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Global Identification of Multiple OsGH9 Family Members and Their Involvement in Cellulose Crystallinity Modification in Rice

机译:水稻中多个OsGH9家族成员的全球鉴定及其参与纤维素结晶度修饰的研究

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摘要

Plant glycoside hydrolase family 9 (GH9) comprises typical endo-β-1,4-glucanase (EGases, EC3.2.1.4). Although GH9A (KORRIGAN) family genes have been reported to be involved in cellulose biosynthesis in plants, much remains unknown about other GH9 subclasses. In this study, we observed a global gene co-expression profiling and conducted a correlation analysis between OsGH9 and OsCESA among 66 tissues covering most periods of life cycles in 2 rice varieties. Our results showed that OsGH9A3 and B5 possessed an extremely high co-expression with OsCESA1, 3, and 8 typical for cellulose biosynthesis in rice. Using two distinct rice non-GH9 mutants and wild type, we performed integrative analysis of gene expression level by qRT-PCR, cellulase activities in situ and in vitro, and lignocellulose crystallinity index (CrI) in four internodes of stem tissues. For the first time, OsGH9B1, 3, and 16 were characterized with the potential role in lignocellulose crystallinity alteration in rice, whereas OsGH9A3 and B5 were suggested for cellulose biosynthesis. In addition, phylogenetic analysis and gene co-expression comparison revealed GH9 function similarity in Arabidopsis and rice. Hence, the data can provide insights into GH9 function in plants and offer the potential strategy for genetic manipulation of plant cell wall using the five aforementioned novel OsGH9 genes.
机译:植物糖苷水解酶家族9(GH9)包含典型的β-1,4-内切葡聚糖酶(EGases,EC3.2.1.4)。尽管据报道GH9A(KORRIGAN)家族基因参与植物中纤维素的生物合成,但对于其他GH9亚类而言仍然未知。在这项研究中,我们观察到了全球基因共表达谱,并在涵盖两个水稻品种生命周期大部分时期的66个组织中进行了OsGH9和OsCESA之间的相关性分析。我们的结果表明,OsGH9A3和B5与典型的水稻纤维素生物合成中的OsCESA1、3和8具有极高的共表达。使用两个不同的水稻非GH9突变体和野生型,我们通过qRT-PCR,原位和体外纤维素酶活性以及干组织四个节间的木质纤维素结晶度指数(CrI)进行了基因表达水平的综合分析。 OsGH9B1、3和16首次被表征具有水稻中木质纤维素结晶度改变的潜在作用,而OsGH9A3和B5被建议用于纤维素的生物合成。此外,系统发育分析和基因共表达比较表明,拟南芥和水稻中的GH9功能相似。因此,该数据可以提供对植物中GH9功能的见解,并提供使用上述五个新的OsGH9基因对植物细胞壁进行遗传操作的潜在策略。

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