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根系冷却对硬粒小麦幼苗(Triticum durum L.)激素含量、叶片导度和根系水力传导率的影响。

The effect of root cooling on hormone content, leaf conductance and root hydraulic conductivity of durum wheat seedlings (Triticum durum L.).

作者信息

Veselova Svetlana V, Farhutdinov Rashit G, Veselov Stanislav Yu, Kudoyarova Guzel R, Veselov Dmitry S, Hartung Wolfram

机构信息

Institute of Biology of Russian Academy of Sciences, Ufa Research Center, Ufa 450054, Russia.

出版信息

J Plant Physiol. 2005 Jan;162(1):21-6. doi: 10.1016/j.jplph.2004.06.001.

Abstract

Root cooling of 7-day-old wheat seedlings decreased root hydraulic conductivity causing a gradual loss of relative water content during 45 min (RWC). Subsequently (in 60 min), RWC became partially restored due to a decrease in transpiration linked to lower stomatal conductivity. The decrease in stomatal conductivity cannot be attributed to ABA-induced stomatal closure, since no increase in ABA content in the leaves or in the concentration in xylem sap or delivery of ABA from roots was found. However, decreased stomatal conductance was associated with a sharp decline in the content of cytokinins in shoots that was registered shortly after the start of root cooling and linked to increases in the activity of cytokinin-oxidase. This decrease in shoot cytokinin content may have been responsible for closing stomata, since this hormone is known to maintain stomatal opening when applied to plants. In support of this, pre-treatment with synthetic cytokinin benzyladenine was found to increase transpiration of wheat seedlings with cooled roots and bring about visible loss of turgor and wilting.

摘要

对7日龄小麦幼苗进行根部冷却会降低根系水力传导率,导致在45分钟内相对含水量(RWC)逐渐丧失。随后(60分钟时),由于与较低气孔导度相关的蒸腾作用降低,相对含水量部分恢复。气孔导度的降低不能归因于脱落酸(ABA)诱导的气孔关闭,因为未发现叶片中ABA含量增加、木质部汁液中ABA浓度升高或根部ABA输送增加。然而,气孔导度降低与地上部细胞分裂素含量急剧下降有关,这种下降在根部冷却开始后不久就被记录下来,并且与细胞分裂素氧化酶活性增加有关。地上部细胞分裂素含量的这种下降可能是导致气孔关闭的原因,因为已知这种激素施用于植物时可维持气孔开放。支持这一观点的是,发现用合成细胞分裂素苄基腺嘌呤预处理可增加根部冷却的小麦幼苗的蒸腾作用,并导致明显的膨压丧失和萎蔫。

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