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Erschienen in: Gesunde Pflanzen 1/2022

14.10.2021 | Original Article / Originalbeitrag

Unraveling Wheat Grain Quality, Physiological Indices, Dry Matter Accumulation, and Attenuating Water Stress Adverse Effect Via Foliar Potassium Application at Different Growth Stages

verfasst von: Nawab Ali, Muhammad Mehran Anjum, Gul Roz Khan, Rovaid Ali

Erschienen in: Journal of Crop Health | Ausgabe 1/2022

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Abstract

Water resources are increasingly scarce, and in drought prone production systems, the capability of the plant to recover its adverse effects is important for yield stability. There is an urgent need to develop water-saving strategies for wheat production. Water stress at critical growth stages diminishes wheat production and has harmful effects on crop growth and development; however, regulated water deficit and potassium foliar application ameliorates its adverse effect up to a certain extent. Consequently, the water deficit effect at different growth stages of the crop with exogenous application of potassium was evaluated in a screenhouse experiment in a complete randomized design (CRD) having four repeats. Varieties of wheat, i.e. Lalma (drought resistant) and Pakhtunkhwa-2015 (drought susceptible), were sown. Water deficit, i.e. mild water stress (50% of water required for field capacity) and severe stress (no application of water), at different growth stages of the crop were imposed. Potassium (K) foliar spray (1%) from potassium sulfate (K2SO4) was applied at the respective stage subjected to water deficit levels. Internal water status, i.e. relative water content (RWC) and water retention capacity (WRC), were attained maximum at tillering stage under mild stress than the rest of the stages with maximum for Lalma. Conversely, water saturation deficit (WSD) and water uptake capacity (WUC) were higher under severe stress imposed at grain filling stage. Theses indices were maintained by foliar potassium application. Similarly, dry matter (DM) allocation varied for stress level imposition and translocation to other parts were improved under foliar K application. The chlorophyll indices, i.e., soil plant analysis development (SPAD) value, also decreased with the severity of water deficit. Grain yield was higher under stress imposition at grain filling stage than the rest of the stages, though severe water stress decreased yield significantly. The Potassium (K) foliar spray showed no prominent effect at grain filling. Canopy temperature increased with stress severity and was maintained under K foliar spray. Osmotic adjustment, water and turgor potential were affected by water stress and maintained with foliar K spray. Grain quality and biochemical traits of wheat were affected severely under water deficit. Potassium foliar spray was found to decrease the adverse effect of the water stress and hence maintained the quality and biochemical characters. It is concluded that application of foliar potassium decreases the adverse effects of water stress at any growth stage, minimises the stress indices drastic effect and maintains the internal water balance of the crop at different stages subjected to water deficit.

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Literatur
Zurück zum Zitat AACC international (2010) Approved methods of analysis. Methods, 46‐30.01. Crude protein‐Combustion method; 26‐50.01. Brabender Quadrumat Jr.(Quadruplex) method; 54‐40.02. Mixograph Method; 38‐12.02. Wet gluten, dry Gluten, water‐binding capacity, and gluten index; 66‐50.01. Pasta and noodle cooking quality‐Firmness AACC international (2010) Approved methods of analysis. Methods, 46‐30.01. Crude protein‐Combustion method; 26‐50.01. Brabender Quadrumat Jr.(Quadruplex) method; 54‐40.02. Mixograph Method; 38‐12.02. Wet gluten, dry Gluten, water‐binding capacity, and gluten index; 66‐50.01. Pasta and noodle cooking quality‐Firmness
Zurück zum Zitat Adams CB, Erickson JE (2017) Yield enhancement by short-term imposition of severe water deficit in the vegetative growth stage of grain sorghum. J Agron Crop Sci 203:309–314CrossRef Adams CB, Erickson JE (2017) Yield enhancement by short-term imposition of severe water deficit in the vegetative growth stage of grain sorghum. J Agron Crop Sci 203:309–314CrossRef
