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Candidate genes conferring ethylene-response in cultivated peanuts determined by BSA-seq and fine-mapping
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作者 Yanyan Tang Zhong Huang +6 位作者 Shaohui Xu Wenjie Zhou Jianjun Ren Fuxin Yu Jingshan Wang Wujun Ma lixian qiao 《The Crop Journal》 SCIE CSCD 2024年第3期856-865,共10页
Ethylene plays essential roles in plant growth,development and stress responses.The ethylene signaling pathway and molecular mechanism have been studied extensively in Arabidopsis and rice but limited in peanuts.Here,... Ethylene plays essential roles in plant growth,development and stress responses.The ethylene signaling pathway and molecular mechanism have been studied extensively in Arabidopsis and rice but limited in peanuts.Here,we established a sand-culture method to screen pingyangmycin mutagenized peanut lines based on their specific response to ethylene(“triple response”).An ethylene-insensitive mutant,inhibition of peanut hypocotyl elongation 1(iph1),was identified that showed reduced sensitivity to ethylene in both hypocotyl elongation and root growth.Through bulked segregant analysis sequencing,a major gene related to iph1,named AhIPH1,was preliminarily mapped at the chromosome Arahy.01,and further narrowed to a 450-kb genomic region through substitution mapping strategy.A total of 7014 genes were differentially expressed among the ACC treatment through RNA-seq analysis,of which only the Arahy.5BLU0Q gene in the candidate mapping interval was differentially expressed between WT and mutant iph1.Integrating sequence variations,functional annotation and transcriptome analysis revealed that a predicated gene,Arahy.5BLU0Q,encoding SNF1 protein kinase,may be the candidate gene for AhIPH1.This gene contained two single-nucleotide polymorphisms at promoter region and was more highly expressed in iph1 than WT.Our findings reveal a novel ethylene-responsive gene,which provides a theoretical foundation and new genetic resources for the mechanism of ethylene signaling in peanuts. 展开更多
关键词 Ethylene-insensitive Hypocotyl elongation AhIPH1 Candidate gene Genetic resources
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Research and Application on Energy Storage System Smart Control
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作者 Hui Bao lixian qiao 《通讯和计算机(中英文版)》 2012年第8期965-969,共5页
关键词 智能控制 储能系统 存储系统 控制能量 应用 功率分配 能源供应 锂离子电池
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快中子辐照结合组织培养培育花生新品种宇花7号 被引量:6
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作者 王霞 刘录祥 +5 位作者 乔利仙 隋炯明 姜德锋 李冠 赵琳姝 王晶珊 《生物工程学报》 CAS CSCD 北大核心 2019年第2期270-280,共11页
为开拓新的花生育种方法,对辐照诱变结合组织培养创造花生新种质、培育新品种进行了研究。以我国北方地区主栽花生品种鲁花11号成熟种子为试材,经快中子辐照处理后取种子胚小叶进行组织培养,通过胚胎发生途径获得再生苗。再生苗经嫁接... 为开拓新的花生育种方法,对辐照诱变结合组织培养创造花生新种质、培育新品种进行了研究。以我国北方地区主栽花生品种鲁花11号成熟种子为试材,经快中子辐照处理后取种子胚小叶进行组织培养,通过胚胎发生途径获得再生苗。再生苗经嫁接驯化后移栽田间,83个单株获得种子。后代按系谱法进行选育,从83个再生植株后代中获得了107份突变体,分别在主茎高、分枝数、荚果形状和大小、种皮颜色、内种皮颜色、含油率、蛋白含量等性状上发生了明显变异。从突变体后代中选育出了低油早熟耐涝大花生新品种宇花7号,其产量比亲本鲁花11号增产14%以上;其含油率(47.0%)比鲁花11号低5.1个百分点。宇花7号2016年参加辽宁省新品种登记试验,比对照品种白沙1017平均增产13.8%。2018年通过了国家非主要农作物品种登记,登记号为"GPD花生(2018) 370105"。研究结果说明,辐照结合组织培养是创造花生新种质、培育新品种的有效方法。 展开更多
关键词 花生品种 辐照诱变 离体培养 低油 早熟
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