Expression of cadherin, aminopeptidase N and alkaline phosphatase genes in Cry1Ac-susceptible and Cry1Ac-resistant strains of Plutella xylostella (L.)

文献类型: 外文期刊

第一作者: Yang, Z-X.

作者: Yang, Z-X.;Wu, Q-J.;Wang, S-L.;Chang, X-L.;Wang, J-H.;Guo, Z-J.;Lei, Y-Y.;Xu, B-Y.;Zhang, Y-J.;Yang, Z-X.

作者机构:

关键词: Plutella xylostella;Bt toxin;developmental stage;expression profile;resistance

期刊名称:JOURNAL OF APPLIED ENTOMOLOGY ( 影响因子:2.603; 五年影响因子:2.562 )

ISSN: 0931-2048

年卷期: 2012 年 136 卷 7 期

页码:

收录情况: SCI

摘要: Cadherin proteins, aminopeptidase N (APN) and alkaline phosphatase (ALP) bind to Bacillus thuringiensis (Bt) toxins in the lepidopteran midgut, but the inherent function of these receptors remains unclear. To clarify whether these three potential receptors contribute to the resistance of lepidopteran insects to the Bt toxin, the transcription patterns of these genes in Cry1Ac-susceptible Plutella xylostella strains and strains highly resistant to Cry1Ac were examined using real-time quantitative polymerase chain reactions. Both gene expressions of cadherin and APNs were most abundant in the midgut of fourth larval instars but were also found in pupae. The transcription levels of cadherin, APN2 and ALP genes in the midgut were more abundant in the susceptible strain than in the resistant strain and also clearly differed between the two strains. Moreover, the transcription levels of cadherin increased as the insect developed from the second to the fourth larval instars and then decreased in pupae. mRNA of the APN2 gene was more abundant than that of the APN1, APN3 and APN4 genes in the susceptible strain. The results suggested that these differences were attributable to the adaptation of the resistant strain to the Bt toxin and demonstrated a possible link between the gene expression of cadherin, ALP and APN2 and the resistance of P.similar to xylostella to Bt. The information provided in the current study can be useful for the development of resistance management strategies.

分类号:

  • 相关文献

[1]Toxicity of biocide GCSC-BtA on arthropod pests under different temperature conditions. Zhu, YJ,Sengonca, C,Liu, B.

[2]Biochemical Mechanism of Chlorantraniliprole Resistance in the Diamondback Moth, Plutella xylostella Linnaeus. Hu Zhen-di,Feng Xia,Lin Qing-sheng,Chen Huan-yu,Li Zhen-yu,Yin Fe,Hu Zhen-di,Feng Xia,Lin Qing-sheng,Chen Huan-yu,Li Zhen-yu,Yin Fe,Liang Pei,Gao Xi-wu. 2014

[3]Construction and characterisation of near-isogenic Plutella xylostella (Lepidoptera: Plutellidae) strains resistant to Cry1Ac toxin. Zhu, Xun,Lei, Yanyuan,Yang, Yanjv,Wu, Qingjun,Wang, Shaoli,Xie, Wen,Guo, Zhaojiang,Fu, Wei,Zhang, Youjun,Zhu, Xun,Li, Jianhong,Baxter, Simon W..

[4]Population dynamics and "outbreaks" of diamondback moth (Lepidoptera: Plutellidae) in Guangdong Province, China: Climate or Failure of Management?. Li, Zhenyu,Bao, Huali,Chen, Huanyu,Hu, Zhendi,Zhang, Deyong,Lin, Qingsheng,Yin, Fei,Wang, Min,Feng, Xia,Zalucki, Myron P..

[5]Bacillus thuringiensis insecticidal crystal proteins affect lifespan and reproductive performance of helicoverpa armigera and spodoptera exigua adults. YING ZHANG,YAN MA,PIN-JUN WAN,LI-LI MU,GUO-QING LI.

[6]Effects of the consecutive cultivation and periodic residue incorporation of Bacillus thuringiensis (Bt) cotton on soil microbe-mediated enzymatic properties. Zhenhua Chen,Chen, Lijun,Kai Wei,Lijun Chen,Zhijie Wu,Junyu Luo,Jinjie Cui.

