New insights into bryophyte arabinogalactan-proteins from a hornwort and a moss model organism

IF 6.2 1区 生物学 Q1 PLANT SCIENCES
Kim-Kristine Mueller, Lukas Pfeifer, Linus Wegner, Katrin Ehlers, Birgit Classen
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Abstract

Two bryophyte models, the hornwort Anthoceros agrestis (Anthoceros) and the moss Physcomitrium patens (Physcomitrium), were analyzed for the presence of arabinogalactan-proteins (AGPs), as the emergence of these signaling glycoproteins in evolution is still under debate. AGPs of both species had a galactan core structure similar to that of other bryophyte and fern AGPs, but different from angiosperm AGPs, as 1,6-linked pyranosidic galactose was almost absent. In the Physcomitrium AGP, furanosidic arabinose (Araf) linkages were mainly terminal (10%) or 5-linked (13%), while in Anthoceros, terminal Araf dominated (26%) and was accompanied by very low amounts of 1,3-Araf and pyranosidic terminal Ara. Unusual 3-O-methylated pyranosidic rhamnose, which has never been detected in cell walls of angiosperms, occurred in both bryophyte AGPs (5% in Anthoceros, 10% in Physcomitrium AGP). This was comparable to AGPs of other spore-producing land plants. A bioinformatic search in the genomes of 14 bryophyte species revealed that most hornworts lack sequences encoding GPI-anchored classical AGPs. Generally, hornworts contained fewer sequences for AGP protein backbones compared with the liverwort Marchantia polymorpha and the moss P. patens. All of them comprise sequences for chimeric AGPs, and among those, surprisingly xylogen-like AGPs. Homologous sequences encoding glycosyltransferases and other enzymes involved in the synthesis and decoration of the AGP galactan framework were present in all bryophyte genomes. Immunocytochemistry of Anthoceros tissue detected AGPs at the plasma membrane/cell wall interface but also at the tonoplast, suggesting new functions of AGPs in bryophytes.

Abstract Image

一种角苔和一种苔藓模式生物对苔藓植物阿拉伯半乳糖蛋白的新认识
由于这些信号糖蛋白在进化过程中的出现仍存在争议,我们分析了两种苔藓植物模型——角苔Anthoceros agrestis (Anthoceros)和苔藓Physcomitrium patens (Physcomitrium)——是否存在阿拉伯半乳糖蛋白(AGPs)。两种AGPs的核心结构与其他苔藓植物和蕨类AGPs相似,但与被子植物AGPs不同,几乎不含1,6-链pyransidic半乳糖。在Physcomitrium AGP中,furanosidic arabinose (Araf)以末端连接为主(10%)或5连接为主(13%),而在Anthoceros中,末端Araf占主导地位(26%),并伴有极少量的1,3-Araf和吡喃苷末端Ara。在被子植物细胞壁中从未检测到异常的3- o甲基化pyranosidic鼠李糖,在两种苔藓植物AGP中均出现(Anthoceros中为5%,Physcomitrium AGP中为10%)。这与其他产孢子陆地植物的agp相当。通过对14种苔藓植物基因组的生物信息学研究发现,大多数角苔缺乏编码gpi锚定经典AGPs的序列。一般而言,角苔的AGP蛋白主干序列少于地茅和苔藓。它们都包含嵌合AGPs的序列,其中令人惊讶的是,类似木原的AGPs。所有苔藓植物基因组中都存在编码糖基转移酶和其他参与AGP半乳框架合成和修饰的酶的同源序列。花椒组织免疫细胞化学检测到AGPs存在于质膜/细胞壁界面,也存在于叶绿体,提示AGPs在苔藓植物中的新功能。
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来源期刊
The Plant Journal
The Plant Journal 生物-植物科学
CiteScore
13.10
自引率
4.20%
发文量
415
审稿时长
2.3 months
期刊介绍: Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community. Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.
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