Search Results - "RUILIAN JING"

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  1. 1

    Genetic dissection of drought and heat‐responsive agronomic traits in wheat by Li, Long, Mao, Xinguo, Wang, Jingyi, Chang, Xiaoping, Reynolds, Matthew, Jing, Ruilian

    Published in Plant, cell and environment (01-09-2019)
    “…High yield and wide adaptation are principal targets of wheat breeding but are hindered by limited knowledge on genetic basis of agronomic traits and abiotic…”
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    Journal Article
  2. 2

    Genetic insight into yield-associated traits of wheat grown in multiple rain-fed environments by Wu, Xianshan, Chang, Xiaoping, Jing, Ruilian

    Published in PloS one (17-02-2012)
    “…Grain yield is a key economic driver of successful wheat production. Due to its complex nature, little is known regarding its genetic control. The goal of this…”
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  3. 3

    TaNAC2, a NAC-type wheat transcription factor conferring enhanced multiple abiotic stress tolerances in Arabidopsis by Mao, Xinguo, Zhang, Hongying, Qian, Xueya, Li, Ang, Zhao, Guangyao, Jing, Ruilian

    Published in Journal of experimental botany (01-05-2012)
    “…Environmental stresses such as drought, salinity, and cold are major factors that significantly limit agricultural productivity. NAC transcription factors play…”
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  4. 4

    Novel NAC transcription factor TaNAC67 confers enhanced multi-abiotic stress tolerances in Arabidopsis by Mao, Xinguo, Chen, Shuangshuang, Li, Ang, Zhai, Chaochao, Jing, Ruilian

    Published in PloS one (10-01-2014)
    “…Abiotic stresses are major environmental factors that affect agricultural productivity worldwide. NAC transcription factors play pivotal roles in abiotic…”
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  5. 5

    Overexpression of a common wheat gene TaSnRK2.8 enhances tolerance to drought, salt and low temperature in Arabidopsis by Zhang, Hongying, Mao, Xinguo, Wang, Chengshe, Jing, Ruilian

    Published in PloS one (30-12-2010)
    “…Drought, salinity and low temperatures are major factors limiting crop productivity and quality. Sucrose non-fermenting1-related protein kinase 2 (SnRK2) plays…”
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  6. 6

    Modified expression of TaCYP78A5 enhances grain weight with yield potential by accumulating auxin in wheat (Triticum aestivum L.) by Guo, Lijian, Ma, Meng, Wu, Linnan, Zhou, Mengdie, Li, Mengyao, Wu, Baowei, Li, Long, Liu, Xiangli, Jing, Ruilian, Chen, Wei, Zhao, Huixian

    Published in Plant biotechnology journal (01-01-2022)
    “…Summary Increasing grain yield has always been the primary goal of crop breeding. KLUH/CYP78A5 has been shown to affect seed size in several plant species, but…”
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  7. 7

    TaSnRK2.4, an SNF1-type serine/threonine protein kinase of wheat (Triticum aestivum L.), confers enhanced multistress tolerance in Arabidopsis by Mao, Xinguo, Zhang, Hongying, Tian, Shanjun, Chang, Xiaoping, Jing, Ruilian

    Published in Journal of experimental botany (01-03-2010)
    “…Osmotic stresses such as drought, salinity, and cold are major environmental factors that limit agricultural productivity worldwide. Protein…”
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  8. 8

    Mapping QTL for stay-green and agronomic traits in wheat under diverse water regimes by Shi, Shenkui, Azam, Farooq I., Li, Huihui, Chang, Xiaoping, Li, Baoyun, Jing, Ruilian

    Published in Euphytica (01-11-2017)
    “…Wheat ( Triticum aestivum L.) yield is directly proportional to physio-morphological traits. A high-density genetic map consisting of 2575 markers was used for…”
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  9. 9

    Wheat FRIZZY PANICLE activates VERNALIZATION1‐A and HOMEOBOX4‐A to regulate spike development in wheat by Li, Yongpeng, Li, Long, Zhao, Meicheng, Guo, Lin, Guo, Xinxin, Zhao, Dan, Batool, Aamana, Dong, Baodi, Xu, Hongxing, Cui, Sujuan, Zhang, Aimin, Fu, Xiangdong, Li, Junming, Jing, Ruilian, Liu, Xigang

    Published in Plant biotechnology journal (01-06-2021)
    “…Summary Kernel number per spike determined by the spike or inflorescence development is one important agricultural trait for wheat yield that is critical for…”
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  10. 10

    A transposon in the vacuolar sorting receptor gene TaVSR1‐B promoter region is associated with wheat root depth at booting stage by Wang, Jingyi, Li, Long, Li, Chaonan, Yang, Xi, Xue, Yinghong, Zhu, Zhi, Mao, Xinguo, Jing, Ruilian

    Published in Plant biotechnology journal (01-07-2021)
    “…Root depth, as an important component of root architecture, plays a significant role in growth, grain yield determination and abiotic stress tolerance in crop…”
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  11. 11

