Galactosylation of rhamnogalacturonan-Ⅱ for cell wall pectin biosynthesis is critical for root apopl

来源 :分子植物(英文版) | 被引量 : 0次 | 上传用户:daweinihao
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Apoplastic iron(Fe)in roots represents an essential Fe storage pool.Reallocation of apoplastic Fe is of great importance to plants experiencing Fe deprivation,but how this reallocation process is regulated re-mains elusive,likely because of the highly complex cell wall structure and the limited knowledge about cell wall biosynthesis and modulation.Here,we present genetic and biochemical evidence to demonstrate that the Cdi-mediated galactosylation of rhamnogalacturonan-Ⅱ(RG-Ⅱ)is required for apoplastic Fe realloca-tion.Cdi is expressed in roots and up-regulated in response to Fe deficiency.It encodes a putative glyco-syltransferase localized to the Golgi apparatus.Biochemical and mass spectrometry assays showed that Cdi catalyzes the transfer of GDP-L-galactose to the terminus of side chain A on RG-Ⅱ.Disruption of Cdi essentially decreased RG-Ⅱ dimerization and hence disrupted cell wall formation,as well as the reallocation of apoplastic Fe from roots to shoots.Further transcriptomic,Fourier transform infrared spectroscopy,and Fe desorption kinetic analyses coincidently suggested that Cdi mediates apoplastic Fe reallocation through extensive modulation of cell wall components and consequently the Fe adsorption capacity of the cell wall.Our study provides direct evidence demonstrating a link between cell wall biosynthesis and apoplastic Fe reallocation,thus indicating that the structure of the cell wall is important for efficient usage of the cell wall Fe pool.
其他文献
The global population is expected to increase by 10 billion by 2050,the demand for food and water is also likely to increase.Several factors intensify the growing water scarcity,such as inef-ficient water use in the food value chain and inadequate infra-s
期刊
物理学是自然科学领域十分关注规律形成过程和科学研究方法的一门基础学科.当前高中物理教学对学习活动存在着认识的差异、课时的矛盾和考核方式的限制等问题,这就需要教师更好地进行单元学习活动的设计.学习活动设计的目的是通过学生参与学习活动的探究过程,培养物理学科情感,强化单元核心知识,培养学生基于真实情境问题解决的能力,从而落实学科核心素养.通过高中物理单元学习活动的设计与实施,形成了具有实践意义的设计思路与实施做法.
上海市教育委员会教学研究室在多年的课程与教学调研工作中积累了大量的调研报告,这些报告大多是文档格式,数量多、语义描述方式多样、内容表征意义模糊,如何快速、直观地把握文本的语义是一个难题.自然语言处理技术经过多年的发展,在自动摘要、信息抽取等方面发挥了重要的作用.介绍了自然语言处理技术在课程与教学调研报告语义分析中的应用,阐述了在分词库扩充、文章主题词抽取、自动摘要提取等方面的实践研究.
Photosynthesis,respiration,and countless other processes are dependent on proteins that carry iron(Fe)as an essential cofactor.When Fe was recruited for biological functions early in evolution,it was an available element.The Earth\'s atmosphere was redu
期刊
Plants possess a multi-layered immune system(Zhang et al.,2020).Upon pathogen infection,plasma membrane-localized pattern-recognition receptors(PRRs)recognize microbe-/dam-age-associated molecular patterns(MAMPs/DAMPs)or immu-nological phytocytokines to a
期刊
Dear Editor,rnRice(Oryza sativa)is one of the most important crops in the world and a common model plant for genomic research.The genomes of Xian/Indica and Geng/Japonica have been completely sequenced and annotated with accurate genome information.Over t
期刊
Major signaling components in the plant immune system have been discovered via genetic screens.The use of ethylmethane sulfonate or fast-neutron mutagenesis has generated a myriad of mutants with a hyper-or hypoactivated immune system,which led to the dis
期刊
Transcriptional regulation plays a crucial role in plant adaptation to diverse environments.Several transcription factors(TFs),the so-called master switch TFs or hub TFs,regulate various genes critical for adaptation to different stresses.STOP1(SENSITIVE
期刊
Rice is an important food crop and is consumed by nearly half of the world\'s population.Rice grain size is a key yield trait and also affects the quality of grain appearance.Several pathways that control grain size have been identified in rice,such as
期刊
Plants resist viral infection through multiple mechanisms.These include physical barriers,activation of NUCLEOTIDE-BINDING LEUCINE-RICH REPEAT PROTEINS(NLRs),autophagy,biosyn-thesis of defense-related phytohormones,and RNA interference(RNAi).RNAi suppress
期刊