含油大马士革玫瑰(Rosa damascena)遗传改良的挑战与机遇

V. L., R. Ramadoss, P. Jaisankar, M. Soundariyan
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引用次数: 0

摘要

为生产精油而栽培的大马士革玫瑰,主要用于香水工业。由于玫瑰花极易腐烂,采收后在提取精油前的处理被认为是玫瑰精油生产中的一个关键点。除了在芳香和化妆品行业的主要应用外,玫瑰精油还具有抗菌、抗氧化和细胞毒性等药理特性。由于市场需求的增加,植物育种家被鼓励开发新的锦缎玫瑰品种,这些品种的含油量更高,花产量更高。通过克隆选择和种内杂交等传统育种方法可以提高上述性状。但是,通过传统的育种方法创造遗传变异是费时的,而且保持玫瑰精油的真实香味和品质是非常困难的。最近在分子标记技术、基因组学和转录组学方面的突破,已经产生了大量关于大马士革玫瑰的数据。为了利用分子技术加速大马草的育种,已经进行了一些尝试。然而,由于该物种的高杂合性和多倍性,将这些研究结果转化为实际育种仍然是一个重大挑战。本文综述了传统和现代分子育种方法的最新进展,以及它们在改良含油玫瑰方面的潜在用途和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Challenges and Opportunities in Genetic Improvement of Essential Oil-Bearing Damask Rose (Rosa damascena): A Review
Damask rose cultivated for essential oil production mainly used in perfume industry. Due to the highly perishable flowers, post-harvest handling of the flowers prior to oil extraction would be considered as a key point in rose essential oil production. Besides its major application in aroma and cosmetic industries, rose essential oil has been reported with valuable pharmacological properties such as antibacterial, antioxidant, and cytotoxic activities. Plant breeders are being encouraged to develop new damask rose cultivars with improved oil content and higher flower yield qualities due to rising market demand. The aforementioned qualities can be improved using traditional breeding methods such as clonal selection and intra-specific hybridization. But, through the convention breeding method creation of genetic variation is time taking, and the preservation of the authentic scent and quality of the rose oil is very difficult. Recent breakthroughs in molecular-markers techniques, genomics, and transcriptomics, have resulted in large volumes of data being generated in damask rose. Several attempts have been undertaken to accelerate the breeding of R.damascena using molecular technologies. However, due to the species' high heterozygosity and polyploidy nature, translating the findings of such studies to practical breeding remains a significant challenge. This review paper outlines recent advances in conventional and modern molecular breeding procedures, as well as their potential uses and limitations in improving the oil-bearing rose.
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