首页> 外文期刊>American Journal of Plant Sciences >Effect of 1-MCP on Gas Exchange and Carbohydrate Concentrations of the Cotton Flower and Subtending Leaf under Water-Deficit Stress
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Effect of 1-MCP on Gas Exchange and Carbohydrate Concentrations of the Cotton Flower and Subtending Leaf under Water-Deficit Stress

机译:1-MCP对缺水胁迫下棉花花和对叶的气体交换和碳水化合物浓度的影响

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Ethylene is an endogenous plant hormone that increases under adverse environmental conditions, resulting in leaf and fruit abscission and ultimately yield reduction. In cotton, however, the effects of water-deficit stress on ethylene production have been uncertain. In this study it was hypothesized that application of an ethylene inhibitor 1-Methylcyclo- propene (1-MCP) would prevent ethylene production and result in alleviation of water-deficit stress consequences on the physiology and metabolism of the cotton flower and subtending leaf. To test this hypothesis, growth chamber experiments were conducted in 2009-2010 with treatments consisting of (C) untreated well-watered control, (C + 1MCP) well-watered plus 1-MCP, (WS) untreated water-stressed control, and (WS + 1MCP) water-stressed plus 1-MCP. The plants were subjected to two consecutive drying cycles during flowering, approximately 8 weeks after planting, and 1-MCP was foliar applied at a rate of 10g. ai/ha at the beginning of each drying cycle. The results showed that 1-MCP application had no significant effect on gas exchange functions and did not prevent reductions from water stress in leaf photosynthesis, respiration and stomatal conductance. However, application of 1-MCP resulted in a decrease in sucrose content of water-stressed pistils compared to the control indicating that 1-MCP has the potential to interfere in carbohydrate metabolism of reproductive units.
机译:乙烯是一种内源性植物激素,在不利的环境条件下会增加,导致叶片和果实脱落,最终导致产量下降。然而,在棉花中,缺水胁迫对乙烯生产的影响尚不确定。在这项研究中,假设使用乙烯抑制剂1-甲基环丙烯(1-MCP)可以防止乙烯的产生,并减轻缺水胁迫对棉花花和对叶的生理和代谢的影响。为了验证这一假设,2009-2010年进行了生长室实验,处理包括(C)未经处理的水分充足的对照,(C + 1MCP)灌溉良好的1-MCP,(WS)未经处理的水分胁迫的对照和(WS + 1MCP)受水加1-MCP。在开花期间,大约在种植后8周,对植物进行两次连续的干燥循环,并以10g的量叶面施用1-MCP。在每个干燥周期的开始时ai / ha。结果表明,施用1-MCP对气体交换功能没有显着影响,并且不能防止水分胁迫降低叶片光合作用,呼吸和气孔导度。然而,与对照相比,施用1-MCP导致水分胁迫的雌蕊的蔗糖含量降低,这表明1-MCP具有干扰生殖单位的碳水化合物代谢的潜力。

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