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Biological and biochemical characterization of a red-eye mutant in Nilaparvata lugens (Hemiptera: Delphacidae) 被引量:3
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作者 Shu-Hua Liu Jing Yao +3 位作者 Hong-Wei Yao Peng-Ling Jiang Bao-Jun Yang Jian Tang 《Insect Science》 SCIE CAS CSCD 2014年第4期469-476,共8页
A red-eye colony was established in our laboratory in brown planthopper (BPH), Nilaparvata lugens (Stal), a major rice pest in Asia. Except for the red-eye phenotype, no other differences were observed between the... A red-eye colony was established in our laboratory in brown planthopper (BPH), Nilaparvata lugens (Stal), a major rice pest in Asia. Except for the red-eye phenotype, no other differences were observed between the wild-type (brown eye) and the mutant-type (red eye) in external characters. Genetic analysis revealed that the red-eye phenotype was controlled by a single autosomal recessive allele. Biological studies found that egg produc- tion and egg viability in the red-eye mutant colony were not significantly different from those in the wild-type BPH. Biochemical analysis and electronic microscopy examination revealed that the red-eye mutants contained decreased levels of both xanthommatin (brown) and pteridine (red) and reduced number of pigment granules. Thus, the changes of amount and ratio of the two pigments is the biochemical basis of this red-eye mutation. Our results indicate that the red-eye mutant gene (red) might be involved in one common gene locus shared by the two pigments in pigment transportation, pigment granule formation or some other processes. 展开更多
关键词 biological characterization eye pigment genetic analysis nilaparvatalugens pigment granule red-eye mutant
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水稻品种抗褐飞虱不同生物型稳定性的AMMI模型分析 被引量:2
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作者 吴碧球 黄凤宽 +1 位作者 黄所生 韦素美 《华中农业大学学报》 CAS CSCD 北大核心 2009年第5期540-545,共6页
采用AMMI模型分析水稻品种抗褐飞虱不同生物型的稳定性,结果表明:水稻品种对褐飞虱不同生物型的抗感性均存在极显著的环境效应、基因型效应和互作效应。但是,不同水稻品种对褐飞虱不同生物型的抗感性稳定性程度不一样,同一水稻品种对褐... 采用AMMI模型分析水稻品种抗褐飞虱不同生物型的稳定性,结果表明:水稻品种对褐飞虱不同生物型的抗感性均存在极显著的环境效应、基因型效应和互作效应。但是,不同水稻品种对褐飞虱不同生物型的抗感性稳定性程度不一样,同一水稻品种对褐飞虱不同生物型的抗性稳定性程度也存在差异。抗感褐飞虱生物型Ⅱ的品种中,Rathu Heenati(RHT)的抗虫性最稳定,RP1976-18-6-4-2的抗虫性最不稳定;TN1的感虫性最稳定,国粳4号的感虫性最不稳定。抗感褐飞虱孟加拉型的品种中,Ptb33的抗虫性最稳定,IR56的抗虫性最不稳定;IR26的感虫性最稳定,ASD7的感虫性最不稳定。 展开更多
关键词 AMMI模型 水稻品种 褐飞虱 生物型 抗性
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