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甘蓝型油菜R2/R3型MYB转录因子BnPAP2a介导花青素累积研究
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作者 李芳 唐秀华 +3 位作者 张彦锋 安然 黄淑华 谢长根 《西北农林科技大学学报(自然科学版)》 CSCD 北大核心 2023年第7期35-44,共10页
【目的】探讨甘蓝型油菜R2/R3型MYB转录因子BnPAP2a对花青素累积的作用,为富含花青素油菜的培育提供理论指导。【方法】在全基因组水平系统鉴定甘蓝型油菜PAP1、PAP2亚家族R2/R3型MYB转录因子同源基因。利用BnTIR网站、BRAD网站和GSDS... 【目的】探讨甘蓝型油菜R2/R3型MYB转录因子BnPAP2a对花青素累积的作用,为富含花青素油菜的培育提供理论指导。【方法】在全基因组水平系统鉴定甘蓝型油菜PAP1、PAP2亚家族R2/R3型MYB转录因子同源基因。利用BnTIR网站、BRAD网站和GSDS等软件对鉴定所得基因的结构、蛋白序列和组织表达谱进行分析。采用RT-PCR方法从“中双11”cDNA中扩增BnPAP2a基因,并构建35S启动子驱动的植物表达载体35S-pHZM27-BnPAP2a-mGFP,将其转染拟南芥,用显微成像法进行转基因株系种子与幼苗花青素累积表型分析;采用分光光度法测算转基因株系幼苗花青素水平;采用荧光成像技术考察转基因株系中BnPAP2a的亚细胞定位。【结果】成功地在甘蓝型油菜中鉴定到9个PAP1、PAP2亚家族R2/R3型MYB转录因子同源基因,分别为BnPAP1a,BnPAP1b,BnPAP1c,BnPAP1d,BnPAP1e,BnPAP1f,BnPAP1g,BnPAP2a,BnPAP2b。基因结构分析结果显示,拟南芥、白菜、甘蓝和甘蓝型油菜的MYB转录因子同源基因大都含有3个外显子和2个内含子。基因组织表达谱分析表明,BnPAP2a在叶片、花、花蕾、果荚中均有表达但其表达水平不高。成功构建了35S-pHZM27-BnPAP2a-mGFP载体,转染后获得了转基因拟南芥植株。过量表达BnPAP2a基因可使拟南芥种皮由黄褐色转变成紫黑色,幼苗叶片由绿色变为紫色,花青素含量极显著增加。激光共聚焦显微镜下观察发现,过表达BnPAP2a植株GFP荧光信号主要集中在细胞核中。【结论】BnPAP2a为功能性的细胞核定位R2/R3型MYB转录因子,具有促进花青素形成的作用,可利用其培育富含花青素的油菜新材料。 展开更多
关键词 甘蓝型油菜 花青素 bnpap2a MYB转录因子 油菜育种
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Targeted mutations of BnPAP2 lead to a yellow seed coat in Brassica napus L. 被引量:1
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作者 Wei Huang Ruyu Jiao +9 位作者 Hongtao Cheng Shengli Cai Jia Liu Qiong Hu Lili Liu Bao Li Tonghua Wang Mei Li Dawei Zhang Mingli Yan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第2期724-730,共7页
The yellow seed trait is preferred by breeders for its potential to improve the seed quality and commercial value of Brassica napus.In the present study,we produced yellow seed mutants using a CRISPR/Cas9 system when ... The yellow seed trait is preferred by breeders for its potential to improve the seed quality and commercial value of Brassica napus.In the present study,we produced yellow seed mutants using a CRISPR/Cas9 system when the two BnPAP2 homologs were knocked out.Histochemical staining of the seed coat demonstrated that proanthocyanidin accumulation was significantly reduced in the pap2 double mutants and decreased specifically in the endothelial and palisade layer cells of the seed coat.Transcriptomic and metabolite profiling analysis suggested that disruption of the BnPAP2 genes could reduce the expression of structural and regulated genes in the phenylpropanoid and flavonoid biosynthetic pathways.The broad suppression of these genes might hinder proanthocyanidin accumulation during seed development,and thereby causing the yellow seed trait in B.napus.These results indicate that BnPAP2 might play a vital role in the regulatory network controlling proanthocyanidin accumulation. 展开更多
关键词 yellow seed BnPAP2 PROANTHOCYANIDINS CRISPR/Cas9
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