数字农科院2.0

Morphological, Transcriptomics And Phytohormone Analysis Shed Light On The Development Of A Novel Dwarf Mutant Of Cabbage (Brassica Oleracea)

文献类型: 外文期刊

作者: Xing, MM; Su, HN; Liu, X; Yang, LM; Zhang, YY; Wang, Y; Fang, ZY; Lv, HH

作者机构:

关键词: Cabbage; Dwarf; Cytokinesis Defects; Transcriptome; Phytohormone

期刊名称: PLANT SCIENCE

ISSN: 0168-9452

年卷期: 2020 年 290 卷

页码:

收录情况: JCR(2021版)

摘要: Plant dwarf mutants generally exhibit delayed growth, delayed development, short internodes, and abnormal leaves and flowers and are ideal materials to explore the molecular mechanism of plant growth and development. In the current study, we first discovered a spontaneous cabbage (Brassica oleracea) dwarf mutant 99-198dw, which exhibits a dwarf stature, wrinkled leaves, non-heading, and substantially reduced self-fertility compared with the wild-type 99-198; however, the underlying molecular mechanism of its dwarfism is unknown. Here, we performed comparative phenotype, transcriptome and phytohormone analyses between 99-198 and 99-198dw. Cytological analysis showed that an increase in cell size, a reduction in cell layers, chloroplast degradation and a reduction in mitochondria were observed in 99-198dw. RNA-Seq showed that a total of 3801 differentially expressed genes (DEGs) were identified, including 2203 upregulated and 1598 downregulated genes in the dwarf mutant. Key genes in stress-resistant pathways were mostly upregulated, including salicylic acid (SA), jasmonic acid (JA), abscisic acid (ABA), ethylene (ET), etc., while the DEGs reported to be related to plant height, such as those involved in the gibberellin (GA), brassinolide (BR), indole-3-acetic acid (IAA), and strigolactone (SL) pathways were mostly downregulated. In addition, the DEGs in the cell division pathway were all downregulated, which is consistent with the cytokinesis defects detected by cytological analysis. The changes in the GA4, JA, ET, SA and ABA contents measured by liquid chromatography coupled with tandem mass spectrometry (LC MS/MS) absolute quantification were consistent with the transcriptome analysis. Further hormone treatment tests showed that the exogenous application of GA, BR, 6BA, paclobutrazol (PC), etc. did not rescue the phenotype, implying that the change in phytohormones is due to but not the cause of the dwarf trait. It was speculated that mutation of certain DEG related to cell division or participating in signalling pathway of phytohormones like GA, BR, IAA, and SL were the cause of dwarf. These results are informative for the elucidation of the underlying regulatory network in 99-198dw and enrich our understanding of plant dwarf traits at the molecular level.

分类号:

  • 相关文献

[1]Mepiquat Chloride Promotes Cotton Lateral Root Formation By Modulating Plant Hormone Homeostasis. Li, Zhaohu,Wu, Jie,Li, Fangjun,Tian, Xiaoli,Wu, Qian,Wang, Ning,Wu, Qian,Wang, Baomin,Du, Mingwei. 2019

[2]Complementary Transcriptome And Proteome Profiling I.n Cabbage Buds Of A Recessive Male Sterile Mutant Provides New Insights Into Male Reproductive Development. Ji, JL, Yang, LM, Fang, ZY, Zhuang, M, Zhang, YY, Lv, HH, Liu, YM, Li, ZS. 2018

[3]Reduction Of Atpase Activity In T.he Rice Kinesin Protein S temless Dwarf 1 Inhibits Cell Division And Organ Development. Jiang, Dan,Fang, Jingjing,Li, Xueyong,Li, Chenchen,Zhao, Jinfeng,Peng, Lixiang,Yuan, Shoujiang,Zhao, Linlin,Zhang, Wenhui. 2018

[4]Mutations In The Mit3 Gene E.ncoding A Caroteniod Isomerase L ead To Increased Tiller Number In Rice. Xie, Tingting,Li, Xueyong,Peng, Peng,Fang, Shuang,Chu, Jinfang,Fang, Jingjing,Qiu, Haiyang,Zhao, Jinfeng,Wang, Yiqin,Yuan, Shoujiang,Liu, Lihua,Patil, Suyash Bhimgonda,Zhang, Wenhui. 2018

[5]A High-Density Est-Ssr-Based Genetic Map A.nd Qtl Analysis Of D warf Trait In Cucurbita Pepo L.. Xiang, CG, Duan, Y, Li, HB, Ma, W, Huang, SW, Sui, XL, Zhang, ZH, Wang, CL. 2018

[6]Characterization Of A Novel Semi-Dwarf G.id1 Allele Identifies An A mino Acid Required For Its Interaction With Slr1 In Rice. Wang, MX, Qin, YL, Chun, Y, Zhao, JF, Fang, JJ, Zafar, SA, Guo, BT, Li, XY. 2018

[7]Engineered Dwarf Male-Sterile Rice: A P.romising Genetic Tool For F acilitating Recurrent Selection In Rice. Ansari, A, Wang, CL, Wang, J, Wang, FJ, Liu, PQ, Gao, Y, Tang, YC, Zhao, KJ. 2017

[8]Pyr-Mir171F-Targeted Pyrscl6 And Pyrscl22 Genes R.egulate Shoot Growth By R esponding To Iaa Signaling In Pear. Jiang, SL, Chen, QJ, Zhang, QL, Zhang, Y, Hao, NN, Ou, CQ, Wang, F, Li, TZ. 2018

