Literature DB >> 32514145

Puzzling out plant reproduction by haploid induction for innovations in plant breeding.

Nathanaël M A Jacquier1,2, Laurine M Gilles2, Douglas E Pyott1, Jean-Pierre Martinant2, Peter M Rogowsky1, Thomas Widiez3.   

Abstract

Mixing maternal and paternal genomes in embryos is not only responsible for the evolutionary success of sexual reproduction, but is also a cornerstone of plant breeding. However, once an interesting gene combination is obtained, further genetic mixing is problematic. To rapidly fix genetic information, doubled haploid plants can be produced: haploid embryos having solely the genetic information from one parent are allowed to develop, and chromosome doubling generates fully homozygous plants. A powerful path to the production of doubled haploids is based on haploid inducer lines. A simple cross between a haploid inducer line and the line with gene combinations to be fixed will trigger haploid embryo development. However, the exact mechanism behind in planta haploid induction remains an enduring mystery. The recent discoveries of molecular actors triggering haploid induction in the maize crop and the model Arabidopsis thaliana pinpoint an essential role of processes related to gamete development, gamete interactions and genome stability. These findings enabled translation of haploid induction capacity to other crops as well as the use of haploid inducer lines to deliver genome editing machinery into various crop varieties. These recent advances not only hold promise for the next generations of plant breeding strategies, but they also provide a deeper insight into the fundamental bases of sexual reproduction in plants.

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Year:  2020        PMID: 32514145     DOI: 10.1038/s41477-020-0664-9

Source DB:  PubMed          Journal:  Nat Plants        ISSN: 2055-0278            Impact factor:   15.793


  46 in total

1.  New insights into the genetics of in vivo induction of maternal haploids, the backbone of doubled haploid technology in maize.

Authors:  Vanessa Prigge; Xiaowei Xu; Liang Li; Raman Babu; Shaojiang Chen; Gary N Atlin; Albrecht E Melchinger
Journal:  Genetics       Date:  2011-11-30       Impact factor: 4.562

Review 2.  Haploids in flowering plants: origins and exploitation.

Authors:  Jim M Dunwell
Journal:  Plant Biotechnol J       Date:  2010-03-11       Impact factor: 9.803

Review 3.  Haploidization via Chromosome Elimination: Means and Mechanisms.

Authors:  Takayoshi Ishii; Raheleh Karimi-Ashtiyani; Andreas Houben
Journal:  Annu Rev Plant Biol       Date:  2016-01-15       Impact factor: 26.379

4.  A genetic analysis of the origin of maternal haploids in maize.

Authors:  K R Sarkar; E H Coe
Journal:  Genetics       Date:  1966-08       Impact factor: 4.562

Review 5.  The resurgence of haploids in higher plants.

Authors:  Brian P Forster; Erwin Heberle-Bors; Ken J Kasha; Alisher Touraev
Journal:  Trends Plant Sci       Date:  2007-07-12       Impact factor: 18.313

6.  Androgenesis conditioned by a mutation in maize.

Authors:  J L Kermicle
Journal:  Science       Date:  1969-12-12       Impact factor: 47.728

7.  A major locus expressed in the male gametophyte with incomplete penetrance is responsible for in situ gynogenesis in maize.

Authors:  P Barret; M Brinkmann; M Beckert
Journal:  Theor Appl Genet       Date:  2008-05-31       Impact factor: 5.699

8.  Haploid induction in plants.

Authors:  Laurine M Gilles; Jean-Pierre Martinant; Peter M Rogowsky; Thomas Widiez
Journal:  Curr Biol       Date:  2017-10-23       Impact factor: 10.834

9.  The Genetic Basis of Haploid Induction in Maize Identified with a Novel Genome-Wide Association Method.

Authors:  Haixiao Hu; Tobias A Schrag; Regina Peis; Sandra Unterseer; Wolfgang Schipprack; Shaojiang Chen; Jinsheng Lai; Jianbing Yan; Boddupalli M Prasanna; Sudha K Nair; Vijay Chaikam; Valeriu Rotarenco; Olga A Shatskaya; Alexandra Zavalishina; Stefan Scholten; Chris-Carolin Schön; Albrecht E Melchinger
Journal:  Genetics       Date:  2016-02-19       Impact factor: 4.562

Review 10.  State-of-the-art and novel developments of in vivo haploid technologies.

