| [1] |
Dunwell JM. 2010. Haploids in flowering plants: origins and exploitation. |
| [2] |
Geiger HH. 2009. Doubled haploids. In Handbook of Maize: Genetics and Genomics, eds. Bennetzen JL, Hake S. New York, USA: Springer. pp. 641−57 doi: 10.1007/978-0-387-77863-1_32 |
| [3] |
Pret’ová A, Obert B, Bartošová Z. 2006. Haploid formation in maize, barley, flax, and potato. |
| [4] |
Jacquier NMA, Gilles LM, Pyott DE, Martinant JP, Rogowsky PM, et al. 2020. Puzzling out plant reproduction by haploid induction for innovations in plant breeding. |
| [5] |
Li SZ, Wang J, Jia SG, Wang K, Li HJ. 2023. Synthetic apomixis: from genetic basis to agricultural application. |
| [6] |
Germanà MA. 2011. Gametic embryogenesis and haploid technology as valuable support to plant breeding. |
| [7] |
Khanday I, Skinner D, Yang B, Mercier R, Sundaresan V. 2019. A male-expressed rice embryogenic trigger redirected for asexual propagation through seeds. |
| [8] |
Pearcy M, Hardy O, Aron S. 2006. Thelytokous parthenogenesis and its consequences on inbreeding in an ant. |
| [9] |
Underwood CJ, Vijverberg K, Rigola D, Okamoto S, Oplaat C, et al. 2022. A PARTHENOGENESIS allele from apomictic dandelion can induce egg cell division without fertilization in lettuce. |
| [10] |
Huang Y, Meng X, Rao Y, Xie Y, Sun T, et al. 2025. OsWUS-driven synthetic apomixis in hybrid rice. |
| [11] |
Xiong J, Hu F, Ren J, Huang Y, Liu C, et al. 2023. Synthetic apomixis: the beginning of a new era. |
| [12] |
Zhang X, Shi C, Li S, Zhang B, Luo P, et al. 2023. A female in vivo haploid-induction system via mutagenesis of egg cell-specific peptidases. |
| [13] |
Quiroz LF, Gondalia N, Brychkova G, McKeown PC, Spillane C. 2024. Haploid rhapsody: the molecular and cellular orchestra of in vivo haploid induction in plants. |
| [14] |
Ravi M, Chan SWL. 2010. Haploid plants produced by centromere-mediated genome elimination. |
| [15] |
Lermontova I, Kuhlmann M, Friedel S, Rutten T, Heckmann S, et al. 2013. Arabidopsis KINETOCHORE NULL2 is an upstream component for centromeric histone H3 variant cenH3 deposition at centromeres. |
| [16] |
Kelliher T, Starr D, Richbourg L, Chintamanani S, Delzer B, et al. 2017. MATRILINEAL, a sperm-specific phospholipase, triggers maize haploid induction. |
| [17] |
Liu C, Li X, Meng D, Zhong Y, Chen C, et al. 2017. A 4-bp insertion at ZmPLA1 encoding a putative phospholipase a generates haploid induction in maize. |
| [18] |
Gilles LM, Khaled A, Laffaire JB, Chaignon S, Gendrot G, et al. 2017. Loss of pollen‐specific phospholipase NOT LIKE DAD triggers gynogenesis in maize. |
| [19] |
Jiang C, Sun J, Li R, Yan S, Chen W, et al. 2022. A reactive oxygen species burst causes haploid induction in maize. |
| [20] |
Jang JH, Seo HS, Widiez T, Lee OR. 2023. Loss-of-function of gynoecium‐expressed phospholipase pPLAIIγ triggers maternal haploid induction in Arabidopsis. |
| [21] |
Jacquier NMA, Calhau ARM, Fierlej Y, Martinant JP, Rogowsky PM, et al. 2023. In planta haploid induction by kokopelli mutants. |
| [22] |
Sun Y, Hou L, Li C, Zhou Z, Wu J, et al. 2025. Maternal haploid induction in maize via mutation of Gamete Expression protein 1. |
| [23] |
Gilles LM, Martinant JP, Rogowsky PM, Widiez T. 2017. Haploid induction in plants. |
| [24] |
Pescitelli SM, Petolino JF. 1988. Microspore development in cultured maize anthers. |
| [25] |
Bolik M, Koop HU. 1991. Identification of embryogenic microspores of barley (Hordeum vulgate L. ) by individual selection and culture and their potential for transformation by microinjection. |
| [26] |
Barnabás B. 2003. Protocol for producing doubled haploid plants from anther culture of wheat (Triticum aestivum L.). In Doubled Haploid Production in Crop Plants, eds. Maluszynski M, Kasha KJ, Forster BP, Szarejko I. Dordrecht, Netherlands: Springer. pp. 65−70 doi: 10.1007/978-94-017-1293-4_11 |
| [27] |
Pauk J, Jancsó M, Simon-Kiss I. 2009. Rice doubled haploids and breeding. In Advances in Haploid Production in Higher Plants, eds. Touraev A, Forster BP, Jain SM. Dordrecht, Netherlands: Springer. pp. 189−97 doi: 10.1007/978-1-4020-8854-4_16 |
| [28] |
Sunderland N, Wicks FM. 1969. Cultivation of haploid plants from tobacco pollen. |
| [29] |
Tang XC, He YQ, Wang Y, Sun MX. 2006. The role of arabinogalactan proteins binding to Yariv reagents in the initiation, cell developmental fate, and maintenance of microspore embryogenesis in Brassica napus L. cv. Topas. |
| [30] |
Chang S, Ali I, Zhou PM, Cheng H, Liang X, et al. 2025. Kinesins control male germ unit assembly for sperm delivery in Arabidopsis. |
| [31] |
Hafidh S, Honys D. 2021. Reproduction multitasking: the male gametophyte. |
| [32] |
Yang F, Liu X, Qiao Y, Tang X, Luo P. 2024. Microspore embryogenesis: in vitro cultivation induced cell reprogramming for plant breeding. |
| [33] |
Guha S, Maheshwari SC. 1964. In vitro production of embryos from anthers of Datura. |
| [34] |
Shi C, Zhao Z, Zhong Y, Qiao Y, Zhang L, et al. 2025. Reprogramming of microspore fate via BBM-BAR1 for highly efficient in vivo haploid induction. |
| [35] |
Boutilier K, Offringa R, Sharma VK, Kieft H, Ouellet T, et al. 2002. Ectopic expression of BABY BOOM triggers a conversion from vegetative to embryonic growth. |