Zurück zum Zitat Agrawal SB, Rathore D (2007) Changes in oxidative stress defense system in wheat (Triticum aestivum L.) and mung bean (Vigna radiata L.) cultivars grown with and without mineral nutrients and irradiated by supplemental ultraviolet‑B. Environ Expt Bot 59:21–33CrossRef Agrawal SB, Rathore D (2007) Changes in oxidative stress defense system in wheat (Triticum aestivum L.) and mung bean (Vigna radiata L.) cultivars grown with and without mineral nutrients and irradiated by supplemental ultraviolet‑B. Environ Expt Bot 59:21–33CrossRef
Zurück zum Zitat Ali N, Akmal M (2020) Morphophysiological traits, biochemical characteristic and productivity of wheat under water and nitrogen-colimitation: pathways to improve water and N uptake. In: Abiotic stress in plants. IntechOpen, Ali N, Akmal M (2020) Morphophysiological traits, biochemical characteristic and productivity of wheat under water and nitrogen-colimitation: pathways to improve water and N uptake. In: Abiotic stress in plants. IntechOpen,
Zurück zum Zitat Ali N, Anjum MM (2016) Drought stress: major cause of low yield and productivity. Austin Environ Sci 1:1012 Ali N, Anjum MM (2016) Drought stress: major cause of low yield and productivity. Austin Environ Sci 1:1012
Zurück zum Zitat Ali Q, Ashraf M (2011) Induction of drought tolerance in maize (Zea mays L.) due to exogenous application of trehalose: growth, photosynthesis, water relations and oxidative defence mechanism. J Agron Crop Sci 197:258–271CrossRef Ali Q, Ashraf M (2011) Induction of drought tolerance in maize (Zea mays L.) due to exogenous application of trehalose: growth, photosynthesis, water relations and oxidative defence mechanism. J Agron Crop Sci 197:258–271CrossRef
Zurück zum Zitat Ali MH, Hoque MR, Hassan AA, Khair A (2007) Effects of deficit irrigation on yield, water productivity, and economic returns of wheat. Agricu Water Mgt 92:151–161CrossRef Ali MH, Hoque MR, Hassan AA, Khair A (2007) Effects of deficit irrigation on yield, water productivity, and economic returns of wheat. Agricu Water Mgt 92:151–161CrossRef
Zurück zum Zitat Ali N, Khan AZ, Anjum MM, Khan GR, Khan GD, Nawaz H, Ibadullah AS, Ali M, Iqbal S (2019) Foliar application of potassium at different phenophases subjected to water deficit levels improved yield and yield attributes of wheat. Biosci Res 16:3339–3352 Ali N, Khan AZ, Anjum MM, Khan GR, Khan GD, Nawaz H, Ibadullah AS, Ali M, Iqbal S (2019) Foliar application of potassium at different phenophases subjected to water deficit levels improved yield and yield attributes of wheat. Biosci Res 16:3339–3352
Zurück zum Zitat Alvaro F, Royo C, García-del-Moral LF, Villegas D (2008) Grain filling and dry matter translocation responses to source-sink modifications in a historical series of durum wheat. Crop Sci 48:1523–1531CrossRef Alvaro F, Royo C, García-del-Moral LF, Villegas D (2008) Grain filling and dry matter translocation responses to source-sink modifications in a historical series of durum wheat. Crop Sci 48:1523–1531CrossRef
Zurück zum Zitat Anjum SA, Xie XY, Wang LC, Saleem MF, Man C, Lei W (2011) Morphological, physiological and biochemical responses of plants to drought stress. African J Agric Res 6:2026–2032 Anjum SA, Xie XY, Wang LC, Saleem MF, Man C, Lei W (2011) Morphological, physiological and biochemical responses of plants to drought stress. African J Agric Res 6:2026–2032
Zurück zum Zitat Asseng S, Jamieson PD, Kimball B, Pinter P, Sayre K, Bowden JW, Howden SM (2004) Simulated wheat growth affected by rising temperature, increased water deficit and elevated atmospheric CO2. Field Crop Res 85:85–102CrossRef Asseng S, Jamieson PD, Kimball B, Pinter P, Sayre K, Bowden JW, Howden SM (2004) Simulated wheat growth affected by rising temperature, increased water deficit and elevated atmospheric CO2. Field Crop Res 85:85–102CrossRef
Zurück zum Zitat Bai H, Purcell LC (2018) Aerial canopy temperature differences between fast-and slow-wilting soya bean genotypes. J Agron Crop Sci 204:243–251CrossRef Bai H, Purcell LC (2018) Aerial canopy temperature differences between fast-and slow-wilting soya bean genotypes. J Agron Crop Sci 204:243–251CrossRef
