Molecular Formula | C17H14O5 |
Molar Mass | 298.29 |
Density | 1.39±0.1 g/cm3(Predicted) |
Boling Point | 567.7±50.0 °C(Predicted) |
Storage Condition | 2-8℃ |
Use | Use a novel plant hormone that inhibits the growth of branching and lateral buds of plants, which, in concert with auxin and cytokinin, controls the number of branching or branching in plants. As a carotenoid derivative produced in plant roots, the compound can promote the symbiosis between plants and soil microorganisms, and promote the branching of fungal hyphae (hypha) in Arbuscular mycorrhizae (AM). (Striga spp.). Gold Monopterus, leprans (Orobanche spp.) the seed germination, in addition, with plant stress important signaling substances ABA in the pathway of Cross, and transport on the need for classical ABC transporter. It is likely that the compound is an important node substance in the plant hormone regulatory network. |
Reference Show more | 1. [IF=5.537] Dandan Huang et al. |
Class VII plant hormones
strigolides (SLs), commonly known as mycotoxins, are a class of signal molecules that can regulate the endogenous development process of plants, which can be secreted by the roots of many monocotyledonous/dicotyledonous plants into the rhizosphere, it can not only induce the seed germination of the root parasitic plants such as the genus of the genus, the single foot metal, but also mediate the symbiotic effect of the arbuscular mycorrhizal fungi and the plant host, stimulating the uptake of phosphate and other minerals from the soil by plants promotes their growth and development. SLs is a newly discovered family of plant hormones, which can directly or indirectly inhibit the growth of plant branches and lateral buds, and can act synergistically with auxin and cytokinin, to regulate the number of branches in plants.
as a plant hormone or its precursor discovered in recent years, strigolacones can inhibit the growth of plant branches and lateral buds, it synergizes with auxin and cytokinin to control the number of branches (β) in plants. As a carotenoid derivative produced in the roots of plants, it can promote the symbiosis between plants and soil microorganisms. In addition, in the process of interaction between plants and their parasitic plants, the compound also acts as a signal molecule, which can induce the parasitic plants such as the metal (striga spp.) orobanche spp. Germination of seeds.
primary role
as an environmental stimulation signal, it induces the germination of weeds such as the seeds of the genus, the sole metal;
as a chemosensing stimulus, it promotes mycorrhizal growth to absorb nutrients from the soil, and better coordinate material transport and distribution with plants;
as the seventh class of plant hormones, it plays an important role in controlling plant branching and hormone coordination. Together with auxin and cytokinin, plant branching (tillering) conditions are regulated.