Plant tolerance to high temperature in a changing environment: scientific fundamentals and production of heat stress-tolerant crops

Толерантность растений к высоким температурам в изменяющейся окружающей среде: научные основы и создание сельскохозяйственных культур, устойчивых к тепловому стрессу
Craita E. Bita, Tom Gerats
2013-01-01

crop productivityglobal climate changeheat stress toleranceheat-tolerant cropsplant physiology
Global warming is predicted to have a general negative effect on plant growth due to the damaging effect of high temperatures on plant development. The increasing threat of climatological extremes including very high temperatures might lead to catastrophic loss of crop productivity and result in wide spread famine. In this review, we assess the impact of global climate change on the agricultural crop production. There is a differential effect of climate change both in terms of geographic location and the crops that will likely show the most extreme reductions in yield as a result of expected extreme fluctuations in temperature and global warming in general. High temperature stress has a wide range of effects on plants in terms of physiology, biochemistry and gene regulation pathways. However, strategies exist to crop improvement for heat stress tolerance. In this review, we present recent advances of research on all these levels of investigation and focus on potential leads that may help to understand more fully the mechanisms that make plants tolerant or susceptible to heat stress. Finally, we review possible procedures and methods which could lead to the generation of new varieties with sustainable yield production, in a world likely to be challenged both by increasing population, higher average temperatures and larger temperature fluctuations.
1
Breeding and other crop-improvement strategies could generate heat-tolerant varieties capable of sustaining yields under higher temperatures and greater climatic variability.
2
Climate-change impacts on crop yields vary geographically and among crop species, with some facing particularly severe reductions under temperature fluctuations.
3
Global warming and increasing temperature extremes are expected to reduce plant growth and crop productivity, potentially causing severe food-security consequences.
4
High-temperature stress affects plants across physiological, biochemical, and gene-regulatory processes, producing diverse mechanisms of heat damage.
5
Research advances have identified mechanisms that contribute to plant heat-stress tolerance or susceptibility, providing targets for crop improvement.

Agricultural crop plants (crops) exposed to high temperature / heat stress

the physiological, biochemical, and gene-regulatory mechanisms of heat-stress tolerance or susceptibility and their implications for sustaining crop yield

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2013-01-01
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Craita E. Bita
Tom Gerats
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