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  1. No Access

    Article

    AFLP analysis of genetic variability in New Guinea impatiens

    New Guinea impatiens (Impatiens hawkeri) is an economically important floral crop, however, little work has been conducted to further our understanding of the genetics of this crop. In this study, we used amplif...

    Jason Carr, Mingliang Xu, John W. Dudley in Theoretical and Applied Genetics (2003)

  2. No Access

    Article

    DNA-methylation alterations and exchanges during in vitro cellular differentiation in rose (Rosa hybrida L.)

    DNA-methylation profiles of leaf tissues of Rosa hybrida cv. Carefree Beauty collected from in vivo-grown greenhouse plants, in vitro-grown proliferating shoots at different passages, regenerants of embryogenic c...

    Mingliang Xu, **angqian Li, Schuyler S. Korban in Theoretical and Applied Genetics (2004)

  3. No Access

    Article

    Delimiting a rice wide-compatibility gene S 5 n to a 50 kb region

    Wide-compatibility (WC) is one of the most important traits in rice, which can overcome the fertility barrier in the indica/japonica hybrids, and hence to make it possible to utilize the higher yield potential of...

    Qing Ji, Jufei Lu, Qing Chao, Minghong Gu, Mingliang Xu in Theoretical and Applied Genetics (2005)

  4. No Access

    Article

    Genome-wide isolation of resistance gene analogs in maize (Zea mays L.)

    Conserved domains or motifs shared by most known resistance (R) genes have been extensively exploited to identify unknown R-gene analogs (RGAs). In an attempt to isolate all potential RGAs from the maize genome, ...

    **ao Wenkai, Xu Mingliang, Zhao Jiuren, Wang Fengge in Theoretical and Applied Genetics (2006)

  5. No Access

    Article

    Map** of genome-wide resistance gene analogs (RGAs) in maize (Zea mays L.)

    Isolation and map** of genome-wide resistance (R) gene analogs (RGAs) is of importance in identifying candidate(s) for a particular resistance gene/QTL. Here we reported our result in map** totally 228 genome...

    Wenkai **ao, **g Zhao, Shengci Fan, Lin Li, **rui Dai in Theoretical and Applied Genetics (2007)

  6. No Access

    Article

    Identification and fine-map** of a major QTL conferring resistance against head smut in maize

    Head smut is one of the most devastating diseases in maize, causing severe yield loss worldwide. Here we report identification and fine-map** of a major quantitative trait locus (QTL) conferring resistance t...

    Yongsheng Chen, Qing Chao, Guoqing Tan, **g Zhao in Theoretical and Applied Genetics (2008)

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    Article

    A major QTL for resistance to Gibberella stalk rot in maize

    Fusarium graminearum Schwabe, the conidial form of Gibberella zeae, is the causal fungal pathogen responsible for Gibberella stalk rot of maize. Using a BC1F1 backcross map** population derived from a cross bet...

    Qin Yang, Guangming Yin, Yanling Guo, Dongfeng Zhang in Theoretical and Applied Genetics (2010)

  8. No Access

    Article

    Fine-map** of qRfg2, a QTL for resistance to Gibberella stalk rot in maize

    Stalk rot is one of the most devastating diseases in maize worldwide. In our previous study, two QTLs, a major qRfg1 and a minor qRfg2, were identified in the resistant inbred line ‘1145’ to confer resistance to

    Dongfeng Zhang, Yongjie Liu, Yanling Guo, Qin Yang in Theoretical and Applied Genetics (2012)

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    Article

    Allelic variation for a candidate gene for GS7, responsible for grain shape in rice

    Grain shape is an important component of end-use quality in rice. The genomic location of the grain shape QTL GS7 was narrowed to lie within a 4.8-kb segment on chromosome 7. The homologous region in cv. Nipponba...

    Gaoneng Shao, **ang** Wei, Mingliang Chen in Theoretical and Applied Genetics (2012)

  10. No Access

    Article

    QTL map** of resistance to gray leaf spot in maize

    Gray leaf spot (GLS), caused by the causal fungal pathogen Cercospora zeae-maydis, is one of the most serious foliar diseases of maize worldwide. In the current study, a highly resistant inbred li...