Zurück zum Zitat Barraclough PB, Kyte J (2001) Effect of water stress on chlorophyll meter readings in winter wheat. Plant Nutrition. Developments in Plant and Soil Sci, vol 92. Springer, Dordrecht Barraclough PB, Kyte J (2001) Effect of water stress on chlorophyll meter readings in winter wheat. Plant Nutrition. Developments in Plant and Soil Sci, vol 92. Springer, Dordrecht
Zurück zum Zitat Barányiová I, Klem K (2016) Effect of application of growth regulators on the physiological and yield parameters of winter wheat under water deficit. Plant Soil Environ 62:114–120CrossRef Barányiová I, Klem K (2016) Effect of application of growth regulators on the physiological and yield parameters of winter wheat under water deficit. Plant Soil Environ 62:114–120CrossRef
Zurück zum Zitat Behboudi F, Tahmasebi-Sarvestani Z, Kassaee MZ, Modares-Sanavi SAM, Sorooshzadeh A (2018) Improving growth and yield of wheat under drought stress via application of sio2 nanoparticles. J Agric Sci Tech 20:1479–1492 Behboudi F, Tahmasebi-Sarvestani Z, Kassaee MZ, Modares-Sanavi SAM, Sorooshzadeh A (2018) Improving growth and yield of wheat under drought stress via application of sio2 nanoparticles. J Agric Sci Tech 20:1479–1492
Zurück zum Zitat Bodner G, Nakhforoosh, Kaul HP (2015) Management of crop water under drought: a review. Agron Sustain Dev 35:401–442CrossRef Bodner G, Nakhforoosh, Kaul HP (2015) Management of crop water under drought: a review. Agron Sustain Dev 35:401–442CrossRef
Zurück zum Zitat Burger A, Lichtscheidl I (2018) Stable and radioactive cesium: a review about distribution in the environment, uptake and translocation in plants, plant reactions and plants’ potential for bioremediation. Sci Total Environ 618:1459–1485PubMedCrossRef Burger A, Lichtscheidl I (2018) Stable and radioactive cesium: a review about distribution in the environment, uptake and translocation in plants, plant reactions and plants’ potential for bioremediation. Sci Total Environ 618:1459–1485PubMedCrossRef
Zurück zum Zitat Daryanto S, Wang L, Jacinthe PA (2017) Global synthesis of drought effects on cereal, legume, tuber and root crops production: a review. Agric Water Mgt 179:18–33CrossRef Daryanto S, Wang L, Jacinthe PA (2017) Global synthesis of drought effects on cereal, legume, tuber and root crops production: a review. Agric Water Mgt 179:18–33CrossRef
Zurück zum Zitat Dhanda SS, Sethi GS, Behl RK (2004) Indices of drought tolerance in wheat genotypes at early stages of plant growth. J Agron Crop Sci 190:6–12CrossRef Dhanda SS, Sethi GS, Behl RK (2004) Indices of drought tolerance in wheat genotypes at early stages of plant growth. J Agron Crop Sci 190:6–12CrossRef
Zurück zum Zitat Dolferus R, Ji X, Richards RA (2011) Abiotic stress and control of grain number in cereals. Plant Sci 181:331–341PubMedCrossRef Dolferus R, Ji X, Richards RA (2011) Abiotic stress and control of grain number in cereals. Plant Sci 181:331–341PubMedCrossRef
Zurück zum Zitat Dutta T, Neelapu NR, Wani SH, Challa S (2018) Response of pulses to drought and salinity stress response: a physiological perspective. In: Pulse improvement. Springer, Cham, pp 77–98CrossRef Dutta T, Neelapu NR, Wani SH, Challa S (2018) Response of pulses to drought and salinity stress response: a physiological perspective. In: Pulse improvement. Springer, Cham, pp 77–98CrossRef
Zurück zum Zitat Fageria NK, Baligar VC, Jones CA (2010) Growth and mineral nutrition of field crops. CRC Press, CrossRef Fageria NK, Baligar VC, Jones CA (2010) Growth and mineral nutrition of field crops. CRC Press, CrossRef
Zurück zum Zitat Fahad S, Bajwa AA, Nazir U, Anjum SA, Farooq A, Zohaib A, Ihsan M (2017) Crop production under drought and heat stress: plant responses and management options. Front Plant Sci 8:1147PubMedPubMedCentralCrossRef Fahad S, Bajwa AA, Nazir U, Anjum SA, Farooq A, Zohaib A, Ihsan M (2017) Crop production under drought and heat stress: plant responses and management options. Front Plant Sci 8:1147PubMedPubMedCentralCrossRef
Zurück zum Zitat Fang Y, Xiong (2015) General mechanisms of drought response and their application in drought resistance improvement in plants. Cell Mol Life Sci 72:673–689PubMedCrossRef Fang Y, Xiong (2015) General mechanisms of drought response and their application in drought resistance improvement in plants. Cell Mol Life Sci 72:673–689PubMedCrossRef
