Combinatorial Evolution of a Terpene Synthase Gene Cluster Explains Terpene Variations in Oryza
文献类型: 外文期刊
作者: Hao Chen ; Tobias G. K?llner +; Guanglin Li ; Guo Wei ; Xinlu Chen ; Dali Zeng ; Qian Qian ; Feng Chen *
作者机构:
期刊名称: Plant Physiology
ISSN: 0032-0889
年卷期: 2020 年 182 卷 1 期
页码:
收录情况: JCR(2021版)
摘要: Terpenes are specialized metabolites ubiquitously produced by plants via the action of terpene synthases (TPSs). There are enormous variations in the types and amounts of terpenes produced by individual species. To understand the mechanisms responsible for such vast diversity, here we investigated the origin and evolution of a cluster of tandemly arrayed TPS genes in Oryza. In the Oryza species analyzed, TPS genes occur as a three-TPS cluster, a two-TPS cluster, and a single TPS gene in five, one, and one species, respectively. Phylogenetic analysis revealed the origins of the two-TPS and three-TPS clusters and the role of species-specific losses of TPS genes. Within the three-TPS clusters, one orthologous group exhibited conserved catalytic activities. The other two groups, both of which contained pseudogenes and/or nonfunctional genes, exhibited distinct profiles of terpene products. Sequence and structural analyses combined with functional validation identified several amino acids in the active site that are critical for catalytic activity divergence of the three orthologous groups. In the five Oryza species containing the three-TPS cluster, their functional TPS genes showed both conserved and species-specific expression patterns in insect-damaged and untreated plants. Emission patterns of volatile terpenes from each species were largely consistent with the expression of their respective TPS genes and the catalytic activities of the encoded enzymes. This study indicates the importance of combinatorial evolution of TPS genes in determining terpene variations among individual species, which includes gene duplication, retention/loss/degradation of duplicated genes, varying selection pressure, retention/divergence in catalytic activities, and divergence in expression regulation.
分类号:
- 相关文献
作者其他论文 更多>>
-
UDP-N-acetylglucosamine pyrophosphorylase enhances rice survival at high temperature
作者:Saisai Xia; He Liu; Yuanjiang Cui; Haiping Yu; Yuchun Rao ; Yuping Yan; Dali Zeng ; Jiang Hu ; Guangheng Zhang; Zhenyu Gao ; Li Zhu ; Lan Shen; Qiang Zhang; Qing Li; Guojun Dong; Longbiao Guo ; Qian Qian;; Deyong Ren
关键词:
-
Loci and Natural Alleles for Low-Nitrogen-Induced Growth Response Revealed by the Genome-Wide Association Study Analysis in Rice
作者:6. Lv Yang; Jie Ma ; Yueying Wang ; Quan Wang ; Xueli Lu ; Haitao Hu ; Qian Qian ; Longbiao Guo and Lianguang Shang
关键词:
-
The Tolerance of Salinity in Rice Requires the Presence of a Functional Copy of FLN2
作者:Guang Chen *; Jiang Hu +; Liuliu Dong +; Dali Zeng ; Longbiao Guo ; Guangheng Zhang ; Li Zhu *; Qian Qian *
关键词:Oryza Sativa; Fln2; Sugar Partitioning; Plant Growth; Salinity Hypersensitivity
-
Isolation of TSCD11 Gene for Early Chloroplast Development under High Temperature in Rice
作者:Guonan Fang ; Shenglong Yang ; Banpu Ruan ; Chaolei Liu ; Anpeng Zhang ; Hongzhen Jiang ; Shilin Ding ; Biao Tian ; Yu Zhang ; Noushin Jahan ; Li Zhu ; Guangheng Zhang ; Guojun Dong ; Qiang Zhang ; Dali Zeng ; Longbiao Guo ; Zhenyu Gao *; Qian Qian *
关键词:
-
OsCAF2 contains two CRM domains and is necessary for chloroplast development in rice
作者:Lan Shen ; Qiang Zhang +; Zhongwei Wang ; Hongling Wen ; Guanglian Hu ; Deyong Ren ; Jiang Hu ; Li Zhu ; Zhenyu Gao ; Guangheng Zhang ; Longbiao Guo1 ; Dali Zeng ; Qian Qian *
关键词:Oscaf2; Crm Domain; Intron Splicing; Chloroplast Development; Rice
-
Construction of a High-Density Genetic Map Based on SLAF Markers and QTL Analysis of Leaf Size in Rice
作者:Yi Wen ; Yunxia Fang ; Peng Hu ; Yiqing Tan ; Yueying Wang ; Linlin Hou ; Xuemei Deng ; Hao Wu ; Lixin Zhu ; Li Zhu ; Guang Chen ; Dali Zeng ; Longbiao Guo ; Guangheng Zhang ; Zhenyu Gao ; Guojun Dong ; Deyong Ren ; Lan Shen ; Qiang Zhang ; Dawei Xue ; Qian Qian ; Jiang Hu
关键词:Rice; Leaf; Quantitative Trait Loci; Genetic Map; Specific Length Amplified Fragment Sequencing; Fine Mapping
-
Cytokinin oxidase/dehydrogenase OsCKX11 coordinates source and sink relationship in rice by simultaneous regulation of leaf senescence and grain number
作者:Wei Zhang ; Kaixuan Peng ; Fubin Cui ; Dongling Wang ; Jiangzhe Zhao ; Yanjun Zhang ; Ningning Yu ; Yuyang Wang ; Dali Zeng ; Yonghong Wang ; Zhukuan Cheng ; Kewei Zhang
关键词: