Coupling between Ribotypic and Phenotypic Traits of Protists across Life Cycle Stages and Temperatures
文献类型: 外文期刊
作者: Zou, Songbao 2 ; Fu, Rao 2 ; Deng, Huiwen 1 ; Zhang, Qianqian 2 ; Gentekaki, Eleni 6 ; Gong, Jun 1 ;
作者机构: 1.Sun Yat Sen Univ, Sch Marine Sci, Zhuhai, Peoples R China
2.Chinese Acad Sci, Yantai Inst Coastal Zone Res, Yantai, Peoples R China
3.Univ Chinese Acad Sci, Beijing, Peoples R China
4.Minist Agr & Rural Affairs, Key Lab Hlth Freshwater Aquaculture, Huzhou, Peoples R China
5.Shandong Acad Agr Sci, Shandong Inst Sericulture, Yantai, Peoples R China
6.Mae Fah Luang Univ, Sch Sci, Chiang Rai, Thailand
7.Southern Marine Sci & Engn Guangdong Lab, Zhuhai, Peoples R China
8.Zhejiang Inst Freshwater Fisheries, Key Lab Fish Hlth & Nutr Zhejiang Prov, Huzhou, Peoples R China
关键词: cell size; copy number variation; growth rate; life cycle; warming
期刊名称:MICROBIOLOGY SPECTRUM ( 影响因子:7.171; 五年影响因子:7.4 )
ISSN: 2165-0497
年卷期: 2021 年 9 卷 3 期
页码:
收录情况: SCI
摘要: Relationships between ribotypic and phenotypic traits of protists across life cycle stages remain largely unknown. Herein, we used single cells of two soil and two marine ciliate species to examine phenotypic and ribotypic traits and their relationships across lag, log, plateau, cystic stages and temperatures. We found that Colpoda inflata and Colpoda steinii demonstrated allometric relationships between 18S ribosomal DNA (rDNA) copy number per cell (CNPC), cell volume (CV), and macronuclear volume across all life cycle stages. Integrating previously reported data of Euplotes vannus and Strombidium sulcatum indicated taxon-dependent rDNA CNPC-CV functions. Ciliate and prokaryote data analysis revealed that the rRNA CNPC followed a unified power-law function only if the rRNA-deficient resting cysts were not considered. Hence, a theoretical framework was proposed to estimate the relative quantity of resting cysts in the protistan populations with total cellular rDNA and rRNA copy numbers. Using rDNA CNPC was a better predictor of growth rate at a given temperature than rRNA CNPC and CV, suggesting replication of redundant rDNA operons as a key factor that slows cell division. Single-cell high-throughput sequencing and analysis after correcting sequencing errors revealed multiple rDNA and rRNA variants per cell. Both encystment and temperature affected the number of rDNA and rRNA variants in several cases. The divergence of rDNA and rRNA sequence in a single cell ranged from 1% to 10% depending on species. These findings have important implications for inferring cell-based biological traits (e.g., species richness, abundance and biomass, activity, and community structure) of protists using molecular approaches. IMPORTANCE Based on phenotypic traits, traditional surveys usually characterize organismal richness, abundance, biomass, and growth potential to describe diversity, organization, and function of protistan populations and communities. The rRNA gene (rDNA) and its transcripts have been widely used as molecular markers in ecological studies of protists. Nevertheless, the manner in which these molecules relate to cellular (organismal) and physiological traits remains poorly understood, which could lead to misinterpretations of protistan diversity and ecology. The current research highlights the dynamic nature of cellular rDNA and rRNA contents, which tightly couple with multiple phenotypic traits in ciliated protists. We demonstrate that quantity of resting cysts and maximum growth rate of a population can be theoretically estimated using ribotypic trait-based models. The intraindividual sequence polymorphisms of rDNA and rRNA can be influenced by encystment and temperature, which should be considered when interpreting species-level diversity and community structure of microbial eukaryotes.
