首页> 美国卫生研究院文献>Annals of Botany >Moderate Increase of Mean Daily Temperature Adversely Affects Fruit Set of Lycopersicon esculentum by Disrupting Specific Physiological Processes in Male Reproductive Development
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Moderate Increase of Mean Daily Temperature Adversely Affects Fruit Set of Lycopersicon esculentum by Disrupting Specific Physiological Processes in Male Reproductive Development

机译:日平均温度的适度升高会破坏男性生殖发育中的特定生理过程从而不利地影响番茄的结实。

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摘要

• Background and Aims Global warming is gaining significance as a threat to natural and managed ecosystems since temperature is one of the major environmental factors affecting plant productivity. Hence, the effects of moderate temperature increase on the growth and development of the tomato plant (Lycopersicon esculentum) were investigated.• Methods Plants were grown at 32/26 °C as a moderately elevated temperature stress (METS) treatment or at 28/22 °C (day/night temperatures) as a control with natural light conditions. Vegetative growth and reproductive development as well as sugar content and metabolism, proline content and translocation in the androecium were investigated.• Key Results METS did not cause a significant change in biomass, the number of flowers, or the number of pollen grains produced, but there was a significant decrease in the number of fruit set, pollen viability and the number of pollen grains released. Glucose and fructose contents in the androecium (i.e. all stamens from one flower) were generally higher in the control than METS, but sucrose was higher in METS. Coincidently, the mRNA transcript abundance of acid invertase in the androecium was decreased by METS. Proline contents in the androecium were almost the same in the control and METS, while the mRNA transcript level of proline transporter 1, which expresses specifically at the surface of microspores, was significantly decreased by METS.• Conclusions The research indicated that failure of tomato fruit set under a moderately increased temperature above optimal is due to the disruption of sugar metabolism and proline translocation during the narrow window of male reproductive development.
机译:•背景和目标由于温度是影响植物生产力的主要环境因素之一,全球变暖正日益成为对自然生态系统和自然生态系统的威胁。因此,研究了温度适度升高对番茄植株生长和发育的影响。•方法将植物在32/26 C的温度下以中等高温胁迫(METS)处理或在28/22时生长°C(白天/夜晚的温度)作为自然光照条件下的对照。研究了雄蕊的营养生长和生殖发育以及糖含量和代谢,脯氨酸含量和易位。•主要结果METS并未引起生物量,花朵数量或花粉粒数量的显着变化,但坐果数,花粉生存力和释放的花粉粒数量显着减少。对照中雄蕊(即一朵花的所有雄蕊)中的葡萄糖和果糖含量通常比METS高,但是在METS中蔗糖更高。巧合的是,通过METS降低了雄蕊中酸性转化酶的mRNA转录丰度。 METS显着降低了雄蕊中脯氨酸的含量,而对照和METS中的脯氨酸含量几乎相同,而脯氨酸转运蛋白1的mRNA转录水平在小孢子表面上特别表达。在高于最佳温度的适度升高温度下设定温度是由于在男性生殖发育的狭窄窗口期间糖代谢和脯氨酸移位受到破坏。

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