Flowering and Flower Development in Plants
Materialtyp:
ArtikelUtgivningsinformation: MDPI - Multidisciplinary Digital Publishing Institute 2025Beskrivning: 1 electronic resource (186 p.)Innehållstyp: - text
- computer
- online resource
- 9783725838011
- 9783725838028
- Reference, Information and Interdisciplinary subjects
- Research and information: general
- Mathematics and Science
- Biology, life sciences
- FD
- FT
- Lagerstroemia speciosa
- Loropetalum chinense var. rubrum
- LsAG2
- LsDEF1
- MADS-box
- MADS-box gene
- MIKC-type MADS-box genes
- Paeonia suffruticosa
- Pinus halepensis
- Populus × euramericana 'Zhonghuahongye'
- Rosaceae plants
- Styrax japonicus
- TFL
- abiotic stress
- anthocyanins
- carbohydrate transport
- cell wall loosening
- cone development
- conifers
- continuous flowering
- cuticle thickness
- differential analysis
- drought
- dry mass
- enzymes
- flavonoid biosynthesis
- flower coloring
- flower development
- flowering
- flowering induction
- flowering time
- fruit quality
- functional differences
- gene evolution
- gibberellin
- hormones
- lemon
- metabolomic
- minerals
- nutrients
- paclobutrazol
- pear
- pectin degradation
- perennial plants
- petal thickness
- selective evolutionary pressure
- senescence
- temperature
- transcriptome sequencing
- transcriptomic
- tree peony
- vein density
- wizened bud
Open Access Unrestricted online access star
In the life cycle of plants, the phase transition from vegetative growth to reproductive growth is very important. Many species have evolved multiple ways to adapt to the environment and endogenous factors to regulate flowering. It is now known that plant flowering is mainly regulated by five main signal pathways, namely, photoperiod, vernalization, age, autonomy, and gibberellin. In addition, it is also affected by some environmental factors such as drought stress, salt stress, cold stress, nutrient deficiency, heat damage, sugar budget, oxygen stress, and biotic stress. Furthermore, the quality and quantity of flowers determine the yield of crops and the quality of fruits. Flower development has been summarized as the ABC model and then extended to the ABCDE model. A large number of related genes have been cloned and functionally identified in annual plants and perennial plants. Over recent years, enormous scientific progress has been made to understand the molecular basis of flowering and flower development. However, flowering and flower development still need to be further explored for future crop breeding.
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eng
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