Zurück zum Zitat Fang X, Turner NC, Yan G, Li F, Siddique KH (2010) Flower numbers, pod production, pollen viability, and pistil function are reduced and flower and pod abortion increased in chickpea (Cicer arietinum L.) under terminal drought. J Exp Bot 61:335–345PubMedCrossRef Fang X, Turner NC, Yan G, Li F, Siddique KH (2010) Flower numbers, pod production, pollen viability, and pistil function are reduced and flower and pod abortion increased in chickpea (Cicer arietinum L.) under terminal drought. J Exp Bot 61:335–345PubMedCrossRef
Zurück zum Zitat Farooq M, Wahid A, Kobayashi N, Fujita DBSMA, Basra SM (2009) Plant drought stress: effects, mechanisms and management. In: Sustainable agriculture. Springer, Dordrecht, pp 153–188CrossRef Farooq M, Wahid A, Kobayashi N, Fujita DBSMA, Basra SM (2009) Plant drought stress: effects, mechanisms and management. In: Sustainable agriculture. Springer, Dordrecht, pp 153–188CrossRef
Zurück zum Zitat Farooq M, Wahid A, Lee DJ, Cheema SA, Aziz T (2010) Drought stress: comparative time course action of the foliar applied glycinebetaine, salicylic acid, nitrous oxide, brassinosteroids and spermine in improving drought resistance of rice. J Agron Crop Sci 196:336–345CrossRef Farooq M, Wahid A, Lee DJ, Cheema SA, Aziz T (2010) Drought stress: comparative time course action of the foliar applied glycinebetaine, salicylic acid, nitrous oxide, brassinosteroids and spermine in improving drought resistance of rice. J Agron Crop Sci 196:336–345CrossRef
Zurück zum Zitat Farooq M, Hussain M, Wahid A, Siddique KHM (2012) Drought stress in plants: an overview. In: Plant responses to drought stress. Springer, Berlin, Heidelberg, pp 1–33 Farooq M, Hussain M, Wahid A, Siddique KHM (2012) Drought stress in plants: an overview. In: Plant responses to drought stress. Springer, Berlin, Heidelberg, pp 1–33
Zurück zum Zitat Foulkes MJ, Scott RK, Sylvester-Bradley R (2002) The ability of wheat cultivars to withstand drought in UK conditions: formation of grain yield. J Agric Sci 138:153CrossRef Foulkes MJ, Scott RK, Sylvester-Bradley R (2002) The ability of wheat cultivars to withstand drought in UK conditions: formation of grain yield. J Agric Sci 138:153CrossRef
Zurück zum Zitat Ghorchiani M, Etesami H, Alikhani HA (2018) Improvement of growth and yield of maize under water stress by co-inoculating an arbuscular mycorrhizal fungus and a plant growth promoting rhizobacterium together with phosphate fertilizers. Agric Ecosyst Environ 258:59–70CrossRef Ghorchiani M, Etesami H, Alikhani HA (2018) Improvement of growth and yield of maize under water stress by co-inoculating an arbuscular mycorrhizal fungus and a plant growth promoting rhizobacterium together with phosphate fertilizers. Agric Ecosyst Environ 258:59–70CrossRef
Zurück zum Zitat Gorchs G, Lloveras J, Serrano L, Cela S (2017) Hemp yields and its rotation effects on wheat under rainfed mediterranean conditions. Agron J 109:1551–1560 Gorchs G, Lloveras J, Serrano L, Cela S (2017) Hemp yields and its rotation effects on wheat under rainfed mediterranean conditions. Agron J 109:1551–1560
Zurück zum Zitat Gupta S, Gupta NK (2011) Field efficacy of exogenously applied putrescine in wheat (Triticum aestivum) under water-stress conditions. Indian J Agric Sci 81:516 Gupta S, Gupta NK (2011) Field efficacy of exogenously applied putrescine in wheat (Triticum aestivum) under water-stress conditions. Indian J Agric Sci 81:516
Zurück zum Zitat Gupta NK, Gupta S, Kumar A (2001) Effect of water stress on physiological attributes and their relationship with growth and yield of wheat cultivars at different stages. J Agron Crop Sci 186:55–62CrossRef Gupta NK, Gupta S, Kumar A (2001) Effect of water stress on physiological attributes and their relationship with growth and yield of wheat cultivars at different stages. J Agron Crop Sci 186:55–62CrossRef
Zurück zum Zitat Holmstrom KO, Somersalo S, Mandal A, Palva TE, Welin B (2000) Improved tolerance to salinity and low temperature in transgenic tobacco producing glycine betaine. J Exp Bot 51:177–185PubMedCrossRef Holmstrom KO, Somersalo S, Mandal A, Palva TE, Welin B (2000) Improved tolerance to salinity and low temperature in transgenic tobacco producing glycine betaine. J Exp Bot 51:177–185PubMedCrossRef
