Comparative Metabolite Profiling and Hormone Analysis of Perennial and Annual Rice

文献类型: 外文期刊

第一作者: Zhao, Xiuqin

作者: Zhao, Xiuqin;Zhang, Ting;Huang, Liyu;Wu, Huimin;Zhang, Fan;Zhu, Linghua;Fu, Binying;Zhang, Ting;Hu, Fengyi

作者机构:

关键词: Rice;Metabolite profiling;Phytohormone;Rhizome

期刊名称:JOURNAL OF PLANT BIOLOGY ( 影响因子:2.434; 五年影响因子:2.455 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Perenniality is one of the important topics in rice breeding which is generally accompanied by complex physiobiochemical processes. To understand the metabolic characteristics of perennial rice, in the present study, gas chromatography-mass spectrometry and enzyme-linked immunosorbent assays were used to profile the distribution patterns of 33 primary metabolites and hormones [indole-3-acetic acid (IAA) and zeatin riboside (ZR)] of annual (RD23) and perennial (Oryza longistaminata and the line AA with RD23 genetic background) rice genotypes. Results showed that both metabolites and hormones have distinct genotype and organ distribution patterns, and considerable variations were observed between the metabolites in stem bases of perennial and annual rice. Most of the metabolites, including sugars, organic acids, and amino acids, significantly accumulated in the stem bases of perennial rice by decreasing the level in roots and leaves. Fifteen metabolites consistently accumulated significantly in the stem bases of both perennial genotypes. Additionally, the organ-level IAA content and IAA/ZR ratio in the two perennials were considerably higher than those in RD23. The present study indicated that the significant accumulation of the metabolites at stem base and the higher IAA/ZR ratio are involved in the regulatory metabolism for rhizome development.

分类号: Q94

  • 相关文献

[1]Rice endophyte Pantoea agglomerans YS19 promotes host plant growth and affects allocations of host photosynthates. Feng, Y.,Shen, D.,Song, W..

[2]DHHC-cysteine-rich domain S-acyltransferase protein family in rice: organization, phylogenetic relationship and expression pattern during development and stress. Lin, Jianzhong,Peng, Yuchong,Wang, Wenwen,Zhou, Yanbiao,Tang, Dongying,Zhao, Xiaoying,Yu, Feng,Liu, Xuanming,Li, Li.

[3]Deep transcriptome sequencing of rhizome and aerial-shoot in Sorghum propinquum. Zhang, Ting,Zhao, Xiuqin,Wang, Wensheng,Huang, Liyu,Liu, Xiaoyue,Zong, Ying,Zhu, Linghua,Fu, Binying,Li, Zhikang,Zhang, Ting,Yang, Daichang.

[4]Analysis of ESTs from a Normalized cDNA Library of the Rhizome Tip of Oryza longistaminata. Zhang, Ting,Zhao, Xiuqin,Fu, Binying,Zhang, Ting,Yang, Daichang,Li, Lijuan,Hu, Fengyi.

[5]Breeding for perennial growth and fertility in an Oryza sativa O longistaminata population. Sacks, EJ,Dhanapala, MP,Tao, DY,Cruz, MTS,Sallan, R. 2006

[6]Metabolite Profiling of Barley Grains Subjected to Water Stress: To Explain the Genotypic Difference in Drought-Induced Impacts on Malting Quality. Wu, Xiaojian,Cai, Kangfeng,Zhang, Guoping,Zeng, Fanrong,Wu, Xiaojian. 2017

[7]Identification of Conserved and Diverse Metabolic Shift of the Stylar, Intermediate and Peduncular Segments of Cucumber Fruit during Development. Hu, Chaoyang,Zhao, Huiyu,Wang, Wen,Xu, Mingfei,Yang, Guiling,Hu, Chaoyang,Shi, Jianxin,Nie, Xiangbo. 2018

[8]Comparison of the meat metabolite composition of Linwu and Pekin ducks using 600 MHz H-1 nuclear magnetic resonance spectroscopy. Wang, Xiangrong,Fang, Chengkun,He, Jianhua,Dai, Qiuzhong,Fang, Rejun,Wang, Xiangrong,Dai, Qiuzhong,Wang, Xiangrong,Dai, Qiuzhong.

