The Mechanisms of Silkworm Resistance to the Baculovirus and Antiviral Breeding.

IF 15 1区 农林科学 Q1 ENTOMOLOGY
Zhaoyang Hu, Feifei Zhu, Keping Chen
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引用次数: 4

Abstract

Silkworm (Bombyx mori) is not only an economic insect but also a model organism for life science research. Bombyx mori nucleopolyhedrovirus (BmNPV) disease is a major infectious disease in the world's sericulture industry. The cocoon loss caused by this disease accounts for more than 60% of the total loss caused by all silkworm diseases. To date, there has been no effective solution for preventing and treating this disease. The most effective measure is to breed disease-resistant varieties. The quickest way to breed disease-resistant varieties is to apply genetic modification. However, this requires that we obtain disease resistance genes and know the mechanism of disease resistance. Since the discovery of disease-resistant resources in 1989, scholars in the sericulture industry around the world have been inspired to search for resistance genes. In the past two decades, with the help of multi-omics technologies, screening of resistance genes, gene localization, protein modification, virus-host interactions, etc., researchers have found some candidate genes that have been proposed to function at the cellular or individual level. Several disease-resistant varieties have been obtained and used in production through hybrid breeding, RNA interference, and genetic modification. This article summarizes and reviews the discovery of and research advances related to silkworm resistance to BmNPV. It is anticipated that the review will inspire scientific researchers to continue searching for disease resistance genes, clarify the molecular mechanism of silkworm disease resistance, and promote disease-resistant silkworm breeding.

蚕对杆状病毒的抗性机理和抗病毒育种。
蚕(Bombyx mori)不仅是一种经济昆虫,也是生命科学研究的模式生物。桑蚕核型多角体病毒(BmNPV)病是世界养蚕业的主要传染病。该病造成的蚕茧损失占所有蚕病总损失的 60% 以上。迄今为止,还没有预防和治疗这种疾病的有效办法。最有效的措施是培育抗病品种。培育抗病品种的最快方法是进行基因改造。然而,这需要我们获得抗病基因并了解抗病机理。自 1989 年发现抗病资源以来,世界各地的蚕桑学者都受到启发,开始寻找抗病基因。近二十年来,借助多组学技术、抗病基因筛选、基因定位、蛋白质修饰、病毒-宿主相互作用等手段,研究人员发现了一些候选基因,并提出了这些基因在细胞或个体水平上的功能。通过杂交育种、RNA 干扰和基因修饰等方法,已经获得了一些抗病品种并用于生产。本文总结和回顾了有关家蚕抗 BmNPV 的发现和研究进展。希望能对科研人员继续寻找抗病基因、阐明家蚕抗病分子机制、促进抗病家蚕育种有所启发。
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来源期刊
Annual review of entomology
Annual review of entomology 生物-昆虫学
CiteScore
45.70
自引率
0.80%
发文量
46
期刊介绍: The Annual Review of Entomology, a publication dating back to 1956, offers comprehensive reviews of significant developments in the field of entomology.The scope of coverage spans various areas, including:biochemistry and physiology, morphology and development, behavior and neuroscience, ecology, agricultural entomology and pest management, biological control, forest entomology, acarines and other arthropods, medical and veterinary entomology, pathology, vectors of plant disease, genetics, genomics, and systematics, evolution, and biogeography.
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