treatment even decreased further plant height, IAA, GA and increased fresh and dry weight, carbohydrate content, glucose, sucrose, fructose and ABA. PEN increased fructose and ABA up to 2.5 folds and 3.5 to 4.5 folds, respectively compared to the control, especially at the second harvest. The significant decrease in growth hormones along with significant increase of the inhibitor hormone by elevating drought stress and PEN application led to significant augmentation in (GA+IAA)/ABA ratio (~70% at 30% FC and 20 mg.l-1 PEN) compared to the control. Altogether, the application of 20 mg.l-1 PEN together with 60% FC seems an appropriate treatment for planting Satureja sahendica in dry regions. Furthermore, the improved fructose production and ABA level induced by PEN had outstanding role on drought tolerance of this plant | ||
کلیدواژهها | ||
Biomass؛ Drought stress؛ Hormone؛ PEN؛ Plant height؛ Satureja sahendia؛ Soluble carbohydrate | ||
مراجع | ||
Abass SM and Mohamed H, 2011. Alleviation of adverse effects of drought stress on common bean (Phaseolus vulgaris L.) by exogenous application of hydrogen peroxide. Bangladesh Journal of Botany 41(1): 75-83.
Abdalla MM, 2011. Beneficial effects of diatomite on the growth, the biochemical contents and polymorphic DNA in Lupinus albus plants grown under water stress. Agriculture and Biology Journal of North America 2: 207-220.
Ajithkumar IP and Panneerselvam R, 2014. ROS scavenging system, osmotic maintenance, pigment and growth status of Panicum sumatrense Roth. under drought stress. Cell Biochemistry and Biophysics 68: 587-595.
Al-Rumaih MM and Al-Rumaih MM, 2007. Physiological response of two species of datura to uniconazole and salt stress. Journal of Food, Agriculture and Environment 5(3): 450-453.
Aly AA and Latif HH, 2011. Differential effects of paclobutrazol on water stress alleviation through electrolyte leakage, phytohormones, reduced glutathione and lipid peroxidation in some wheat genotypes (Triticum aestivum L.) grown in-vitro. Romanian Biotechnological Letters 16(6): 6710-6721.
Babaee K, Dehaghi MA, Modares Sanavi SAM and Jabbari R, 2010. Water deficit effect on morphology, proline content and thymol percentage of thyme (Thymus vulgaris L.). Iranian Journal of Medicinal and Aromatic Plants 26(2): 239-251 (In Persian with English abstract).
Baghalian K, Abdoshah S, Khalighi-Sigaroodi F and Paknejad F, 2011. Physiological and phytochemical response to drought stress of German chamomile (Matricaria recutita L.). Plant Physiology and Biochemistry 49(2): 201-207.
Bahreininejad B, Razmjoo J and Mirza M, 2013. Influence of water stress on morpho-physiological and phytochemical traits in Thymus daenensis. International Journal of Plant Production 7(1): 151-166.
Bartoli CG, Casalongue CA, Simontacchi M, Marquez Garcia B and Foyer CH, 2013. Interactions between hormone and redox signaling pathways in the control of growth and cross tolerance to stress. Environmental and Experimental Botany 94: 73-88.
Cantino PD, Harley RM and Wagstaff SJ, 1992. Genera of Labiatae: status and classification. In: Harley RM and Reynolds T (Eds) Advances in Labiatae Science. Pp. 511-522. Royal Botanic Gardens, Kew, UK.
Cheng W-H, Endo A, Zhou L, Penney J, Chen H-C, Arroyo A, Leon P, Nambara E, Asami T, Seo M, Koshiba T and Sheen J, 2002. A unique short-chain dehydrogenase/reductase in Arabidopsis glucose signaling and abscisic acid biosynthesis and functions. Plant Cell 14(11): 2723-2743.
Danquah A, de Zelicourt A, Colcombet J and Hirt H, 2014. The role of ABA and MAPK signaling pathways in plant abiotic stress responses. Biotechnology Advances 32(1): 40-52.
DuBios M, Gilles KA, Hamilton JK, Rebers PA and Smith F, 1956. Colorimetric method for determination of sugars and related substances. Analytical Chemistry 28(3): 350-356.
