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High nighttime temperatures affect rice productivity through altered pollen germination and spikelet fertility.

机译:夜间高温会通过改变花粉的发芽率和小穗的繁殖力来影响水稻的生产力。

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摘要

Seasonally high nighttime temperatures (HNTs) along the United States Gulf Coast and in regions of similar climate, occurring during the critical stages of development, reduce rice (Oryza sativa L.) yield and quality. The objective of this study was to determine the effects of HNT and preventive exogenous effectors ( alpha -tocopherol, glycine betaine and salicylic acid) on growth, development, physiology and yield of rice plants. Plants were subjected to ambient nighttime temperature (ANT) (27 degrees C) or HNT (32 degrees C) through use of continuously controlled infrared heaters, starting from 2000 h until 0600 h. The HNT did not affect leaf photosynthetic rates; however, profound effects on chlorophyll content, leaf nitrogen content, percent pollen germination and spikelet fertility were observed. In addition, HNT hastened plant development rates, as indicated by the panicle emergence date. Plants grown under HNT showed a 90% decrease in yield compared to plants grown under ANT. Dry matter partitioning to the grains of cv. Cocodrie decreased under HNT mainly due to effects on pollen germination and spikelet fertility, but not photosynthesis. Our findings indicate that exogenous application of salicylic acid reduced the negative effects of HNT by 16%.
机译:在开发的关键阶段,美国墨西哥湾沿岸和气候相似地区的夜间夜间高温(HNT)会降低稻米(Oryza sativa L.)的产量和品质。这项研究的目的是确定HNT和预防性外源效应物(α-生育酚,甘氨酸甜菜碱和水杨酸)对水稻植物生长,发育,生理和产量的影响。从2000h到0600h开始,通过使用连续控制的红外加热器,使植物经受环境夜间温度(ANT)(27摄氏度)或HNT(32摄氏度)。 HNT不会影响叶片的光合速率。然而,对叶绿素含量,叶片氮含量,花粉发芽率和小穗育性有深远影响。此外,如穗出现日期所示,HNT加快了植物发育速度。与在ANT下生长的植物相比,在HNT下生长的植物显示出90%的产量降低。干物质分配到简历的谷物。 HNT下的Cocodrie减少主要是由于对花粉萌发和小穗育性的影响,但不影响光合作用。我们的发现表明,水杨酸的外源施用可将HNT的负面影响降低16%。

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