Cardone MF, D’Addabbo P, Alkan C, Bergamini C, Catacchio CR, Anaclerio F, Chiatante G,
Marra A, Giannuzzi G, Perniola R, Ventura M, Antonacci D (2016) Inter-varietal structural
variation in grapevine genomes. Plant J 88:648–661
Chadha KL (2015) Global climate change and Indian horticulture, climate dynamics in horticultural
science. In: Chaudhary ML, Patel VB, Siddiqui MW, Verma RB (eds) Impact, adaptation and
mitigation, vol. 2, vol 2. Apple Academic Press, Hoboken, p 351
Chen Q (2012) Adaptation and mitigation of impact of climate change on tropical fruit industry in
China. Acta Hortic 928:101–104
Choudhary ML, Patel VB, Siddiqui MW, Mahsi SS (2015) Climate dynamics in horticultural
science, vol. I: principles and applications. Apple Academic Press, Toronto
Coombe B (1987) Influence of temperature on composition and quality of grapes. Proceedings of
the international symposium on grapevine canopy and vigor management. Acta Hortiic 206
(22):23–35
Crossa J, Pérez-Rodríguez P, Cuevas J, Montesinos-López O, Jarquín D (2017) Genomic selection
in plant breeding: methods, models, and perspectives. Trends Plant Sci 22:961–975
Daugherty MP, Bosco D, Almeida RPP (2009) Temperature mediates vector transmission efficiency: inoculum supply and plant infection dynamics. Ann Appl Biol 155:361–369
Davanport TL (2009) Reproductive physiology. In: Litz RE (ed) The mango: botany, production
and uses, 2nd edn. CABI, Wallingford
Dubrovina AS, Aleynova OA, Manyakhin AY, Kiselev KV (2018) The role of calcium dependent
protein kinase genes CPK16, CPK25, CPK30 and CPK32 in stilbene biosynthesis and the stress
resistance of grapevine Vitis amurensis Rupr. Appl Biochem Microbiol 54:410–417
Feller U, Vaseva II (2014) Extreme climatic events: impacts of drought and high temperature on
physiological processes in agronomically important plants. Front Environ Sci 2:39
Fich EA, Segerson NA, Rose JKC (2016) The plant polyester cutin: biosynthesis, structure, and
biological roles. Annu Rev Plant Biol 67:207–233
Flachowsky H, Szankowski I, Waidmann S, Peil A, Tränkner C (2012) The MdTFL1 gene of apple
(Malus  domestica Borkh.) reduces vegetative growth and generation time. Tree Physiol
32:1288–1301
Fronza D, Jonas JH, Both V, Rogério de Oliveira A, Meyer EA (2018) Pecan cultivation: general
aspects. Ciênc Rural Santa Maria 48(2):1–9. https://doi.org/10.1590/0103-8478cr20170179
Fujisawa M, Kobayashi K (2013) Shifting from apple to peach farming in Kazuno, northern Japan:
perceptions of and responses to climatic and nonclimatic impacts. Reg Environ Chang. https://
doi.org/10.1007/s10113-0130434-6
García-Luis A, Duarte AMM, Porras I (1994) Fruit splitting in ‘Nova’ hybrid mandarin in relation
to the anatomy of the fruit and fruit set treatments. Sci Hortic 57(3):215–231
Geng D, Chen P, Shen X, Zhang Y, Li X (2018) MdMYB88 and MdMYB124 enhance drought
tolerance by modulating root vessels and cell walls in apple. Plant Physiol 178:1296–1309
Ghosh SP (2000) In: Govindasamy B, Duffy B, Coquard J (eds) Status report on genetic resources
of jackfruit in India and SE Asia. IPGRI, New Delhi
Hale CR, Buttrose MS (1974) Effect of temperature on ontogeny of berries of Vitis vinifera L. cv.
