Abstract
AbstractIn the pistil of flowering plants, each ovule usually associates with a single pollen tube for fertilization. This one-to-one pollen tube guidance, which contributes to polyspermy blocking and efficient seed production, is largely different from animal chemotaxis of many sperms to one egg. However, the functional mechanisms underlying the directional cues and polytubey blocks in the depths of the pistil remain unknown. Here, we develop a two-photon live imaging method to directly observe pollen tube guidance in the pistil of Arabidopsis thaliana, clarifying signaling and cellular behaviors in the one-to-one guidance. Ovules are suggested to emit multiple signals for pollen tubes, including an integument-dependent directional signal that reaches the inner surface of the septum and adhesion signals for emerged pollen tubes on the septum. Not only FERONIA in the septum but ovular gametophytic FERONIA and LORELEI, as well as FERONIA- and LORELEI-independent repulsion signal, are involved in polytubey blocks on the ovular funiculus. However, these funicular blocks are not strictly maintained in the first 45 min, explaining previous reports of polyspermy in flowering plants.
Funder
MEXT | Japan Society for the Promotion of Science
MEXT | JST | Exploratory Research for Advanced Technology
MEXT | JST | Fusion Oriented REsearch for disruptive Science and Technology
MEXT | JST | Precursory Research for Embryonic Science and Technology
Ministry of Education, Culture, Sports, Science and Technology
Program for Promoting the Enhancement of Research Universities
Ohsumi Frontier Science Foundation
Sumitomo Basic Science REsearch Projects
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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