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植物免疫研究与抗病虫绿色防控:进展、机遇与挑战 被引量:45
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作者 张杰 董莎萌 +12 位作者 王伟 赵建华 陈学伟 郭惠珊 何光存 何祖华 康振生 李毅 彭友良 王国梁 周雪平 王源超 周俭民 《中国科学:生命科学》 CSCD 北大核心 2019年第11期1479-1507,共29页
植物免疫学是研究植物与病原生物互作的学科.同动物一样,植物也具有强大的先天免疫系统,其本质是通过对病毒、细菌、真菌、卵菌、线虫、昆虫、寄生植物等病原生物的识别激活防卫反应,拒阻病原生物的侵害;而病原生物则能够逃避或抑制宿... 植物免疫学是研究植物与病原生物互作的学科.同动物一样,植物也具有强大的先天免疫系统,其本质是通过对病毒、细菌、真菌、卵菌、线虫、昆虫、寄生植物等病原生物的识别激活防卫反应,拒阻病原生物的侵害;而病原生物则能够逃避或抑制宿主植物的识别和防卫反应,在植物上引起病虫害.20年来,我国植物免疫研究取得巨大进步,与国际同行相比,在多个研究方向实现了并跑,在少数方向实现了领跑,为农作物病虫害绿色防控提供了理论支撑和新的技术手段. 展开更多
关键词 抗病基因 抗虫基因 感病基因 免疫受体 激发子 效应蛋白 信号转导 小RNA
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Transient silencing mediated by in vitro synthesized double-stranded RNA indicates that PsCdc14 is required for sporangial development in a soybean root rot pathogen 被引量:3
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作者 ZHAO Wei YANG XinYu +3 位作者 dong suomeng SHENG YuTing WANG YuanChao ZHENG XiaoBo 《Science China(Life Sciences)》 SCIE CAS 2011年第12期1143-1150,共8页
In many eukaryotic organisms, Cdcl4 phosphatase regulates multiple biological events during anaphase and is essential for mitosis. It has been shown that Cdcl4 is required for sporulation in the potato blight pathogen... In many eukaryotic organisms, Cdcl4 phosphatase regulates multiple biological events during anaphase and is essential for mitosis. It has been shown that Cdcl4 is required for sporulation in the potato blight pathogen Phytophthora infestans; howev- er, the role that the Cdcl4 homolog (PsCdcl4) plays in the soil-borne soybean root rot pathogen P. sojae remains ambiguous. PsCdc14 is highly expressed in spornlation, zoospore, and cyst life stages, but not in vegetative mycelia and infection stages, suggesting that it contributes to asexual reproduction and thus the spread of the disease. Double-stranded RNA (dsRNA) medi- ates gene silencing, a post-transcriptional and highly conserved process in eukaryotes, involving specific gene silencing through degradation of target mRNA. We combined in vitro dsRNA synthesis and a polyethylene glycol-mediated transfor- marion system to construct a dsRNA-mediated transient gene silencing system; and then performed a functional analysis of PsCdcl4 in P. sojae. PsCdc14 mRNA was dramatically reduced in transformants after protoplasts were exposed in in vitro synthesized PsCdc14 dsRNA, resulting in low sporangial production and abnormal development in P. sojae silencing lines. Furthermore, dsRNA-mediated transient gene silencing could enable elucidation of P. sojae rapid gene function, facilitating our understanding of the development and pathogenicity mechanisms of this oomycete fungus. 展开更多
关键词 Phytophthora sojae PsCdc14 sporangium transient gene silencing
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