为分析黑鲷♀×真鲷♂(Acanthopagrus schlegelii♀×Pagrosomus major♂)反交子代在生长、发育等经济性状优于黑鲷亲本(A.schlegelii)的分子遗传差异,本研究克隆了反交子代(PA)与黑鲷(As)的Ca M基因,运用生物信息学方法对基因P...为分析黑鲷♀×真鲷♂(Acanthopagrus schlegelii♀×Pagrosomus major♂)反交子代在生长、发育等经济性状优于黑鲷亲本(A.schlegelii)的分子遗传差异,本研究克隆了反交子代(PA)与黑鲷(As)的Ca M基因,运用生物信息学方法对基因PACa M与As Ca M的序列进行了详细分析;同时通过荧光定量分析了PACa M与As Ca M在仔鱼及2龄成鱼不同组织的表达特征。研究结果表明,PACa M基因c DNA全长1180 bp,As Ca M基因c DNA全长1241 bp,均具有一个450 bp的开放阅读框,编码149个氨基酸,分子量约16.84 k D,等电点为4.09;序列比对、结构比较等分析表明,PACa M和As Ca M属Ca M基因家族,具有4个EF-hand钙结合功能域。定量分析表明Ca M在两种鱼的仔鱼及成鱼的脑与性腺中有较高表达;PACa M和As Ca M在仔鱼及成鱼的鳃、肌肉及性腺中的表达存在显著差异(P<0.05),在脑、肝及肾中的表达没有明显差异(P>0.05);PACa M在仔鱼中表达量最高,As Ca M在成鱼性腺中表达最高,均显示了Ca M基因在生长与繁殖中的重要作用。研究结果为鲷科属间杂交获得的子代与亲本性状差异的功能基因表达提供一些基础资料。展开更多
Sheath blight disease (ShB) has a severe impact on the production of rice. ABI3/VP1-like 1(RAVL1) negatively regulated the rice defense mechanism against ShB, however, this regulatorymechanism is not clearly understoo...Sheath blight disease (ShB) has a severe impact on the production of rice. ABI3/VP1-like 1(RAVL1) negatively regulated the rice defense mechanism against ShB, however, this regulatorymechanism is not clearly understood. In this study, we identified that indeterminate domain 3 (IDD3) waspositively regulated by RAVL1. Further, chromatin immunoprecipitation (ChIP) assay, yeast one-hybridassay and transient expression assay indicated a direct binding between RAVL1 and the IDD3 promoterregion. IDD3 was ubiquitously expressed in different tissues and at different stages, and its expressionwas significantly enhanced by Rhizoctonia solani infection. IDD3 exhibited transcription activation activityin yeast and IDD3-GFP was found to be localized in the nucleus. IDD3 mutants exhibited no significantdifferences in response to ShB, while IDD3 overexpressors were more susceptible to ShB compared withwild type (WT) plants. Furthermore, IDD3 repressors were less susceptible to R. solani than WT plants.Interestingly, the expression of brassinosteroid-related genes (D2, D11 and BRI1) was lower in IDD3repressors and higher in IDD3 overexpressors compared with WT. However, the ChIP assay revealedthat IDD3 did not directly bind to the D2 and D11 promoters. Overexpression of IDD3 in BRI1 mutantd61-1 inhibited the activity of IDD3, reducing its susceptibility to ShB compared with IDD3 overexpressorand WT plants, indicating that IDD3 negatively regulated the rice defense mechanism against ShB by activatingthe BR signaling pathway. Thus, our analyses provided information to enhance the understanding of therice defense mechanism against ShB.展开更多
文摘为分析黑鲷♀×真鲷♂(Acanthopagrus schlegelii♀×Pagrosomus major♂)反交子代在生长、发育等经济性状优于黑鲷亲本(A.schlegelii)的分子遗传差异,本研究克隆了反交子代(PA)与黑鲷(As)的Ca M基因,运用生物信息学方法对基因PACa M与As Ca M的序列进行了详细分析;同时通过荧光定量分析了PACa M与As Ca M在仔鱼及2龄成鱼不同组织的表达特征。研究结果表明,PACa M基因c DNA全长1180 bp,As Ca M基因c DNA全长1241 bp,均具有一个450 bp的开放阅读框,编码149个氨基酸,分子量约16.84 k D,等电点为4.09;序列比对、结构比较等分析表明,PACa M和As Ca M属Ca M基因家族,具有4个EF-hand钙结合功能域。定量分析表明Ca M在两种鱼的仔鱼及成鱼的脑与性腺中有较高表达;PACa M和As Ca M在仔鱼及成鱼的鳃、肌肉及性腺中的表达存在显著差异(P<0.05),在脑、肝及肾中的表达没有明显差异(P>0.05);PACa M在仔鱼中表达量最高,As Ca M在成鱼性腺中表达最高,均显示了Ca M基因在生长与繁殖中的重要作用。研究结果为鲷科属间杂交获得的子代与亲本性状差异的功能基因表达提供一些基础资料。
基金the Science and Technology Innovation Talents of Shenyang,China(Grant No.RC190489).
文摘Sheath blight disease (ShB) has a severe impact on the production of rice. ABI3/VP1-like 1(RAVL1) negatively regulated the rice defense mechanism against ShB, however, this regulatorymechanism is not clearly understood. In this study, we identified that indeterminate domain 3 (IDD3) waspositively regulated by RAVL1. Further, chromatin immunoprecipitation (ChIP) assay, yeast one-hybridassay and transient expression assay indicated a direct binding between RAVL1 and the IDD3 promoterregion. IDD3 was ubiquitously expressed in different tissues and at different stages, and its expressionwas significantly enhanced by Rhizoctonia solani infection. IDD3 exhibited transcription activation activityin yeast and IDD3-GFP was found to be localized in the nucleus. IDD3 mutants exhibited no significantdifferences in response to ShB, while IDD3 overexpressors were more susceptible to ShB compared withwild type (WT) plants. Furthermore, IDD3 repressors were less susceptible to R. solani than WT plants.Interestingly, the expression of brassinosteroid-related genes (D2, D11 and BRI1) was lower in IDD3repressors and higher in IDD3 overexpressors compared with WT. However, the ChIP assay revealedthat IDD3 did not directly bind to the D2 and D11 promoters. Overexpression of IDD3 in BRI1 mutantd61-1 inhibited the activity of IDD3, reducing its susceptibility to ShB compared with IDD3 overexpressorand WT plants, indicating that IDD3 negatively regulated the rice defense mechanism against ShB by activatingthe BR signaling pathway. Thus, our analyses provided information to enhance the understanding of therice defense mechanism against ShB.