El-Kady FM, 2002. Some studies on the effect of the growth regulator uniconazole on growth, some metabolic changes, level of endogenous hormones and productivity of wheat plants. MSc Thesis, Al-Azhar University, Faculty of Science, Botany Department, Egypt.
El-Maarouf-Bouteau H, Sajjad Y, Bazin J, Langlade N, Cristescu SM, Balzergue S, Baudouin E and Bailly C, 2015. Reactive oxygen species, abscisic acid and ethylene interact to regulate sunflower seed germination. Plant, Cell and Environment 38(2): 364-374.
Fletcher RA, Gilley A, Sankhla N and Davis TD, 1999. Triazoles as plant growth regulators and stress protectants. Horticultural Reviews 24: 55-138.
Ghahreman A, 1988. Flora of Iran. Research Institute of Forest and Rangeland, Tehran, Iran (In Persian).
Grossmann K, 1990. Plant growth retardants as tools in physiological research. Physiologia Plantarum 78(4): 640-648.
Guevara Figueroa T, Lopez Hernandez L, Lopez MG, Dufoo Hurtado MD, Vazquez Barrios ME, Guevara-Olvera L, Guevara Gonzalez RG, Rivera Pastrana DM, Torres-Robles H and Mercado- Silva EM, 2015. Conditioning garlic “seed” cloves at low temperature modifies plant growth, sugar, fructan content, and sucrose sucrose fructosyl transferase (1-SST) expression. Scientia Horticulturae 189: 150-158.
Hassanpour H, Khavari-Nejad RA, Niknam V, Najafi F and Razavi K, 2012. Effects of penconazole and water deficit stress on physiological and antioxidative responses in pennyroyal (Mentha pulegium L.). Acta Physiologiae Plantarum 34: 1537-1549.
Hassanpour H, Khavari-Nejad RA, Niknam V, Najafi F and Razavi K, 2013. Penconazole induced changes in photosynthesis, ion acquisition and protein profile of Mentha pulegium L. under drought stress. Physiology and Molecular Biology of Plants 19: 489-498.
Hassanpour H, Khavari-Nejad RA, Niknam V, Razavi Kh and Najafi F, 2014. Effect of penconazole and drought stress on the essential oil composition and gene expression of Mentha pulegium L. (Lamiaceae) at flowering stage. Acta Physiologiae Plantarum 36: 1167-1175.
Hennig A, Kleinschmit JRG, Schoneberg S, Loffler S, Janβen A and Polle A, 2015. Water consumption and biomass production of protoplast fusion lines of poplar hybrids under drought stress. Frontiers in Plant Science 6: 330. doi.org/10.3389/fpls.2015.00330.
Inotai K, 2013. The effect of water deficit on some stress parameters of Ocimum basilicum L. and Satureja hortensis L. Doctoral thesis. Doctoral School of Horticultural Sciences, Budapest, Hungary.
Jia H, Li C, Chai Y, Xing Y and Shen Y, 2013. Sucrose promotes strawberry fruit ripening by stimulation of abscisic acid biosynthesis. Pakistan Journal of Botany 45(1): 169-175.
Kaczmarek M, Fedorowicz-Stronska O, Głowacka K, Waskiewicz A and Sadowski J, 2017. CaCl2 treatment improves drought stress tolerance in barley (Hordeum vulgare L.). Acta Physiologiae Plantarum 39: 41. https://doi.org/10.1007/s11738-016-2336-y.
Kafi M, Borzoee A, Salehi M, Kamandi A, Masoumi A and Nabati J, 2009. Physiology of environmental stresses in plants. Jehad Danshgahi Press, Mashhad, Iran, 502 pp. (In Persian).
Kamran M, Wennan S, Ahmad I, Xiangping M, Wenwen C, Xudong Z and Siwei M,KhanA, Qingfang Hand Tiening L, 2018. Application of paclobutrazol affect maize grain yield by regulating root morphological and physiological characteristics under a semi-arid region. Scientific Reports 8: 1. doi: 10.1038/s41598-018-23166-z.
Koutroubas SD and Damlas CA, 2015. Sunflower response to repeated foliar applications of paclobutrazol. Planta Daninha 33(1): 129-135.
