Integrative analysis of exogenous auxin mediated plant height regulation in Moso bamboo (Phyllostachys edulis)

被引:14
作者
Bai, Yucong [1 ]
Cai, Miaomiao [1 ,2 ]
Mu, Changhong [1 ]
Zheng, Huifang [1 ]
Cheng, Zhanchao [1 ]
Xie, Yali [1 ]
Gao, Jian [1 ]
机构
[1] Int Ctr Bamboo & Rattan, Beijing Bamboo & Rattan Sci & Technol, Key Lab Natl Forestry & Grassland Adm, Beijing, Peoples R China
[2] Bozhou Univ, Dept Biol & Food Engn, Bozhou, Anhui, Peoples R China
关键词
Auxin; Moso bamboo; Transcriptomics; Metabolomics; Height regulation; Internode elongation; TRANSCRIPTION FACTOR; CROSSTALK; ACID;
D O I
10.1016/j.indcrop.2023.116852
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Auxin is important in regulating bamboo growth and development. Morphological and anatomical analyses of naturally growing Moso bamboo treated with auxin revealed that auxin-mediated regulation of bamboo height mainly increased internode length rather than nodes number. For individual internodes, auxin regulated inter -node elongation mainly by promoting cell elongation. Targeted metabolomic assays of endogenous hormones found that exogenous auxin treatment affected the dynamic balance of endogenous hormones, resulting in increased levels of gibberellin and cytokinin. Transcriptome sequencing indicated that the regulation of inter -node length by auxin is mainly through phytohormone signaling pathway, amino acid synthesis and protein processing pathway, and energy metabolism pathway. The transcription factors that play major regulatory roles included the ethylene response factor, WRKY and MYB transcription factor, NAC structural domain protein and basic leucine zipper protein. By constructing a gene regulatory network, we found that auxin may crosstalk with multiple plant hormones. Yeast two-hybrid and transgenic experiments demonstrated that the auxin signaling factor PheAUX/IAA34 and the jasmonic acid signaling factor PheTIFY28 do interact and regulate growth in response to phytohormones. Overall we have obtained good quality bamboo internode material for industry through the auxin treatment and have preliminarily investigated the mechanism, which will provide a reference for bamboo plant height regulation.
引用
收藏
页数:12
相关论文
共 60 条
  • [21] GbTCP, a cotton TCP transcription factor, confers fibre elongation and root hair development by a complex regulating system
    Hao, Juan
    Tu, Lili
    Hu, Haiyan
    Tan, Jiafu
    Deng, Fenglin
    Tang, Wenxin
    Nie, Yichun
    Zhang, Xianlong
    [J]. JOURNAL OF EXPERIMENTAL BOTANY, 2012, 63 (17) : 6267 - 6281
  • [22] Accuracy assessment of plant height using an unmanned aerial vehicle for quantitative genomic analysis in bread wheat
    Hassan, Muhammad Adeel
    Yang, Mengjiao
    Fu, Luping
    Rasheed, Awais
    Zheng, Bangyou
    Xia, Xianchun
    Xiao, Yonggui
    He, Zhonghu
    [J]. PLANT METHODS, 2019, 15 (1)
  • [23] Jasmonate regulates leaf senescence and tolerance to cold stress: crosstalk with other phytohormones
    Hu, Yanru
    Jiang, Yanjuan
    Han, Xiao
    Wang, Houping
    Pan, Jinjing
    Yu, Diqiu
    [J]. JOURNAL OF EXPERIMENTAL BOTANY, 2017, 68 (06) : 1361 - 1369
  • [24] The bHLH transcription factor SPATULA enables cytokinin signaling, and both activate auxin biosynthesis and transport genes at the medial domain of the gynoecium
    Irepan Reyes-Olalde, J.
    Zuniga-Mayo, Victor M.
    Serwatowska, Joanna
    Chavez Montes, Ricardo A.
    Lozano-Sotomayor, Paulina
    Herrera-Ubaldo, Humberto
    Gonzalez-Aguilera, Karla L.
    Ballester, Patricia
    Ripoll, Juan Jose
    Ezquer, Ignacio
    Paolo, Dario
    Heyl, Alexander
    Colombo, Lucia
    Yanofsky, Martin F.
    Ferrandiz, Cristina
    Marsch-Martinez, Nayelli
    de Folter, Stefan
    [J]. PLOS GENETICS, 2017, 13 (04):
  • [25] Arabidopsis WRKY57 Functions as a Node of Convergence for Jasmonic Acid- and Auxin-Mediated Signaling in Jasmonic Acid-Induced Leaf Senescence
    Jiang, Yanjuan
    Liang, Gang
    Yang, Shizhuo
    Yu, Diqiu
    [J]. PLANT CELL, 2014, 26 (01) : 230 - 245
  • [26] KEGG for linking genomes to life and the environment
    Kanehisa, Minoru
    Araki, Michihiro
    Goto, Susumu
    Hattori, Masahiro
    Hirakawa, Mika
    Itoh, Masumi
    Katayama, Toshiaki
    Kawashima, Shuichi
    Okuda, Shujiro
    Tokimatsu, Toshiaki
    Yamanishi, Yoshihiro
    [J]. NUCLEIC ACIDS RESEARCH, 2008, 36 : D480 - D484
  • [27] Genome-Wide Analysis and Characterization of the Aux/IAA Family Genes Related to Floral Scent Formation in Hedychium coronarium
    Ke, Yanguo
    Abbas, Farhat
    Zhou, Yiwei
    Yu, Rangcai
    Yue, Yuechong
    Li, Xinyue
    Yu, Yunyi
    Fan, Yanping
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2019, 20 (13)
  • [28] Brassinosteroid Signaling, Crosstalk and, Physiological Functions in Plants Under Heavy Metal Stress
    Kour, Jaspreet
    Kohli, Sukhmeen Kaur
    Khanna, Kanika
    Bakshi, Palak
    Sharma, Pooja
    Singh, Arun Dev
    Ibrahim, Mohd
    Devi, Kamini
    Sharma, Neerja
    Ohri, Puja
    Skalicky, Milan
    Brestic, Marian
    Bhardwaj, Renu
    Landi, Marco
    Sharma, Anket
    [J]. FRONTIERS IN PLANT SCIENCE, 2021, 12
  • [29] WGCNA: an R package for weighted correlation network analysis
    Langfelder, Peter
    Horvath, Steve
    [J]. BMC BIOINFORMATICS, 2008, 9 (1)
  • [30] Arabidopsis GDSL lipase 2 plays a role in pathogen defense via negative regulation of auxin signaling
    Lee, Dong Sook
    Kim, Bo Kyung
    Kwon, Sun Jae
    Jin, Hak Chul
    Park, Ohkmae K.
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2009, 379 (04) : 1038 - 1042