首页> 外文OA文献 >A Negative Hydraulic Message from Oxygen-Deficient Roots of Tomato Plants? (Influence of Soil Flooding on Leaf Water Potential, Leaf Expansion, and Synchrony between Stomatal Conductance and Root Hydraulic Conductivity).
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A Negative Hydraulic Message from Oxygen-Deficient Roots of Tomato Plants? (Influence of Soil Flooding on Leaf Water Potential, Leaf Expansion, and Synchrony between Stomatal Conductance and Root Hydraulic Conductivity).

机译:番茄缺氧根的负面水力信息?土壤水淹对叶片水势,叶片膨胀以及气孔导度与根系水力传导率同步的影响)。

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摘要

Four to 10 h of soil flooding delayed and suppressed the normal daily increase in root hydraulic conductance (Lp) in tomato (Lycopersicon esculentum Mill. cv Ailsa Craig) plants. The resulting short-term loss of synchrony between Lp and stomatal conductance decreased leaf water potential ([psi]L) relative to well-drained plants within 2 h. A decrease in [psi]L persisted for 8 h and was mirrored by decreased leaf thickness measured using linear displacement transducers. After 10 h of flooding, further closing of stomata and re-convergence of Lp in flooded and well-drained roots returned [psi]L to control values. In the second photoperiod, Lp in flooded plants exceeded that in well-drained plants in association with much increased Lp and decreased stomatal conductance. Pneumatic balancing pressure applied to roots of intact flooded plants to prevent temporary loss of [psi]L in the 1st d did not modify the patterns of stomatal closure or leaf expansion. Thus, the magnitude of the early negative hydraulic message was neither sufficient nor necessary to promote stomatal closure and inhibit leaf growth in flooded tomato plants. Chemical messages are presumed to be responsible for these early responses to soil flooding.
机译:番茄(Lycopersicon esculentum Mill。cv Ailsa Craig)植物中的土壤淹水延迟了4到10小时,并抑制了正常的每日根水导率(Lp)的正常增加。相对于排水良好的植物,Lp和气孔导度之间的短期同步丧失导致叶片水势(psi)降低,并在2 h内达到。 psiL的降低持续了8小时,并且通过使用线性位移传感器测量的减小的叶片厚度反映出来。淹水10小时后,气孔进一步闭合,Lp在淹水和排水良好的根中重新收敛,使psiL恢复至控制值。在第二个光周期中,淹水植物中的Lp超过排水良好的植物中的Lp,这与Lp的增加和气孔导度的降低有关。在完整的水淹植物的根部施加气动平衡压力,以防止在第一天psiL的暂时损失,这并未改变气孔关闭或叶片扩张的模式。因此,早期负水力信息的强度既不足以促进水淹番茄的气孔关闭和抑制叶片生长,也没有必要。推测化学信息是造成这些对土壤洪水的早期反应的原因。

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