94
A. Chanda et al.
10 Recommendations
– Integrate multidisciplinary sciences to solve climate change problem.
– Increase the awareness of farmers through media and directed workshops.
– Use Information and Communication Technology for precision farming and smart
decision.
– Decision support should include local, regional, national and international levels.
References
1. IPCC: Climate Change (2014) Mitigation of climate change. In: Edenhofer O, Pichs-Madruga
R, Sokona Y, Farahani E, Kadner S, Seyboth K, Adler A, Baum I, Brunner S, Eickemeier P,
Kriemann B, Savolainen J, Schlömer S, von Stechow C, Zwickel T, Minx JC (eds) Contribution
of working group III to the fifth assessment report of the intergovernmental panel on climate
change. Cambridge University Press, Cambridge
2. FAO (2016) Climate change and food security: risks and responses
3. Kauserud H et al (2012) Warming-induced shift in European mushroom fruiting phenology.
Proc Natl Acad Sci 109:14488–14493
4. Millar NS, Bennett AE (2016) Stressed out symbiotes: hypotheses for the influence of abiotic
stress on arbuscular mycorrhizal fungi. Oecologia 182:625–641
5. Compant S, Van Der Heijden MG, Sessitsch A (2010) Climate change effects on beneficial
plant–microorganism interactions. FEMS Microbiol Ecol 73:197–214
6. Fransson PM, Taylor AF, Finlay RD (2005) Mycelial production, spread and root colonisation
by the ectomycorrhizal fungi Hebeloma crustuliniforme and Paxillus involutus under elevated
atmospheric CO 2 Mycorrhiza 15:25–31
7. Allison SD, Treseder KK (2011) Climate change feedbacks to microbial decomposition in
boreal soils. Fungal Ecol 4:362–374
8. Dickie IA et al (2017) The emerging science of linked plant-fungal invasions. New Phytol
215:1314–1332. https://doi.org/10.1111/nph.14657
9. Leonard S, Hommais F, Nasser W, Reverchon S (2017) Plant-phytopathogen interactions: bacterial responses to environmental and plant stimuli. Environ Microbiol 19:1689–1716. https://
doi.org/10.1111/1462-2920.13611
10. Peyraud R, Dubiella U, Barbacci A, Genin S, Raffaele S, Roby D (2017) Advances on plantpathogen interactions from molecular toward systems biology perspectives. Plant J 90:720–737.
https://doi.org/10.1111/tpj.13429
11. Trebicki P, Dader B, Vassiliadis S, Fereres A (2017) Insect-plant-pathogen interactions as
shaped by future climate: effects on biology, distribution, and implications for agriculture.
Insect Sci 24:975–989. https://doi.org/10.1111/1744-7917.12531
12. McDonald MC, Solomon PS (2018) Just the surface: advances in the discovery and characterization of necrotrophic wheat effectors. Curr Opin Microbiol 46:14–18. https://doi.org/10.
1016/j.mib.2018.01.019
13. Manning WJ, Tiedemann AV (1995) Climate change: potential effects of increased atmospheric carbon dioxide (CO 2 ), ozone (O 3 ), and ultraviolet-B (UV-B) radiation on plant diseases.
Environ Pollut 88:219–245
14. Nickstadt A et al. (2004) The jasmonate-insensitive mutant jin1 shows increased resistance to
biotrophic as well as necrotrophic pathogens. Mol Plant Pathol 5:425–434. https://doi.org/10.
1111/j.1364-3703.2004.00242.x
15. Sandermann H Jr (2000) Ozone/biotic disease interactions: molecular biomarkers as a new
experimental tool. Environ Pollut 108:327–332
A. Chanda et al.
10 Recommendations
– Integrate multidisciplinary sciences to solve climate change problem.
– Increase the awareness of farmers through media and directed workshops.
– Use Information and Communication Technology for precision farming and smart
decision.
– Decision support should include local, regional, national and international levels.
References
1. IPCC: Climate Change (2014) Mitigation of climate change. In: Edenhofer O, Pichs-Madruga
R, Sokona Y, Farahani E, Kadner S, Seyboth K, Adler A, Baum I, Brunner S, Eickemeier P,
Kriemann B, Savolainen J, Schlömer S, von Stechow C, Zwickel T, Minx JC (eds) Contribution
of working group III to the fifth assessment report of the intergovernmental panel on climate
change. Cambridge University Press, Cambridge
2. FAO (2016) Climate change and food security: risks and responses
3. Kauserud H et al (2012) Warming-induced shift in European mushroom fruiting phenology.
Proc Natl Acad Sci 109:14488–14493
4. Millar NS, Bennett AE (2016) Stressed out symbiotes: hypotheses for the influence of abiotic
stress on arbuscular mycorrhizal fungi. Oecologia 182:625–641
5. Compant S, Van Der Heijden MG, Sessitsch A (2010) Climate change effects on beneficial
plant–microorganism interactions. FEMS Microbiol Ecol 73:197–214
6. Fransson PM, Taylor AF, Finlay RD (2005) Mycelial production, spread and root colonisation
by the ectomycorrhizal fungi Hebeloma crustuliniforme and Paxillus involutus under elevated
atmospheric CO 2 Mycorrhiza 15:25–31
7. Allison SD, Treseder KK (2011) Climate change feedbacks to microbial decomposition in
boreal soils. Fungal Ecol 4:362–374
8. Dickie IA et al (2017) The emerging science of linked plant-fungal invasions. New Phytol
215:1314–1332. https://doi.org/10.1111/nph.14657
9. Leonard S, Hommais F, Nasser W, Reverchon S (2017) Plant-phytopathogen interactions: bacterial responses to environmental and plant stimuli. Environ Microbiol 19:1689–1716. https://
doi.org/10.1111/1462-2920.13611
10. Peyraud R, Dubiella U, Barbacci A, Genin S, Raffaele S, Roby D (2017) Advances on plantpathogen interactions from molecular toward systems biology perspectives. Plant J 90:720–737.
https://doi.org/10.1111/tpj.13429
11. Trebicki P, Dader B, Vassiliadis S, Fereres A (2017) Insect-plant-pathogen interactions as
shaped by future climate: effects on biology, distribution, and implications for agriculture.
Insect Sci 24:975–989. https://doi.org/10.1111/1744-7917.12531
12. McDonald MC, Solomon PS (2018) Just the surface: advances in the discovery and characterization of necrotrophic wheat effectors. Curr Opin Microbiol 46:14–18. https://doi.org/10.
1016/j.mib.2018.01.019
13. Manning WJ, Tiedemann AV (1995) Climate change: potential effects of increased atmospheric carbon dioxide (CO 2 ), ozone (O 3 ), and ultraviolet-B (UV-B) radiation on plant diseases.
Environ Pollut 88:219–245
14. Nickstadt A et al. (2004) The jasmonate-insensitive mutant jin1 shows increased resistance to
biotrophic as well as necrotrophic pathogens. Mol Plant Pathol 5:425–434. https://doi.org/10.
1111/j.1364-3703.2004.00242.x
15. Sandermann H Jr (2000) Ozone/biotic disease interactions: molecular biomarkers as a new
experimental tool. Environ Pollut 108:327–332
