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不对称生长素分布在重力刺激期间在[植物名称未给出]的节根中建立了一个与之形成对比的通气组织形成模式。

Asymmetric auxin distribution establishes a contrasting pattern of aerenchyma formation in the nodal roots of during gravistimulation.

作者信息

Ning Jiayang, Yamauchi Takaki, Takahashi Hirokazu, Omori Fumie, Mano Yoshiro, Nakazono Mikio

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Aichi, Japan.

Bioscience and Biotechnology Center, Nagoya University, Nagoya, Aichi, Japan.

出版信息

Front Plant Sci. 2023 Apr 19;14:1133009. doi: 10.3389/fpls.2023.1133009. eCollection 2023.

Abstract

Auxin distribution is essential for determining root developmental patterns. The formation of lateral roots and constitutive aerenchyma, which is a gas space developed through cell death, is regulated by auxin in rice (). However, it is unclear whether the involvement of auxin in constitutive aerenchyma formation is conserved in other species. In this study, we found that constitutive aerenchyma formation was regulated by auxin in the nodal roots of , a wild relative of maize ( ssp. ) grown naturally on frequently flooded coastal plains. Subsequent gravistimulation (root rotation) experiments showed opposite patterns of aerenchyma and lateral root formation. Lateral root formation on the convex side of rotated roots is known to be stimulated by a transient increase in auxin level in the pericycle. We found that aerenchyma formation was accelerated in the cortex on the concave side of the rotated nodal roots of . . A cortex-specific expression analysis of auxin-responsive genes suggested that the auxin level was higher on the concave side than on the convex side. These results suggest that asymmetric auxin distribution underlies the regulation of aerenchyma and lateral root formation in the nodal roots of . . As aerenchyma reduces the respiratory cost of the roots, constitutive aerenchyma on the concave side of the nodal root may balance resource allocation, thereby contributing to the uptake of water and nutrients by newly formed lateral roots. Our study provides insights into auxin-dependent asymmetric root patterning such as that of gravistimulation and hydropatterning response.

摘要

生长素分布对于确定根系发育模式至关重要。侧根和组成型通气组织(通过细胞死亡形成的气体空间)的形成受水稻中生长素的调控()。然而,生长素在组成型通气组织形成中的作用在其他物种中是否保守尚不清楚。在本研究中,我们发现组成型通气组织的形成受生长素调控,该生长素存在于自然生长在经常被洪水淹没的沿海平原上的玉米野生近缘种(玉米亚种)的节根中。随后的重力刺激(根旋转)实验显示通气组织和侧根形成的模式相反。已知根旋转后凸侧的侧根形成会受到中柱鞘中生长素水平短暂升高的刺激。我们发现,在根旋转的节根凹侧的皮层中,通气组织的形成加速。对生长素响应基因的皮层特异性表达分析表明,凹侧的生长素水平高于凸侧。这些结果表明,不对称的生长素分布是节根中通气组织和侧根形成调控的基础。由于通气组织降低了根系的呼吸成本,节根凹侧的组成型通气组织可能平衡资源分配,从而有助于新形成的侧根吸收水分和养分。我们的研究为生长素依赖的不对称根模式(如重力刺激和水模式响应)提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e31/10154625/0cfaed9be6d8/fpls-14-1133009-g001.jpg

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