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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Effect of elevated CO2, high temperature, and water deficit on growth, photosynthesis, and whole plant water use efficiency of cocoa (Theobroma cacao L.)
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Effect of elevated CO2, high temperature, and water deficit on growth, photosynthesis, and whole plant water use efficiency of cocoa (Theobroma cacao L.)

机译:Cocoa(Theobroma Cacao L.)升高的CO2,高温和水资源缺乏效率的影响

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In this study, the response of 6-month-old cocoa (Theobroma cacao L.) seedlings to elevated CO2 concentration [ECO2], elevated temperature [ET], and their interaction with water deficit stress was studied in an open top chamber (OTC). Each OTC was maintained at chamber control (400 ppm CO2), [ECO2] 550 ppm, [ECO2] 700 ppm, ET 3 degrees C above chamber control, and ET 3 degrees C + [ECO2] 550 ppm. Inside each OTC, a set of plants received moisture at 100% FC, while the other set was at 50% FC, which was the water deficit stress treatment. Increasing the CO2 concentration in cocoa increased photosynthesis (Pn) by 27%, which resulted in high biomass accumulation, thus improving the whole plant water use efficiency (WUE). The impact of high temperature (T-max), around 39 degrees C in ET treatment against 36 degrees C in chamber control, is quite severe on Pn, leaf psi, and biomass accumulation. Similarly, water deficit at 50% FC resulted in the leaf psi reducing to - 14.06 bars at which Pn, leaf area, and biomass were significantly reduced. [ECO2] could ameliorate the negative effect of high temperature and water deficit stress to certain extent. However, the relative response of cocoa seedlings to [ECO2] in improving Pn, leaf psi, biomass, and WUE was greater under 50% FC compared to plants at 100% FC suggested additional advantage of [ECO2] to cocoa under water limited conditions.
机译:在该研究中,在开放的顶部室中研究了6个月左右的可可(CacoRoma CacaO L.)幼苗对CO 2浓度[ECO2],升高的温度ρ和水赤字应力的相互作用进行了响应。(OTC )。将每个OTC保持在腔室控制(400ppm CO2),[ECO2] 550ppm,[ECO2] 700ppm,ET 3摄氏度上方,ET 3℃+ [ECO2] 550ppm。在每个OTC内部,一组植物在100%Fc下接受水分,而另一组均为50%Fc,这是水缺陷应力处理​​。将Cocoa中的CO 2浓度增加了27%的光合作用(PN),导致生物量高,从而改善了整个植物用水效率(WUE)。高温(T-MAX)的影响,在腔室控制中对36摄氏度进行治疗约39摄氏度,在PN,叶PSI和生物质积累中非常严重。类似地,50%Fc的水缺损导致叶PSI减少至-14.06杆,其中PN,叶面积和生物质显着降低。 [Eco2]可以改善高温和水赤字压力的负面影响到一定程度。然而,与100%FC的植物相比,在改善Pn,叶PSI,生物质和Wue中改善Pn,叶PSI,生物质和Wue在改善Pn,叶PSI,生物质和Wue中的相对反应在50%Fc下,在水有限条件下将[Eco2]中的额外优点进行了额外的优势。

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