[7]Marker-free, tissue-specific expression of Cry1Ab as a safe transgenic strategy for insect resistance in rice plants. Qi, Yongbin,Chen, Lei,Jin, Qingsheng,Zhang, Xiaoming,Qi, Yongbin,He, Zuhua,He, Xiuling,He, Zuhua. 2013

[8]Impacts of transgenic poplar-cotton agro-ecosystems upon target pests and non-target insects under field conditions. Zhang, D. J.,Liu, J. X.,Li, C. L.,Yang, M. S.,Zhang, D. J.,Lu, Z. Y.,Comada, E.. 2015

[9]Frequency of Bt resistance alleles in Helicoverpa armigera in 2007-2009 in the Henan cotton growing region of China. Feng, Hongqiang,Qiu, Feng,Gao, Yulin.

[10]Allelic-specific expression in relation to Bombyx mori resistance to Bt toxin. Chen, Yazhou,Islam, Iftakher,You, Lang,Wang, Yueqiang,Li, Zhiqian,Ling, Lin,Zeng, Baosheng,Xu, Jun,Huang, Yongping,Tan, Anjiang,Li, Muwang,Li, Muwang.

[11]Changes in susceptibility to conventional insecticides of a Cry1Ac-selected population of Helicoverpa armigera (Hubner) (Lepidoptera : Noctuidae). Guo, YY. 2004

[12]Molecular cloning and characterization of kiss1 in Brandt's voles (Lasiopodomys brandtii). Liu, Lan,Guo, Cong,Chen, Yan,Liu, Lan,Li, Zhengguang,Wang, Dawei,Li, Ning,Song, Ying,Liu, Xiaohui. 2017

[13]QTL mapping for resistance to SCMV in chinese maize germplasm. Zhang, SH,Li, XH,Wang, ZH,George, ML,Jeffers, D,Wang, FG,Liu, XD,Li, MS,Yuan, LX. 2003

[14]Sensitivity of Bemisia Tabaci (Hemiptera: Aleyrodidae) to Several New Insecticides in China: Effects of Insecticide Type and Whitefly Species, Strain, and Stage. Xie, Wen,Liu, Yang,Wang, Shaoli,Wu, Qingjun,Pan, Huipeng,Yang, Xin,Guo, Litao,Zhang, Youjun. 2014

[15]Stage-Specific Expression of Resistance to Different Acaricides in Four Field Populations of Tetranychus urticae (Acari: Tetranychidae). Tang, Xiaofeng,Zhang, Youjun,Wu, Qingjun,Xie, Wen,Wang, Shaoli.

[16]Impact of epistasis and QTL x environment interaction on the accumulation of seed mass of soybean (Glycine max L. Merr.). Han, Yingpeng,Teng, Weili,Sun, Desheng,Du, Yuping,Li, Wenbin,Qiu, Lijuan,Han, Yingpeng,Xu, Xiangling.

[17]Large-scale screening for maize drought resistance using multiple selection criteria evaluated under water-stressed and well-watered environments. Hao, Zhuanfang,Xie, Chuanxiao,Li, Xinhai,Zhang, Shihuang,Lu, Yanli,Crossa, Jose,Araus, Jose-Luis,Taba, Suketoshi,Xu, Yunbi,Lu, Yanli,Gao, Shibin,Pan, Guangtang,Rong, Tingzhao,Vivek, Bindiganavile S.,Magorokosho, Cosmos,Mugo, Stephen,Makumbi, Dan,Xu, Yunbi.

[18]Construction of a sequence-based bin map and mapping of QTLs for downy mildew resistance at four developmental stages in Chinese cabbage (Brassica rapa L. ssp pekinensis). Yu, Shuancang,Su, Tongbing,Zhi, Shenghua,Zhang, Fenglan,Wang, Weihong,Zhang, Deshuang,Zhao, Xiuyun,Yu, Yangjun,Yu, Shuancang,Su, Tongbing,Zhi, Shenghua,Zhang, Fenglan,Wang, Weihong,Zhang, Deshuang,Zhao, Xiuyun,Yu, Yangjun,Yu, Shuancang,Su, Tongbing,Zhi, Shenghua,Zhang, Fenglan,Wang, Weihong,Zhang, Deshuang,Zhao, Xiuyun,Yu, Yangjun.

[19]Automated detection and identification of white-backed planthoppers in paddy fields using image processing. Yao Qing,Chen Guo-te,Wang Zheng,Zhang Chao,Yang Bao-jun,Tang Jian. 2017

[20]Cloning and differential expression of five heat shock protein genes associated with thermal stress and development in the polyphagous predatory mite Neoseiulus cucumeris (Acari: Phytoseiidae). Chen, Wei,Zhang, Min,Zhao, Yunlong,Wu, Wenjing,Zhang, Guren,Li, Dunsong.

作者其他论文 更多>>