FERONIA controls pectin- and nitric oxide-mediated male–female interaction

花粉管 胚珠 配子体 精子 化学 花粉 多晶硅 果胶 一氧化氮 双受精 植物 细胞生物学 有性生殖 人类受精 生物 胚胎 授粉 解剖 卵母细胞 内分泌学
作者
Qiaohong Duan,Ming‐Che Liu,Daniel Kita,Samuel S. Jordan,Fang‐Ling Yeh,Robert Yvon,Hunter Carpenter,Anthony Federico,Liliana E. García-Valencia,Stephen J. Eyles,Co‐Shine Wang,Hen‐Ming Wu,Alice Y. Cheung
出处
期刊:Nature [Nature Portfolio]
卷期号:579 (7800): 561-566 被引量:170
标识
DOI:10.1038/s41586-020-2106-2
摘要

Species that propagate by sexual reproduction actively guard against the fertilization of an egg by multiple sperm (polyspermy). Flowering plants rely on pollen tubes to transport their immotile sperm to fertilize the female gametophytes inside ovules. In Arabidopsis, pollen tubes are guided by cysteine-rich chemoattractants to target the female gametophyte1,2. The FERONIA receptor kinase has a dual role in ensuring sperm delivery and blocking polyspermy3. It has previously been reported that FERONIA generates a female gametophyte environment that is required for sperm release4. Here we show that FERONIA controls several functionally linked conditions to prevent the penetration of female gametophytes by multiple pollen tubes in Arabidopsis. We demonstrate that FERONIA is crucial for maintaining de-esterified pectin at the filiform apparatus, a region of the cell wall at the entrance to the female gametophyte. Pollen tube arrival at the ovule triggers the accumulation of nitric oxide at the filiform apparatus in a process that is dependent on FERONIA and mediated by de-esterified pectin. Nitric oxide nitrosates both precursor and mature forms of the chemoattractant LURE11, respectively blocking its secretion and interaction with its receptor, to suppress pollen tube attraction. Our results elucidate a mechanism controlled by FERONIA in which the arrival of the first pollen tube alters ovular conditions to disengage pollen tube attraction and prevent the approach and penetration of the female gametophyte by late-arriving pollen tubes, thus averting polyspermy.
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