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Photosynthetic Physiology Characteristics of Potato {Solatium Tuberosum) at Tuber Initiation Responses to Water Deficit Regulated with Mulched Drip Irrigation

机译:用覆盖滴灌灌溉对块茎起始反应的土豆含量的光合生理特征

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An experiment was conducted to determine the effect of water deficit regulated with mulched drip irrigation on photosynthetic physiology characteristics at potato tuber initiation in an arid environment. The results indicated that potato leaf photosynthetic rate (PR), transpiration rate (TR) and stomatal conductance (SC) at tuber initiation were greatly affected by water deficii regulated with mulched drip irrigation. Daily PR varied with a double-peak curve within a day ai tuber initiation. The TR increased sharply after 7:00 and the maximum was marked at 13:00 in all the treatments and CK at tuber initiation, then started to decrease, and TR also decreased with soil water deficit level increase, so was SC performance. Significant positive relations (p<0.01. r=0.310**) was found between leaf water use efficiency (WUE) and PR at potato tuber initiation, but significant negative relation between WUE and TR (p<0.01, r=-0.534**) and that betweer. WUE and SC (p<0.01, r=-0.527**) also occurred. Therefore, proper levels of water deficii regulated with mulched drip irrigation could be used to effectively regulate crop photosynthetk physiology characteristics at potato tuber initiation in an arid environment.
机译:进行实验以确定与膜下滴灌光合生理特性在马铃薯块茎起始干旱环境下调节水分亏缺的效果。结果表明,马铃薯叶光合速率(PR),在块茎启动蒸腾速率(TR)和气孔导度(SC)受到很大的影响通过用膜下滴灌调节水deficii。每日PR变化用了一天内的双峰曲线人工智能块茎形成。该TR 7:00后急剧上升,最大的特点是在在块茎形成所有的治疗和CK 13:00,然后开始下降,TR还与土壤水分亏缺水平增加而减少,所以是供应链绩效。显著正关系(P <0.01。R = 0.310 **)被发现叶的水分利用效率(WUE)和PR在马铃薯块茎启动,但WUE和TR之间显著负相关性(P <0.01,R = -0.534 ** )和betweer。 WUE和SC(P <0.01,R = -0.527 **)也有发生。因此,膜下滴灌调节水deficii的适当水平可以用来有效地调节干旱环境下的马铃薯块茎作物引发生理photosynthetk特点。

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