- 相关文献
作者其他论文 更多>>
-
Uncovering key salt-tolerant regulators through a combined eQTL and GWAS analysis using the super pan-genome in rice
作者:Wei, Hua;Wang, Xianmeng;Zhang, Zhipeng;Yang, Longbo;Zhang, Qianqian;Li, Yilin;He, Huiying;Chen, Dandan;Zhang, Bin;Leng, Yue;Cao, Xinglan;Cui, Yan;Shi, Chuanlin;Liu, Yifan;Lv, Yang;Ma, Jie;He, Wenchuang;Liu, Xiangpei;Xu, Qiang;Yuan, Qiaoling;Yu, Xiaoman;Wang, Tianyi;Qian, Hongge;Li, Xiaoxia;Zhang, Bintao;Zhang, Hong;Chen, Wu;Guo, Mingliang;Dai, Xiaofan;Qian, Qian;Shang, Lianguang;Zheng, Chongke;Xie, Xianzhi;Lv, Yang;Ma, Jie;Wang, Yuexing;Guo, Longbiao;Qian, Qian;Zheng, Xiaoming;Qian, Qian;Shang, Lianguang
关键词:super pan-genome; expression quantitative trait loci; GWAS; salt tolerance; rice
-
Porous Minerals Improve Wheat Shoot Growth and Grain Yield through Affecting Soil Properties and Microbial Community in Coastal Saline Land
作者:Ma, Lan;Song, Yanjing;Wang, Jie;Shan, Yan;Liang, Xiaoyan;Zhang, Haiyang;Fu, Rao;Li, Junlin;Nie, Wenjing;Li, Meng;Li, Jiajia;Yi, Kuihua;Wang, Xiangyu;Zhang, Hongxia;Ma, Lan;Song, Yanjing;Wang, Jie;Shan, Yan;Liang, Xiaoyan;Zhang, Haiyang;Fu, Rao;Li, Junlin;Nie, Wenjing;Li, Meng;Li, Jiajia;Yi, Kuihua;Wang, Xiangyu;Zhang, Hongxia;Ma, Lan;Liang, Xiaoyan;Zhang, Haiyang;Fu, Rao;Li, Junlin;Li, Meng;Wang, Lu;Zhang, Hongxia;Mao, Tingting;Wang, Lu;Zhang, Hongxia
关键词:mineral material; coastal saline soil; wheat; soil properties; 16S rRNA high-throughput sequencing
-
Effect of biochar and bioorganic fertilizer on the microbial diversity in the rhizosphere soil of Sesbania cannabina in saline-alkaline soil
作者:Gu, Yin-yu;Liang, Xiao-yan;Zhang, Hai-yang;Fu, Rao;Li, Meng;Chen, Chuan-jie
关键词:effect; biochar; bioorganic fertilizer; microbial diversity; saline-alkali rhizosphere soil
-
Lipid transport protein ORP2A promotes glucose signaling by facilitating RGS1 degradation
作者:Yu, Qian;Sun, Jialu;Sun, Mengyao;Ge, Lei;Zou, Wenjiao;Liu, Kui;Chao, Yanru;Zhang, Qianqian;Wang, Xiaodong;Wang, Xiaofei;Ge, Lei;Zou, Wenjiao;Liu, Kui;Zhang, Qianqian
关键词:
-
Effect of different biochar particle sizes together with bio-organic fertilizer on rhizosphere soil microecological environment on saline-alkali land
作者:Gu, Yin-yu;Zhang, Hai-yang;Liang, Xiao-yan;Fu, Rao;Li, Meng;Chen, Chuan-jie
关键词:different biochar particles sizes; bio-organic fertilizer; rhizosphere soil; microecological environment; saline-alkali land
-
The diversity and structure of diazotrophic communities in the rhizosphere of coastal saline plants is mainly affected by soil physicochemical factors but not host plant species
作者:Song, Yanjing;Ma, Lan;Zhang, Haiyang;Fu, Rao;Liang, Xiaoyan;Li, Junlin;Li, Jiajia;Li, Meng;Shan, Yan;Wang, Xiangyu;Zhang, Hongxia;Cheng, Jieshan;Zhang, Hongxia;Cheng, Jieshan;Zhang, Hongxia
关键词:diazotroph; nifH gene; community structure; rhizosphere; halophyte
-
Impact of Biochar and Bioorganic Fertilizer on Rhizosphere Bacteria in Saline-Alkali Soil
作者:Gu, Yin-Yu;Zhang, Hai-Yang;Liang, Xiao-Yan;Fu, Rao;Li, Meng;Chen, Chuan-Jie
关键词:biochar; bioorganic fertilizer; rhizosphere bacteria; saline-alkali soil



