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Titlebook: Strigolactones - Biology and Applications; Hinanit Koltai,Cristina Prandi Textbook 2019 Springer Nature Switzerland AG 2019 plant hormones

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https://doi.org/10.1007/978-3-030-12153-2plant hormones; strigolactone receptors and signalling; abiotic stress response; mycorrhiza; parasitic p
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Strigolactones and Parasitic Plants,se parasitic weeds are briefly introduced, after which we focus on the role of strigolactones in seed germination, parasite development, host specificity, plant nutrition and microbiome composition. Furthermore, some weed control approaches involving strigolactones are discussed.
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,The Role of Strigolactones in Plant–Microbe Interactions,ry plant–microbe interactions. It can be predicted that their impact on the bacterial, fungal, and oomycetal communities (microbiomes), which thrive on roots, in the rhizosphere, and on aerial tissues, will be addressed in the near future.
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Evolution of Strigolactone Biosynthesis and Signalling, role for strigolactones for early land plants as a rhizosphere signal, before they were adopted as hormones to regulate development. Finally, we summarise discoveries that explain how strigolactones released by plant roots came to be exploited as germination signals by root-parasitic weeds.
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Strigolactone Biosynthesis and Signal Transduction,Ls are also released into soil as a signal indicating the presence of a host for symbiotic arbuscular mycorrhizal fungi and root parasitic weeds. In this chapter, we provide an overview on the enormous progress that has been recently made in elucidating SL biosynthesis and signal transduction. We de
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Strigolactones and Parasitic Plants,torium). Only about 25 out of the 270 genera of parasitic plants have a negative impact in agriculture and forestry and thus can be considered weeds. Among them, the most damaging root parasitic weeds belong to the genera . and . (commonly named broomrapes) and . (witchweeds) (all belonging to the O
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,The Role of Strigolactones in Plant–Microbe Interactions,ng that strigolactones (SLs) play a role in shaping these associations. The best described function of SLs in plant–microbe interactions is in the rhizosphere, where, after being exuded from the root, they activate hyphal branching and enhanced growth and energy metabolism of symbiotic arbuscular my
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