Search Results - "Zhongxin Kong"

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  1. 1

    Germplasms, genetics and genomics for better control of disastrous wheat Fusarium head blight by Ma, Zhengqiang, Xie, Quan, Li, Guoqiang, Jia, Haiyan, Zhou, Jiyang, Kong, Zhongxin, Li, Na, Yuan, Yang

    Published in Theoretical and applied genetics (01-05-2020)
    “…Fusarium head blight (FHB), or scab, for its devastating nature to wheat production and food security, has stimulated worldwide attention. Multidisciplinary…”
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    Resistance to hemi-biotrophic F. graminearum infection is associated with coordinated and ordered expression of diverse defense signaling pathways by Ding, Lina, Xu, Haibin, Yi, Hongying, Yang, Liming, Kong, Zhongxin, Zhang, Lixia, Xue, Shulin, Jia, Haiyan, Ma, Zhengqiang

    Published in PloS one (20-04-2011)
    “…Fusarium species cause serious diseases in cereal staple food crops such as wheat and maize. Currently, the mechanisms underlying resistance to Fusarium-caused…”
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  4. 4

    Fine mapping KT1 on wheat chromosome 5A that conditions kernel dimensions and grain weight by Kong, Zhongxin, Cheng, Ruiru, Yan, Haisheng, Yuan, Haiyun, Zhang, Yong, Li, Guoqiang, Jia, Haiyan, Xue, Shulin, Zhai, Wenling, Yuan, Yang, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-03-2022)
    “…Key message KT1 was validated as a novel thickness QTL with major effects on wheat kernel dimensions and weight and fine mapped to a 0.04 cM interval near the…”
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  5. 5

    Genetic control of Fusarium head blight resistance in two Yangmai 158-derived recombinant inbred line populations by Yan, Haisheng, Li, Guoqiang, Shi, Jinxing, Tian, ShunShun, Zhang, Xiaoqiu, Cheng, Rui, Wang, Xin, Yuan, Yang, Cao, Shouyang, Zhou, Jiyang, Kong, Zhongxin, Jia, Haiyan, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-09-2021)
    “…Key message Stably expressed type I and type II resistance QTL were identified using two Yangmai 158-derived RIL populations, and plant-height and…”
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  6. 6

    Pyramiding of Fusarium Head Blight Resistance Quantitative Trait Loci, Fhb1, Fhb4, and Fhb5, in Modern Chinese Wheat Cultivars by Zhang, Yiduo, Yang, Zibo, Ma, Haicai, Huang, Liying, Ding, Feng, Du, Yingying, Jia, Haiyan, Li, Guoqiang, Kong, Zhongxin, Ran, Congfu, Gu, Zhengzhong, Ma, Zhengqiang

    Published in Frontiers in plant science (14-07-2021)
    “…Wheat production is increasingly threatened by the fungal disease, Fusarium head blight (FHB), caused by Fusarium spp. The introduction of resistant varieties…”
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  7. 7

    Precise mapping Fhb5, a major QTL conditioning resistance to Fusarium infection in bread wheat (Triticum aestivum L.) by Xue, Shulin, Xu, Feng, Tang, Mingzhi, Zhou, Yan, Li, Guoqiang, An, Xia, Lin, Feng, Xu, Haibin, Jia, Haiyan, Zhang, Lixia, Kong, Zhongxin, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-10-2011)
    “…Qfhi.nau-5A is a major quantitative trait locus (QTL) against Fusarium graminearum infection in the resistant wheat germplasm Wangshuibai. Genetic analysis…”
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  8. 8

    Identification and mapping of a new powdery mildew resistance gene on chromosome 6D of common wheat by Ma, Hongqi, Kong, Zhongxin, Fu, Bisheng, Li, Na, Zhang, Lixia, Jia, Haiyan, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-11-2011)
    “…Powdery mildew, caused by Blumeria graminis f. sp. tritici, is one of the most serious wheat diseases. The rapid evolution of the pathogen’s virulence, due to…”
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  9. 9

    Fine mapping Fhb4, a major QTL conditioning resistance to Fusarium infection in bread wheat (Triticum aestivum L.) by Xue, Shulin, Li, Guoqiang, Jia, Haiyan, Xu, Feng, Lin, Feng, Tang, Mingzhi, Wang, Yao, An, Xia, Xu, Haibin, Zhang, Lixia, Kong, Zhongxin, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-06-2010)
    “…Qfhi.nau-4B is a major quantitative trait locus (QTL) against Fusarium graminearum infection identified in the Fusarium head blight-resistant germplasm…”
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  10. 10

    Identification and fine mapping of PmNJ3946 for powdery mildew resistance in einkorn wheat by Wang, Peisi, Huang, Jun, Li, Na, Zhang, Jie, Gu, Caimei, Yuan, Yang, Wen, Ziruo, Jia, Haiyan, Kong, Zhongxin, Ma, Zhengqiang

