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OsPIN2 编码生长素外排载体蛋白家族的一个成员,通过调节生长素在水稻中的分布,参与根伸长生长和侧根形成模式。

OsPIN2, which encodes a member of the auxin efflux carrier proteins, is involved in root elongation growth and lateral root formation patterns via the regulation of auxin distribution in rice.

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Aichi, 464-8601, Japan.

International Cooperation Center for Agricultural Education, Nagoya University, Nagoya, Aichi, 464-8601, Japan.

出版信息

Physiol Plant. 2018 Oct;164(2):216-225. doi: 10.1111/ppl.12707. Epub 2018 Jul 20.

Abstract

Auxin flow is important for different root developmental processes such as root formation, emergence, elongation and gravitropism. However, the detailed information about the mechanisms regulating the auxin flow is less well understood in rice. We characterized the auxin transport-related mutants, Ospin-formed2-1 (Ospin2-1) and Ospin2-2, which exhibited curly root phenotypes and altered lateral root formation patterns in rice. The OsPIN2 gene encodes a member of the auxin efflux carrier proteins that possibly regulates the basipetal auxin flow from the root tip toward the root elongation zone. According to DR5-driven GUS expression, there is an asymmetric auxin distribution in the mutants that corresponded with the asymmetric cell elongation pattern in the mutant root tip. Auxin transport inhibitor, N-1-naphthylphthalamic acid and Ospin2-1 Osiaa13 double mutant rescued the curly root phenotype indicating that this phenotype results from a defect in proper auxin distribution. The typical curly root phenotype was not observed when Ospin2-1 was grown in distilled water as an alternative to tap water, although higher auxin levels were found at the root tip region of the mutant than that of the wild-type. Therefore, the lateral root formation zone in the mutant was shifted basipetally compared with the wild-type. These results reflect that an altered auxin flow in the root tip region is responsible for root elongation growth and lateral root formation patterns in rice.

摘要

生长素流对于不同的根发育过程很重要,例如根的形成、出现、伸长和向重力性。然而,在水稻中,关于调节生长素流的机制的详细信息了解较少。我们对生长素运输相关突变体 Ospin-formed2-1 (Ospin2-1) 和 Ospin2-2 进行了表征,它们表现出卷曲根表型和改变的侧根形成模式。OsPIN2 基因编码生长素外排载体蛋白的成员,可能调节从根尖向根伸长区的底向生长素流。根据 DR5 驱动的 GUS 表达,突变体中存在不对称的生长素分布,与突变根尖不对称的细胞伸长模式相对应。生长素运输抑制剂 N-1-萘基邻苯二甲酸和 Ospin2-1 Osiaa13 双突变体挽救了卷曲根表型,表明这种表型是由于生长素分布不当造成的。尽管突变体根尖区域的生长素水平高于野生型,但当 Ospin2-1 在蒸馏水而不是自来水中生长时,没有观察到典型的卷曲根表型。因此,与野生型相比,突变体的侧根形成区向基端移位。这些结果反映了根尖区域生长素流的改变负责水稻伸长生长和侧根形成模式。

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