Songthat William Haokip, Kripa Shankar, Tabalique Yumkhaibam, Hau Ngaih Lian, K. A. Sheikh, Ambrush Shanker, Prabha Chettri
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引用次数: 0
摘要
同源基因改变是指使用来自异源物种的天然基因,连同其内含子、原生启动子和终止子,改变受体植物的基因组成。简单地说,它是指利用 DNA 重组技术中的一种方法改变基因,而不使用任何外来 DNA;换句话说,在操作过程中只使用宿主植物的 DNA 或来自性状相容的近缘物种的 DNA。虽然基因改变的特征为传统育种提供了无价的替代品,但公众对食用转基因植物仍有顾虑。由于苹果是无性繁殖,其杂合性进一步阻碍了理想特性的成功转移。因此,可以通过顺式育种将所需基因直接转移到现有品种中,而不改变客户的任何理想性状。与传统育种相比,顺式育种的优势在于能够克服连接阻力、保持植物品种的遗传多样性、减少农药使用量并节省时间。在各种水果作物中使用顺式育种方法增加了将所需基因引入创新栽培品种而不影响其有益性状的可能性。
Cisgenics Approach for Fruit Crops Amelioration: An Overview
Cisgenics is the change of a recipient plant’s genetic make-up using a naturally derived gene from a species that is cross-compatible, along with its introns, native promoter and terminator, which are flanked at the typical sense orientation. It simply refers to genetic alteration carried out using one among the recombinant DNA technology approaches without the use of any foreign DNA; in other words, the host plant’s DNA or DNA from the closely related species that is sexually compatible is used only in the manipulation. There is a public concern about eating transgenic plants, although genetically altered features offer priceless alternatives to conventional breeding. Because apples are vegetatively propagated, their heterozygous nature further hampered the successful transfer of desirable features. As a result, it is possible to directly transfer desired genes through cisgenesis into an existing variety without changing any of the desirable traits for customers. The benefits of cisgenesis over conventional breeding include its ability to overcome linkage drag, maintain the genetic diversity of the plant variety, use less pesticides and save time. The use of cisgenic approaches in various fruit crops increases the possibility of introducing the desired genes into innovative cultivars without affecting their beneficial traits.c