Genome size and guard cell length are associated in four species of Miconia (Miconieae, Melastomataceae)
Author:
Funder
FAPERGS
CNPq
CAPES
Publisher
Springer Science and Business Media LLC
Subject
Plant Science
Link
https://link.springer.com/content/pdf/10.1007/s40415-023-00962-0.pdf
Reference49 articles.
1. Almeda F (1997) Chromosome numbers and their evolutionary significance in some paleotropical Melastomataceae. BioLlania Ed Espec 6:167–190
2. Almeda F, Penneys DS (2022) Patterns of chromosome number diversity and evolution in the Melastomataceae. In: Goldenberg R, Michelangeli FA, Almeda F (eds) Systematics, evolution, and ecology of Melastomataceae, 1ª. Springer, Cham, pp 533–562
3. Amarasinghe P, Pham P, Stone RD, Cellinese N (2021) Discordance in South African Memecylon clade (Melastomataceae): evidence for reticulate evolution. Int J Plant Sci 182(8):682–694
4. Beaulieu JM, Leitch IJ, Patel S, Pendharkar A, Knight CA (2008) Genome size is a strong predictor of cell size and stomatal density in angiosperms. New Phytol 179(4):975–986
5. Beck SL, Dunlop RW, Fossey A (2003) Stomatal length and frequency as a measure of ploidy level in black wattle, Acacia mearnsii (de Wild). Bot J Linn Soc 141:177–181
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1. Proteomic and histological analysis of in vitro callogenesis in three species of Miconia (Melastomataceae) reveals higher accumulation of proteins related to somatic embryogenesis and embryogenic competence in apomictic species;South African Journal of Botany;2024-09
2. Plant regeneration capacity in seeds of three species of Miconia (Melastomataceae) may be related to endogenous polyamine profiles;Protoplasma;2024-03-26
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