Danelli Tommaso, Laura Marina, Savona Marco, Landoni Michela, Adani Fabrizio, Pilu Roberto
Gruppo Ricicla Labs-Department of Agricultural and Environmental Sciences-Production, Landscape and Agroenergy, Università' Degli Studi di Milano, Via Celoria 2, 20133 Milan, Italy.
Agricultural Genetics Group-Department of Agricultural and Environmental Sciences-Production, Landscape and Agroenergy, Università' Degli Studi di Milano, Via Celoria 2, 20133 Milan, Italy.
Plants (Basel). 2020 Nov 16;9(11):1584. doi: 10.3390/plants9111584.
L., the giant reed-being a long-duration, low-cost, non-food energy crop able to grow in marginal lands-has emerged as a potential alternative to produce biomass for both energy production, with low carbon emissions, and industrial bioproducts. In recent years, pioneering efforts have been made to genetically improve this very promising energy crop. This review analyses the recent advances and challenges encountered in using clonal selection, mutagenesis/somaclonal variation and transgenesis/genome editing. Attempts to improve crop yield, in vitro propagation efficiency, salt and heavy metal tolerance by clonal selection were carried out, although limited by the species' low genetic diversity and availability of mutants. Mutagenesis and somaclonal variation have also been attempted on this species; however, since is polyploid, it is very difficult to induce and select promising mutations. In more recent years, genomics and transcriptomics data are becoming available in Arundo, closing the gap to make possible the genetic manipulation of this energy crop in the near future. The challenge will regard the functional characterization of the genes/sequences generated by genomic sequencing and transcriptomic analysis in a complex polyploid genome.
芦竹,一种多年生、低成本、非粮食能源作物,能够在边际土地上生长,已成为一种潜在的替代作物,可用于生产生物质,用于低碳排放的能源生产以及工业生物产品。近年来,人们已率先努力对这种非常有前景的能源作物进行基因改良。本综述分析了在使用克隆选择、诱变/体细胞克隆变异和转基因/基因组编辑方面取得的最新进展和遇到的挑战。通过克隆选择提高作物产量、体外繁殖效率、耐盐性和重金属耐受性的尝试已经展开,尽管受到该物种低遗传多样性和突变体可用性的限制。诱变和体细胞克隆变异也已在该物种上进行尝试;然而,由于芦竹是多倍体,很难诱导和选择有前景的突变。近年来,芦竹的基因组学和转录组学数据不断涌现,缩小了差距,使得在不久的将来对这种能源作物进行基因操作成为可能。挑战将在于对复杂多倍体基因组中基因组测序和转录组分析产生的基因/序列进行功能表征。