Zurück zum Zitat Huetsch BW, Schubert S (2017) Harvest index of maize (Zea mays L.): are there possibilities for improvement? In: Advances in Agron, vol 146. Academic Press, , pp 37–82 Huetsch BW, Schubert S (2017) Harvest index of maize (Zea mays L.): are there possibilities for improvement? In: Advances in Agron, vol 146. Academic Press, , pp 37–82
Zurück zum Zitat Jones Jr JB, Case VW (1990) Sampling, handling, and analyzing plant tissue samples. Soil testing and plant analysis. 3:389–427 Jones Jr JB, Case VW (1990) Sampling, handling, and analyzing plant tissue samples. Soil testing and plant analysis. 3:389–427
Zurück zum Zitat Juliano BO (1979) The chemical basis of rice grain quality. Chemical aspects of rice grain quality. 69:90 Juliano BO (1979) The chemical basis of rice grain quality. Chemical aspects of rice grain quality. 69:90
Zurück zum Zitat Kaminski KP, Kørup K, Kristensen K, Nielsen KL, Liu F, Topbjerg HB, Andersen MN (2015) Contrasting water-use efficiency (WUE) responses of a potato mapping population and capability of modified Ball-Berry model to predict stomatal conductance and WUE measured at different environmental conditions. J Agron Crop Sci 201:81–94CrossRef Kaminski KP, Kørup K, Kristensen K, Nielsen KL, Liu F, Topbjerg HB, Andersen MN (2015) Contrasting water-use efficiency (WUE) responses of a potato mapping population and capability of modified Ball-Berry model to predict stomatal conductance and WUE measured at different environmental conditions. J Agron Crop Sci 201:81–94CrossRef
Zurück zum Zitat Kashiwagi J, Morito Y, Jitsuyama Y, An P, Inoue T, Inagaki M (2015) Effects of root water uptake efficiency on soil water utilization in wheat (Triticum aestivum L.) under severe drought environments. J Agron Crop Sci 201:161–172CrossRef Kashiwagi J, Morito Y, Jitsuyama Y, An P, Inoue T, Inagaki M (2015) Effects of root water uptake efficiency on soil water utilization in wheat (Triticum aestivum L.) under severe drought environments. J Agron Crop Sci 201:161–172CrossRef
Zurück zum Zitat Keyvan S (2010) The effects of drought stress on yield, relative water content, proline, soluble carbohydrates and chlorophyll of bread wheat cultivars. J Anim Plant Sci 8:1051–1060 Keyvan S (2010) The effects of drought stress on yield, relative water content, proline, soluble carbohydrates and chlorophyll of bread wheat cultivars. J Anim Plant Sci 8:1051–1060
Zurück zum Zitat Kottmann L, Schittenhelm S, Wittich KP, Wilde P (2013) Suitability of canopy temperature depression in a temperate climate with drought-stressed winter rye, determined with three infrared measurement devices. J Agron Crop Sci 199:385–394CrossRef Kottmann L, Schittenhelm S, Wittich KP, Wilde P (2013) Suitability of canopy temperature depression in a temperate climate with drought-stressed winter rye, determined with three infrared measurement devices. J Agron Crop Sci 199:385–394CrossRef
Zurück zum Zitat Lesk C, Rowhani P, Ramankutty N (2016) Influence of extreme weather disasters on global crop production. Natur 529:84–87CrossRef Lesk C, Rowhani P, Ramankutty N (2016) Influence of extreme weather disasters on global crop production. Natur 529:84–87CrossRef
Zurück zum Zitat Lichtenthaler HK, Buschmann C (2005) Chlorophylls and Carotenoids: measurement and characterization by UV-VIS spectroscopy. Handb Food Anal Chem 2(2):171–178 Lichtenthaler HK, Buschmann C (2005) Chlorophylls and Carotenoids: measurement and characterization by UV-VIS spectroscopy. Handb Food Anal Chem 2(2):171–178
Zurück zum Zitat Ma SC, Duan AW, Ma ST, Yang SJ (2016) Effect of early-stage regulated deficit irrigation on stem lodging resistance, leaf photosynthesis, root respiration and yield stability of winter wheat under post-anthesis water stress conditions. Irrigation Drainage 65:673–681CrossRef Ma SC, Duan AW, Ma ST, Yang SJ (2016) Effect of early-stage regulated deficit irrigation on stem lodging resistance, leaf photosynthesis, root respiration and yield stability of winter wheat under post-anthesis water stress conditions. Irrigation Drainage 65:673–681CrossRef
Zurück zum Zitat Mahmood T, Ashraf M, Shahbaz M (2009) Does exogenous application of glycinebetaine as a pre-sowing seed treatment improve growth and regulate some key physiological attributes in wheat plants grown under water deficit conditions. Pak J Bot 41:1291–1302 Mahmood T, Ashraf M, Shahbaz M (2009) Does exogenous application of glycinebetaine as a pre-sowing seed treatment improve growth and regulate some key physiological attributes in wheat plants grown under water deficit conditions. Pak J Bot 41:1291–1302
