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两条不同的信号通路参与生长素诱导的豌豆表皮原生质体肿胀。

Two distinct signaling pathways participate in auxin-induced swelling of pea epidermal protoplasts.

作者信息

Yamagami Mutsumi, Haga Ken, Napier Richard M, Iino Moritoshi

机构信息

Institute for Environmental Science, Rokkasho-mura, Aomori 039-3212, Japan.

出版信息

Plant Physiol. 2004 Feb;134(2):735-47. doi: 10.1104/pp.103.031294. Epub 2004 Feb 5.

Abstract

Protoplast swelling was used to investigate auxin signaling in the growth-limiting stem epidermis. The protoplasts of epidermal cells were isolated from elongating internodes of pea (Pisum sativum). These protoplasts swelled in response to auxin, providing the clearest evidence that the epidermis can directly perceive auxin. The swelling response to the natural auxin IAA showed a biphasic dose response curve but that to the synthetic auxin 1-naphthalene acetic acid (NAA) showed a simple bell-shaped dose response curve. The responses to IAA and NAA were further analyzed using antibodies raised against ABP1 (auxin-binding protein 1), and their dependency on extracellular ions was investigated. Two signaling pathways were resolved for IAA, an ABP1-dependent pathway and an ABP1-independent pathway that is much more sensitive to IAA than the former. The response by the ABP1 pathway was eliminated by anti-ABP1 antibodies, had a higher sensitivity to NAA, and did not depend on extracellular Ca(2+). In contrast, the response by the non-ABP1 pathway was not affected by anti-ABP1 antibodies, had no sensitivity to NAA, and depended on extracellular Ca(2+). The swelling by either pathway required extracellular K(+) and Cl(-). The auxin-induced growth of pea internode segments showed similar response patterns, including the occurrence of two peaks in the dose response curve for IAA and the difference in Ca(2+) requirements. It is suggested that two signaling pathways participate in auxin-induced internode growth and that the non-ABP1 pathway is more likely to be involved in the control of growth by constitutive concentrations of endogenous auxin.

摘要

原生质体肿胀被用于研究生长受限的茎表皮中的生长素信号传导。表皮细胞的原生质体从豌豆(Pisum sativum)伸长的节间分离得到。这些原生质体对生长素产生肿胀反应,这提供了表皮能够直接感知生长素的最清晰证据。对天然生长素IAA的肿胀反应呈现双相剂量反应曲线,而对合成生长素1-萘乙酸(NAA)的反应呈现简单的钟形剂量反应曲线。使用针对ABP1(生长素结合蛋白1)产生的抗体进一步分析对IAA和NAA的反应,并研究它们对细胞外离子的依赖性。解析出IAA的两条信号通路,一条是ABP1依赖性通路,另一条是ABP1非依赖性通路,后者对IAA的敏感性比前者高得多。ABP1通路的反应被抗ABP1抗体消除,对NAA具有更高的敏感性,并且不依赖于细胞外Ca(2+)。相反,非ABP1通路的反应不受抗ABP1抗体影响,对NAA不敏感,并且依赖于细胞外Ca(2+)。两条通路引起的肿胀都需要细胞外K(+)和Cl(-)。豌豆节间段的生长素诱导生长表现出类似的反应模式,包括IAA剂量反应曲线中出现两个峰值以及Ca(2+)需求的差异。表明两条信号通路参与生长素诱导的节间生长,并且非ABP1通路更有可能参与内源性生长素组成型浓度对生长的控制。

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