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叶片气膜1促进水稻中甘油酯的积累以及形成紧密的根系屏障以阻止径向氧气损失。

Leaf Gas Film 1 promotes glycerol ester accumulation and formation of a tight root barrier to radial O2 loss in rice.

作者信息

Jiménez Juan de la Cruz, Noorrohmah Siti, Suresh Kiran, Zeisler-Diehl Viktoria V, Peralta Ogorek Lucas León, Herzog Max, Pellegrini Elisa, Nagai Keisuke, Ashikari Motoyuki, Takahashi Hirokazu, Pedersen Ole, Schreiber Lukas, Nakazono Mikio

机构信息

Department of Biology, University of Copenhagen, Universitetsparken 4, 3rd floor, Copenhagen 2100, Denmark.

Graduate School of Bioagricultural Sciences, Nagoya University, Furo-cho, Chikusa, Nagoya 464-8601, Japan.

出版信息

Plant Physiol. 2024 Dec 2;196(4):2437-2449. doi: 10.1093/plphys/kiae458.

Abstract

Rice (Oryza sativa L.) and many other wetland plants form an apoplastic barrier in the outer parts of the roots to restrict radial O2 loss to the rhizosphere during soil flooding. This barrier facilitates longitudinal internal O2 diffusion via gas-filled tissues from shoot to root apices, enabling root growth in anoxic soils. We tested the hypothesis that Leaf Gas Film 1 (LGF1), which influences leaf hydrophobicity in rice, plays a crucial role in tight outer apoplastic barrier formation in rice roots. We examined the roots of a rice mutant (dripping wet leaf 7, drp7) lacking functional LGF1, its wild type, and an LGF1 overexpression line for their capacity to develop outer apoplastic barriers that restrict radial O2 loss. We quantified the chemical composition of the outer part of the root and measured radial O2 diffusion from intact roots. The drp7 mutant exhibited a weak barrier to radial O2 loss compared to the wild type. However, introducing functional LGF1 into the mutant fully restored tight barrier function. The formation of a tight barrier to radial O2 loss was associated with increased glycerol ester levels in exodermal cells, rather than differences in total root suberization or lignification. These results demonstrate that, in addition to its role in leaf hydrophobicity regulation, LGF1 plays an important role in controlling the function of the outer apoplastic barriers in roots. Our study suggests that increased deposition of glycerol esters in the suberized root exodermis establishes a tight barrier to radial O2 loss in rice roots.

摘要

水稻(Oryza sativa L.)和许多其他湿地植物在根的外部形成一个质外体屏障,以限制土壤淹水期间向根际的径向氧气损失。这个屏障通过充满气体的组织促进纵向内部氧气从地上部向根尖扩散,使根能够在缺氧土壤中生长。我们检验了这样一个假设:影响水稻叶片疏水性的叶片气膜1(LGF1)在水稻根紧密的外部质外体屏障形成中起关键作用。我们研究了缺乏功能性LGF1的水稻突变体(滴水叶7,drp7)、其野生型以及LGF1过表达系形成限制径向氧气损失的外部质外体屏障的能力。我们量化了根外部的化学成分,并测量了完整根的径向氧气扩散。与野生型相比,drp7突变体对径向氧气损失的屏障较弱。然而,将功能性LGF1导入突变体可完全恢复紧密屏障功能。对径向氧气损失形成紧密屏障与外皮层细胞中甘油酯水平增加有关,而不是总根栓质化或木质化的差异。这些结果表明,除了在叶片疏水性调节中的作用外,LGF1在控制根外部质外体屏障的功能中也起重要作用。我们的研究表明,栓质化根外皮层中甘油酯沉积增加为水稻根的径向氧气损失建立了紧密屏障。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7975/11637764/1044a1d5bbab/kiae458f1.jpg

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