Man HM, Pollmann S, Weiler EW and Kirby EG, 2011. Increased glutamine in leaves of poplar transgenic with pine GS1a caused greater anthranilate synthetase α-subunit (ASA1) transcript and protein abundances: an auxin-related mechanism for enhanced growth in GS transgenics. Journal of Experimental Botany 62: 4423-4431.
Manzi M, Lado J, Jesús Rodrigo M, Zacarías L, Arbona V and Gómez-Cadenas A, 2015. Root ABA accumulation in long-term water-stressed plants is sustained by hormone transport from aerial organs. Plant and Cell Physiology 56(12): 2457-2466.
Matthews GA, 2018. A history of pesticides. CABI, UK, 310 pp.
Mozaffarian V, 2004. A Dictionary of Iranian Plant Names. Farhang Moaaser Publishing Company, Iran (In Persian).
Nefed’eva EE and Khraynin VA, 2003. The aftereffects of impulse pressure on the phytohormone content and some morphological characteristics of buckwheat plants. Russian Journal of Plant Physiology 46(2): 194-200.
Pal S, Zhao JS, Khan A, Yadav NS, Batushansky A, Barak S, Rewald B, Fait A, Lazarovitch N and Rachmilevitch S, 2016. Paclobutrazol induces tolerance in tomato to deficit irrigation through diversified effects on plant morphology, physiology and metabolism. Scientific Reports 6: 39321. doi.org/10.1038/srep39321.
Pan RC and Luo YX. 1994. Effect of PP333 on growth, development and leaf structure of Cymbidium sinensis. Acta Horticulturae Sinica 21(3): 269-272.
Pardo-Rueda AJ, Quintero-Ramos A, Genovese DB, Camacho-Davila A, Zepeda-Rodriguez A, Contreras-Esquivel JC and Bizarro AP, 2015. Efficient extraction of fructans from stool plant (Dasylirion leiophyllum) enhanced by a combination of enzymatic and sonothermal treatments. Food and Bioproducts Processing 94(4): 398-404.
Puvanitha S and Mahendran S, 2017. Effect of salinity on plant height, shoot and root dry weight of selected rice cultivars. Scholars Journal of Agriculture and Veterinary Sciences 4(4): 126-131.
Rajalekshmi KM, Abdul Jaleel C, Azooz MM and Panneerselvam R, 2009. Effect of triazole growth regulators on growth and pigment contents in Plectranthus aromaticus and Plectranthus vettiveroids. Advances in Biological Research 3(3-4): 117-122.
Rosa M, Prado C, Podazza G, Interdonato R, González JA, Hilal M and Prado FE, 2009. Soluble sugars--metabolism, sensing and abiotic stress: a complex network in the life of plants. Plant Signaling and Behavior 4(5): 388-393.
Saffan ES, 2008. Effect of salinity and osmotic stresses on some economic plants. Research Journal of Agriculture and Biological Sciences 4: 159-166.
Sairanen I, Novak O, Pincik A, Ikeda Y, Jones B, Sandberg G and Ljung K, 2012. Soluble carbohydrates regulate auxin biosynthesis via PIF proteins in Arabidopsis. The Plant Cell 24: 4907-4916.
Sefidkon F and Akbari-nia A, 2009. Essential oil content and composition of Satureja sahendica Bornm. at different stages of plant growth. Journal of Essential Oil Research 21(2): 112-114.
Shaki F, Ebrahimzadeh Maboud H and Niknam V, 2018. Penconazole alleviates salt-induced damage in safflower (Carthamus tinctorius L.) plants. Journal of Plant Interactions 13(1): 420-427.
Shao H-B, Chu L-Y, Abdul Jaleel C and Zhao CX, 2008. Water-deficit stress-induced anatomical changes in higher plants. Comptes Rendus Biologies 331(3): 215-225.
Shariat A, Karimzadeh G, Assareh MH and Zandi_Esfahan E, 2016. Drought stress in Iranian endemic savory (Satureja rechingeri): in vivo and in vitro studies. Journal of Plant Physiology and Breeding 6(1): 1-12.
