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Uptake, transport and bioactivity of exogenously applied ABA and ABA analogues in white spruce and wheat seedlings.

机译:白云杉和小麦幼苗中外源施用的ABA和ABA类似物的吸收,转运和生物活性。

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摘要

There are significant differences between conifers and herbaceous species in their stomatal sensitivity to exogenously applied ABA. Experiments on white spruce (Picea glauca (Moench) Voss) and wheat (Triticum aestivum L. cv Katepwa) seedlings, whose roots were sealed in an aeroponic misting chamber, confirmed that 200-fold higher concentrations (2 x 10-3 M) of exogenously applied (+/-)ABA were required to close stomata in spruce than in wheat (10-5 M). I tested the hypothesis that this difference in response between species was because: (i) stomata are inherently more sensitive to ABA in wheat than in spruce; (ii) in wheat, ABA is taken up more efficiently by roots and more ABA is subsequently delivered to the shoots and (iii) a combination of (i) and (ii). Tritiated ABA was applied to plants over approximately 10 hours and their water uptake measured continuously.;ABA uptake efficiency (UE) was almost twice as high in spruce as in wheat. However, in spruce, virtually all of the ABA taken up remained in the roots. In contrast, in wheat, a much higher proportion of ABA taken up by the plant was delivered to the shoots. Thus transport efficiency (TE) was almost 9 times higher in wheat than spruce. When the roots were excised from spruce seedlings, there was a 55-fold increase in ABA delivery to shoots and a concomitant 20-fold increase in stomatal sensitivity to the application of ABA. Immunofluorescence labeling showed that cortical cells around the endodermis were the main site of exogenous ABA accumulation in spruce roots. In wheat, the major portion of the exogenous ABA was found inside the vascular tissue in the roots. I conclude that in spruce, the roots provide a major barrier to the transport of ABA to the shoots.;Experiments were also conducted, to determine the uptake and transport from roots to shoots of (+)- and (--)-ABA enantiomers and their respective methyl ester derivatives. I tested the hypothesis that the higher biological activity, of ABA enantiomers or analogues would be related to their being more efficiently incorporated into roots and subsequently transported to shoots.;In both species, (+)-ABA was more biologically active than (--)-ABA. Differences in TE between the enantiomers; were significant only in wheat. In spruce, UE of the methyl ester enantiomers was almost twice as high as that of the respective ABA enantiomers. However, virtually all of the MeABA taken up remained in the roots. Thus, despite its higher transport across root membranes, MeABA had a lower biological activity than ABA. Adding an isopropyl ester to the C-1 carbon of ABA brought about an increased bioactivity only in spruce where (+/-)-iPrABA induced stomatal closure at a 10-fold lower concentration than (+/-)-ABA. Thus, in spruce, any increased biological activity of ABA analogues depends on how effectively they are transported from roots to shoots. (Abstract shortened by UMI.).
机译:针叶树和草本物种在气孔对外源施用ABA的敏感性方面存在显着差异。对白云杉(Picea glauca(Moench)Voss)和小麦(Triticum aestivum L.cv Katepwa)幼苗的根部被密封在气雾室中的实验证实,高浓度200倍(2 x 10-3 M)与在小麦(10-5 M)中相比,云杉需要外源施用(+/-)ABA来封闭气孔。我检验了以下假设,即物种之间反应的差异是因为:(i)气孔天生对小麦中的ABA比对云杉更敏感; (ii)在小麦中,根部更有效地吸收了ABA,随后更多的ABA传递到芽上;(iii)(i)和(ii)的组合。化的ABA在大约10个小时内施用于植物,并持续测量其吸水率。云杉的ABA吸收效率(UE)几乎是小麦的两倍。但是,实际上,所有吸收的ABA仍然留在根中。相反,在小麦中,植物吸收的ABA的比例要高得多。因此,小麦的运输效率(TE)几乎比云杉高9倍。当从云杉幼苗上切下根部时,对芽的ABA传递增加了55倍,而对ABA施加的气孔敏感性也随之增加了20倍。免疫荧光标记显示,真皮层周围的皮质细胞是云杉根中外源ABA积累的主要部位。在小麦中,外源ABA的主要部分位于根的维管组织内部。我得出的结论是,从云杉的角度来看,根系为ABA转运到芽提供了主要的障碍;还进行了实验,以确定(+)-和(-)-ABA对映体从根到芽的吸收和转运。及其各自的甲酯衍生物。我检验了一种假设,即ABA对映异构体或类似物的较高生物活性与其更有效地掺入根系并随后转运至芽有关;在两种物种中,(+)-ABA的生物活性均高于(- )-ABA。对映异构体之间的TE差异;仅在小麦中显着。因此,甲酯对映体的UE几乎是各自ABA对映体的UE的两倍。但是,几乎所有吸收的MeABA都保留在根中。因此,尽管MeABA通过根膜的转运较高,但其生物活性却比ABA低。仅在云杉中将异丙酯添加到ABA的C-1碳中,生物活性就会提高,其中云杉(+/-)-iPrABA诱导的气孔关闭的浓度比(+/-)-ABA低10倍。因此,在云杉中,ABA类似物的任何增加的生物学活性取决于其从根部到芽的​​转运效率。 (摘要由UMI缩短。)。

著录项

  • 作者

    Kaul, Sonu.;

  • 作者单位

    University of Victoria (Canada).;

  • 授予单位 University of Victoria (Canada).;
  • 学科 Plant biology.;Botany.;Molecular biology.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 81 p.
  • 总页数 81
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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