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FERONIA 和壁相关激酶协调由植物细胞壁木质素修饰诱导的防御反应。

FERONIA and wall-associated kinases coordinate defense induced by lignin modification in plant cell walls.

机构信息

Department of Biological Sciences, BioDiscovery Institute, University of North Texas, 1155 Union Circle #311428, Denton, TX 76203, USA.

Université Paris-Saclay, INRAE, AgroParisTech, Institut Jean-Pierre Bourgin (IJPB), 78000 Versailles, France.

出版信息

Sci Adv. 2023 Mar 10;9(10):eadf7714. doi: 10.1126/sciadv.adf7714.

Abstract

Altering the content or composition of the cell wall polymer lignin is a favored approach to valorize lignin toward biomaterial and chemical production in the biorefinery. However, modifying lignin or cellulose in transgenic plants can induce expression of defense responses and negatively affect growth. Through genetic screening for suppressors of defense gene induction in the low lignin mutant of , we found that loss of function of the receptor-like kinase FERONIA, although not restoring growth, affected cell wall remodeling and blocked release of elicitor-active pectic polysaccharides as a result of the mutation. Loss of function of multiple wall-associated kinases prevented perception of these elicitors. The elicitors are likely heterogeneous, with tri-galacturonic acid the smallest but not necessarily the most active component. Engineering of plant cell walls will require development of ways to bypass endogenous pectin signaling pathways.

摘要

改变细胞壁聚合物木质素的含量或组成是一种将木质素增值为生物炼制中生物材料和化学品生产的首选方法。然而,在转基因植物中修饰木质素或纤维素会诱导防御反应的表达,并对生长产生负面影响。通过对低木质素突变体的防御基因诱导抑制因子的遗传筛选,我们发现受体样激酶 FERONIA 的功能丧失,尽管不能恢复生长,但会影响细胞壁的重塑,并由于突变而阻止激发子活性果胶多糖的释放。多个细胞壁相关激酶的功能丧失阻止了对这些激发子的感知。这些激发子可能是异质的,三半乳糖醛酸是最小的,但不一定是最活跃的成分。植物细胞壁的工程化将需要开发绕过内源性果胶信号通路的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f1c/10005186/9cc583f67b24/sciadv.adf7714-f1.jpg

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