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短柄草作为研究禾本科植物茎薄壁组织生物学的实验系统。

Brachypodium as an experimental system for the study of stem parenchyma biology in grasses.

作者信息

Jensen Jacob Krüger, Wilkerson Curtis Gene

机构信息

Department of Plant Biology, Michigan State University, East Lansing, MI, United States of America.

DOE Great Lakes Bioenergy Research Center, Michigan State University, East Lansing, MI, United States of America.

出版信息

PLoS One. 2017 Mar 1;12(3):e0173095. doi: 10.1371/journal.pone.0173095. eCollection 2017.

Abstract

Stem parenchyma is a major cell type that serves key metabolic functions for the plant especially in large grasses, such as sugarcane and sweet sorghum, where it serves to store sucrose or other products of photosynthesis. It is therefore desirable to understand the metabolism of this cell type as well as the mechanisms by which it provides its function for the rest of the plant. Ultimately, this information can be used to selectively manipulate this cell type in a controlled manner to achieve crop improvement. In this study, we show that Brachypodium distachyon is a useful model system for stem pith parenchyma biology. Brachypodium can be grown under condition where it resembles the growth patterns of important crops in that it produces large amounts of stem material with the lower leaves senescing and with significant stores of photosynthate located in the stem parenchyma cell types. We further characterize stem plastid morphology as a function of tissue types, as this organelle is central for a number of metabolic pathways, and quantify gene expression for the four main classes of starch biosynthetic genes. Notably, we find several of these genes differentially regulated between stem and leaf. These studies show, consistent with other grasses, that the stem functions as a specialized storage compartment in Brachypodium.

摘要

茎薄壁组织是一种主要的细胞类型,对植物起着关键的代谢作用,尤其是在大型禾本科植物中,如甘蔗和甜高粱,它用于储存蔗糖或其他光合作用产物。因此,了解这种细胞类型的代谢以及它为植物其他部分发挥功能的机制是很有必要的。最终,这些信息可用于以可控方式选择性地操纵这种细胞类型,以实现作物改良。在本研究中,我们表明短柄草是研究茎髓薄壁组织生物学的有用模型系统。短柄草可以在类似于重要作物生长模式的条件下生长,即它能产生大量茎材料,下部叶片衰老,且光合产物大量储存在茎薄壁细胞类型中。我们进一步将茎质体形态作为组织类型的函数进行表征,因为这种细胞器对许多代谢途径至关重要,并对淀粉生物合成基因的四大类进行基因表达定量。值得注意的是,我们发现其中几个基因在茎和叶之间存在差异调节。这些研究表明,与其他禾本科植物一致,短柄草的茎起着特殊储存室的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad97/5332097/a21826babb48/pone.0173095.g001.jpg

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