首页> 外文OA文献 >Biochemical Bases for the Loss of Basipetal IAA Transport with Advancing Physiological Age in Etiolated Helianthus Hypocotyls: Changes in IAA Movement, Net IAA Uptake, and Phytotropin Binding
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Biochemical Bases for the Loss of Basipetal IAA Transport with Advancing Physiological Age in Etiolated Helianthus Hypocotyls: Changes in IAA Movement, Net IAA Uptake, and Phytotropin Binding

机译:在黄化的向日葵下胚轴中,随着生理年龄的增长,Basipetal IAA转运丧失的生化基础:IAA运动,IAA净摄取和植物生长素结合的变化

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摘要

Basipetal transport of [14C]IAA in hypocotyl segments isolated from various regions of etiolated Helianthus annuus L. cv NK 265 seedlings declines with increasing physiological age. This decline was the result of a reduction in both transport capacity and apparent velocity. Net IAA uptake was greater and the abilities of auxin transport inhibitors to stimulate net IAA uptake were reduced in older tissues. Net IAA accumulation by microsomal vesicles exhibited a similar behavior with respect to age. Specific binding of [3H]N-1-naphthylphthalamic acid (NPA) to microsomes prepared from young and older hypocotyl regions was saturable and consistent with a single class of binding sites. The apparent affinity constants for NPA binding in microsomes prepared from young versus older tissues were 6.4 and 10.8 nanomolar, respectively, and the binding site densities for young versus old tissues were 7.44 and 3.29 picomoles/milligram protein, respectively. Specific binding of [3H]NPA in microsomes prepared from both tissues displayed similar sensitivities toward unlabeled flurenol and exhibited only slight differences in sensitivity toward 2,3,5-triiodobenzoic acid. These results demonstrate that the progressive loss of basipetal IAA transport capacity in etiolated Helianthus hypocotyls with advancing age is associated with substantial alterations in the phytotropin-sensitive, IAA efflux system and they suggest that these changes are, at least partially, responsible for the observed reduction of polar IAA transport with advancing tissue age.
机译:[14C] IAA在从黄化向日葵NK 265幼苗各个区域分离的下胚轴节中的Basipetal运输随生理年龄的增加而下降。这种下降是运输能力和视在速度降低的结果。 IAA的净摄入量更大,而较老的组织中生长素运输抑制剂刺激IAA的净摄取能力降低。就年龄而言,微粒体囊泡的净IAA积累表现出相似的行为。 [3H] N-1-萘基邻苯二甲酸(NPA)与由年轻和年老的下胚轴区域制备的微粒体的特异性结合是饱和的,并且与一类结合位点一致。由年轻组织和较老组织制备的微粒体中NPA结合的表观亲和常数分别为6.4和10.8纳摩尔,年轻组织与老组织的结合位点密度分别为7.44和3.29皮摩尔/毫克蛋白。在由两种组织制备的微粒体中,[3H] NPA的特异性结合对未标记的氟肾上腺素表现出相似的敏感性,并且对2,3,5-三碘苯甲酸的敏感性仅表现出细微差异。这些结果表明,随着年龄的增长,黄化的向日葵下胚轴基部的IAA转运能力逐渐丧失与植物生长激素敏感的IAA外排系统的实质性改变有关,他们表明,这些改变至少部分是造成观察到的减少的原因。 IAA极性转运与组织年龄的增长有关。

著录项

  • 作者

    Suttle, Jeffrey C.;

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  • 年度 1991
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  • 原文格式 PDF
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