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猕猴桃后熟过程中ABA响应结合因子AcAREB1调控AcGH3.1的表达 被引量:1
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作者 袁馨 徐云鹤 +7 位作者 张雨培 单楠 陈楚英 万春鹏 开文斌 翟夏琬 陈金印 甘增宇 《园艺学报》 CAS CSCD 北大核心 2023年第1期53-64,共12页
以‘红阳’猕猴桃为试材,研究脱落酸(ABA)对果实采后成熟过程中生长素(IAA)代谢的影响。结果表明,外源ABA处理能够加速自由态IAA的降解,提高IAA-Asp含量,同时可以显著促进IAA降解相关基因AcGH3.1的表达。从猕猴桃基因组数据库中分离鉴定... 以‘红阳’猕猴桃为试材,研究脱落酸(ABA)对果实采后成熟过程中生长素(IAA)代谢的影响。结果表明,外源ABA处理能够加速自由态IAA的降解,提高IAA-Asp含量,同时可以显著促进IAA降解相关基因AcGH3.1的表达。从猕猴桃基因组数据库中分离鉴定到5个ABA响应结合因子基因(AcAREB1~AcAREB5),荧光定量PCR显示,5个基因在果实采后成熟过程中均能不同程度响应ABA。酵母单杂交结果显示,AcAREB1能够直接结合到AcGH3.1的启动子上。亚细胞定位显示AcAREB1定位在细胞核上。酵母自激活试验表明AcAREB1具有转录激活活性。这些结果表明,在猕猴桃果实成熟过程中,AcAREB1可以响应ABA,调控AcGH3.1的表达,从而促进IAA的降解,最终使得果实开始软化成熟。 展开更多
关键词 猕猴桃 后熟 acareb1 AcGH3.1 启动子 ABA IAA
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A GATA-type transcription factor AcAREB for nitrogen metabolism is involved in regulation of cephalosporin biosynthesis in Acremonium chrysogenum 被引量:8
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作者 Feifei Guan Yuanyuan Pan +1 位作者 Jinyang Li Gang Liu 《Science China(Life Sciences)》 SCIE CAS CSCD 2017年第9期958-967,共10页
In filamentous fungi,nitrogen metabolism is repressed by GATA-type zinc finger transcription factors.Nitrogen metabolite repression has been found to affect antibiotic production,but the mechanism is still poorly unde... In filamentous fungi,nitrogen metabolism is repressed by GATA-type zinc finger transcription factors.Nitrogen metabolite repression has been found to affect antibiotic production,but the mechanism is still poorly understood.AcareB,encoding a homologue of fungal GATA-type regulatory protein,was cloned from Acremonium chrysogenum.Gene disruption and genetic complementation demonstrated that AcareB plays a key role in utilization of ammonium,glutamine and urea.In addition,significant reduction of cephalosporin production in the AcareB disruption mutant indicated that AcareB is important for cephalosporin production.In consistence with it,the transcriptional level of cephalosporin biosynthetic genes was significantly decreased in the AcareB disruption mutant.Electrophoretic mobility shift assay showed that AcAREB directly bound to the intergenic regions of pcbAB-pcbC,cefD1-cefD2 and cefEF-cefG.Sequence analysis showed that all the AcAREB binding sites contained the consensus GATA elements.AcareB is negatively autoregulated during cephalosporin production.Moreover,another GATA zinc-finger protein encoded by AcareA positively regulates the transcription of AcareB.However,AcareB does not regulate the transcription of AcareA.These results indicated that AcAREB plays an important role in both regulation of nitrogen metabolism and cephalosporin production in A.chrysogenum. 展开更多
关键词 acareb Acremonium chrysogenum cephalosporin biosynthesis GATA-type transcription factor REGULATION
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