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高粱发育过程中生物量分配、茎基因表达、细胞壁生物合成及蔗糖积累的动态变化

Dynamics of biomass partitioning, stem gene expression, cell wall biosynthesis, and sucrose accumulation during development of Sorghum bicolor.

作者信息

McKinley Brian, Rooney William, Wilkerson Curtis, Mullet John

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX, 77845, USA.

Department of Soil and Crop Sciences, Texas A&M University, College Station, TX, 77845, USA.

出版信息

Plant J. 2016 Nov;88(4):662-680. doi: 10.1111/tpj.13269. Epub 2016 Sep 16.

Abstract

Biomass accumulated preferentially in leaves of the sweet sorghum Della until floral initiation, then stems until anthesis, followed by panicles until grain maturity, and apical tillers. Sorghum stem RNA-seq transcriptome profiles and composition data were collected for approximately 100 days of development beginning at floral initiation. The analysis identified >200 differentially expressed genes involved in stem growth, cell wall biology, and sucrose accumulation. Genes encoding expansins and xyloglucan endotransglucosylase/hydrolases were differentially expressed in growing stem internodes. Genes encoding enzymes involved in the synthesis of cellulose, lignin, and glucuronoarabinoxylan were expressed at elevated levels in stems until approximately 7 days before anthesis and then down-regulated. CESA genes involved in primary and secondary cell wall synthesis showed different temporal patterns of expression. Following floral initiation, the level of sucrose and other non-structural carbohydrates increased to approximately 50% of the stem's dry weight. Stem sucrose accumulation was inversely correlated with >100-fold down-regulation of SbVIN1, a gene encoding a vacuolar invertase. Accumulation of stem sucrose was also correlated with cessation of leaf and stem growth at anthesis, decreased expression of genes involved in stem cell wall synthesis, and approximately 10-fold lower expression of SbSUS4, a gene encoding sucrose synthase that generates UDP-glucose from sucrose for cell wall biosynthesis. Genes for mixed linkage glucan synthesis (CSLF) and turnover were expressed at high levels in stems throughout development. Overall, the stem transcription profile resource and the genes and regulatory dynamics identified in this study will be useful for engineering sorghum stem composition for improved conversion to biofuels and bio-products.

摘要

在甜高粱Della中,生物量优先在叶片中积累,直至花芽分化,然后在茎中积累,直至开花期,接着在穗中积累,直至籽粒成熟,最后在顶端分蘖中积累。从花芽分化开始,收集了高粱茎约100天发育过程中的RNA测序转录组图谱和成分数据。分析确定了200多个参与茎生长、细胞壁生物学和蔗糖积累的差异表达基因。编码扩张蛋白和木葡聚糖内转糖基酶/水解酶的基因在生长的茎节间差异表达。编码参与纤维素、木质素和葡糖醛酸阿拉伯木聚糖合成的酶的基因在茎中的表达水平在开花前约7天一直升高,然后下调。参与初生和次生细胞壁合成的CESA基因表现出不同的表达时间模式。花芽分化后,蔗糖和其他非结构性碳水化合物的水平增加到茎干重的约50%。茎中蔗糖的积累与液泡转化酶编码基因SbVIN1下调100倍以上呈负相关。茎中蔗糖的积累还与开花期叶片和茎生长的停止、参与茎细胞壁合成的基因表达降低以及蔗糖合酶编码基因SbSUS4表达降低约10倍有关,SbSUS4从蔗糖生成UDP-葡萄糖用于细胞壁生物合成。混合连接葡聚糖合成(CSLF)和周转的基因在整个发育过程中在茎中高水平表达。总体而言,本研究中确定的茎转录谱资源以及基因和调控动态将有助于对高粱茎成分进行工程改造,以提高其转化为生物燃料和生物产品的效率。

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