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通过 FEI2 RLK/SOS5 途径和纤维素合酶 5 进行纤维素合成对于拟南芥种皮黏液的结构是必需的。

Cellulose synthesis via the FEI2 RLK/SOS5 pathway and cellulose synthase 5 is required for the structure of seed coat mucilage in Arabidopsis.

机构信息

University of North Carolina, Biology Department, Chapel Hill, NC 27599, USA.

出版信息

Plant J. 2011 Dec;68(6):941-53. doi: 10.1111/j.1365-313X.2011.04760.x. Epub 2011 Oct 10.

Abstract

The seeds of Arabidopsis thaliana and many other plants are surrounded by a pectinaceous mucilage that aids in seed hydration and germination. Mucilage is synthesized during seed development within maternally derived seed coat mucilage secretory cells (MSCs), and is released to surround the seed upon imbibition. The FEI1/FEI2 receptor-like kinases and the SOS5 extracellular GPI-anchored protein were shown previously to act on a pathway that regulates the synthesis of cellulose in Arabidopsis roots. Here, we demonstrate that both FEI2 and SOS5 also play a role in the synthesis of seed mucilage. Disruption of FEI2 or SOS5 leads to a reduction in the rays of cellulose observed across the seed mucilage inner layer, which alters the structure of the mucilage in response to hydration. Mutations in CESA5, which disrupts an isoform of cellulose synthase involved in primary cell wall synthesis, result in a similar seed mucilage phenotype. The data indicate that CESA5-derived cellulose plays an important role in the synthesis and structure of seed coat mucilage and that the FEI2/SOS5 pathway plays a role in the regulation of cellulose synthesis in MSCs. Moreover, these results establish a novel structural role for cellulose in anchoring the pectic component of seed coat mucilage to the seed surface.

摘要

拟南芥和许多其他植物的种子周围都有一种果胶状的黏液,有助于种子的水合和发芽。黏液在种子发育过程中由母源来源的种皮黏液分泌细胞(MSCs)合成,并在吸胀时释放出来包围种子。先前已经表明,FEI1/FEI2 类受体样激酶和 SOS5 细胞外 GPI 锚定蛋白在调节拟南芥根中纤维素合成的途径上起作用。在这里,我们证明 FEI2 和 SOS5 也在种子黏液的合成中起作用。FEI2 或 SOS5 的破坏导致穿过种子黏液内层观察到的纤维素射线减少,这会响应水合作用改变黏液的结构。CESA5 的突变破坏了参与初生细胞壁合成的纤维素合酶同工型,导致类似的种子黏液表型。数据表明,源自 CESA5 的纤维素在种皮黏液的合成和结构中起着重要作用,并且 FEI2/SOS5 途径在 MSCs 中纤维素合成的调节中起作用。此外,这些结果确立了纤维素在将果胶状种皮黏液成分锚定到种子表面方面的新的结构作用。

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