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Integrated Analysis of Metabolome and Transcriptome of Bambusa emeiensis Shoots in Response to Bamboo Snout Beetle Cyrtotrachelus buqueti(Coleoptera:Curculionidae)
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作者 Hao Tang Yuanqiu Li Chaobing Luo 《Phyton-International Journal of Experimental Botany》 SCIE 2022年第6期1227-1244,共18页
Plants have evolved constitutive and inductive defense mechanisms to protect themselves from herbivorous insects.Metabolites in plants are thought to be involved in response to herbivores.Bambusa emeiensis is an impor... Plants have evolved constitutive and inductive defense mechanisms to protect themselves from herbivorous insects.Metabolites in plants are thought to be involved in response to herbivores.Bambusa emeiensis is an important bamboo species widely distributed in Southwest China.It is easy to attract herbivores such as Cyrtotrachelus buqueti.Through the detection and analysis of metabolites in B.emeiensis metabolomic data,35 differential metabolites(biomarkers)were finally identified from 206 detection peaks,mainly primary metabolites.Subsequently,we conducted an association analysis between 35 biomarkers that annotated to be involved in 71 metabolic pathways in the metabolome and 324 differentially expressed genes(DEGs)in 207 gene expression pathways distributed in the transcriptome of B.emeiensis after feeding by C.buqueti.We also discussed the relationship between the changes in gene expression levels and metabolite content variation.A total of 47 integrated pathways containing the corresponding DEGs and biomarkers were screened out,with the amino acid synthesis pathway(ko01230)containing the most DEGs and biomarkers.In these integrated pathways,the changes in biomarkers content and the expression levels of the corresponding genes were generally consistent.For example,the increase in tryptophan content was accompanied by an increase in the expression of the corresponding catalase in the tryptophan synthesis pathway.Similar to this was glucose and trehalose in carbohydrate metabolism.Therefore,this study further deepened our understanding of the defense mechanism of B.emeiensis against bamboo pests and provided new insights for the prevention and control of bamboo diseases and pests. 展开更多
关键词 bambusa emeiensis HERBIVORE Cyrtotrachelus buqueti METABOLOME transcriptome
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慈竹细胞壁转化酶BeCWINV1的克隆、亚细胞定位和表达分析
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作者 冯俊淳 李唐吉 +2 位作者 杨琪琪 王博文 曹颖 《分子植物育种》 CAS 北大核心 2021年第13期4362-4370,共9页
细胞壁转化酶(CWINVs)是糖降解关键酶之一,在植物发育、同化物分配和调节库强等方面具有重要作用。为了探究慈竹中CWINVs基因的亚细胞定位和表达水平,本研究以慈竹转录组数据库为基础,从慈竹笋中克隆到BeCWINV1基因。其开放阅读框序列... 细胞壁转化酶(CWINVs)是糖降解关键酶之一,在植物发育、同化物分配和调节库强等方面具有重要作用。为了探究慈竹中CWINVs基因的亚细胞定位和表达水平,本研究以慈竹转录组数据库为基础,从慈竹笋中克隆到BeCWINV1基因。其开放阅读框序列长度为1758 bp,编码585个氨基酸残基。序列比对和系统进化分析表明,BeCWINV1具有细胞壁转化酶特异的活性功能位点"WECPD",并与绿竹Boβfruct1、水稻CIN2、玉米INCW2亲缘关系较近,聚在一个CWINV分支上。将BeCWINV1-GFP融合载体瞬时转化洋葱表皮细胞的研究也证明了BeCWINV1定位在细胞壁上,表明其可能参与质外体空间蔗糖的水解。实时荧光定量PCR分析表明,BeCWINV1在慈竹茎杆中表达量显著高于其他部位;额外施加蔗糖对BeCWINV1表达没有明显影响,但糖供应受到限制时其表达被显著激活。这些结果表明,BeCWINV1参与慈竹茎杆韧皮部卸载,对逆境胁迫下维持细胞内糖浓度和库活性方面有重要的作用。 展开更多
关键词 慈竹(bambusa emeiensis) 细胞壁转化酶 克隆 亚细胞定位 表达分析
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