Zurück zum Zitat Matsuura A, An P (2020) Factors related water and dry matter during pre-and post-heading in four millet species under severe water deficit. Plant Prod Sci 23:28–38CrossRef Matsuura A, An P (2020) Factors related water and dry matter during pre-and post-heading in four millet species under severe water deficit. Plant Prod Sci 23:28–38CrossRef
Zurück zum Zitat Mitra G (2018) Molecular approaches to nutrient uptake and cellular homeostasis in plants under abiotic stress. In: Plant nutrients and abiotic stress tolerance. Springer, Singapore, pp 525–590CrossRef Mitra G (2018) Molecular approaches to nutrient uptake and cellular homeostasis in plants under abiotic stress. In: Plant nutrients and abiotic stress tolerance. Springer, Singapore, pp 525–590CrossRef
Zurück zum Zitat Nawaz F, Ahmad R, Waraich EA, Naeem MS, Shabbir RN (2012) Nutrient uptake, physiological responses, and yield attributes of wheat (Triticum aestivum L.) exposed to early and late drought stress. J Plant Nutr 35:961–974CrossRef Nawaz F, Ahmad R, Waraich EA, Naeem MS, Shabbir RN (2012) Nutrient uptake, physiological responses, and yield attributes of wheat (Triticum aestivum L.) exposed to early and late drought stress. J Plant Nutr 35:961–974CrossRef
Zurück zum Zitat Nawaz F, Ashraf MY, Ahmad R, Waraich EA, Shabbir N, Bukhari MA (2015) Supplemental selenium improves wheat grain yield and quality through alterations in biochemical processes under normal and water deficit conditions. Food Chem 175:350–357PubMedCrossRef Nawaz F, Ashraf MY, Ahmad R, Waraich EA, Shabbir N, Bukhari MA (2015) Supplemental selenium improves wheat grain yield and quality through alterations in biochemical processes under normal and water deficit conditions. Food Chem 175:350–357PubMedCrossRef
Zurück zum Zitat Obidiegwu JE, Bryan GJ, Jones HG, Prashar A (2015) Coping with drought: stress and adaptive responses in potato and perspectives for improvement. Front Plant Sci 6:542PubMedPubMedCentralCrossRef Obidiegwu JE, Bryan GJ, Jones HG, Prashar A (2015) Coping with drought: stress and adaptive responses in potato and perspectives for improvement. Front Plant Sci 6:542PubMedPubMedCentralCrossRef
Zurück zum Zitat Ozturk A, Aydin F (2004) Effect of water stress at various growth stages on some quality characteristics of winter wheat. J Agron Crop Sci 190:93–99CrossRef Ozturk A, Aydin F (2004) Effect of water stress at various growth stages on some quality characteristics of winter wheat. J Agron Crop Sci 190:93–99CrossRef
Zurück zum Zitat Rai AC, Singh M, Shah K (2012) Effect of water withdrawal on formation of free radical, proline accumulation and activities of antioxidant enzymes in ZAT12-transformed transgenic tomato plants. Plant Physiol Biochem 61:108–114CrossRef Rai AC, Singh M, Shah K (2012) Effect of water withdrawal on formation of free radical, proline accumulation and activities of antioxidant enzymes in ZAT12-transformed transgenic tomato plants. Plant Physiol Biochem 61:108–114CrossRef
Zurück zum Zitat Rajala A, Hakala K, Mäkelä P, Muurinen S, Peltonen-Sainio P (2009) Spring wheat response to timing of water deficit through sink and grain filling capacity. Field Crop Res 114:263–271CrossRef Rajala A, Hakala K, Mäkelä P, Muurinen S, Peltonen-Sainio P (2009) Spring wheat response to timing of water deficit through sink and grain filling capacity. Field Crop Res 114:263–271CrossRef
Zurück zum Zitat Ratjen AM, Kage H (2016) Modelling N and dry matter partitioning between leaf and stem of wheat under varying N supply. J Agro Crop Sci 202:576–586CrossRef Ratjen AM, Kage H (2016) Modelling N and dry matter partitioning between leaf and stem of wheat under varying N supply. J Agro Crop Sci 202:576–586CrossRef
Zurück zum Zitat Raza S, Saleem MF, Khan IH, Jamil M, Ijaz M, Khan MA (2012) Evaluating the drought stress tolerance efficiency of wheat (Triticum aestivum L.) cultivars. Russ J Agric Soc Econ Sci 12(12):41-46. Raza S, Saleem MF, Khan IH, Jamil M, Ijaz M, Khan MA (2012) Evaluating the drought stress tolerance efficiency of wheat (Triticum aestivum L.) cultivars. Russ J Agric Soc Econ Sci 12(12):41-46.