Cabernet Sauvignon. J Am Soc Hortic Sci 99:390–394
Hancock JF, Scorza R, Lobos GA (2014) Peaches. In: Temperate fruit crop breeding: germplasm to
genomics. Springer/Kluwer, Dordrecht
Haq N (2006) Fruits for the future 10. Jackfruit (Artocarpus heterophyllus) Southampton Centre for
Underutilised Crops, pp 192
He R, Zhuang Y, Cai Y, Agüero CB, Liu S, Wu J, Deng S, Walker MA, Lu J, Zhang Y (2018)
Overexpression of 9-cis-epoxycarotenoid dioxygenase cisgene in grapevine increases drought
tolerance and results in pleiotropic effects. Front Plant Sci 9:970
Horvath DP, Anderson JV, Chao WS, Foley ME (2003) Knowing when to grow: signals regulating
bud dormancy. Trends Plant Sci 8:534–540
4 Impact of Climate Change and Adaptation Strategies for Fruit Crops
95
Marra A, Giannuzzi G, Perniola R, Ventura M, Antonacci D (2016) Inter-varietal structural
variation in grapevine genomes. Plant J 88:648–661
Chadha KL (2015) Global climate change and Indian horticulture, climate dynamics in horticultural
science. In: Chaudhary ML, Patel VB, Siddiqui MW, Verma RB (eds) Impact, adaptation and
mitigation, vol. 2, vol 2. Apple Academic Press, Hoboken, p 351
Chen Q (2012) Adaptation and mitigation of impact of climate change on tropical fruit industry in
China. Acta Hortic 928:101–104
Choudhary ML, Patel VB, Siddiqui MW, Mahsi SS (2015) Climate dynamics in horticultural
science, vol. I: principles and applications. Apple Academic Press, Toronto
Coombe B (1987) Influence of temperature on composition and quality of grapes. Proceedings of
the international symposium on grapevine canopy and vigor management. Acta Hortiic 206
(22):23–35
Crossa J, Pérez-Rodríguez P, Cuevas J, Montesinos-López O, Jarquín D (2017) Genomic selection
in plant breeding: methods, models, and perspectives. Trends Plant Sci 22:961–975
Daugherty MP, Bosco D, Almeida RPP (2009) Temperature mediates vector transmission efficiency: inoculum supply and plant infection dynamics. Ann Appl Biol 155:361–369
Davanport TL (2009) Reproductive physiology. In: Litz RE (ed) The mango: botany, production
and uses, 2nd edn. CABI, Wallingford
Dubrovina AS, Aleynova OA, Manyakhin AY, Kiselev KV (2018) The role of calcium dependent
protein kinase genes CPK16, CPK25, CPK30 and CPK32 in stilbene biosynthesis and the stress
resistance of grapevine Vitis amurensis Rupr. Appl Biochem Microbiol 54:410–417
Feller U, Vaseva II (2014) Extreme climatic events: impacts of drought and high temperature on
physiological processes in agronomically important plants. Front Environ Sci 2:39
Fich EA, Segerson NA, Rose JKC (2016) The plant polyester cutin: biosynthesis, structure, and
biological roles. Annu Rev Plant Biol 67:207–233
Flachowsky H, Szankowski I, Waidmann S, Peil A, Tränkner C (2012) The MdTFL1 gene of apple
(Malus  domestica Borkh.) reduces vegetative growth and generation time. Tree Physiol
32:1288–1301
Fronza D, Jonas JH, Both V, Rogério de Oliveira A, Meyer EA (2018) Pecan cultivation: general
aspects. Ciênc Rural Santa Maria 48(2):1–9. https://doi.org/10.1590/0103-8478cr20170179
Fujisawa M, Kobayashi K (2013) Shifting from apple to peach farming in Kazuno, northern Japan:
perceptions of and responses to climatic and nonclimatic impacts. Reg Environ Chang. https://
doi.org/10.1007/s10113-0130434-6
García-Luis A, Duarte AMM, Porras I (1994) Fruit splitting in ‘Nova’ hybrid mandarin in relation
to the anatomy of the fruit and fruit set treatments. Sci Hortic 57(3):215–231
Geng D, Chen P, Shen X, Zhang Y, Li X (2018) MdMYB88 and MdMYB124 enhance drought
tolerance by modulating root vessels and cell walls in apple. Plant Physiol 178:1296–1309
Ghosh SP (2000) In: Govindasamy B, Duffy B, Coquard J (eds) Status report on genetic resources
of jackfruit in India and SE Asia. IPGRI, New Delhi
Hale CR, Buttrose MS (1974) Effect of temperature on ontogeny of berries of Vitis vinifera L. cv.
Cabernet Sauvignon. J Am Soc Hortic Sci 99:390–394
Hancock JF, Scorza R, Lobos GA (2014) Peaches. In: Temperate fruit crop breeding: germplasm to
genomics. Springer/Kluwer, Dordrecht
Haq N (2006) Fruits for the future 10. Jackfruit (Artocarpus heterophyllus) Southampton Centre for
Underutilised Crops, pp 192
He R, Zhuang Y, Cai Y, Agüero CB, Liu S, Wu J, Deng S, Walker MA, Lu J, Zhang Y (2018)
Overexpression of 9-cis-epoxycarotenoid dioxygenase cisgene in grapevine increases drought
tolerance and results in pleiotropic effects. Front Plant Sci 9:970
Horvath DP, Anderson JV, Chao WS, Foley ME (2003) Knowing when to grow: signals regulating
bud dormancy. Trends Plant Sci 8:534–540
4 Impact of Climate Change and Adaptation Strategies for Fruit Crops
95
