天堂网亚洲,天天操天天搞,91视频高清,菠萝蜜视频在线观看入口,美女视频性感美女视频,95丝袜美女视频国产,超高清美女视频图片

ChemicalBook >> journal list >> Journal of Integrative Plant Biology >>article
Journal of Integrative Plant Biology

Journal of Integrative Plant Biology

IF: 9.3
Download PDF

RBB1 negatively regulates rice disease resistance by modulating protein glycosylation

Published:2 December 2024 DOI: 10.1111/jipb.13810 PMID: 39620422
Bin Zhang,?Mingliang Guo,?Xiangpei Liu,?Bintao Zhang,?Yan Cui,?Xinglan Cao,?Zhipeng Zhang,?Chuanlin Shi,?Hua Wei,?Huiying He,?Hong Zhang,?Yiwang Zhu,?Xianmeng Wang,?Yang Lv,?Xiaoman Yu,?Dandan Chen,?Qiaoling Yuan,?Sheng Teng,?Tongjun Sun,?Qian Qian,?Lianguang Shang

Abstract

Glycosylation, a prevalent post-translational modification in eukaryotic secreted and membrane-associated proteins, plays a pivotal role in diverse physiological and pathological processes. Although UDP-N-acetylglucosamine (UDP-GlcNAc) is essential for this modification, the specific glycosylation mechanisms during plant leaf senescence and defense responses remain poorly understood. In our research, we identified a novel rice mutant named rbb1 (resistance to blast and bacterial blight1), exhibiting broad-spectrum disease resistance. This mutant phenotype results from a loss-of-function mutation in the gene encoding glucosamine-6-phosphate acetyltransferase, an important enzyme in D-glucosamine 6-phosphate acetylation. The rbb1 mutant demonstrates enhanced defense responses, evident in increased resistance to rice blast and bacterial blight, along with the upregulation of defense-response genes. Various biochemical markers indicate an activated defense mechanism in the rbb1 mutant, such as elevated levels of reactive oxygen species and malondialdehyde, reduced enzyme activity and UDP-GlcNAc content, and decreased expression of N-glycan and O-glycan modifying proteins. Moreover, proteome analysis of N-glycosylation modifications reveals alterations in the N-glycosylation of several disease-resistance-related proteins, with a significant reduction in Prx4 and Prx13 in rbb1-1. Additionally, the knockout of Prx4 or Prx13 also enhances resistance to Xanthomonas oryzae pv. oryzae (Xoo) and Magnaporthe oryzae (M. oryzae). This study uncovers a novel mechanism of defense response in rice, suggesting potential targets for the development of disease-resistant varieties.

Substances (2)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Luminol 521-31-3 C8H7N3O2 582 suppliers $5.00-$2148.30
Peroxidase 9003-99-0 NULL 335 suppliers $36.70-$4850.00