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燕麦(Avena sativa L.)茎的叶枕和节间生长及细胞壁合成调控中的激素和向重力性特异性

Hormonal and gravitropic specificity in the regulation of growth and cell wall synthesis in pulvini and internodes from shoots of Avena sativa L. (oat).

作者信息

Montague M J

机构信息

Monsanto Company, St. Louis, Missouri 63167, USA.

出版信息

Plant Physiol. 1995 Feb;107(2):553-64. doi: 10.1104/pp.107.2.553.

Abstract

Segments can be cut from the peduncular-1 internode of oat (Avena sativa L.) shoots so as to contain the graviresponsive leaf-sheath pulvinus and gibberellin-sensitive internodal tissue. Incorporation of [14C]glucose was used to monitor cell wall synthesis in these two tissues as affected by gravistimulus, indoleacetic acid (IAA), gibberellic acid (GA3), and fusicoccin (FC). Pulvinar cell wall synthesis was promoted by IAA and FC (both within about 1 h), as well as by gravistimulus (starting between 3 and 6 h), whereas GA3 had no effect on nongravistimulated pulvini. In contrast, GA3 and FC promoted internodal cell wall synthesis (initiated between 1 and 2 h), whereas IAA and gravistimulus caused a decrease in internodal uptake. FC preferentially promoted incorporation into the matrix component of the wall in both tissues. Gravistimulus failed to increase responsiveness of pulvinar tissue to IAA, whereas GA3 partially overcame gravistimulus-promoted incorporation into pulvinar cell wall, probably because of preferential movement of label into the rapidly elongating internode. The results demonstrate that these eight stimulus/tissue combinations can be examined easily in an isolated 10-mm stem segment, providing new opportunities for the comparative study of tissue- and stimulus-specific events in gene regulation and signal transduction in agronomically important cereals.

摘要

可以从燕麦(Avena sativa L.)茎的第一节间切下切段,使其包含重力响应性叶鞘叶枕和赤霉素敏感的节间组织。利用[14C]葡萄糖的掺入来监测这两种组织中受重力刺激、吲哚乙酸(IAA)、赤霉酸(GA3)和壳梭孢菌素(FC)影响的细胞壁合成。叶枕细胞壁合成受到IAA和FC的促进(两者均在约1小时内),以及重力刺激的促进(在3至6小时之间开始),而GA3对未受重力刺激的叶枕没有影响。相比之下,GA3和FC促进节间细胞壁合成(在1至2小时之间开始),而IAA和重力刺激导致节间摄取减少。FC优先促进两种组织中细胞壁基质成分的掺入。重力刺激未能增加叶枕组织对IAA的反应性,而GA3部分克服了重力刺激促进的叶枕细胞壁掺入,这可能是因为标记物优先向快速伸长的节间移动。结果表明,这八种刺激/组织组合可以在一个分离的10毫米茎切段中轻松检测,为在重要农艺谷物的基因调控和信号转导中进行组织和刺激特异性事件的比较研究提供了新机会。

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