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空气中的氧气和淹没水中的氧气都维持着水稻水生不定根的生长。

Oxygen in the air and oxygen dissolved in the floodwater both sustain growth of aquatic adventitious roots in rice.

机构信息

Plant Developmental Biology and Plant Physiology, University of Kiel, Am Botanischen Garten 5, Kiel, Germany.

Freshwater Biological Laboratory, Department of Biology, University of Copenhagen, Denmark.

出版信息

J Exp Bot. 2021 Feb 27;72(5):1879-1890. doi: 10.1093/jxb/eraa542.

Abstract

Flooding is an environmental stress that leads to a shortage of O2 that can be detrimental for plants. When flooded, deepwater rice grow floating adventitious roots to replace the dysfunctional soil-borne root system, but the features that ensure O2 supply and hence growth of aquatic roots have not been explored. We investigate the sources of O2 in aquatic adventitious roots and relate aerenchyma and barriers for gas diffusion to local O2 gradients, as measured by microsensor technology, to link O2 distribution in distinct root zones to their anatomical features. The mature root part receives O2 exclusively from the stem. It has aerenchyma that, together with suberin and lignin depositions at the water-root and cortex-stele interfaces, provides a path for longitudinal O2 movement toward the tip. The root tip has no diffusion barriers and receives O2 from the stem and floodwater, resulting in improved aeration of the root tip over mature tissues. Local formation of aerenchyma and diffusion barriers in the mature root channel O2 towards the tip which also obtains O2 from the floodwater. These features explain aeration of floating roots and their ability to grow under water.

摘要

洪水是一种环境胁迫,会导致氧气短缺,对植物造成损害。当被淹没时,深水稻会生长出漂浮的不定根来替代功能失调的土生根系统,但确保氧气供应从而促进水生根生长的特征尚未被探索。我们研究了水生不定根中的氧气来源,并将通气组织和气体扩散的障碍与微传感器技术测量的局部氧气梯度相关联,将不同根区的氧气分布与其解剖特征联系起来。成熟根部分仅从茎中获取氧气。它具有通气组织,与水根和皮层-中柱界面处的栓质和木质素沉积一起,为纵向氧气向根尖移动提供了一条通道。根尖没有扩散障碍,可以从茎和淹没水中获取氧气,从而改善根尖的通气状况超过成熟组织。在成熟根中局部形成通气组织和扩散障碍,将氧气输送到根尖,根尖也从淹没水中获取氧气。这些特征解释了漂浮根的通气和在水下生长的能力。

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