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生物柴油生产植物麻风树的生物技术研究进展

Biotechnological Research Progress in Jatropha, a Biodiesel-Yielding Plant.

作者信息

Al-Khayri Jameel M, Sudheer Wudali N, Preetha Thenmozhi R, Nagella Praveen, Rezk Adel A, Shehata Wael F

机构信息

Department of Agricultural Biotechnology, College of Agriculture and Food Sciences, King Faisal University, Al-Ahsa 31982, Saudi Arabia.

Department of Life Sciences, CHRIST (Deemed to be University), Bengaluru 560029, India.

出版信息

Plants (Basel). 2022 May 12;11(10):1292. doi: 10.3390/plants11101292.

Abstract

Environmental pollution is one of the most pressing challenges in today's world. The main cause of this pollution is fuel emissions from automobiles and other sources. As industrialization progresses, we will be unable to compromise on the use of energy to power heavy machines and will be forced to seek out the best options. As a consequence, utilizing green fuel, such as biodiesel derived from natural sources, is a realistic option. L. (Euphorbiaceae) is recognized as the greatest feedstock for biodiesel production throughout the world, and it has gained a huge market value in the recent years. Conventional cultivation alone will not be sufficient to meet the global need for the plant's biomass for the production of biodiesel. Adoption of plant tissue culture techniques that improve the biomass availability is an immediate need. The present review provides detailed information regarding in-vitro plant propagation (direct and indirect organogenesis), somatic embryogenesis, and acclimatization protocols of plantlets for stabilized production of biomass. The review also focuses on biotechnological approaches such as gene transformation studies, production of haploids, and double haploids for developing elite germplasm for high biomass and improved traits for the production of biodiesel.

摘要

环境污染是当今世界最紧迫的挑战之一。这种污染的主要原因是汽车和其他来源的燃料排放。随着工业化的推进,我们在使用能源为重型机器提供动力方面无法妥协,将被迫寻找最佳选择。因此,使用绿色燃料,如源自天然来源的生物柴油,是一个现实的选择。麻风树(大戟科)被公认为全球生物柴油生产的最佳原料,近年来其市场价值大幅提升。仅靠传统种植不足以满足全球对该植物生物质用于生产生物柴油的需求。迫切需要采用能提高生物质可用性的植物组织培养技术。本综述提供了有关植物离体繁殖(直接和间接器官发生)、体细胞胚胎发生以及用于稳定生物质生产的小植株驯化方案的详细信息。该综述还关注生物技术方法,如基因转化研究、单倍体和双单倍体的生产,以培育用于生产高生物质和改良生物柴油性状的优良种质。

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