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酸化在赤霉素和夫西地酸诱导的生菜下胚轴切段伸长生长中的作用。

The role of acidification in gibberellic acid- and fusicoccin-induced elongation growth of lettuce hypocotyl sections.

机构信息

Department of Botany, University of California, 94720, Berkeley, CA, USA.

出版信息

Planta. 1978 Jan;142(2):135-45. doi: 10.1007/BF00388204.

Abstract

The roles of gibberellic acid (GA3) and fusicoccin (FC) in the elongation growth and acidification of the medium by excised hypocotyl sections of lettuce (Lactuca sativa L.) were investigated. Hypocotyl sections incubated in buffer without GA3 elongate optimally at pH 4.0-4.25 while sections incubated with GA3 show the same growth between pH 4.25 and 6.0. Preincubation of sections at pH 6.0 for 6 h does not affect the subsequent elongation response to acidic medium (pH 4.25); however, the sections become refractory to further acid treatment after their initial burst of growth in response to pH 4.25. Sections made refractory to acid are responsive to GA3 application, however, and the rate of growth in response to GA3 of sections pretreated for 6 h at pH 4.25 is 85% of that of sections pretreated at pH 6.0. Although preincubation of sections for 48 h in medium at pH 6.0 abolishes the GA3 response, it does not affect the response to buffer at pH 4.25. FC stimulates elongation growth in letuce hypocotyls at an optimal concentration of 1 μM, and pretreatment of sections at pH 4.25 does not affect this elongation response. Although both GA3 and FC increase elongation of the section, neither causes appreciable acidification of the medium. Addition of KCl or NaCl to FC-treated sections causes rapid medium acidification but addition of salts to GA3-treated tissue does not cause acidification. Abrasion of the hypocotyl to remove the cuticle does not enhance acidification of the medium by the sections nor deos it affect elongation of the sections in response to GA3 or FC. Medium acidification by the sections is not a passive process since it is abolished both by low temperature (2° C) and metabolic inhibitors (carbonyl cyanide-m-chlorophenyl-hydrazone, azide). The acidification of the medium by barley (Hordeum vulgare L.) roots in response to FC is also dependent on the presence of KCl. We conclude that the acid-growth hypothesis does not explain GA3- or FC-induced elongation in lettuce hypocotyls.

摘要

研究了赤霉素(GA3)和夫西地酸(FC)在生菜(Lactuca sativa L.)下胚轴切段伸长生长和介质酸化中的作用。在没有 GA3 的缓冲液中培养的下胚轴切段在 pH4.0-4.25 时最佳伸长,而用 GA3 培养的切段在 pH4.25 至 6.0 之间表现出相同的生长。在 pH6.0 下预孵育 6 小时不会影响随后对酸性介质(pH4.25)的伸长反应;然而,在对 pH4.25 作出初始生长反应后,这些切片对进一步的酸处理变得耐药。然而,对酸耐药的切片对 GA3 的应用有反应,但是,在 pH4.25 预处理 6 小时的切片对 GA3 的生长反应速率是在 pH6.0 预处理的切片的 85%。尽管在下胚轴在 pH6.0 中的介质中预孵育 48 小时会消除 GA3 的反应,但它不会影响在 pH4.25 下对缓冲液的反应。FC 在最佳浓度 1 μM 下刺激生菜下胚轴的伸长生长,并且在 pH4.25 下预处理切片不会影响这种伸长反应。尽管 GA3 和 FC 都能增加切片的伸长,但都不会使培养基显著酸化。将 KCl 或 NaCl 添加到 FC 处理的切片中会导致培养基快速酸化,但将盐添加到 GA3 处理的组织中不会导致酸化。磨损下胚轴以去除表皮不会增强切片对培养基的酸化,也不会影响切片对 GA3 或 FC 的伸长反应。由于低温(2°C)和代谢抑制剂(羰基氰化物 m-氯代苯腙,叠氮化钠),切片对培养基的酸化不是一个被动过程,因此也会消除这种酸化。大麦(Hordeum vulgare L.)根对 FC 的反应导致的培养基酸化也依赖于 KCl 的存在。我们得出的结论是,酸生长假说不能解释 GA3 或 FC 诱导的生菜下胚轴伸长。

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