[9]Identification And Molecular Mapping Of I.ndica High-Tillering Dwarf Mutant H td4, A Mild Phenotype Allelic Mutant Of D14 In Rice (Oryza Sativa L.). Wang, YP, Tang, SQ, Chen, HZ, Wu, ZF, Zhang, H, Duan, EC, Shi, QH, Wu, ZM. 2017

[10]Identification Of Bna.Iaa7.C05 As Allelic Gene For Dwarf Mutant Generated From Tissue Culture In Oilseed Rape. Cheng, HT, Jin, FW, Zaman, QU, Ding, BL, Hao, MY, Wang, Y, Huang, Y, Wells, R, Dong, Y, Hu, Q. 2019

[11]Mutations In The Mit3 Gene Encoding A Caroteniod Isomerase L ead To Increased Tiller Number In Rice. Liu, LH, Xie, TT, Peng, P, Qiu, HY, Zhao, JF, Fang, JJ, Patil, SB, Wang, YQ, Fang, S, Chu, JF, Yuan, SJ, Zhang, WH, Li, XY. 2018

[12]Reduction Of Atpase Activity In The Rice Kinesin Protein S temless Dwarf 1 Inhibits Cell Division And Organ Development. Fang, JJ, Yuan, SJ, Li, CC, Jiang, D, Zhao, LL, Peng, LX, Zhao, JF, Zhang, WH, Li, XY. 2018

[13]A Selection Method Of Chickens W.ith Blue-Eggshell And Dwarf T raits By Molecular Marker-Assisted Selection. Cui, HX, Shen, QC, Zheng, MQ, Su, YC, Cai, RC, Yu, Y, Yang, XR, Chen, ZW, Wen, J, Zhao, GP. 2019

[14]Effects Of 1-Aminocyclopropane-1-Carboxylate And Paclobutrazol O.n The Endogenous Hormones O f Two Contrasting Rice Varieties Under Submergence Stress. Xiang, Jing,Zhu, Defeng,Wu, Hui,Chen, Huizhe,Zhang, Yikai,Zhang, Yuping. 2019

[15]Molecular Evolution And Stress And P.hytohormone Responsiveness Of Sut G enes In Gossypium Hirsutum. Liu, Yangai,Ma, Xiongfeng,Pei, Xiaoyu,Wang, Zhenyu,Song, Chengxiang,Sun, Kuan,Yang, Daigang,Zhou, Xiaojian,Zhang, Fei,Ren, Zhongying,He, Kunlun,Li, Wei. 2018

[16]Effect Of Major Tea Insect A.ttack On Formation Of Q uality-Related Nonvolatile Specialized Metabolites In Tea (Camellia Sinensis) Leaves. Zeng, Lanting,Liu, Xiaoyu,Zeng, Lanting,Yu, Zhenming,Liu, Xiaoyu,Liao, Yinyin,Yu, Zhenming,Liao, Yinyin,Yang, Ziyin,Li, Jianlong,Tang, Jinchi,Cheng, Sihua,Cheng, Sihua,Cheng, Sihua,Li, Jianlong,Yang, Ziyin,Liao, Yinyin,Yang, Ziyin,Tang, Jinchi,Liu, Xiaoyu. 2019

[17]Ipa1 Functions As A Downstream T.ranscription Factor Repressed By D 53 In Strigolactone Signaling In Rice. Lu, Zefu,Song, Xiaoguang,Shao, Gaoneng,Xiong, Jinsong,Duan, Jingbo,Jing, Yanhui,Meng, Xiangbing,Xiong, Guosheng,Li, Jiayang,Lu, Zefu,Meng, Xiangbing,Xiong, Jinsong,Song, Xiaoguang,Wang, Yonghong,Yu, Hong,Shao, Gaoneng,Xiong, Jinsong,Xiong, Guosheng,Li, Jiayang,Yao, Xue-Feng,Jing, Yanhui,Xiong, Guosheng,Lu, Zefu,Liu, Guifu,Li, Jiayang,Duan, Jingbo,Liu, Guifu,Yu, Hong,Liu, Chun-Ming,Li, Hongqing,Wang, Yonghong,Shao, Gaoneng. 2017

[18]Physiological And Transcriptomic Changes During T.he Early Phases Of A dventitious Root Formation In Mulberry Stem Hardwood Cuttings. Cao, Xu,Ma, Sang,Cheng, Jialing,Hou, Chengxiang,Shen, Qiudi,Shang, Chunqiong,Liu, Li,Ma, Sang,Shang, Chunqiong,Shen, Qiudi,Hou, Chengxiang,Yang, Honglei,Liu, Li,Yang, Honglei,Cheng, Jialing,Cao, Xu. 2019

[19]Comprehensive Transcriptome Analyses Reveal Differential G.ene Expression Profiles Of C amellia Sinensis Axillary Buds At Para-, Endo-, Ecodormancy, And Bud Flush Stages. Yang, Yajun,Wang, Xinchao,Yang, Yajun,Yue, Chuan,Yue, Chuan,Wang, Xinchao,Hao, Xinyuan,Hao, Xinyuan,Horvath, David P.,Wang, Lu,Wang, Lu. 2017

[20]Genome-Wide Analysis Of Cotton Gh3 S.ubfamily Ii Reveals Functional D ivergence In Fiber Development, Hormone Response And Plant Architecture. Chen, Quanjia,Li, Fuguang,Li, Fuguang,Li, Fuguang,Li, Jie,Li, Jie,Li, Yi,Liu, Zhao,Lu, Lili,Lu, Lili,Mendu, Venugopal,Qanmber, Ghulam,Wang, Lingling,Yang, Zhaoen,Yang, Zhaoen,Yang, Zuoren,Yang, Zuoren,Yang, Zuoren,Yu, Daoqian,Yu, Daoqian. 2018

作者其他论文 更多>>