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饱和湿度通过增加基于韧皮部的生长素运输来加速水稻(Oryza sativa L.)幼苗侧根的发育。

Saturated humidity accelerates lateral root development in rice (Oryza sativa L.) seedlings by increasing phloem-based auxin transport.

作者信息

Chhun Tory, Uno Yuichi, Taketa Shin, Azuma Tetsushi, Ichii Masahiko, Okamoto Takashi, Tsurumi Seiji

机构信息

Center for Supports to Research and Education Activities Isotope Division, Kobe University, Kobe, 657-8501 Japan.

出版信息

J Exp Bot. 2007;58(7):1695-704. doi: 10.1093/jxb/erm026. Epub 2007 Mar 23.

Abstract

Auxin transport plays a significant role modifying plant growth and development in response to environmental signals such as light and gravity. However, the effect of humidity on auxin transport is rarely documented. It is shown here that the transport of labelled indole-3-acetic acid (IAA) from the shoot to the root is accelerated in rice (Oryza sativa L. ssp. indica cv. IR8) seedlings grown under saturated humidity (SH-seedlings) compared with plants grown under normal humidity (NH-seedlings). The development of lateral roots in SH-seedlings was greatly enhanced compared with NH-seedlings. Removal of the shoot from SH-seedlings reduced the density of lateral roots, and the application of IAA to the cut stem restored the lateral root density, while the decapitation of NH-seedlings did not alter lateral root development. Phloem-based auxin transport appeared responsible for enhanced lateral root formation in SH-seedlings since (i) the rate of IAA transport from the shoot to the root tip was greater than 3.5 cm h-1 and (ii) naphthylphthalamic acid (NPA)-induced reduction of polar auxin transport in the shoot did not influence the number of lateral roots in SH-seedlings. It is proposed that high humidity conditions accelerate the phloem-based transport of IAA from the leaf to the root, resulting in an increase in the number of lateral roots.

摘要

生长素运输在响应光和重力等环境信号调节植物生长发育过程中发挥着重要作用。然而,湿度对生长素运输的影响鲜有文献记载。本文研究表明,与在正常湿度条件下生长的水稻(Oryza sativa L. ssp. indica cv. IR8)幼苗(NH幼苗)相比,在饱和湿度条件下生长的水稻幼苗(SH幼苗)中,标记的吲哚-3-乙酸(IAA)从地上部向根部的运输加快。与NH幼苗相比,SH幼苗侧根的发育显著增强。去除SH幼苗的地上部会降低侧根密度,而向切口茎部施加IAA可恢复侧根密度,而NH幼苗去顶处理则不会改变侧根发育。基于韧皮部的生长素运输似乎是SH幼苗侧根形成增强的原因,因为(i)IAA从地上部向根尖的运输速率大于3.5 cm h-1,并且(ii)萘基邻苯二甲酸(NPA)诱导的地上部极性生长素运输减少并不影响SH幼苗的侧根数量。研究推测,高湿度条件会加速IAA从叶片到根部的韧皮部运输,从而导致侧根数量增加。

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