Transcriptome analysis of pale-green leaf rice reveals photosynthetic regulatory pathways

被引:0
|
作者
Xia Zhao
Baohua Feng
Tingting Chen
Caixia Zhang
Longxing Tao
Guanfu Fu
机构
[1] China National Rice Research Institute,State Key Laboratory of Rice Biology
[2] Yibin University,undefined
来源
关键词
Transcriptome analysis; Chlorophyll; Chloroplast development; Photosynthesis; Rice (; L.); Oxidative stress;
D O I
暂无
中图分类号
学科分类号
摘要
Chlorophyll metabolic pathways and chloroplast development have been studied systematically by both biochemical and genetic approaches. However, the effect of them on photosynthesis has not been thoroughly elucidated to date. To gain expression profiles of genes involved in crucial pathways and regulators of photosynthetic metabolism in rice seedling, biochemical characteristics and transcriptome of two rice genotypes were compared. Zhefu802 and Chl-8 are the recurrent parent (dark-green leaf) and its near-isogenic lines (pale-green leaf), respectively. The net photosynthetic rate, Fv/Fm and ΦPSII of Chl-8 were markedly higher than those of Zhefu802, although the chlorophyll content of Chl-8 was approximately one-third of Zhefu802. In this research, photosynthesis is controlled by delicate but complex genetic networks. In addition to DEGs directly involved in photosynthesis, DEGs involved in response to oxidative stress, energy metabolism and nitrate metabolism co-regulated photosynthetic efficiency in rice. DEGs categorized to signal transduction supported the regulation. Chloroplasts possessing an abundant thylakoid membrane system were not favored to photosynthesis. Five DEGs assigned to chloroplast category (GO:0009507) was genetic basis of difference on thylakoid membrane. Meanwhile, suitable chlorophyll content, chlorophyll a:b and ratio of chlorophyll to carotenoid, which caused by leaf and chloroplast structure, also promoted high photosynthesis. In summary, high photosynthetic efficiency involves coordinated regulation of the synthesis of multiple pigments, chloroplast development, response to oxidative stress, energy metabolism and nitrate metabolism.
引用
收藏
相关论文
共 50 条
  • [31] Phenotypic and transcriptome analysis on red leaf and green leaf Eucommia ulmoides Oliver
    Yun Yang
    Jingle Zhu
    Mengjiao Chen
    Hui Zhao
    Panfeng Liu
    Huanhuan Ding
    Zirui Jia
    Hongyan Du
    Acta Physiologiae Plantarum, 2020, 42
  • [32] Transcriptome analysis reveals regulatory mechanism of postharvest softening in kiwiberry
    Liu, Zhao
    Sun, Yang
    Liu, Zhenpan
    Song, Jianyu
    Yang, Weicong
    Wang, Zhannan
    Liang, Taiming
    Liang, Dejun
    BMC PLANT BIOLOGY, 2024, 24 (01):
  • [33] Phenotypic and transcriptome analysis on red leaf and green leaf Eucommia ulmoides Oliver
    Yang, Yun
    Zhu, Jingle
    Chen, Mengjiao
    Zhao, Hui
    Liu, Panfeng
    Ding, Huanhuan
    Jia, Zirui
    Du, Hongyan
    ACTA PHYSIOLOGIAE PLANTARUM, 2020, 42 (04)
  • [34] Melanoblast transcriptome analysis reveals pathways promoting melanoma metastasis
    Marie, Kerrie L.
    Sassano, Antonella
    Yang, Howard H.
    Michalowski, Aleksandra M.
    Michael, Helen T.
    Guo, Theresa
    Tsai, Yien Che
    Weissman, Allan M.
    Lee, Maxwell P.
    Jenkins, Lisa M.
    Zaidi, M. Raza
    Perez-Guijarro, Eva
    Day, Chi-Ping
    Ylaya, Kris
    Hewitt, Stephen M.
    Patel, Nimit L.
    Arnheiter, Heinz
    Davis, Sean
    Meltzer, Paul S.
    Merlino, Glenn
    Mishra, Pravin J.
    NATURE COMMUNICATIONS, 2020, 11 (01)
  • [35] Melanoblast transcriptome analysis reveals pathways promoting melanoma metastasis
    Kerrie L. Marie
    Antonella Sassano
    Howard H. Yang
    Aleksandra M. Michalowski
    Helen T. Michael
    Theresa Guo
    Yien Che Tsai
    Allan M. Weissman
    Maxwell P. Lee
    Lisa M. Jenkins
    M. Raza Zaidi
    Eva Pérez-Guijarro
    Chi-Ping Day
    Kris Ylaya
    Stephen M. Hewitt
    Nimit L. Patel
    Heinz Arnheiter
    Sean Davis
    Paul S. Meltzer
    Glenn Merlino
    Pravin J. Mishra
    Nature Communications, 11
  • [36] Transcriptome profiling reveals multiple regulatory pathways of Tamarix chinensis in response to salt stress
    Ruxia Li
    Rao Fu
    Meng Li
    Yanjing Song
    Junlin Li
    Chuanjie Chen
    Yinyu Gu
    Xiaoyan Liang
    Wenjing Nie
    Lan Ma
    Xiangyu Wang
    Haiyang Zhang
    Hongxia Zhang
    Plant Cell Reports, 2023, 42 : 1809 - 1824
  • [37] Transcriptome profiling reveals multiple regulatory pathways of Tamarix chinensis in response to salt stress
    Li, Ruxia
    Fu, Rao
    Li, Meng
    Song, Yanjing
    Li, Junlin
    Chen, Chuanjie
    Gu, Yinyu
    Liang, Xiaoyan
    Nie, Wenjing
    Ma, Lan
    Wang, Xiangyu
    Zhang, Haiyang
    Zhang, Hongxia
    PLANT CELL REPORTS, 2023, 42 (11) : 1809 - 1824
  • [38] Transcriptome analysis reveals important regulatory genes and pathways for tuber color variation in Pinellia ternata (Thunb.) Breit
    Cong Yin
    Ding Tang
    Xiaoyu Liu
    Zihan Li
    Yulin Xiang
    Kaiming Gao
    Heyu Li
    Lin Yuan
    Bisheng Huang
    Juan Li
    Protoplasma, 2023, 260 : 1313 - 1325
  • [39] Comparative transcriptome analysis reveals key pathways and regulatory networks in early resistance of Glycine max to soybean mosaic virus
    Li, Han
    Liu, Jinyang
    Yuan, Xingxing
    Chen, Xin
    Cui, Xiaoyan
    FRONTIERS IN MICROBIOLOGY, 2023, 14
  • [40] Transcriptome analysis reveals important regulatory genes and pathways for tuber color variation in Pinellia ternata (Thunb.) Breit
    Yin, Cong
    Tang, Ding
    Liu, Xiaoyu
    Li, Zihan
    Xiang, Yulin
    Gao, Kaiming
    Li, Heyu
    Yuan, Lin
    Huang, Bisheng
    Li, Juan
    PROTOPLASMA, 2023, 260 (05) : 1313 - 1325