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CsAHL25通过影响CsHB1、LEC1/B3基因表达调控柑橘体细胞胚发生OA北大核心CSTPCD

CsAHL25 regulates citrus somatic embryogenesis by affecting the expres-sion of CsHB1 and LEC1/B3 genes

中文摘要英文摘要

[目的]基于柑橘体细胞胚发生相关基因CsHB1的启动子筛选其上游转录因子,以期为柑橘体细胞胚发生分子机制研究提供可靠的候选基因.[方法]利用CsHB1启动子(-1018~-558 bp)进行酵母单杂筛库实验,筛选出CsHB1上游转录因子CsAHL25;利用亚细胞定位实验,确定CsAHL25在细胞中的位置;通过酵母单杂点对点、双荧光素酶实验验证CsAHL25对CsHB1表达的影响;利用qRT-PCR探究CsAHL25基因在柑橘体细胞胚诱导过程中的表达模式;在柑橘愈伤组织中瞬时表达该基因,并检测体细胞胚发生相关基因的表达变化.[结果]CsAHL25在柑橘体细胞胚诱导过程中呈现先上升后下降的表达模式,该蛋白定位在细胞核中,能与CsHB1启动子结合并下调CsHB1的表达.瞬时表达CsAHL25会导致CsHB1表达量下调,及CsABI3、CsFUS3、CsLEC1、CsL1L等促进体细胞发生的LEC1/B3基因表达量上调.[结论]CsAHL25能直接下调CsHB1的表达,并使LEC1/B3基因表达量上升.CsAHL25可能通过调整CsHB1、LEC1/B3基因的表达促进体细胞胚发生.

[Objective]Somatic embryogenesis(SE)is widely used in the conservation and utilization of plant germplasm resources.However,there is significant variation in the somatic embryogenesis(SE)capacity of calls derived from different citrus varieties.Furthermore,their SE capacity gradually dimin-ishes during culture,posing a significant hindrance to the conservation and utilization of citrus germ-plasm resources.CsHB1,an HD-ZIP Ⅱ gene associated with enhancing SE,was isolated from a citrus variety exhibiting robust SE capabilities.In this study,we harnessed the promoter of CsHB1(pCsHB1)to search for upstream transcription factors to provide reliable candidate genes for the study on plant so-matic embryogenesis.[Methods]To identify the upstream transcription factors of CsHB1,we cloned pCsHB1(-1018 to-558 bp)into pAbAi and utilized a yeast one-hybrid(Y1H)assay to obtain the candi-date transcription factor CsAHL25 from a yeast library.Using SMART,candidate genes were analyzed for domains and named based on annotations in the Citrus Pangenome Breeding Database.The expres-sion pattern of this gene was measured by qRT-PCR in various somatic embryo developmental stages of citrus,aiming to deduce the function of CsAHL25.The gene was cloned and inserted into pRI121,trans-ferred into GV3101 and Marker mixed annotated Nicotiana benthamiana.After 2 d,the localization in the cells was observed using the laser scanning confocal microscopy.CsAHL25 was cloned and inserted into pGADT7 and transfected into Y1HGold with pCsHB1-AbAi for the Y1H assay.A Y1H assay was performed to determine whether the two were complementary or not based on the growth of the yeast cells in the screening medium.The gene was cloned and inserted into the overexpression vector pC-MBAI1300-35S,and pCsHB1(-2377-0 bp)was cloned and inserted into pGreenII 0800-LUC.The two vectors were then separately transferred into GV3101 and mixed to transiently transform N.benthami-ana,with empty vector used as a control.After 2 d,the fluorescence of LUC was observed using an in vivo Plant Fluorescent Imaging System,and the LUC/REN ratio was calculated.This was followed by a comparison with the control to determine the role of this gene in the downstream gene regulation of pC-sHB1.To explore the function of this gene,we transiently expressed the gene in the callus of Citrus si-nensis'Next',and qRT-PCR was used to detect the expression of somatic embryogenesis-related genes.[Results]A candidate transcription factor,named CsAHL25,which is involved in the regulation of CsHB1 expression,was identified from the results of Y1H screening.Sequence analysis revealed that CsAHL25 possesses a type Ⅰ AT-HOOK domain and a type A PPC domain and belongs to the AHL15-29 subfamily of AT-HOOK.Subcellular localization analysis demonstrated that,similar to other AHL transcription factors,CsAHL25 is a nucleus-localized transcription factor.CsAHL25 exhibited high ex-pression levels at 60 d and 120 d of somatic cell embryo induction.The expression pattern of CsAHL25 suggested that this gene may play a role in SE.The Y1H results showed that yeast cells containing CsAHL25 and pCsHB1 were able to grow well in SD-Leu/ABA200,indicating that CsAHL25 was bound to pCsHB1.The results of plant fluorescent imaging indicated that 1300+pCsHB1-LUC exhibited high-er LUC values than CsAHL25-1300+pCsHB1-LUC.The LUC/REN results were consistent with the Plant Fluorescent Imaging outcomes,with the strongest LUC-related activity observed in 1300+pC-sHB1-LUC.These results showed that CsAHL25 was bound to the integral pCsHB1 and repressed its transcription.To further investigate the function of CsAHL25 during SE,we performed transient trans-fection of CsAHL25 in the callus of C.sinensis'Anliucheng',and then analyzed gene expression by us-ing qRT-PCR.The results showed that the expression of CsHB1 was significantly downregulated,while the LEC1/B3 genes promoting somatic embryogenesis,such as CsLEC1,CsL1L,CsFUS3 and CsABI3,were significantly upregulated.[Conclusion]The results of this study indicated that CsAHL25 was an upstream transcription factor of CsHB1,which can inhibit CsHB1 expression,and transient expression of CsAHL25 can cause upregulation of the expression of LEC1/B3 genes.Based on the expression pat-tern of CsAHL25,we studied the functions of HD-ZIP,LEC1/B3 and AHL25 in relation to citrus somat-ic embryogenesis.Finally,we hypothesized that CsAHL25regulated citrus somatic embryogenesis.

叶长宁;徐梦梦;刘兰兰;付玉洁;葛晓霞

华中农业大学园艺林学学院,武汉 430070||武汉生物工程学院应用生物技术研究中心,武汉 430415华中农业大学科学技术发展研究院期刊中心,武汉 430070||武汉生物工程学院应用生物技术研究中心,武汉 430415

园艺学与植物营养学

柑橘:体细胞胚发生HD-ZIPAT-HOOK

CitrusSomatic embryogenesisHD-ZIPAT-HOOK

《果树学报》 2024 (004)

CsHB1与CsTPD1协同调控柑橘体细胞胚发生的分子机理

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国家自然科学基金项目(31872084);湖北省高等学校优秀中青年科技创新团队计划项目(T2021039)

10.13925/j.cnki.gsxb.20230515

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