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细胞壁结合型对羟基苯甲酸酯的诱导积累参与杨树重力响应的调控。

The Inducible Accumulation of Cell Wall-Bound -Hydroxybenzoates Is Involved in the Regulation of Gravitropic Response of Poplar.

作者信息

Zhao Yunjun, Yu Xiao-Hong, Liu Chang-Jun

机构信息

Brookhaven National Laboratory, Biology Department, Upton, NY, United States.

出版信息

Front Plant Sci. 2021 Dec 14;12:755576. doi: 10.3389/fpls.2021.755576. eCollection 2021.

Abstract

Lignin in species is acylated with -hydroxybenzoate. Monolignol -hydroxybenzoyltransferase 1 (PHBMT1) mediates -hydroxybenzoylation of sinapyl alcohol, eventually leading to the modification of syringyl lignin subunits. Angiosperm trees upon gravistimulation undergo the re-orientation of their growth along with the production of specialized secondary xylem, i.e., tension wood (TW), that generates tensile force to pull the inclined stem or leaning branch upward. Sporadic evidence suggests that angiosperm TW contains relatively a high percentage of syringyl lignin and lignin-bound -hydroxybenzoate. However, whether such lignin modification plays a role in gravitropic response remains unclear. By imposing mechanical bending and/or gravitropic stimuli to the hybrid aspens in the wild type (WT), lignin -hydroxybenzoate deficient, and -hydroxybenzoate overproduction plants, we examined the responses of plants to gravitropic/mechanical stress and their cell wall composition changes. We revealed that mechanical bending or gravitropic stimulation not only induced the overproduction of crystalline cellulose fibers and increased the relative abundance of syringyl lignin, but also significantly induced the expression of and the increased accumulation of -hydroxybenzoates in TW. Furthermore, we found that although disturbing lignin-bound -hydroxybenzoate accumulation in the knockout and overexpression (OE) poplars did not affect the major chemical composition shifts of the cell walls in their TW as occurred in the WT plants, depletion of -hydroxybenzoates intensified the gravitropic curving of the plantlets in response to gravistimulation, evident with the enhanced stem secant bending angle. By contrast, hyperaccumulation of -hydroxybenzoates mitigated gravitropic response. These data suggest that PHBMT1-mediated lignin modification is involved in the regulation of poplar gravitropic response and, likely by compromising gravitropism and/or enhancing autotropism, negatively coordinates the action of TW cellulose fibers to control the poplar wood deformation and plant growth.

摘要

某些物种中的木质素被对羟基苯甲酸酰化。单木质醇对羟基苯甲酰转移酶1(PHBMT1)介导芥子醇的对羟基苯甲酰化,最终导致紫丁香基木质素亚基的修饰。被子植物树木在受到重力刺激时,会伴随着特殊次生木质部即张力木(TW)的产生而发生生长方向的重新定向,张力木会产生拉力将倾斜的茎或倾斜的树枝向上拉。零星的证据表明,被子植物的张力木含有相对较高比例的紫丁香基木质素和与木质素结合的对羟基苯甲酸。然而,这种木质素修饰是否在向重力性反应中起作用仍不清楚。通过对野生型(WT)、对羟基苯甲酸缺乏型和对羟基苯甲酸过量产生型植物的杂交杨树施加机械弯曲和/或重力刺激,我们研究了植物对重力/机械应力的反应及其细胞壁组成的变化。我们发现,机械弯曲或重力刺激不仅诱导了结晶纤维素纤维的过量产生并增加了紫丁香基木质素的相对丰度,还显著诱导了张力木中对羟基苯甲酸的表达增加和积累。此外,我们发现,虽然干扰敲除和过表达(OE)杨树中与木质素结合的对羟基苯甲酸的积累不会影响其张力木细胞壁的主要化学成分变化,如野生型植物中发生的那样,但对羟基苯甲酸的耗尽会加剧幼苗对重力刺激的向重力弯曲,茎割线弯曲角度增大就很明显。相比之下,对羟基苯甲酸的过度积累减轻了向重力性反应。这些数据表明,PHBMT1介导的木质素修饰参与了杨树向重力性反应的调节,并且可能通过损害向重力性和/或增强自向性,负向协调张力木纤维素纤维的作用来控制杨树木材变形和植物生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf64/8712735/79a0cbf03b32/fpls-12-755576-g001.jpg

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