Breeding for brown plant hopper resistance in rice: recent updates and future perspectives.

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Muthukumarasamy Sriram, Swaminathan Manonmani, Chellapan Gopalakrishnan, Venugopal Sheela, Aravindan Shanmugam, K M Revanna Swamy, Ramalingam Suresh
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引用次数: 0

Abstract

Rice yield is often threatened by various stresses caused by biotic and abiotic agents. Many biotic stress factors are known to cause crop growth and yield from seedling to maturity. The brown plant hopper (BPH) can potentially reduce the rice yield to an extent of up to 80%. Intensive research efforts in 1972 led to a better understanding of pathogens/insect and host-plant resistance. This resulted in the identification of about 70 BPH-resistant genes and quantitative trait loci (QTLs) from diversified sources including wild germplasm. However, the BPH-resistant improved varieties with a single resistant gene lose the effectiveness of the gene because of the evolution of new biotypes. This review inferred that the level of resistance durable when incorporating multiple 'R' gene combinations when compared to a single gene. Breeding tools like wide hybridization, biparental crosses, marker-assisted introgression, pyramiding, and genetic engineering have been widely employed to breed rice varieties with single or combination of 'R' genes conferring durable resistance to BPH. Many other genes like receptor-like kinase genes, transcriptional factors, etc., were also found to be involved in the resistant mechanisms of 'R' genes. Due to this, the durability of the resistance can be improved and the level of resistance of the 'R' genes can be increased by adopting newer breeding tools like genome editing which hold promise to develop rice varieties with stable resistance.

水稻抗褐飞虱育种:最新进展与未来展望。
水稻产量经常受到生物和非生物因素造成的各种胁迫的威胁。众所周知,许多生物胁迫因素会影响作物从幼苗到成熟期的生长和产量。褐飞虱 (BPH) 可使水稻减产高达 80%。通过 1972 年的深入研究,人们对病原体/昆虫和寄主植物的抗性有了更好的了解。结果,从包括野生种质在内的多种来源中鉴定出了约 70 个抗 BPH 基因和数量性状位点 (QTL)。然而,具有单一抗性基因的抗 BPH 改良品种会因为新生物型的进化而失去基因的有效性。本综述推断,与单一基因相比,加入多个 "R "基因组合的抗性水平更持久。目前已广泛采用宽幅杂交、双亲杂交、标记辅助引种、金字塔法和基因工程等育种工具来培育具有单个或多个 "R "基因组合的水稻品种,这些基因组合可赋予水稻对 BPH 的持久抗性。研究还发现,许多其他基因,如受体激酶基因、转录因子等,也参与了 "R "基因的抗性机制。因此,可以通过采用基因组编辑等新的育种工具来提高抗性的持久性,并提高 "R "基因的抗性水平,从而有望培育出具有稳定抗性的水稻品种。
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来源期刊
Molecular Biology Reports
Molecular Biology Reports 生物-生化与分子生物学
CiteScore
5.00
自引率
0.00%
发文量
1048
审稿时长
5.6 months
期刊介绍: Molecular Biology Reports publishes original research papers and review articles that demonstrate novel molecular and cellular findings in both eukaryotes (animals, plants, algae, funghi) and prokaryotes (bacteria and archaea).The journal publishes results of both fundamental and translational research as well as new techniques that advance experimental progress in the field and presents original research papers, short communications and (mini-) reviews.
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