1.云南农业大学农学与生物技术学院;2.云南农业大学甘蔗研究所;3.云南省作物生产与智慧农业重点实验室
云南省重大科技专项(No.202202AE090021);国家自然科学基金项目(No.31960451)
Major Science and Technology Project of Yunnan Province (No.202202AE090021);National Natural Science Foundation Project of China (No.31960451)
现代甘蔗栽培品种主要是甘蔗属里2-5个甘蔗原种的少数无性系的杂交后代,遗传背景狭窄,血缘相近,致使近30年来甘蔗品种的产量、糖分和抗性等方面一直难有较大突破。充分利用甘蔗近缘野生种,是拓宽甘蔗遗传背景和加速甘蔗高贵化育种的重要基础。蔗茅属于甘蔗的近缘野生种,是甘蔗育种的重要野生种质,也是甘蔗属复合体基因组演化和功能基因解析的重要资源。自20世纪80年代以来,蔗茅种质资源的采集和研究,以及甘蔗与蔗茅的属间远缘杂交和抗旱耐冷甘蔗新品种培育取得重要进展。另外,蔗茅的许多优异性状,包括高糖、耐冷和抗旱等的生理及分子响应机制也逐渐被解析。为更好探索蔗茅优异性状的分子基础及其在甘蔗育种中的应用价值,本文系统综述蔗茅的研究进展和利用现状,分析蔗茅的遗传多样性和基因组演化特性,解析蔗茅中蔗糖合成和转运的主要通路及其关键基因的转录模式,并进一步提出蔗茅作为模式植物和生物燃料植物的应用潜力;同时,分析了蔗茅对低温和干旱胁迫的分子响应特征,讨论了蔗茅在甘蔗育种研究和利用中存在的问题,展望了未来发展方向。
The modern sugarcane cultivars are mainly the hybrid offspring of a few clones of 2-5 sugarcane species in the genus sugarcane. Owing to the narrow genetic background and close blood relationship, it is difficult for breeders to obtain sugarcane varieties with high yield, high sugar and high stress resistance in the past 30 years. Making full use of the wild relatives of sugarcane is very important for broadening the genetic background and accelerating the nobilization of sugarcane. Erianthus fulvus Ness, a near-source wild species of sugarcane, is not only an important wild germplasm for sugarcane breeding, but also an important resource for genome evolution and functional gene analysis of sugarcane complex. Since the 1980s, great progress has been made in the collection and research of Erianthus fulvus germplasm resources and the cultivation of new sugarcane varieties with drought resistance and cold tolerance by intergeneric hybridization between sugarcane and Erianthus fulvus. In addition, the physiological and molecular response mechanisms of many excellent traits, including high sugar, cold tolerance and drought resistance, have been gradually analyzed in Erianthus fulvus. In order to better explore the molecular basis of the excellent traits of Erianthus fulvus and its application value in sugarcane breeding, This review systematically summarizes the research progress and utilization status of Erianthus fulvus, analyzes the genetic diversity, genome evolution characteristics and sucrose biosynthesis and transport pathways of Erianthus fulvus, and further proposes the application potential of Erianthus fulvus as a model plant and biofuel plant. Additionally, we analyze the molecular response characteristics of Erianthus fulvus to low temperature and drought stress, discuss the problems existing in the research and utilization of Erianthus fulvus, and prospect the future development direction.