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Hydraulic Conductance as a Factor Limiting Leaf Expansion of Phosphorus-Deficient Cotton Plants

机译:水力传导是限制缺磷棉株叶片膨胀的因素

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摘要

Suboptimal levels of phosphorus (P) strongly inhibited leaf expansion in young cotton (Gossypium hirsutum L.) plants during the daytime, but had little effect at night. The effect of P was primarily on cell expansion. Compared to plants grown on high P, plants grown on low P had lower leaf water potentials and transpiration rates, and greater diurnal fluctuations in leaf water potential. Hydraulic conductances of excised root systems and of intact transpiring plants were determined from curves relating water flow rate per unit root length to the pressure differential across the roots. Both techniques showed that low P significantly decreased root hydraulic conductance. The effects of P nutrition on hydraulic conductance preceded effects on leaf area. Differences in total root length, shoot dry weight, and root dry weight all occurred well after the onset of differences in leaf expansion. The data strongly indicate that low P limits leaf expansion by decreasing the hydraulic conductance of the root system.
机译:在白天,次优水平的磷(P)强烈抑制幼棉(Gossypium hirsutum L.)植物的叶片膨胀,但在夜间却没有什么作用。 P的作用主要是对细胞的膨胀。与高磷植物相比,低磷植物具有较低的叶片水势和蒸腾速率,并且叶片水势的昼夜波动较大。从将每单位根长的水流率与根上的压差相关的曲线确定切除的根系和完整转运植物的水力传导率。两种技术均表明,低磷显着降低了根系水力传导率。磷营养对水力传导的影响先于叶面积的影响。叶片膨胀差异发生后,总根长,茎干干重和根干重的差异都发生了。数据强烈表明,低磷可通过降低根系的水力传导率来限制叶片膨胀。

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