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MPK6-LTF1L1 模块通过与杨树 LTF1 不同的机制调控水稻木质素生物合成。

The MPK6-LTF1L1 module regulates lignin biosynthesis in rice through a distinct mechanism from Populus LTF1.

机构信息

State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou 311300, China.

National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, Shanghai 200032, China.

出版信息

Plant Sci. 2023 Dec;337:111890. doi: 10.1016/j.plantsci.2023.111890. Epub 2023 Oct 9.

Abstract

Lignin is a complex polymer that provides structural support and defense to plants. It is synthesized in the secondary cell walls of specialized cells. Through regulates its stability, LTF1 acts as a switch to control lignin biosynthesis in Populus, a dicot plant. However, how lignin biosynthesis is regulated in rice, a monocot plant, remains unclear. By employing genetic, cellular, and chemical approaches, we discovered that LTF1L1, a rice homolog of LTF1, regulates lignin biosynthesis through a distinct mechanism from Populus LTF1. Knockout of LTF1L1 increased lignin synthesis in the sclerenchyma cells of rice stems, while overexpression of LTF1L1 decreased it. LTF1L1 is phosphorylated by OsMPK6 at Ser, which did not affect its stability but impaired its ability to repress the expression of lignin biosynthesis genes. This was supported by the non-phosphorylated mutant of LTF1L1 (LTF1L1), which displayed a stronger repressive effect on lignin biosynthesis in both rice and Populus. Our findings reveal that LTF1L1 acts as a negative regulator of lignin biosynthesis via a distinct mechanism from that of LTF1 in Populus and highlight the evolutionary diversity in the regulation of lignin biosynthesis in plants.

摘要

木质素是一种复杂的聚合物,为植物提供结构支撑和防御。它在专门细胞的次生细胞壁中合成。通过调节其稳定性,LTF1 作为一种开关,控制双子叶植物杨树中的木质素生物合成。然而,单子叶植物水稻中的木质素生物合成是如何调节的,目前还不清楚。通过遗传、细胞和化学方法,我们发现 LTF1 的水稻同源物 LTF1L1 通过与杨树 LTF1 不同的机制来调节木质素生物合成。LTF1L1 的敲除增加了水稻茎的厚壁组织细胞中的木质素合成,而过表达则减少了它。LTF1L1 在丝氨酸被 OsMPK6 磷酸化,这并不影响其稳定性,但会损害其抑制木质素生物合成基因表达的能力。这得到了 LTF1L1 的非磷酸化突变体(LTF1L1)的支持,它在水稻和杨树中对木质素生物合成表现出更强的抑制作用。我们的发现揭示了 LTF1L1 作为木质素生物合成的负调节剂,通过与杨树中 LTF1 不同的机制发挥作用,并强调了植物中木质素生物合成调节的进化多样性。

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