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Comparative genomic and transcriptomic analyses uncover the molecular basis of high nitrogen-use efficiency in the wheat cultivar Kenong 9204

摘要Studying the regulatory mechanisms that drive nitrogen-use efficiency(NUE)in crops is important for sus-tainable agriculture and environmental protection.In this study,we generated a high-quality genome as-sembly for the high-NUE wheat cultivar Kenong 9204 and systematically analyzed genes related to nitrogen uptake and metabolism.By comparative analyses,we found that the high-affinity nitrate transporter gene family had expanded in Triticeae.Further studies showed that subsequent functional differentiation en-dowed the expanded family members with saline inducibility,providing a genetic basis for improving the adaptability of wheat to nitrogen deficiency in various habitats.To explore the genetic and molecular mech-anisms of high NUE,we compared genomic and transcriptomic data from the high-NUE cultivar Kenong 9204(KN9204)and the low-NUE cultivar Jing 411 and quantified their nitrogen accumulation under high-and low-nitrogen conditions.Compared with Jing 411,KN9204 absorbed significantly more nitrogen at the reproductive stage after shooting and accumulated it in the shoots and seeds.Transcriptome data anal-ysis revealed that nitrogen deficiency clearly suppressed the expression of genes related to cell division in the young spike of Jing 411,whereas this suppression of gene expression was much lower in KN9204.In addition,KN9204 maintained relatively high expression of NPF genes for a longer time than Jing 411 during seed maturity.Physiological and transcriptome data revealed that KN9204 was more tolerant of nitrogen deficiency than Jing 411,especially at the reproductive stage.The high NUE of KN9204 is an integrated ef-fect controlled at different levels.Taken together,our data provide new insights into the molecular mech-anisms of NUE and important gene resources for improving wheat cultivars with a higher NUE trait.

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作者 Xiaoli Shi [1] Fa Cui [2] Xinyin Han [3] Yilin He [4] Long Zhao [4] Na Zhang [5] Hao Zhang [4] Haidong Zhu [6] Zhexin Liu [1] Bin Ma [7] Shusong Zheng [1] Wei Zhang [5] Jiajia Liu [5] Xiaoli Fan [5] Yaoqi Si [4] Shuiquan Tian [4] Jianqing Niu [4] Huilan Wu [1] Xuemei Liu [4] Zhuo Chen [7] Deyuan Meng [5] Xiaoyan Wang [5] Liqiang Song [5] Lijing Sun [5] Jie Han [5] Hui Zhao [5] Jun Ji [5] Zhiguo Wang [5] Xiaoyu He [3] Ruilin Li [6] Xuebin Chi [3] Chengzhi Liang [8] Beifang Niu [3] Jun Xiao [9] Junming Li [5] Hong-Qing Ling [10] 学术成果认领
作者单位 State Key Laboratory of Plant Cell and Chromosome Engineering,Institute of Genetics and Developmental Biology,Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China [1] Key Laboratory of Molecular Module-Based Breeding of High Yield and Abiotic Resistant Plants in Universities of Shandong,College of Agriculture,Ludong University,Yantai 264025,China [2] Computer Network Information Center,Chinese Academy of Sciences,Beijing 100190,China;School of Computer Science and Technology,University of Chinese Academy of Sciences,Beijing 100049,China [3] State Key Laboratory of Plant Cell and Chromosome Engineering,Institute of Genetics and Developmental Biology,Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China;College of Advanced Agricultural Sciences,University of Chinese Academy of Sciences,Beijing 100049,China [4] State Key Laboratory of Plant Cell and Chromosome Engineering,Institute of Genetics and Developmental Biology,Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China;Center for Agricultural Resources Research,Institute of Genetics and Developmental Biology,Chinese Academy of Sciences,Shijiazhuang 050022,China [5] Computer Network Information Center,Chinese Academy of Sciences,Beijing 100190,China [6] State Key Laboratory of Plant Genomics,Institute of Genetics and Developmental Biology,Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China [7] State Key Laboratory of Plant Genomics,Institute of Genetics and Developmental Biology,Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China;College of Advanced Agricultural Sciences,University of Chinese Academy of Sciences,Beijing 100049,China [8] State Key Laboratory of Plant Cell and Chromosome Engineering,Institute of Genetics and Developmental Biology,Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China;CAS-JIC Centre of Excellence for Plant and Microbial Science,Institute of Genetics and Developmental Biology,Chinese Academy of Sciences,Beijing 100101,China [9] State Key Laboratory of Plant Cell and Chromosome Engineering,Institute of Genetics and Developmental Biology,Innovation Academy for Seed Design,Chinese Academy of Sciences,Beijing 100101,China;College of Advanced Agricultural Sciences,University of Chinese Academy of Sciences,Beijing 100049,China;Yazhou Bay Seed Laboratory of Hainan Province,Sanya 572019,China [10]
栏目名称 Research Articles
发布时间 2022-11-25
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2022年15卷9期

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