    Published in The Crop journal (01-12-2023)
    “…Powdery mildew caused by Blumeria graminis f. sp. tritici (Bgt) is a destructive wheat disease. Although it can be easily overcome by deployment of resistance…”
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  11. 11

    high-density intervarietal map of the wheat genome enriched with markers derived from expressed sequence tags by Xue, Shulin, Zhang, Zhengzhi, Lin, Feng, Kong, Zhongxin, Cao, Yong, Li, Chunjun, Yi, Hongying, Mei, Mingfeng, Zhu, Huilan, Wu, Jizhong, Xu, Haibin, Zhao, Dongmei, Tian, Dagang, Zhang, Caiqin, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-07-2008)
    “…Bread wheat (Triticum aestivum L.) is a hexaploid species with a large and complex genome. A reference genetic marker map, namely the International Triticeae…”
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  12. 12

    Precise mapping of a quantitative trait locus interval for spike length and grain weight in bread wheat (Triticum aestivum L.) by Wu, Xinyi, Cheng, Ruiru, Xue, Shulin, Kong, Zhongxin, Wan, Hongshen, Li, Guoqiang, Huang, Yulong, Jia, Haiyan, Jia, Jizeng, Zhang, Lixia, Ma, Zhengqiang

    Published in Molecular breeding (01-01-2014)
    “…The spike characteristics length, spikelet density and fertile floret number are related yield components and are important in cereal improvement. QSpl.nau -…”
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  13. 13

    Characterization of a single recessive yield trait mutant with elevated endogenous ABA concentration and deformed grains, spikelets and leaves by Wu, Kun, Wang, Jinyan, Kong, Zhongxin, Ma, Zheng-Qiang

    Published in Plant science (Limerick) (01-02-2011)
    “…▶ Meh0239 is a novel yield-trait related mutant of common wheat. ▶ Meh0239 is phenotypically different from known yield gene mutants in cereals. ▶ The…”
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  14. 14

    Genetic dissection of yield-related traits in a recombinant inbred line population created using a key breeding parent in China’s wheat breeding by Jia, Haiyan, Wan, Hongshen, Yang, Shaohua, Zhang, Zhengzhi, Kong, Zhongxin, Xue, Shulin, Zhang, Lixia, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-08-2013)
    “…Understanding the genetics underlying yield formation of wheat is important for increasing wheat yield potential in breeding programs. Nanda2419 was a widely…”
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  15. 15

    Mapping and validation of scab resistance QTLs in the Nanda2419 × Wangshuibai population by Ma, Zhengqiang, Shulin Xue, Feng Lin, Shaohua Yang, Guoqiang Li, Mingzhi Tang, Zhongxin Kong, Yong Cao, Dongmei Zhao, Haiyan Jia, Zhengzhi Zhang, Lixia Zhang

    Published in Cereal research communications (2008)
    “…Wangshuibai is an indigenous scab resistance germplasm originated from Jiangsu, China. To characterize the genetic basis of scab resistance in this germplasm,…”
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  16. 16

    Mapping QTLs controlling kernel dimensions in a wheat inter-varietal RIL mapping population by Cheng, Ruiru, Kong, Zhongxin, Zhang, Liwei, Xie, Quan, Jia, Haiyan, Yu, Dong, Huang, Yulong, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-07-2017)
    “…Key message Seven kernel dimension QTLs were identified in wheat, and kernel thickness was found to be the most important dimension for grain weight…”
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  17. 17

    Cloning of a COBL gene determining brittleness in diploid wheat using a MapRseq approach by Deng, Qingyan, Kong, Zhongxin, Wu, Xiaoxia, Ma, Shengwei, Yuan, Yang, Jia, Haiyan, Ma, Zhengqiang

    Published in Plant science (Limerick) (01-08-2019)
    “…•Premature termination mutation of COBRA-like gene TmBr1 leads to tissue brittleness.•TmBr1 modulates cell cellulose content of cell walls.•TmBr1 probably…”
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  18. 18

    Characterization of three wheat grain weight QTLs that differentially affect kernel dimensions by Huang, Yulong, Kong, Zhongxin, Wu, Xinyi, Cheng, Ruiru, Yu, Dong, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-12-2015)
    “…KEY MESSAGE : The QGw.nau - 2D, QGw.nau - 4B and QGw.nau - 5A intervals were investigated for their effects on weight, length, width, and thickness of kernels…”
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  19. 19

    Fine mapping of KLW1 that conditions kernel weight mainly through regulating kernel length in wheat (Triticum aestivum L.) by Yang, Yang, Kong, Zhongxin, Xie, Quan, Jia, Haiyan, Huang, Wenshuo, Zhang, Liwei, Cheng, Ruiru, Yang, Zibo, Qi, Xiaolei, Lv, Guangde, Zhang, Yong, Wen, Yixuan, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-05-2023)
    “…Key message KLW1 was localized to a 0.6 cM interval near the centromere of chromosome 4B and found to be dominant in conditioning longer kernels and higher…”
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  20. 20

    HL2 on chromosome 7D of wheat (Triticum aestivum L.) regulates both head length and spikelet number by Yao, Hongni, Xie, Quan, Xue, Shulin, Luo, Jing, Lu, Jikang, Kong, Zhongxin, Wang, Yongpan, Zhai, Wenling, Lu, Nan, Wei, Rong, Yang, Yang, Han, Yuzhou, Zhang, Yong, Jia, Haiyan, Ma, Zhengqiang

    Published in Theoretical and applied genetics (01-06-2019)
    “…Key message A major QTL QSpl.nau - 7D , named HL2 , was validated for its effects on head length and kernel number per spike using NIL, and mapped to a 0.2 cM…”
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