    Yan Zhang, Ling Xu, **ngming Fan, **g Tan, Wei Chen in Theoretical and Applied Genetics (2012)

  11. No Access

    Article

    Cloning and expression of genes related to the sucrose-metabolizing enzymes and carbohydrate changes in peach

    To shed light on the relationship between sucrose metabolism and expression of genes related to sucrose-metabolizing enzymes, six genes encoding sucrose-metabolizing enzymes were isolated, and the levels of fo...

    Chunhua Zhang, Zhijun Shen, Yan** Zhang, Jian Han in Acta Physiologiae Plantarum (2013)

  12. No Access

    Article

    Structure, expression profile, and evolution of the sucrose synthase gene family in peach (Prunus persica)

    SUS gene family is comprised of six genes in peach, PpSus1 to PpSus6. PpSus1 to PpSus6 were categorized to represent thre...

    Chunhua Zhang, Mingliang Yu, Ruijuan Ma, Zhijun Shen in Acta Physiologiae Plantarum (2015)

  13. No Access

    Article

    KT/HAK/KUP potassium transporter genes differentially expressed during fruit development, ripening, and postharvest shelf-life of ‘**ahui6’ peaches

    Potassium (K+) is an essential macronutrient for plant growth, development, and fruit quality and yield. K+ uptake and transport is facilitated by KT/HAK/KUP transporters. However, studies to establish molecular ...

    Zhizhong Song, Shaolei Guo, Chunhua Zhang, Binbin Zhang in Acta Physiologiae Plantarum (2015)

  14. No Access

    Article

    Different chilling stresses stimulated the accumulation of different types of ginsenosides in Panax ginseng cells

    Ginseng (Panax ginseng) is one of the most medically important plants in the world. Dammarane-type ginsenosides, which mainly include protopanaxatriol-type (PPT-type) and protopanaxadiol-type (PPD-type) ginsenosi...

    Mingliang Jiang, Jia Liu, Xueli Quan, Linhu Quan in Acta Physiologiae Plantarum (2016)

  15. No Access

    Article

    Genome-wide identification and expression analysis of the lipoxygenase gene family during peach fruit ripening under different postharvest treatments

    In plants, lipoxygenase (LOX), facilitated by the LOX family genes is closely related to fruit ripening and senescence, but research on LOX in peach fruit is limited. To study the roles of LOX family genes in ...

    Shaolei Guo, Zhizhong Song, Ruijuan Ma, Yong Yang in Acta Physiologiae Plantarum (2017)

  16. No Access

    Article

    Quantitative proteomic analysis of pre- and post-harvest peach fruit ripening based on iTRAQ technique

    To further elucidate the molecular mechanism involved in peach (Prunus persica cv. **acui) fruit ripening, a differential proteomic analysis was conducted using iTRAQ based strategy for studying peach fruit ripen...

    **aoqin Wu, Aminah Myriah Mason, Mingliang Yu, Ruijuan Ma in Acta Physiologiae Plantarum (2017)

  17. No Access

    Article

    qRfg3, a novel quantitative resistance locus against Gibberella stalk rot in maize

    A quantitative trait locus  qRfg3 imparts recessive resistance to maize Gibberella ...

    Chuanyu Ma, Xuena Ma, Lishan Yao, Yongjie Liu, Feili Du in Theoretical and Applied Genetics (2017)

  18. No Access

    Article

    Evaluation of ZmCCT haplotypes for genetic improvement of maize hybrids

    The elite ZmCCT haplotypes which have no transposable element in the promoter could enhance maize resistance to Gibberella ...

    Yipu Li, Lixiu Tong, Lele Deng, Qiyu Liu, Yuexian **ng in Theoretical and Applied Genetics (2017)

  19. No Access

    Article

    Regulation of the protein and gene expressions of ethylene biosynthesis enzymes under different temperature during peach fruit ripening

    Ethylene has profound effect on fruit development and ripening, and the role of ethylene biosynthesis enzymes involving 1-aminocyclopropane-1-carboxylic acid (ACC) synthase (ACS), ACC oxidase (ACO), and S-Aden...

    **aoqin Wu, Mingliang Yu, Chen Huan, Ruijuan Ma, Zhifang Yu in Acta Physiologiae Plantarum (2018)

  20. Article

    Crop genetics research in Asia: improving food security and nutrition

    Qifa Zhang, Mingliang Xu, **anchun **a, Takao Komatsuda in Theoretical and Applied Genetics (2020)

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