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脱落酸是水稻(Oryza sativa)不定根外皮层栓质化所必需的,栓质化可形成一道阻止径向氧气损失的屏障。

Abscisic acid is required for exodermal suberization to form a barrier to radial oxygen loss in the adventitious roots of rice (Oryza sativa).

作者信息

Shiono Katsuhiro, Yoshikawa Marina, Kreszies Tino, Yamada Sumiyo, Hojo Yuko, Matsuura Takakazu, Mori Izumi C, Schreiber Lukas, Yoshioka Toshihito

机构信息

Department of Bioscience and Biotechnology, Fukui Prefectural University, 4-1-1 Matsuoka-Kenjojima, Eiheiji, Fukui, 910-1195, Japan.

Plant Nutrition and Crop Physiology, Department of Crop Science, University of Göttingen, Carl-Sprengel-Weg 1, Göttingen, 37075, Germany.

出版信息

New Phytol. 2022 Jan;233(2):655-669. doi: 10.1111/nph.17751. Epub 2021 Nov 1.

Abstract

To acclimate to waterlogged conditions, wetland plants form a barrier to radial oxygen loss (ROL) that can enhance oxygen transport to the root apex. We hypothesized that one or more hormones are involved in the induction of the barrier and searched for such hormones in rice. We previously identified 98 genes that were tissue-specifically upregulated during ROL barrier formation in rice. The RiceXPro database showed that most of these genes were highly enhanced by exogenous abscisic acid (ABA). We then examined the effect of ABA on ROL barrier formation by using an ABA biosynthesis inhibitor (fluridone, FLU), by applying exogenous ABA and by examining a mutant with a defective ABA biosynthesis gene (osaba1). FLU suppressed barrier formation in a stagnant solution that mimics waterlogged soil. Under aerobic conditions, rice does not naturally form a barrier, but 24 h of ABA treatment induced barrier formation. osaba1 did not form a barrier under stagnant conditions, but the application of ABA rescued the barrier. In parallel with ROL barrier formation, suberin lamellae formed in the exodermis. These findings strongly suggest that ABA is an inducer of suberin lamellae formation in the exodermis, resulting in an ROL barrier formation in rice.

摘要

为了适应水淹条件,湿地植物形成了一道阻止径向氧损失(ROL)的屏障,这可以增强向根尖的氧气运输。我们推测一种或多种激素参与了该屏障的诱导过程,并在水稻中寻找此类激素。我们之前鉴定出98个在水稻ROL屏障形成过程中组织特异性上调的基因。水稻基因表达图谱数据库显示,这些基因中的大多数在外源脱落酸(ABA)作用下高度增强。然后,我们通过使用ABA生物合成抑制剂(氟啶酮,FLU)、施加外源ABA以及研究一个ABA生物合成基因有缺陷的突变体(osaba1),来检测ABA对ROL屏障形成的影响。FLU在模拟水淹土壤的停滞溶液中抑制了屏障的形成。在有氧条件下,水稻自然不会形成屏障,但24小时的ABA处理诱导了屏障的形成。osaba1在停滞条件下不会形成屏障,但施加ABA挽救了屏障的形成。与ROL屏障形成同时,外皮层中形成了木栓质层。这些发现有力地表明,ABA是外皮层中木栓质层形成的诱导剂,从而导致水稻中ROL屏障的形成。

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