[Objective] The paper was to improve the blast resistance of insect-resistant transgenic rice. [Method] The Japonica rice variety Jikang10, a new transgenic variety with exogenous insect-resistant gene Cry1C, was used...[Objective] The paper was to improve the blast resistance of insect-resistant transgenic rice. [Method] The Japonica rice variety Jikang10, a new transgenic variety with exogenous insect-resistant gene Cry1C, was used as the receptor, and Kongyu 131, a traditional breeding variety with broad-spectrum high blast resistance genes Pi1 and Pi2, was used as the donor to breeding new rice varieties. The genes were polymerized by hybridization and multi-generation backcrossing, and the offspring of each generation was screened by molecular marker assisted selection, field identification of multi-resistance against insect pests and diseases and agronomic trait selection. [Result] Four lines SK01, SK02, SK03 and SK04 with better resistances to insect pests and blast and outstanding agronomic traits in field were selected. [Conclusion] The results will lay foundations for breeding new multi-resistance rice varieties in Huanghuai rice region.展开更多
Rice blast disease is one of the most devastating diseases in rice production,which severely affects the high and stable yield of rice.The formation of appressorium plays a key role in the pathogenesis of Magnaporthe ...Rice blast disease is one of the most devastating diseases in rice production,which severely affects the high and stable yield of rice.The formation of appressorium plays a key role in the pathogenesis of Magnaporthe grisea in rice.It has been confirmed that a P-type ATPase (P-ATPase) is involved in the formation of appressorium.A number of small molecular substances are able to enter the pathogen from the host during the interactions between pathogens and hosts,thus resisting the infection of pathogens.In this study,a 232 bp DNA sequence with good specificity from the first exon of P-ATPase gene MgAPT2 was used as an interference fragment and was inserted into interference vector forward and reversely.The interfering vector was then transformed into rice blast-susceptible rice variety Nipponbare via Agrobacterium-mediated transformation.Identification of rice plants inoculated with M.grisea at the seedling stage and detection of the expression level of P-ATPase gene MgAPT2 showed that the expression level of MgAPT2 gene in transgenic plants was reduced and the rice blast resistance was improved.This study provided a new way for the innovation of rice germplasm resources resistant to rice blast disease.展开更多
基金Supported by The Agricultural Seed Improvement Project of Shandong (2019LZGC017, 2019LZGC003)Agricultural Industry Research System (Rice) Project of Shandong Province (SDAIT-17-03)The Agricultural and Technology Innovation Project of Shandong Academy of Agricultural Sciences(CXGC2021A30)。
文摘[Objective] The paper was to improve the blast resistance of insect-resistant transgenic rice. [Method] The Japonica rice variety Jikang10, a new transgenic variety with exogenous insect-resistant gene Cry1C, was used as the receptor, and Kongyu 131, a traditional breeding variety with broad-spectrum high blast resistance genes Pi1 and Pi2, was used as the donor to breeding new rice varieties. The genes were polymerized by hybridization and multi-generation backcrossing, and the offspring of each generation was screened by molecular marker assisted selection, field identification of multi-resistance against insect pests and diseases and agronomic trait selection. [Result] Four lines SK01, SK02, SK03 and SK04 with better resistances to insect pests and blast and outstanding agronomic traits in field were selected. [Conclusion] The results will lay foundations for breeding new multi-resistance rice varieties in Huanghuai rice region.
基金Supported by International Cooperation Project of Jiangsu Province(BZ2011039)Agricultural Technology Independent Innovation Fund of Jiangsu Province[CX(12)2024]~~
文摘Rice blast disease is one of the most devastating diseases in rice production,which severely affects the high and stable yield of rice.The formation of appressorium plays a key role in the pathogenesis of Magnaporthe grisea in rice.It has been confirmed that a P-type ATPase (P-ATPase) is involved in the formation of appressorium.A number of small molecular substances are able to enter the pathogen from the host during the interactions between pathogens and hosts,thus resisting the infection of pathogens.In this study,a 232 bp DNA sequence with good specificity from the first exon of P-ATPase gene MgAPT2 was used as an interference fragment and was inserted into interference vector forward and reversely.The interfering vector was then transformed into rice blast-susceptible rice variety Nipponbare via Agrobacterium-mediated transformation.Identification of rice plants inoculated with M.grisea at the seedling stage and detection of the expression level of P-ATPase gene MgAPT2 showed that the expression level of MgAPT2 gene in transgenic plants was reduced and the rice blast resistance was improved.This study provided a new way for the innovation of rice germplasm resources resistant to rice blast disease.