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Divergences of MPF2-like MADS-domain proteins have an association with the evolution of the inflated calyx syndrome within Solanaceae

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  1. Article

    Open Access

    The MADS-domain protein MPF1 of Physalis floridana controls plant architecture, seed development and flowering time

    Floral and vegetative development of plants is dependent on the combinatorial action of MADS-domain transcription factors. Members of the STMADS11 subclade, such as MPF1 of Physalis, are abundantly expressed in l...

    Chaoying He, Ying Tian, Rainer Saedler, Nadia Efremova, Simone Riss in Planta (2010)

  2. Article

    Open Access

    Sequence and expression variations suggest an adaptive role for the DA1-like gene family in the evolution of soybeans

    The DA1 gene family is plant-specific and Arabidopsis DA1 regulates seed and organ size, but the functions in soybeans are unknown. The cultivated soybean (Glycine max) is believed to be domesticated from the ann...

    Man Zhao, Yongzhe Gu, Lingli He, Qingshan Chen, Chaoying He in BMC Plant Biology (2015)

  3. Article

    Open Access

    Expression of B-class MADS-box genes in response to variations in photoperiod is associated with chasmogamous and cleistogamous flower development in Viola philippica

    Some plants develop a breeding system that produces both chasmogamous (CH) and cleistogamous (CL) flowers. However, the underlying molecular mechanism remains elusive.

    Qiaoxia Li, Qingdi Huo, Juan Wang, **g Zhao, Kun Sun, Chaoying He in BMC Plant Biology (2016)

  4. Article

    Open Access

    The PHOSPHATE1 genes participate in salt and Pi signaling pathways and play adaptive roles during soybean evolution

    The PHOSPHATE1 (PHO1) gene family plays diverse roles in inorganic phosphate (Pi) transfer and signal transduction, and plant development. However, the functions and diversification of soybean PHO1 family are poo...

    Yan Wang, Huihui Gao, Lingli He, Weiwei Zhu, Lixin Yan, Qingshan Chen in BMC Plant Biology (2019)

  5. Article

    Open Access

    Transcriptomic comparison sheds new light on regulatory networks for dimorphic flower development in response to photoperiod in Viola prionantha

    Chasmogamous (CH)–cleistogamous (CL) dimorphic flowers are developed in Viola prionantha. However, the environmental and genetic factors necessary for the CH–CL transition are unknown.

    Qiaoxia Li, Kunpeng Li, Zhengrong Zhang, Jigang Li, Bo Wang in BMC Plant Biology (2022)