A perspective on the molecular mechanism in the control of organ internal (IN) asymmetry during petal development
文献类型: 外文期刊
作者: Yu, Qianxia 1 ; Ge, Liangfa 1 ; Ahmad, Sagheer 2 ; Da Luo 3 ; Li, Xin 4 ;
作者机构: 1.South China Agr Univ, Coll Forestry & Landscape Architecture, Dept Grassland Sci, Guangzhou 510642, Peoples R China
2.Guangdong Acad Agr Sci, Guangzhou 510642, Peoples R China
3.Chinese Acad Sci, Northeast Inst Geog & Agroecol, Key Lab Soybean Mol Design Breeding, Harbin 150081, Peoples R China
4.Nanjing Agr Univ, Coll Life Sci, Nanjing 210095, Peoples R China
期刊名称:HORTICULTURE RESEARCH ( 影响因子:8.7; 五年影响因子:9.0 )
ISSN: 2662-6810
年卷期: 2022 年 9 卷
页码:
收录情况: SCI
摘要: Floral zygomorphy (monosymmetry) is a key innovation in flowering plants and is related to the coevolution of plants and their animal pollinators. The molecular basis underlying floral zygomorphy has been analysed, and two regulatory pathways have been identified: one determines the dorsoventral (DV) asymmetry along the floral plan, and the other controls organ internal (IN) asymmetry during petal development. While strides have been made to understand the molecular mechanism controlling DV asymmetry, which mainly involves an interplay between TCP and MYB transcription factors, the molecular pathway regulating IN asymmetry remains largely unknown. In this review, we discuss what is known about regulators and the molecular pathway regulating IN asymmetry. Our analysis revealed that the regulation of IN asymmetry occurs at the cellular, tissue, and organ genesis levels during petal development and that the regulatory mechanism is likely integrated into different developmental paths, such as floral and root nodule development. Although the molecular regulation of IN asymmetry is not be a linear path, a key hub for the regulatory network could be vascular patterning during petal organogenesis.
- 相关文献
作者其他论文 更多>>
-
KINASE-INDUCIBLE DOMAIN INTERACTING 8 regulates helical pod morphology in Medicago truncatula
作者:Yu, Qianxia;Huang, Yuanyuan;Lei, Xiao;Wu, Xueting;Jiang, Jiayu;Ge, Liangfa;Yu, Qianxia;Yu, Qianxia;Du, Huan;Huang, Yuanyuan;Lei, Xiao;Wu, Xueting;Ge, Liangfa;Du, Huan;Huang, Wei
关键词:
-
Integrated proteomic, transcriptomic, and metabolomic profiling reveals that the gibberellin-abscisic acid hub runs flower development in the Chinese orchid Cymbidium sinense
作者:Ahmad, Sagheer;Lu, Chuqiao;Gao, Jie;Wei, Yonglu;Xie, Qi;Jin, Jianpeng;Zhu, Genfa;Yang, Fengxi;Zhu, Genfa;Yang, Fengxi
关键词:
-
Enzymatic hydrolysis of silkworm pupa and its allergenicity evaluation by animal model with different immunization routes
作者:Dai, Yan;Huang, Meijia;Chen, Hongbing;Wu, Zhihua;Yang, Anshu;Wu, Yong;Li, Xin;Dai, Yan;Huang, Meijia;Gao, Jingyan;Li, Xin;Xu, Yujuan;Mu, Lixia;Chen, Hongbing;Wu, Zhihua;Yang, Anshu;Wu, Yong
关键词:Silkworm pupa; Silkworm pupa peptides; Enzymatic hydrolysis; Allergenicity; Immunization; Animal model
-
Analyzing Morphology, Metabolomics, and Transcriptomics Offers Invaluable Insights into the Mechanisms of Pigment Accumulation in the Diverse-Colored Labellum Tissues of Alpinia
作者:Zhao, Tong;Dong, Limei;Yu, Qianxia;Lin, Canjia;Liu, Huanfang;Liao, Jingping;Feng, Xinxin
关键词:Alpinia; pigment accumulation; flavonoids; carotenoids; transcriptome sequencing; metabolome
-
The Integrated mRNA and miRNA Approach Reveals Potential Regulators of Flowering Time in Arundina graminifolia
作者:Ahmad, Sagheer;Lu, Chuqiao;Gao, Jie;Wei, Yonglu;Xie, Qi;Jin, Jianpeng;Zhu, Genfa;Yang, Fengxi;Zhu, Genfa;Yang, Fengxi
关键词:micro RNA; floral integrators; bamboo orchid; multi-omics; hormones
-
The de novo transcriptome identifies important zinc finger signatures associated with flowering in the orchid Arundina graminifolia
作者:Ahmad, Sagheer;Lu, Chuqiao;Wei, Yonglu;Gao, Jie;Jin, Jianpeng;Zheng, Chuanyuan;Zhu, Genfa;Yang, Fengxi
关键词:A; graminifolia; Continuous flowering; Transcriptome; Zinc Fingers
-
Organ-Specific Gene Expression Reveals the Role of the Cymbidium ensifolium-miR396/Growth-Regulating Factors Module in Flower Development of the Orchid Plant Cymbidium ensifolium
作者:Yang, Fengxi;Lu, Chuqiao;Wei, Yonglu;Wu, Jieqiu;Ren, Rui;Gao, Jie;Ahmad, Sagheer;Jin, Jianpeng;Xv, Yechun;Zhu, Genfa;Liang, Gang
关键词:orchid; Cymbidium ensifolium; floral organ; growth-regulating factor; MiR396