首页> 外文期刊>Planta: An International Journal of Plant Biology >Current achievements and future prospects of genetic engineering in Indian mustard (Brassica junceaL. Czern & Coss.)
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Current achievements and future prospects of genetic engineering in Indian mustard (Brassica junceaL. Czern & Coss.)

机译:印度芥末(Brassica Junceal)基因工程的当前成就与未来展望。Czern&Coss。)

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Main conclusion Transgenic technology in Indian mustard has expedited crop improvement programs. Further, there is a need to optimize gene editing protocols and find out the suitable target genes to harvest the benefits of gene editing technology in this important edible oilseed crop. Brassica junceais an economically and industrially important oilseed crop being grown mainly in India and in some parts of Canada, Russia, China and Australia. Besides being consumed as edible oil, it also has numerous applications in food and paint industry. However, its overall production and productivity are being hampered by a number of biotic and abiotic stress factors. Further, its oil and seedmeal quality needs to be improved for increasing food as well as feed value. However, the lack of resistant crossable germplasm or varieties necessitated the use of genetic engineering interventions in Indian mustard crop improvement. A number of genes conferring resistance to biotic stresses including lectins for aphids' control, chitinase, glucanase and osmotin for disease control and for abiotic stresses,CODA,LEAand ion antiporter genes have been transferred to Indian mustard. Both antisense andRNAitechnologies have been employed for improving oil and seedmeal quality. Efforts have been made to improve the phytoremediation potential of this crop through genetic engineering approach. The deployment ofbarnase/barstargene system for developing male sterile and restorer lines has really expedited hybrid development programs in Indian mustard. Further, there is a need to optimize gene editing protocols and to find out suitable target genes for gene editing in this crop. In this review paper, authors have attempted to review various genetic transformation efforts carried out in Indian mustard for its improvement to combat biotic and abiotic stress challenges, quality improvement and hybrid development.
机译:主要结论印度芥末的转基因技术加快了作物改善计划。此外,需要优化基因编辑方案,并找出合适的靶基因,以在这一重要的食用油作物中收集基因编辑技术的益处。 Brassica Junceais在印度和加拿大,俄罗斯,中国和澳大利亚的一些经济上和工业上重要的油籽作物。除了作为食用油消耗,还有许多在食品和油漆行业中的应用。然而,它的整体生产和生产率受到许多生物和非生物胁迫因素的阻碍。此外,需要改善其油和种子膜质量以增加食物以及饲料值。然而,缺乏抗性可联系种质或品种必然需要在印度芥末作物改进中使用基因工程干预措施。将许多基因赋予抗蚜虫对照,章节酶,葡聚糖酶和OsMotin的抗生物应力的抗性,用于疾病对照和非生物胁迫,CODA,Coda,Coda,Coda,Coda,CodAl离子炔菌属基因已转移到印度芥末中。反义和腹技术都已经用于改善油和种子质量。通过基因工程方法,已经努力改善这种作物的植物修复潜力。用于开发雄性不育和恢复系的Rarnase / Barstargene系统的部署在印度芥末中真正加快了混合发育计划。此外,需要优化基因编辑方案,并在该作物中查找合适的基因编辑的靶基因。在这篇论文中,作者试图审查印度芥末进行的各种遗传转型努力,以改善生物和非生物应激挑战,质量改善和杂交发展。

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