    Exploitation of Drought Tolerance-Related Genes for Crop Improvement by Wang, Jingyi, Li, Chaonan, Li, Long, Reynolds, Matthew, Mao, Xinguo, Jing, Ruilian

    “…Drought has become a major threat to food security, because it affects crop growth and development. Drought tolerance is an important quantitative trait, which…”
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  12. 12

    A wheat protein kinase gene TaSnRK2.9-5A associated with yield contributing traits by Ur Rehman, Shoaib, Wang, Jingyi, Chang, Xiaoping, Zhang, Xueyong, Mao, Xinguo, Jing, Ruilian

    Published in Theoretical and applied genetics (01-04-2019)
    “…Key message We developed breeder-friendly high-throughput and cost-effective KASP marker for marker-assisted selection for grain yield related traits in wheat…”
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  13. 13

    QTL mapping and candidate gene analysis of seed vigor-related traits during artificial aging in wheat (Triticum aestivum) by Shi, Huawei, Guan, Wanghui, Shi, Yugang, Wang, Shuguang, Fan, Hua, Yang, Jinwen, Chen, Weiguo, Zhang, Wenjun, Sun, Daizhen, Jing, Ruilian

    Published in Scientific reports (16-12-2020)
    “…High vigor seeds have greater yield potential than those with low vigor; however, long-term storage leads to a decline in this trait. The objective of this…”
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  14. 14

    Effects of favorable alleles for water-soluble carbohydrates at grain filling on grain weight under drought and heat stresses in wheat by Zhang, Bin, Li, Weiyu, Chang, Xiaoping, Li, Runzhi, Jing, Ruilian

    Published in PloS one (18-07-2014)
    “…Drought, heat and other abiotic stresses during grain filling can result in reductions in grain weight. Conserved water-soluble carbohydrates (WSC) at early…”
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  15. 15

    Characterization of a common wheat (Triticum aestivum L.) TaSnRK2.7 gene involved in abiotic stress responses by Zhang, Hongying, Mao, Xinguo, Jing, Ruilian, Chang, Xiaoping, Xie, Huimin

    Published in Journal of experimental botany (01-01-2011)
    “…Sucrose non-fermenting-1-related protein kinase 2 (SnRK2) plays a key role in the plant stress signalling transduction pathway via phosphorylation. Here, a…”
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  16. 16

    Genome-wide association analysis of stem water-soluble carbohydrate content in bread wheat by Fu, Luping, Wu, Jingchun, Yang, Shurong, Jin, Yirong, Liu, Jindong, Yang, Mengjiao, Rasheed, Awais, Zhang, Yong, Xia, Xianchun, Jing, Ruilian, He, Zhonghu, Xiao, Yonggui

    Published in Theoretical and applied genetics (01-10-2020)
    “…Key message GWAS identified 36 potentially new loci for wheat stem water-soluble carbohydrate (WSC) contents and 13 pleiotropic loci affecting WSC and…”
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  17. 17

    Mapping QTLs for seedling root traits in a doubled haploid wheat population under different water regimes by Liu, Xiulin, Li, Runzhi, Chang, Xiaoping, Jing, Ruilian

    Published in Euphytica (2013)
    “…A deep and thick root system has a positive effect on wheat yield, particularly in drought environments. A doubled haploid (DH) population of 150 lines derived…”
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  18. 18

    Cloning and characterization of TaSnRK2.3, a novel SnRK2 gene in common wheat by Tian, Shanjun, Mao, Xinguo, Zhang, Hongying, Chen, Shuangshuang, Zhai, Chaochao, Yang, Shimin, Jing, Ruilian

    Published in Journal of experimental botany (01-04-2013)
    “…Environmental stresses such as drought, salinity, and cold are major adverse factors that significantly affect agricultural productivity. Protein…”
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  19. 19

    TaMOR is essential for root initiation and improvement of root system architecture in wheat by Li, Chaonan, Wang, Jingyi, Li, Long, Li, Jialu, Zhuang, Mengjia, Li, Bo, Li, Qiaoru, Huang, Junfang, Du, Yan, Wang, Jinping, Fan, Zipei, Mao, Xinguo, Jing, Ruilian

    Published in Plant biotechnology journal (01-05-2022)
    “…Summary Optimal root system architecture is beneficial for water‐fertilizer use efficiency, stress tolerance and yield improvement of crops. However, because…”
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  20. 20

    Natural variation of TaGASR7-A1 affects grain length in common wheat under multiple cultivation conditions by Dong, Lingli, Wang, Fangming, Liu, Tao, Dong, Zhenying, Li, Aili, Jing, Ruilian, Mao, Long, Li, Yiwen, Liu, Xin, Zhang, Kunpu, Wang, Daowen

    Published in Molecular breeding (01-10-2014)
    “…GASR7 is a member of Snakin/GASA gene family in higher plants and has been found associated with grain length (GL) in rice and wheat under normal growth…”
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