Authors:  Kamila Kalinowska; Sindy Chamas; Katharina Unkel; Dmitri Demidov; Inna Lermontova; Thomas Dresselhaus; Jochen Kumlehn; Frank Dunemann; Andreas Houben
Journal:  Theor Appl Genet       Date:  2018-12-19       Impact factor: 5.699

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  19 in total

1.  Non-homologous chromosome pairing during meiosis in haploid Brassica rapa.

Authors:  Jiachen Yuan; Gongyao Shi; Yan Yang; Janeen Braynen; Xinjie Shi; Xiaochun Wei; Zhuolin Hao; Xiaowei Zhang; Yuxiang Yuan; Baoming Tian; Zhengqing Xie; Fang Wei
Journal:  Plant Cell Rep       Date:  2021-09-20       Impact factor: 4.570

2.  BABY BOOM regulates early embryo and endosperm development.

Authors:  Baojian Chen; Lena Maas; Duarte Figueiredo; Yu Zhong; Ricardo Reis; Mengran Li; Anneke Horstman; Tjitske Riksen; Mieke Weemen; Hang Liu; Charlotte Siemons; Shaojiang Chen; Gerco C Angenent; Kim Boutilier
Journal:  Proc Natl Acad Sci U S A       Date:  2022-06-16       Impact factor: 12.779

3.  Maize In Planta Haploid Inducer Lines: A Cornerstone for Doubled Haploid Technology.

Authors:  Nathanaël M A Jacquier; Laurine M Gilles; Jean-Pierre Martinant; Peter M Rogowsky; Thomas Widiez
Journal:  Methods Mol Biol       Date:  2021

4.  Isolation of Staged and Viable Maize Microspores for DH Production.

Authors:  Philippe Vergne; Antoine Gaillard
Journal:  Methods Mol Biol       Date:  2021

5.  Establishing in planta haploid inducer line by edited SiMTL in foxtail millet (Setaria italica).

Authors:  Zixiang Cheng; Yao Sun; Suhua Yang; Hui Zhi; Tao Yin; Xiaojiao Ma; Haoshan Zhang; Xianmin Diao; Yan Guo; Xinhai Li; Chuanyin Wu; Yi Sui
Journal:  Plant Biotechnol J       Date:  2021-04-01       Impact factor: 9.803

6.  Rapid and Synchronous Breeding of Cytoplasmic Male Sterile and Maintainer Line Through Mitochondrial DNA Rearrangement Using Doubled Haploid Inducer in Brassica napus.

Authors:  Wei Zhang; Haoran Shi; Ying Zhou; Xingyu Liang; Xuan Luo; Chaowen Xiao; Yun Li; Peizhou Xu; Jisheng Wang; Wanzhuo Gong; Qiong Zou; Lanrong Tao; Zeming Kang; Rong Tang; Zhuang Li; Jin Yang; Shaohong Fu
Journal:  Front Plant Sci       Date:  2022-04-26       Impact factor: 6.627

7.  In vivo maternal haploid induction in tomato.

Authors:  Yu Zhong; Baojian Chen; Dong Wang; Xijian Zhu; Mengran Li; Jinzhe Zhang; Ming Chen; Min Wang; Tjitske Riksen; Jinchu Liu; Xiaolong Qi; Yuwen Wang; Dehe Cheng; Zongkai Liu; Jinlong Li; Chen Chen; Yanyan Jiao; Wenxin Liu; Sanwen Huang; Chenxu Liu; Kim Boutilier; Shaojiang Chen
Journal:  Plant Biotechnol J       Date:  2021-12-06       Impact factor: 9.803

8.  Proceedings of the 7th Series of Seminars on Advances in Apomixis Research.

Authors:  Viviana Echenique; Daphné Autran; Olivier Leblanc
Journal:  Plants (Basel)       Date:  2021-03-17

Review 9.  Rewiring Meiosis for Crop Improvement.

Authors:  Pallas Kuo; Olivier Da Ines; Christophe Lambing
Journal:  Front Plant Sci       Date:  2021-07-19       Impact factor: 5.753

10.  Lipid anchoring and electrostatic interactions target NOT-LIKE-DAD to pollen endo-plasma membrane.

Authors:  Laurine M Gilles; Andrea R M Calhau; Veronica La Padula; Nathanaël M A Jacquier; Claire Lionnet; Jean-Pierre Martinant; Peter M Rogowsky; Thomas Widiez
Journal:  J Cell Biol       Date:  2021-07-29       Impact factor: 10.539

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