Shiferaw B, Smale M, Braun HJ, Duveiller E, Reynolds M, Muricho G (2013) Crops that feed the
world 10. Past successes and future challenges to the role played by wheat in global food
security. Food Secur 5:291–317
Siddiqui KA (1976) Synthetic amphyploids in breeding-genetic and evolutionary studies in wheat.
In: Muhammed A et al (eds) Genetic diversity in plants. Plenum Press, New York, pp 97–102
Singh S (2009) Variation in physiological traits for thermotolerance in wheat. Indian J Plant Physiol
14:407–412
Singh A, Singh D, Kang JS, Aggarwal N (2011) Management practices to mitigate the impact of
high temperature on wheat: a review. IIOABJ 2:11–22
Smertenko A, Draber P, Viklicky V, Opatrny Z (1997) Heat stress affects the organization of
microtubules and cell division in Nicotiana tabacum cells. Plant Cell Environ 20:1534–1542.
https://doi.org/10.1046/j.1365-3040.1997.d01-44.x
Smith KL (1996) Ohio agronomy guide for corn production. Ohio State University, Columbus, GA
Soliman WS, Fujimori M, Tase K, Sugiyama S (2011) Oxidative stress and physiological damage
under prolonged heat stress in C3 grass Lolium perenne. Grassl Sci 57:101–106. https://doi.org/
10.1111/grs.2011.57.issue-2
Stone P (2001) The effects of heat stress on cereal yield and quality. In: Basra AS (ed) Crop
responses and adaptations to temperature stress. Food Products Press, Binghamton, NY, pp
243–291
Suzuki N, Miller G, Morales J, Shulaev V, Torres MA (2011) Respiratory burst oxidases: the
engines of ROS signaling. Curr Opin Plant Biol 14:691–699
Suzuki N, Koussevitzky S, Mittler R, Miller G (2012) ROS and redox signalling in the response of
plants to abiotic stress. Plant Cell Environ 35:259–270
Taghizadeh R, Shrifi RS (2010) Effects of post anthesis heat stress on yield and yield attributes in
wheat (Triticum aestivum) genotypes. J Food Agric Environ 8:775–777
Talukder SK, Babar MA, Vijaylakshmi K, Poland J, Prasad PVV, Bowden R, Fritz A (2014)
Mapping QTL for the traits associated with heat tolerance in wheat (Triticum aestivum L.).
BMC Genet 15:97. https://doi.org/10.1186/s12863-014-0097-4
Tao ZQ, Chen YQ, LI C et al (2016) The causes and impacts for heat stress in spring maize during
grain filling in the North China plain - a review. J Integr Agric 15(12):2677–2687
Tester M, Langridge P (2010) Breeding technologies to increase crop production in a changing
world. Science 327:818–822
Tewolde H, Fernandez CJ, Erickson CA (2006) Wheat cultivars adapted to post-heading high
temperature stress. J Agron Crop Sci 192(2):111–120
Tiwari YK, Yadav SK (2019) High temperature stress tolerance in maize (Zea mays L.): physiological and molecular mechanisms. J Plant Biol 62:93–102. https://doi.org/10.1007/s12374018-0350-x
Trethowan RM, Mujeeb-Kazi A (2008) Novel germplasm resources for improving environmental
stress tolerance of hexaploid wheat. Crop Sci 48(4):1255–1265
Valluru R, Reynolds MP, Davies WJ, Sukumaran S (2017) Phenotypic and genome-wide association analysis of spike ethylene in diverse wheat genotypes under heat stress. New Phytol
214:271–283
Vijayalakshmi K, Fritz AK, Paulsen GM, Bai G, Pandravada S, Gill BS (2010) Modeling and
mapping QTL for senescence-related traits in winter wheat under high temperature. Mol Breed
26:163–175. https://doi.org/10.1007/s11032-009-9366-8
Viswanathan C, Khanna-Chopra R (2001) Effect of heat stress on grain growth, starch synthesis and
protein synthesis in grains of wheat (Triticum aestivum L.) varieties differing in grain weight
stability. J Agron Crop Sci 186:1–7
Wahid A, Gelani S, Ashraf M, Foolad M (2007) Heat tolerance in plants: an overview. Environ Exp
Bot 61:199–223
Wahid A, Sehar S, Perveen M, Gelani S, Basra SMA, Farooq M (2008) Seed pretreatment with
hydrogen peroxide improves heat tolerance in maize at germination and seedling growth stages.
