Temperature extremes: Effect on plant growth and development
Экстремальные температуры: влияние на рост и развитие растений
2015-08-10
SCID: 54.1/qqt7ydwy
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maize grain yieldphenological stagesplant developmentpollinationtemperature extremes
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Abstract (AI)
Temperature is a primary factor affecting the rate of plant development. Warmer temperatures expected with climate change and the potential for more extreme temperature events will impact plant productivity. Pollination is one of the most sensitive phenological stages to temperature extremes across all species and during this developmental stage temperature extremes would greatly affect production. Few adaptation strategies are available to cope with temperature extremes at this developmental stage other than to select for plants which shed pollen during the cooler periods of the day or are indeterminate so flowering occurs over a longer period of the growing season. In controlled environment studies, warm temperatures increased the rate of phenological development; however, there was no effect on leaf area or vegetative biomass compared to normal temperatures. The major impact of warmer temperatures was during the reproductive stage of development and in all cases grain yield in maize was significantly reduced by as much as 80−90% from a normal temperature regime. Temperature effects are increased by water deficits and excess soil water demonstrating that understanding the interaction of temperature and water will be needed to develop more effective adaptation strategies to offset the impacts of greater temperature extreme events associated with a changing climate.
Key Findings
1
Available adaptation strategies are limited, mainly involving cooler-period pollen shedding or indeterminate flowering over longer seasons.
2
Pollination is the most temperature-sensitive phenological stage across species, with extremes strongly reducing production.
3
Reproductive development was most severely affected: maize grain yield declined by as much as 80–90% under elevated temperatures, with impacts intensified by water deficits or excess soil water.
4
Temperature is a primary determinant of plant developmental rate, and climate-driven warming may alter productivity through more frequent extremes.
5
Warm temperatures accelerated phenological development without affecting leaf area or vegetative biomass under controlled conditions.
Research Object
Plant growth and development, particularly maize reproductive development under temperature extremes and varying water availability
Research Subject
Effects of temperature extremes and their interactions with water availability on phenological development, pollination, and grain yield
Publication Details
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2015-08-10
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