The Arabidopsis Nodulin Homeobox Factor Atndx Interacts With Atring1A/B And Negatively Regulates Abscisic Acid Signaling([Open])
文献类型: 外文期刊
作者: Zhu, YJ; Hu, XY; Duan, Y; Li, SF; Wang, Y; Rehman, AU; He, JN; Zhang, J; Hua, DP; Yang, L; Wang, L; Chen, ZZ; Li, CY; Wang, BS; Song, CP; Sun, QW; Yang, SH; Gong, ZZ
作者机构:
期刊名称: PLANT CELL
ISSN: 1040-4651
年卷期: 2020 年 32 卷 3 期
页码:
收录情况: JCR(2021版)
摘要: Arabidopsis nodulin homeobox protein AtNDX interacts with the Polycomb Repressive Complex 1 (PRC1) core components AtRING1A and AtRING1B and negatively regulates ABI4 expression during ABA signaling. The phytohormone abscisic acid (ABA) and the Polycomb group proteins have key roles in regulating plant growth and development; however, their interplay and underlying mechanisms are not fully understood. Here, we identified an Arabidopsis (Arabidopsis thaliana) nodulin homeobox (AtNDX) protein as a negative regulator in the ABA signaling pathway. AtNDX mutants are hypersensitive to ABA, as measured by inhibition of seed germination and root growth, and the expression of AtNDX is downregulated by ABA. AtNDX interacts with the Polycomb Repressive Complex1 (PRC1) core components AtRING1A and AtRING1B in vitro and in vivo, and together, they negatively regulate the expression levels of some ABA-responsive genes. We identified ABA-INSENSITIVE (ABI4) as a direct target of AtNDX. AtNDX directly binds the downstream region of ABI4 and deleting this region increases the ABA sensitivity of primary root growth. Furthermore, ABI4 mutations rescue the ABA-hypersensitive phenotypes of ndx mutants and ABI4-overexpressing plants are hypersensitive to ABA in primary root growth. Thus, our work reveals the critical functions of AtNDX and PRC1 in some ABA-mediated processes and their regulation of ABI4.
分类号:
- 相关文献
作者其他论文 更多>>
-
Fungicide Treatments To Control Seed-Borne Fungi Of Sunflower Seeds
作者:Addrah, ME; Zhang, YY; Zhang, J; Liu, L; Zhou, HY; Chen, WD; Zhao, J
关键词:Flusilazole; Sunflower; Seed-Borne Fungi; Seed Coat Contamination; Seed Pretreatment
-
Genome Sequence Resource For Colletotrichum Scovillei the Cause Of Anthracnose Disease Of Chili
作者:Huo, JF; Wang, YF; Hao, YJ; Yao, YR; Wang, Y; Zhang, K; Tan, XQ; Li, ZQ; Wang, WL
关键词:Colletotrichum Scovillei; Chili; Genome; Nanopore
-
Light- And Temperature-Entrainable Circadian Clock In Soybean Development
作者:Wang, Y; Yuan, L; Su, T; Wang, Q; Gao, Y; Zhang, SY; Jia, Q; Yu, GL; Fu, YF; Cheng, Q; Liu, BH; Kong, FJ; Zhang, X; Song, CP; Xu, XD; Xie, QG
关键词:Circadian Clock; Gmlcls; Flowering Time; Hairy Roots; Transgenic Soybean
-
Fertilizer Types Shaped The Microbial Guilds Driving The Dissimilatory Nitrate Reduction To Ammonia Process In A Ferralic Cambisol
作者:Luo, XS; Qian, H; Wang, L; Han, S; Wen, SL; Wang, BR; Huang, QY; Chen, WL
关键词:Dissimilatory Nitrate Reduction To Ammonia (Dnra); Nrfa; Ferralic Cambisol; Long-Term Fertilization
-
Identification Of A Novel Type I Pullulanase From Fervidobacterium Nodosum Rt17-B1, With High Thermostability And Suitable Optimal Ph
作者:Yang, Y; Zhu, YY; Obaroakpo, JU; Zhang, SW; Lu, J; Yang, L; Ni, DW; Pang, XY; Lv, JP
关键词:Pullulanase; Thermostability; Heterologous Expression; Characterization
-
Cadmium Absorption And Translocation Of Amaranth (Amaranthus Mangostanus L.) Affected By Iron Deficiency
作者:Zou, R; Wang, L; Li, YCC; Tong, ZH; Huo, WM; Chi, KY; Fan, HL
关键词:Cadmium Isotope; Iron Transporter; Metabolic Inhibitor; Calcium Channel Inhibitor
-
The G Protein-Coupled Receptor Ffar2 Promotes Internalization During Influenza A Virus Entry
作者:Wang, GW; Jiang, L; Wang, JL; Zhang, J; Kong, FD; Li, QB; Yan, Y; Huang, SY; Zhao, YH; Liang, LB; Li, JP; Sun, N; Hu, YZ; Shi, WJ; Deng, GH; Chen, PC; Liu, LL; Zeng, XY; Tian, GB; Bu, ZG; Chen, HL; Li, CJ
关键词:Beta-Arrestin1; Ap2B1; Ffar2; Grk; Entry; Influenza A Virus; Internalization