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Stomatal and growth responses to hydraulic and chemical changes induced by progressive soil drying

机译:渐进干燥土壤对水力和化学变化的气孔和生长响应

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摘要

A better understanding of physiological responses of crops to drought stress is important for ensuring sustained crop productivity under climate change. Here, we studied the effect on 15-day-old maize (Zea mays L.) plants of a 6 d non-lethal period of soil drying [soil water potential (SWP) decreased from –0.20 MPa to –0.81 MPa]. Root growth was initially stimulated during drying (when SWP decreased from –0.31 MPa to –0.38 MPa, compared with –0.29 MPa in well-watered pots), followed by inhibition during Days 5–6 (SWP from –0.63 MPa to –0.81 MPa). Abscisic acid (ABA) in the root began to accumulate as the root water potential declined during Days 2–3. Leaf elongation was inhibited from Day 4 (SWP less than –0.51 MPa), just after leaf ABA content began to increase, but coinciding with a decline in leaf water potential. The stomatal conductance was restricted earlier in the younger leaf (fourth) (on Day 3) than in the older leaf (third). The ethylene content of leaves and roots decreased during drying, but after the respective increase in ABA contents. This work identified critical timing of hydraulic and chemical changes at the onset of soil drying, which can be important in initiating early stomatal and growth responses to drought.
机译:更好地了解农作物对干旱胁迫的生理反应对于确保气候变化下作物的持续生产力至关重要。在这里,我们研究了土壤干燥6天非致死期对15日龄玉米(Zea mays L.)植物的影响[土壤水势(SWP)从–0.20 MPa降低至–0.81 MPa]。最初在干燥过程中刺激了根的生长(当浇水盆中的SWP从–0.31 MPa降低至–0.38 MPa时,相比之下,–0.29 MPa降低),随后在第5–6天受到抑制(SWP从–0.63 MPa降至–0.81 MPa )。随着第2至3天根水势的下降,根中的脱落酸(ABA)开始积累。从第4天开始(SWP小于–0.51 MPa),叶片的ABA含量开始增加后就被抑制了,但是,恰恰与叶片水势的下降相吻合。在幼叶(第四天)(第3天)中,气孔导度受限制的时间要早​​于老叶(第三天)。叶片和根的乙烯含量在干燥过程中下降,但是在ABA含量分别上升之后。这项工作确定了土壤干燥开始时水力和化学变化的关键时机,这对于启动干旱的早期气孔和生长响应可能很重要。

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