共 54 条
- [1] Althoff F., Kopischke S., Zobell O., Ide K., Ishizaki K., Kohchi T., Et al., Comparison of the MpEF1α and CaMV35 promoters for application in Marchantia polymorpha overexpression studies, Transgenic Res, 23, pp. 235-244, (2014)
- [2] Amsbury S., Kirk P., Benitez-Alfonso Y., Emerging models on the regulation of intercellular transport by plasmodesmata-associated callose, J. Exp. Bot, 69, pp. 105-115, (2017)
- [3] Bayer E.M., Benitez-Alfonso Y., Plasmodesmata: channels under pressure, Annu. Rev. Plant Biol, 75, pp. 291-317, (2024)
- [4] Benitez-Alfonso Y., Faulkner C., Pendle A., Miyashima S., Helariutta Y., Maule A., Symplastic intercellular connectivity regulates lateral root patterning, Dev. Cell, 26, pp. 136-147, (2013)
- [5] Bowman J.L., Kohchi T., Yamato K.T., Jenkins J., Shu S., Ishizaki K., Et al., Insights into land plant evolution garnered from the Marchantia polymorpha genome, Cell, 171, pp. 287-304, (2017)
- [6] Brunkard J.O., Zambryski P., Plant cell-cell transport via plasmodesmata is regulated by light and the circadian clock, Plant Physiol, 181, pp. 1459-1467, (2019)
- [7] Brunkard J.O., Zambryski P.C., Plasmodesmata enable multicellularity: new insights into their evolution, biogenesis, and functions in development and immunity, Curr. Opin. Plant Biol, 35, pp. 76-83, (2016)
- [8] Burch-Smith T.M., Stonebloom S., Xu M., Zambryski P.C., Plasmodesmata during development: re-examination of the importance of primary, secondary, and branched plasmodesmata structure versus function, Protoplasma, 248, pp. 61-74, (2011)
- [9] Cesarino I., Dello Ioio R., Kirschner G.K., Ogden M.S., Picard K.L., Rast-Somssich M.I., Et al., Plant science’s next top models, Ann. Bot, 126, pp. 1-23, (2020)
- [10] Cheng S., Xian W., Fu Y., Marin B., Keller J., Wu T., Et al., Genomes of subaerial zygnematophyceae provide insights into land plant evolution, Cell, 179, pp. 1057-1067, (2019)