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粗糙脉孢菌雌雄核在受精过程中的交配行为。

Courtship Ritual of Male and Female Nuclei during Fertilization in Neurospora crassa.

机构信息

Laboratoire Interdisciplinaire des Energies de Demain, CNRS UMR 8236, Université de Paris, Paris, France.

Fungal Cell Biology Group, Institute of Cell Biology, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

Microbiol Spectr. 2021 Oct 31;9(2):e0033521. doi: 10.1128/Spectrum.00335-21. Epub 2021 Oct 6.

Abstract

Sexual reproduction is a key process influencing the evolution and adaptation of animals, plants, and many eukaryotic microorganisms, such as fungi. However, the sequential cell biology of fertilization and the associated nuclear dynamics after plasmogamy are poorly understood in filamentous fungi. Using histone-fluorescent parental isolates, we tracked male and female nuclei during fertilization in the model ascomycete Neurospora crassa using live-cell imaging. This study unravels the behavior of trichogyne resident female nuclei and the extraordinary manner in which male nuclei migrate up the trichogyne to the protoperithecium. Our observations raise new fundamental questions about the of nucleus movements during sexual reproduction, male and female nuclear identity, guidance of nuclei within the trichogyne and, unexpectedly, the avoidance of "polyspermy" in fungi. The spatiotemporal dynamics of male nuclei within the trichogyne following plasmogamy are also described, where the speed and the deformation of male nuclei are of the most dramatic observed to date in a living organism. Using live-cell fluorescence imaging, for the first time we have observed live male and female nuclei during sexual reproduction in the model fungus Neurospora crassa. This study reveals the specific behavior of resident female nuclei within the trichogyne (the female organ) after fertilization and the extraordinary manner in which male nuclei migrate across the trichogyne toward their final destination, the protoperithecium, where karyogamy takes place. Importantly, the speed and deformation of male nuclei were found to be among the most dramatic ever observed in a living organism. Furthermore, we observed that entry of male nuclei into protoperithecia may block the entry of other male nuclei, suggesting that a process analogous to polyspermy avoidance could exist in fungi. Our live-cell imaging approach opens new opportunities for novel research on cell-signaling during sexual reproduction in fungi and, on a broader scale, nuclear dynamics in eukaryotes.

摘要

有性生殖是影响动物、植物和许多真核微生物(如真菌)进化和适应的关键过程。然而,在丝状真菌中,受精的连续细胞生物学以及质配后核的相关动力学仍知之甚少。本研究使用组蛋白荧光亲本分离株,通过活细胞成像跟踪有性生殖过程中模型子囊菌 Neurospora crassa 中的雄性和雌性核。这项研究揭示了驻留雌性核的行为,以及雄性核如何以非凡的方式沿着 Trichogyne 迁移到原产囊体。我们的观察结果提出了关于性生殖过程中核运动、雌雄核身份、 Trichogyne 内核引导以及真菌中意外避免“多精入卵”的新的基本问题。在质配后 Trichogyne 内雄性核的时空动力学也被描述,其中雄性核的速度和变形是迄今为止在活体中观察到的最显著的。通过活细胞荧光成像,我们首次在模式真菌 Neurospora crassa 中观察到有性生殖过程中的活雄性和雌性核。这项研究揭示了受精后驻留雌性核在 Trichogyne(雌性器官)内的特定行为,以及雄性核跨越 Trichogyne 向最终目的地原产囊体迁移的非凡方式,核融合发生在那里。重要的是,雄性核的速度和变形被发现是迄今为止在活体中观察到的最显著的。此外,我们观察到雄性核进入原产囊体可能会阻止其他雄性核的进入,这表明类似于多精入卵避免的过程可能存在于真菌中。我们的活细胞成像方法为真菌有性生殖过程中细胞信号转导的新研究以及更广泛的真核生物核动力学开辟了新的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f631/8509652/678a95c9b480/spectrum.00335-21-f001.jpg

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