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大麻(Cannabis L.)细胞壁组成和茎形态的表型变异:方法优化

Phenotypic Variation of Cell Wall Composition and Stem Morphology in Hemp ( L.): Optimization of Methods.

作者信息

Petit Jordi, Gulisano Agata, Dechesne Annemarie, Trindade Luisa M

机构信息

Wageningen UR Plant Breeding, Wageningen University & Research, Wageningen, Netherlands.

出版信息

Front Plant Sci. 2019 Jul 25;10:959. doi: 10.3389/fpls.2019.00959. eCollection 2019.

Abstract

The growing demands for sustainable fibers have stimulated the study of genetic diversity in the quality of hemp fiber ( L.). Nevertheless, the lack of high-throughput phenotyping methods that are suited for the analysis of hemp fiber, hampers the analysis of many accessions, and consequently the breeding for this complex trait. In the present report, we developed and optimized the throughput of five methods to study the diversity in hemp fiber quality including cell wall extraction, biochemical composition of cell wall polysaccharides, quantification of lignin, quantification of crystalline polysaccharides and morphology of the stems. Six hemp accessions contrasting for cell wall properties were used to assess the throughput and suitability of these methods for genetic studies. The methods presented revealed to be highly repeatable, with low coefficients of variation between technical replicates. With these methods we were able to detect significant phenotypic variation in cell wall composition and stem morphology between the six accessions. In addition, the throughput of the methods has been upgraded to a level that enables their use for phenotyping cell wall traits in breeding programs. The cell wall extraction was optimized to extract enough material for the complete characterization of the cell wall of hemp while reducing the time for the entire analysis. The throughput of the stem morphological analysis was improved by decreasing the timing of fixation, infiltration, and embedding of mature and dry hemp stems. Notwithstanding, our methods already have the potential to phenotype large number of accessions in a relatively short period of time. Our methods will enable exploration of genetic diversity of fiber quality and will contribute to the development of new hemp varieties with advanced quality of fibers.

摘要

对可持续纤维日益增长的需求刺激了对大麻纤维(L.)质量遗传多样性的研究。然而,缺乏适用于大麻纤维分析的高通量表型分析方法,阻碍了对许多种质的分析,进而影响了这种复杂性状的育种工作。在本报告中,我们开发并优化了五种研究大麻纤维质量多样性的方法的通量,包括细胞壁提取、细胞壁多糖的生化组成、木质素定量、结晶多糖定量和茎的形态学分析。使用六个细胞壁特性不同的大麻种质来评估这些方法在遗传研究中的通量和适用性。所展示的方法具有高度可重复性,技术重复之间的变异系数较低。通过这些方法,我们能够检测到六个种质之间细胞壁组成和茎形态的显著表型变异。此外,这些方法的通量已提升到能够在育种计划中用于细胞壁性状表型分析的水平。优化了细胞壁提取方法,以提取足够的材料用于大麻细胞壁的完整表征,同时减少整个分析所需时间。通过缩短成熟干燥大麻茎的固定、渗透和包埋时间,提高了茎形态分析的通量。尽管如此,我们的方法已经有潜力在相对较短的时间内对大量种质进行表型分析。我们的方法将有助于探索纤维质量的遗传多样性,并将为培育具有优质纤维的新型大麻品种做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2207/6671528/e92c7cddbc94/fpls-10-00959-g001.jpg

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