Seed Sci Technol 36:633–645. https://doi.org/10.15258/sst.2008.36.3.13
3 Plant Morphological, Physiological Traits Associated with Adaptation Against. . .
79
world 10. Past successes and future challenges to the role played by wheat in global food
security. Food Secur 5:291–317
Siddiqui KA (1976) Synthetic amphyploids in breeding-genetic and evolutionary studies in wheat.
In: Muhammed A et al (eds) Genetic diversity in plants. Plenum Press, New York, pp 97–102
Singh S (2009) Variation in physiological traits for thermotolerance in wheat. Indian J Plant Physiol
14:407–412
Singh A, Singh D, Kang JS, Aggarwal N (2011) Management practices to mitigate the impact of
high temperature on wheat: a review. IIOABJ 2:11–22
Smertenko A, Draber P, Viklicky V, Opatrny Z (1997) Heat stress affects the organization of
microtubules and cell division in Nicotiana tabacum cells. Plant Cell Environ 20:1534–1542.
https://doi.org/10.1046/j.1365-3040.1997.d01-44.x
Smith KL (1996) Ohio agronomy guide for corn production. Ohio State University, Columbus, GA
Soliman WS, Fujimori M, Tase K, Sugiyama S (2011) Oxidative stress and physiological damage
under prolonged heat stress in C3 grass Lolium perenne. Grassl Sci 57:101–106. https://doi.org/
10.1111/grs.2011.57.issue-2
Stone P (2001) The effects of heat stress on cereal yield and quality. In: Basra AS (ed) Crop
responses and adaptations to temperature stress. Food Products Press, Binghamton, NY, pp
243–291
Suzuki N, Miller G, Morales J, Shulaev V, Torres MA (2011) Respiratory burst oxidases: the
engines of ROS signaling. Curr Opin Plant Biol 14:691–699
Suzuki N, Koussevitzky S, Mittler R, Miller G (2012) ROS and redox signalling in the response of
plants to abiotic stress. Plant Cell Environ 35:259–270
Taghizadeh R, Shrifi RS (2010) Effects of post anthesis heat stress on yield and yield attributes in
wheat (Triticum aestivum) genotypes. J Food Agric Environ 8:775–777
Talukder SK, Babar MA, Vijaylakshmi K, Poland J, Prasad PVV, Bowden R, Fritz A (2014)
Mapping QTL for the traits associated with heat tolerance in wheat (Triticum aestivum L.).
BMC Genet 15:97. https://doi.org/10.1186/s12863-014-0097-4
Tao ZQ, Chen YQ, LI C et al (2016) The causes and impacts for heat stress in spring maize during
grain filling in the North China plain - a review. J Integr Agric 15(12):2677–2687
Tester M, Langridge P (2010) Breeding technologies to increase crop production in a changing
world. Science 327:818–822
Tewolde H, Fernandez CJ, Erickson CA (2006) Wheat cultivars adapted to post-heading high
temperature stress. J Agron Crop Sci 192(2):111–120
Tiwari YK, Yadav SK (2019) High temperature stress tolerance in maize (Zea mays L.): physiological and molecular mechanisms. J Plant Biol 62:93–102. https://doi.org/10.1007/s12374018-0350-x
Trethowan RM, Mujeeb-Kazi A (2008) Novel germplasm resources for improving environmental
stress tolerance of hexaploid wheat. Crop Sci 48(4):1255–1265
Valluru R, Reynolds MP, Davies WJ, Sukumaran S (2017) Phenotypic and genome-wide association analysis of spike ethylene in diverse wheat genotypes under heat stress. New Phytol
214:271–283
Vijayalakshmi K, Fritz AK, Paulsen GM, Bai G, Pandravada S, Gill BS (2010) Modeling and
mapping QTL for senescence-related traits in winter wheat under high temperature. Mol Breed
26:163–175. https://doi.org/10.1007/s11032-009-9366-8
Viswanathan C, Khanna-Chopra R (2001) Effect of heat stress on grain growth, starch synthesis and
protein synthesis in grains of wheat (Triticum aestivum L.) varieties differing in grain weight
stability. J Agron Crop Sci 186:1–7
Wahid A, Gelani S, Ashraf M, Foolad M (2007) Heat tolerance in plants: an overview. Environ Exp
Bot 61:199–223
Wahid A, Sehar S, Perveen M, Gelani S, Basra SMA, Farooq M (2008) Seed pretreatment with
hydrogen peroxide improves heat tolerance in maize at germination and seedling growth stages.
Seed Sci Technol 36:633–645. https://doi.org/10.15258/sst.2008.36.3.13
3 Plant Morphological, Physiological Traits Associated with Adaptation Against. . .
79
