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重力诱导黄瓜幼苗中生长素运输和分布的改变以形成不定根:CS-AUX1和CS-PIN1的可能作用。

Gravity-induced modification of auxin transport and distribution for peg formation in cucumber seedlings: possible roles for CS-AUX1 and CS-PIN1.

作者信息

Kamada Motoshi, Yamasaki Seiji, Fujii Nobuharu, Higashitani Atsushi, Takahashi Hideyuki

机构信息

Graduate School of Life Sciences, Tohoku University, Katahira, Aoba-ku, 980-8577 Sendai, Japan.

出版信息

Planta. 2003 Nov;218(1):15-26. doi: 10.1007/s00425-003-1072-x. Epub 2003 Aug 7.

Abstract

Cucurbit seedlings potentially develop a peg on each side of the transition zone between the hypocotyl and root. Seedlings grown in a horizontal position suppress the development of the peg on the upper side of the transition zone in response to gravity. It is suggested that this suppression occurs due to a reduction in auxin levels to below the threshold value. We show in this study that the free indole-3-acetic acid (IAA) content is low, while IAA conjugates are significantly more abundant in the upper side of the transition zone of gravistimulated seedlings, compared to the lower side. A transient increase in mRNA of the auxin-inducible gene, CS-IAA1, was observed in the excised transition zone. The result suggests that the transition zone is a source of auxin. Cucumber seedlings treated with auxin-transport inhibitors exhibited agravitropic growth and developed a peg on each side of the transition zone. Auxin-transport inhibitors additionally caused an increase in CS-IAA1 mRNA accumulation at the transition zone, indicating a rise in intracellular auxin concentrations due to a block of auxin efflux. To study the involvement of the auxin transport system in peg formation, we isolated the cDNAs of a putative auxin influx carrier, CS-AUX1, and putative efflux carrier, CS-PIN1, from cucumber (Cucumis sativus L.) plants. Both genes (CS-AUX1 in particular) were auxin-inducible. Accumulation of CS-AUX1 and CS-PIN1 mRNAs was observed in vascular tissue, cortex and epidermis of the transition zone. A reduced level of CS-AUX1 mRNA was observed in the upper side of the gravistimulated transition zone, compared with the lower side. It is therefore possible that a balance in the activities of auxin influx and efflux carriers controls intracellular auxin concentration at the transition zone, which results in lateral placement of a peg in cucumber seedlings.

摘要

葫芦科植物幼苗在胚轴与根之间的过渡区两侧可能会长出一个根状突起。水平生长的幼苗会因重力作用抑制过渡区上侧根状突起的发育。据推测,这种抑制是由于生长素水平降至阈值以下所致。我们在本研究中发现,与下侧相比,重力刺激的幼苗过渡区上侧的游离吲哚 - 3 - 乙酸(IAA)含量较低,而IAA结合物的含量则显著更高。在切除的过渡区观察到生长素诱导基因CS - IAA1的mRNA短暂增加。结果表明过渡区是生长素的来源。用生长素运输抑制剂处理的黄瓜幼苗表现出无向重力性生长,并在过渡区两侧都长出了根状突起。生长素运输抑制剂还导致过渡区CS - IAA1 mRNA积累增加,这表明由于生长素外流受阻,细胞内生长素浓度升高。为了研究生长素运输系统在根状突起形成中的作用,我们从黄瓜(Cucumis sativus L.)植株中分离出了一个假定的生长素内流载体CS - AUX1和假定的外流载体CS - PIN1的cDNA。这两个基因(尤其是CS - AUX1)都是生长素诱导型的。在过渡区的维管组织、皮层和表皮中观察到CS - AUX1和CS - PIN1 mRNA的积累。与下侧相比,重力刺激的过渡区上侧CS - AUX1 mRNA水平降低。因此,生长素内流和外流载体活性的平衡可能控制过渡区的细胞内生长素浓度,从而导致黄瓜幼苗根状突起的侧向定位。

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