首页> 外文期刊>Plant Science >GROWTH, WATER TRANSPORT AND TRANSPIRATION IN ROOT-RESTRICTED PLANTS OF BEAN, AND THEIR RELATION TO ABSCISIC ACID ACCUMULATION
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GROWTH, WATER TRANSPORT AND TRANSPIRATION IN ROOT-RESTRICTED PLANTS OF BEAN, AND THEIR RELATION TO ABSCISIC ACID ACCUMULATION

机译:豆类根系植物的生长,水分运输和蒸腾作用及其与酸积累的关系

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摘要

The effects of root zone confinement on growth, water transport and transpiration, and their association with abscisic acid (ABA) accumulation in Phaseolus vulgaris L., were studied. Transfer of B-day-old seedlings, at time zero (TZ), to aerated nutrient solutions, in 10-ml and non-restricting-volume containers, divided the plants for treatment as restricted root-zone plants (RRPs) and non-restricted root-zone plants (NRPs). Growth restraint in the RRPs was not detectable 2 days after TZ, but was very pronounced after a further 8 days. Analysis of ABA was carried out 2 and 12 days after TZ. In the earlier analysis, a much higher level of ABA was detected in the leaves and the roots of the RRPs than in those of the NRPs, preceeding any expression of growth suppression; in the later analysis, the concentrations of ABA in the leaves and the stems of the RRPs were much greater than in those of the NRPs, while in the roots, the previous difference had disappeared. Water transport from the roots, expressed for the whole root system and per unit weight of root biomass, was much lower in both intact and detopped RRPs, than in NRPs. The reduced transport of water from the RRP roots was pronounced 12 days after TZ, in spite of the disappearance of the formerly detected difference between the two treatments in root-accumulated ABA. The transpiration rate per unit leaf area was similar in both treatments, irrespective of the higher level of ABA in the foliage of the RRPs. The leaf water potentials of RRPs and NRPs, as measured 12 days after TZ were also similar. The root-exuded ABA, as measured 12 days after TZ reached values of 0.13 and 0.25 ng ABA/g fresh wt. root/h, in the RRPs and NRPs, respectively. It was, therefore, concluded that the higher level of ABA in the RRP leaves was not a consequence of an enhanced transport from the restricted roots. The present work led to the conclusion that root-zone restriction might promote ABA accumulation in the root and the shoot. The possible influence of such accumulation on other processes in RRPs, such as growth suppression, water transport and transpiration, is in question. [References: 31]
机译:研究了根区限制对菜豆生长,水分运输和蒸腾作用及其与脱落酸(ABA)积累的关系。将零时(TZ)的B天龄幼苗转移到10毫升和非限制性容量容器中的充气营养液中,将其分为限制性根区植物(RRP)和非限制性根部植物(RRP)进行处理。受限制的根区植物(NRP)。 TZ后2天未检测到RRPs的生长抑制,但再过8天后,生长抑制非常明显。 TZ后2天和12天进行ABA分析。在较早的分析中,在RRPs的叶子和根部检测到的ABA含量要比NRPs更高,这是任何抑制生长的表现。在后来的分析中,RRP的叶和茎中的ABA浓度要比NRP的高得多,而在根中,以前的差异消失了。从完整根系和每单位重量的根系生物量表示的从根部运来的水,在完整RRP和去顶RRP中均远低于NRP。尽管在根部积累的ABA中两种处理之间先前检测到的差异消失了,但TZ后12天仍显着降低了RRP根部的水分输送。在两种处理中,每单位叶面积的蒸腾速率均相似,而与RRP叶片中较高的ABA水平无关。 TZ后12天测得的RRP和NRP的叶水势也相似。在TZ达到0.13和0.25 ng ABA / g新鲜wt。的值后12天测得的根系分泌的ABA。 root / h,分别位于RRP和NRP中。因此,得出的结论是,RRP叶片中较高水平的ABA并不是由于从受限制的根部转运的增强。目前的工作得出的结论是,根区限制可能促进ABA在根和茎中的积累。这种蓄积对RRP中其他过程(例如生长抑制,水运输和蒸腾作用)的可能影响是有问题的。 [参考:31]

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