Zurück zum Zitat Raza MAS, Saleem MF, Shah GM, Khan IH, Raza A (2014) Exogenous application of glycinebetaine and potassium for improving water relations and grain yield of wheat under drought. J Soil Sci Plant Nutr 14:348–364 Raza MAS, Saleem MF, Shah GM, Khan IH, Raza A (2014) Exogenous application of glycinebetaine and potassium for improving water relations and grain yield of wheat under drought. J Soil Sci Plant Nutr 14:348–364
Zurück zum Zitat Saeidi M, Abdoli M (2015) Effect of drought stress during grain filling on yield and its components, gas exchange variables, and some physiological traits of wheat cultivars. J Agric Sciand Tech 17:885–898 Saeidi M, Abdoli M (2015) Effect of drought stress during grain filling on yield and its components, gas exchange variables, and some physiological traits of wheat cultivars. J Agric Sciand Tech 17:885–898
Zurück zum Zitat Sangakkara UR, Hartwig A, Nösberger J (1996) Response of root branching and shoot water potentials of french beans (Phaseolus vulgaris L.) to soil moisture and fertilizer potassium. J Agron Crop Sci 177:165–173CrossRef Sangakkara UR, Hartwig A, Nösberger J (1996) Response of root branching and shoot water potentials of french beans (Phaseolus vulgaris L.) to soil moisture and fertilizer potassium. J Agron Crop Sci 177:165–173CrossRef
Zurück zum Zitat Scholander PF, Bradstreet ED, Hemmingsen EA, Hammel T (1965) Sap pressure in vascular plants: negative hydrostatic pressure can be measured in plants. Science 148:339–346PubMedCrossRef Scholander PF, Bradstreet ED, Hemmingsen EA, Hammel T (1965) Sap pressure in vascular plants: negative hydrostatic pressure can be measured in plants. Science 148:339–346PubMedCrossRef
Zurück zum Zitat Schonfeld MA, Johnson RC, Carver B, Mornhinweg DW (1988) Water relations in winter wheat as drought resistance indicators. Crop Sci 28:526–531CrossRef Schonfeld MA, Johnson RC, Carver B, Mornhinweg DW (1988) Water relations in winter wheat as drought resistance indicators. Crop Sci 28:526–531CrossRef
Zurück zum Zitat Shah SH, Houborg R, McCabe M (2017) Response of chlorophyll, carotenoid and SPAD-502 measurement to salinity and nutrient stress in wheat (Triticum aestivum L.). Agrono 7:61CrossRef Shah SH, Houborg R, McCabe M (2017) Response of chlorophyll, carotenoid and SPAD-502 measurement to salinity and nutrient stress in wheat (Triticum aestivum L.). Agrono 7:61CrossRef
Zurück zum Zitat Shahid MA, Balal RM, Pervez MA, Abbas T, Aqeel MA, Riaz A, Mattson NS (2015) Exogenous 24-epibrassinolide elevates the salt tolerance potential of pea (Pisum sativum L.) by improving osmotic adjustment capacity and leaf water relations. J Plant Nutrition 38:1050–1072CrossRef Shahid MA, Balal RM, Pervez MA, Abbas T, Aqeel MA, Riaz A, Mattson NS (2015) Exogenous 24-epibrassinolide elevates the salt tolerance potential of pea (Pisum sativum L.) by improving osmotic adjustment capacity and leaf water relations. J Plant Nutrition 38:1050–1072CrossRef
Zurück zum Zitat Shao HB, Chu LY, Jaleel CA, Zhao CX (2008) Water-deficit stress-induced anatomical changes in higher plants. Comptes Rendus Biol 331:215–225CrossRef Shao HB, Chu LY, Jaleel CA, Zhao CX (2008) Water-deficit stress-induced anatomical changes in higher plants. Comptes Rendus Biol 331:215–225CrossRef
Zurück zum Zitat Shao HB, Chu LY, Jaleel CA, Manivannan P, Panneerselvam R, Shao MA (2009) Understanding water deficit stress-induced changes in the basic metabolism of higher plants-biotechnologically and sustainably improving agriculture and the ecoenvironment in arid regions of the globe. Crit Rev Biotech 29:131–151CrossRef Shao HB, Chu LY, Jaleel CA, Manivannan P, Panneerselvam R, Shao MA (2009) Understanding water deficit stress-induced changes in the basic metabolism of higher plants-biotechnologically and sustainably improving agriculture and the ecoenvironment in arid regions of the globe. Crit Rev Biotech 29:131–151CrossRef