Sharma D and Awasthi MD, 2005. Uptake of soil applied paclobutrazol in mango (Mangifera indica L.) and its persistence in fruit and soil. Chemosphere 60(2): 164-169.
Sodaei Zadeh H, Shamsaie M, Tajamoliyan M, Mirmohammady Meybody AM and Hakim Zadeh MA, 2016. The effects of water stress on some morphological and physiological characteristics of Satureja hortensis. Journal of Plant Process and Function 5(15): 1-11 (In Persian with English abstract).
Sridharan R, Raja S and SakthivelP, 2015. Effect of triazole compounds on induced changes in growth biomass and biochemical content of white radish (Raphanus sativus L.). Journal of Plant Stress Physiology 1(1): 43-48.
Syahputra BSA, Sinniah UR, Syed Rastan SO and Ismail MR, 2013. Changes in gibberellic acid (GA3) content in Oryza sativa due to paclobutrazol treatment. Journal Food Pharmaceutical Sciences 1: 14-17.
Syahputra, BSA, Sinniah UR, Ismail MR and Swamy MK, 2016. Optimization of paclobutrazol concentration and application time for increased lodging resistance and yield in field-grown rice. The Philippine Agricultural Scientist 99(3): 221-228.
Taiz L and Zeiger E, 2010. Plant Physiology. 5th edition. Sinauer Associates Inc., Sunderland, UK.
Tesfahun W and Menzir A, 2018. Effect of rates and time of paclobutrazol application on growth, lodging, yield and yield components of Tef [Eragrostis Tef (Zucc.) Trotter] in Ada Woreda, East Shewa, Ethiopia. Journal of Biology, Agriculture and Healthcare 8(3): 104-117.
Thameur A, Ferchichi A and López-Carbonell M, 2011. Quantification of free and conjugated abscisic acid in five genotypes of barley (Hordeum vulgare L.) under water stress conditions. South African Journal of Botany 77(1): 222-228.
Tuna AL, 2014. Influence of foliarly applied different triazole compounds on growth, nutrition, and antioxidant enzyme activities in tomato (Solanum lycopersicum L.) under salt stress. Australian Journal of Crop Science 8(1): 71-79.
Urano K, Maruyama K, Jikumaru Y, Kamiya Y, Yamaguchi-Shinozaki K and Shinozaki K, 2017. Analysis of plant hormone profiles in response to moderate dehydration stress. The Plant Journal 90(1): 17-36.
Urano K, Maruyama K, Ogata Y, Morishita Y, Takeda M, Sakurai N, Suzuki H, Saito K, Shibata D, Kobayashi M, Yamaguchi-Shinozaki K and Shinozaki K, 2009. Characterization of the ABA- regulated global responses to dehydration in Arabidopsis by metabolomics. The Plant Journal 57(6): 1065-1078.
Verma, V, Ravindran P and Kumar PP, 2016. Plant hormone-mediated regulation of stress responses. BMC Plant Biology 16: 86. doi.org/10.1186/s12870-016-0771-y.
Vettakkorumakankav NN, Falk D, Saxena P and Fletcher RA, 1999. A crucial role for gibberellins in stress protection of plants. Plant Cell Physiology 40(5): 542-548.
Wang L-F, 2014. Physiological and molecular responses to drought stress in rubber tree (Hevea brasiliensis Muell. Arg.). Plant Physiology and Biochemistry 83: 243-249.
Wang B, Wei H, Xue Z and Zhang WH, 2017. Gibberellins regulate iron deficiency-response by influencing iron transport and translocation in rice seedlings (Oryza sativa). Annals of Botany 119(6): 945-956.
Wang C, Yang A, Yin H and Zhang J, 2008. Influence of water stress on endogenous hormone contents and cell damage of maize seedlings. Journal of Integrative Plant Biology 50(4): 427-434.
Yang JC, Zhang JH, Wang ZQ, Zhu QS and Liu LJ, 2003. Involvement of abscisic acid and cytokinins in the senescence and remobilization of carbon reserves in wheat subjected to water stress during grain filling. Plant, Cell and Environment 26(10): 1621-1631. | ||
آمار تعداد مشاهده مقاله: 447 تعداد دریافت فایل اصل مقاله: 311 |