甜橙AP2亚家族转录因子的鉴定与分析OA北大核心CSTPCD
Identification and analysis of AP2 subfamily transcription factors in sweet orange(Citrus sinensis)
[目的]AP2亚家族转录因子具有调控植物种子、叶、花、根、茎等器官发育和响应非生物及生物胁迫的功能.对甜橙AP2亚家族进行基因鉴定、生物信息学分析和表达分析,为深入研究甜橙AP2亚家族基因的生物学功能提供理论基础.[方法]利用生物信息学分析方法,对甜橙AP2亚家族基因进行筛选与鉴定,通过qRT-PCR分析基因在不同组织部位以及不同非生物胁迫下的表达模式.[结果]鉴定出14个甜橙AP2亚家族基因,不均等分布在6条染色体上,其编码蛋白均为不稳定的亲水性蛋白.甜橙AP2亚家族基因在根、茎、叶中的表达存在差异,且多数基因可以被干旱和高盐胁迫诱导表达.[结论]鉴定出14个甜橙AP2亚家族基因,它们可能在甜橙响应非生物胁迫过程中起重要作用.
[Objective]AP2 subfamily transcription factors have the function of regulating the develop-ment of plant seeds,leaves,flowers,roots,stems and other organs and the responding to abiotic and bi-otic stresses.In this study,we performed gene identification,bioinformatics analysis,and gene expres-sion analysis of the AP2 subfamily in order to provide a theoretical basis for studying the biological functions of AP2 subfamily genes in sweet orange(Citrus sinensis).[Methods]The bioinformatics analysis was used to screen and identify AP2 subfamily genes in sweet orange.The gene expression pat-terns in various tissue and abiotic stresses were analyzed by qRT-PCR.[Results]14 AP2 subfamily genes were identified from the sweet orange genome database using bioinformatics methods.According to the analysis of protein physicochemical properties,the AP2 subfamily proteins of sweet orange were all unstable hydrophilic proteins.These proteins were primarily localized in the nucleus,which was con-sistent with their function and properties as transcription factors.The results of phylogenetic tree analy-sis showed that AP2 subfamily proteins of sweet orange could be divided into three evolutionary branch-es,including the ancient clade(CsRAP2-5,CsRAP2-6,CsRAP2-9,CsRAP2-2 and CsRAP2-13),the in-termediate clade(CsRAP2-1,CsRAP2-7,CsRAP2-11 and CsRAP2-14)and the modern clade(Cs-RAP2-2-CsRAP2-4,CsRAP2-8 and CsRAP2-10).In the phylogenetic tree of plant AP2 subfamily pro-teins,there were significant interspecific differences in the number of AtAP2,OsAP2,CcAP2 and CsAP2 protein members clustered in the same group.The AP2 subfamily proteins of sweet orange were more closely related to the homologous proteins of Clementine orange than the homologous proteins of Arabidopsis and rice.The protein conserved motif analysis showed that the AP2 subfamily proteins con-tained conserved elements of Motif 3,Motif 4,Motif 2,Motif 5 and Motif 1.In addition,each group in the orange AP2 subfamily protein phylogenetic tree had its specific conserved elements.These results indicated that the members of the same subgroup of AP2 subfamily proteins in sweet orange were high-ly conserved,which also would reflect the reliability of the phylogenetic analysis results.The number of introns and exons of AP2 subfamily genes in sweet orange was 5-9 and 6-10.The promoter sequenc-es of AP2 subfamily genes in sweet orange contained cis-acting elements such as endogenous hormone response,growth and development and abiotic stress response,indicating that the subfamily genes might have the function of regulating plant growth and development in response to plant hormones,light and abiotic stresses.The results of collinearity comparative analysis showed that sweet orange had more AP2 subfamily homologous gene pairs with Arabidopsis and apple compared with rice and maize.These results indicated that compared with monocots,the AP2 subfamily genes of sweet orange had more homologous genes and closer relatives with dicots.The prediction of protein secondary structure showed that the AP2 subfamily proteins of sweet orange had the highest proportion of α-helix and ran-dom coil.The tssue-specific expression analysis showed that AP2 subfamily genes were expressed in three tissues:leaves,stems and roots,with higher expression levels of the CsRAP2-3 and CsRAP2-6 in the roots and higher expression levels of the CsRAP2-7 in the stems.In order to further verify the re-sponse of AP2 subfamily genes to abiotic stresses in sweet orange,the qRT-PCR was used to detect the expression pattern of AP2 subfamily genes in the leaves of sweet orange under simulated drought(20%PEG6000),high salt(250 mmol·L-1 NaCl),abscisic acid(100 μmol·L-1 ABA)and low temperature(4 ℃)stresses.The results showed that the expressions of the CsRAP2-1,CsRAP2-2,CsRAP2-8 and Cs-RAP2-10 were generally down-regulated under simulated drought,high salinity,ABA and low tempera-ture treatments.The expression of the CsRAP2-12 was down-regulated after high-salt,ABA and low-temperature treatments,and down-regulated at 1-12 hours after simulated drought treatment,but the ex-pression level was higher at 24 h than that before treatment.Except for these five genes,the expression levels of the other 9 AP2 subfamily genes in sweet orange showed an upward trend after drought treat-ment.The CsRAP2-3,CsRAP2-4,CsRAP2-6,CsRAP2-7,CsRAP2-9,CsRAP2-11 and CsRAP2-13 were induced by high salt stress.After ABA treatment,only the expression of the CsRAP2-7 showed an up-ward trend.Except for the CsRAP2-13,the expression levels of the other 13 genes showed a down-regu-lated trend after low temperature treatment.These results indicated that the expression of most AP2 sub-family genes in sweet orange increased under drought and high salt stress,and decreased under ABA and low temperature treatments.[Conclusion]The AP2 subfamily genes of sweet orange were identi-fied and analyzed in detail at the genome-wide level.The tissue expression characteristics of this sub-family genes and their responses to abiotic stress were studied,which would provide a basis for the sub-sequent study of the function of these genes in regulating the citrus responses to abiotic stresses.
赵鑫悦;谢婧蘅;王天;杨莉;胡威;宋杰;匡柳青;刘勇;刘德春
江西农业大学农学院,南昌 330045
园艺学与植物营养学
甜橙AP2亚家族基因鉴定非生物胁迫生物信息学表达分析
CitrusAP2 subfamilyGene identificationAbiotic stressBioinformaticsExpression analysis
《果树学报》 2024 (008)
1490-1503 / 14
江西省自然科学基金-杰出青年基金(20224ACB215006);国家自然科学基金(32360735);江西省柑橘产业技术体系(JXARS-07-栽培岗位)
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