[9]Integrated analysis of rice transcriptomic and metabolomic responses to elevated night temperatures identifies sensitivity- and tolerance-related profiles. Glaubitz, Ulrike,Li, Xia,Schaedel, Sandra,Erban, Alexander,Sulpice, Ronan,Kopka, Joachim,Hincha, Dirk K.,Zuther, Ellen,Li, Xia,Schaedel, Sandra,Sulpice, Ronan.

[10]Altered Serum Metabolite Profiling and Relevant Pathway Analysis in Rats Stimulated by Honeybee Venom: New Insight into Allergy to Honeybee Venom. Zhao, Yazhou,Li, Zhiguo,Nie, Hongyi,Su, Songkun,Zhao, Yazhou,Zhang, Jianmei,Peng, Wenjun,Chen, Yanping. 2018

[11]Genetic background and environmental conditions drive metabolic variation in wild type and transgenic soybean (Glycine max) seeds. Cohen, Hagai,Yu, Yang,Hou, Wensheng,Sun, Shi,Han, Tianfu,Cohen, Hagai,Shir, Ofer M.,Amir, Rachel,Shir, Ofer M.,Amir, Rachel.

[12]Genome-wide characterization and comparative analysis of the MLO gene family in cotton. Xiaoyan Wang,Qifeng Ma,Lingling Dou,Zhen Liu,Renhai Peng,Shuxun Yu. 2016

[13]Identification and Functional Analysis of microRNAs Involved in the Anther Development in Cotton Genic Male Sterile Line Yu98-8A. Xiaojie Yang,Yuanming Zhao,Deyi Xie,Yao Sun,Xunlu Zhu,Nardana Esmaeili,Zuoren Yang,Ye Wang,Guo Yin,Shuping Lv,Lihong Nie,Zhongjie Tang,Fu’an Zhao,Wu Li,Neelam Mishra,Li Sun,Wei Zhu,Weiping Fang. 2016

[14]Expression analysis of genes encoding double B-box zinc finger proteins in maize. Li, Wenlan,Sun, Qi,Li, Wencai,Yu, Yanli,Zhao, Meng,Meng, Zhaodong,Wang, Jingchao. 2017

[15]Toxicity and bio-effects of CuO nanoparticles on transgenic Ipt-cotton. Nhan Le Van,Rui, Yukui,Shang, Jianying,Liu, Shutong,Liu, Liming,Nhan Le Van,Trung Nguyen Quang,Rui, Yukui,Cao, Weidong. 2016

[16]Molecular regulation of terpenoid indole alkaloids pathway in the medicinal plant, Catharanthus roseus. Zhou, Mei-Liang,Wu, Yan-Min,Tang, Yi-Xiong,Zhou, Mei-Liang,Shao, Ji-Rong,Hou, Hong-Li,Zhu, Xue-Mei. 2010

[17]Expression Profiling of a Novel Calcium-Dependent Protein Kinase Gene, LeCPK2, from Tomato (Solanum lycopersicum) under Heat and Pathogen-Related Hormones. Zhang, Zhi-Li,Chang, Wen-Jun,Li, Wei-Jing,Chang, Wen-Jun,Li, Wei-Jing,Su, Huo-Sheng. 2009

[18]Construction of ethylene regulatory network based on the phytohormones related gene transcriptome profiling and prediction of transcription factor activities in soybean. Cheng, Yunqing,Liu, Jianfeng,Liu, Qiang,Liu, Chunming,Yang, Xiangdong,Ma, Rui.

[19]Genome-scale identification of MLO domain-containing genes in soybean (Glycine max L. Merr.). Shen, Qi,Zhao, Jinming,Xiang, Yang,Shen, Qi,Du, Caifu,Xiang, Yang,Qin, Xinrong,Cao, Jinxuan. 2012

[20]Age-dependent and jasmonic acid-induced laticifer-cell differentiation in anther callus cultures of rubber tree. Tan, Deguan,Sun, Xuepiao,Zhang, Jiaming. 2014

作者其他论文 更多>>