Zurück zum Zitat Steel RGD, Torrie J, Dickey DA (1997) Principles and procedures of statistics: a biometrical approach, 3rd edn. McGraw Hill, New York, pp 400–428 Steel RGD, Torrie J, Dickey DA (1997) Principles and procedures of statistics: a biometrical approach, 3rd edn. McGraw Hill, New York, pp 400–428
Zurück zum Zitat Tardieu F, Simonneau T, Muller B (2018) The physiological basis of drought tolerance in crop plants: a scenario-dependent probabilistic approach. Annu Rev Plant Biol 69:733–759PubMedCrossRef Tardieu F, Simonneau T, Muller B (2018) The physiological basis of drought tolerance in crop plants: a scenario-dependent probabilistic approach. Annu Rev Plant Biol 69:733–759PubMedCrossRef
Zurück zum Zitat Tasmina T, Khan AR, Karim A, Akter N, Islam R (2016) Physiological changes of wheat varieties under water deficit condition. Bangladesh Agron J 19:105–114CrossRef Tasmina T, Khan AR, Karim A, Akter N, Islam R (2016) Physiological changes of wheat varieties under water deficit condition. Bangladesh Agron J 19:105–114CrossRef
Zurück zum Zitat Tatar Ö, Brück H, Asch FO (2016) Photosynthesis and remobilization of dry matter in wheat as affected by progressive drought stress at stem elongation stage. J Agron Crop Sci 202:292–299CrossRef Tatar Ö, Brück H, Asch FO (2016) Photosynthesis and remobilization of dry matter in wheat as affected by progressive drought stress at stem elongation stage. J Agron Crop Sci 202:292–299CrossRef
Zurück zum Zitat Thapa S, Reddy SK, Fuentealba MP, Xue Q, Rudd JC, Jessup KE, Liu S (2018) Physiological responses to water stress and yield of winter wheat cultivars differing in drought tolerance. J Agron Crop Sci 204:347–358CrossRef Thapa S, Reddy SK, Fuentealba MP, Xue Q, Rudd JC, Jessup KE, Liu S (2018) Physiological responses to water stress and yield of winter wheat cultivars differing in drought tolerance. J Agron Crop Sci 204:347–358CrossRef
Zurück zum Zitat Turner NC, O’Toole JC, Cruz RT, Namuco OS, Ahmad S (1986) Responses of seven diverse rice cultivars to water deficits I. Stress development, canopy temperature, leaf rolling and growth. Field Crops Res 13:257–271CrossRef Turner NC, O’Toole JC, Cruz RT, Namuco OS, Ahmad S (1986) Responses of seven diverse rice cultivars to water deficits I. Stress development, canopy temperature, leaf rolling and growth. Field Crops Res 13:257–271CrossRef
Zurück zum Zitat Varga B, Vida G, Varga-László E, Bencze S, Veisz O (2015) Effect of simulating drought in various phenophases on the water use efficiency of winter wheat. J Agron Crop Sci 201:1–9CrossRef Varga B, Vida G, Varga-László E, Bencze S, Veisz O (2015) Effect of simulating drought in various phenophases on the water use efficiency of winter wheat. J Agron Crop Sci 201:1–9CrossRef
Zurück zum Zitat Zareian A, Abad H, Hamidi A (2014) Yield, yield components and some physiological traits of three wheat (Triticum aestivum L.) cultivars under drought stress and potassium foliar application treatments. Int J Biosci 4:168–175 Zareian A, Abad H, Hamidi A (2014) Yield, yield components and some physiological traits of three wheat (Triticum aestivum L.) cultivars under drought stress and potassium foliar application treatments. Int J Biosci 4:168–175
Metadaten
Titel
Unraveling Wheat Grain Quality, Physiological Indices, Dry Matter Accumulation, and Attenuating Water Stress Adverse Effect Via Foliar Potassium Application at Different Growth Stages
verfasst von
Nawab Ali
Muhammad Mehran Anjum
Gul Roz Khan
Rovaid Ali
Publikationsdatum
14.10.2021
Verlag
Springer Berlin Heidelberg
Erschienen in
Journal of Crop Health / Ausgabe 1/2022
Print ISSN: 2948-264X
Elektronische ISSN: 2948-2658
DOI
https://doi.org/10.1007/s10343-021-00587-x

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