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The beginning of a seed: regulatory mechanisms of double fertilization

机译:种子的开始:双重施肥的调控机制

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摘要

The launch of seed development in flowering plants (angiosperms) is initiated by the process of double fertilization: two male gametes (sperm cells) fuse with two female gametes (egg and central cell) to form the precursor cells of the two major seed components, the embryo and endosperm, respectively. The immobile sperm cells are delivered by the pollen tube toward the ovule harboring the female gametophyte by species-specific pollen tube guidance and attraction mechanisms. After pollen tube burst inside the female gametophyte, the two sperm cells fuse with the egg and central cell initiating seed development. The fertilized central cell forms the endosperm while the fertilized egg cell, the zygote, will form the actual embryo and suspensor. The latter structure connects the embryo with the sporophytic maternal tissues of the developing seed. The underlying mechanisms of double fertilization are tightly regulated to ensure delivery of functional sperm cells and the formation of both, a functional zygote and endosperm. In this review we will discuss the current state of knowledge about the processes of directed pollen tube growth and its communication with the synergid cells resulting in pollen tube burst, the interaction of the four gametes leading to cell fusion and finally discuss mechanisms how flowering plants prevent multiple sperm cell entry (polyspermy) to maximize their reproductive success.
机译:通过双重受精的过程,开始在开花植物(植物的种子)中启动种子发育:两个雄配子(精子细胞)与两个雌配子(卵子和中央细胞)融合形成两个主要种子成分的前体细胞,胚胎和胚乳。固定的精子细胞通过花粉管通过物种特异性的花粉管引导和吸引机制被输送到容纳雌配子体的胚珠。花粉管在雌配子体内部破裂后,两个精子细胞与卵融合,并开始形成种子的中央细胞。受精的中央细胞形成胚乳,而受精的卵细胞合子将形成实际的胚胎和悬液。后一种结构将胚胎与发育中种子的孢子体母体组织连接起来。严格调节双重受精的基本机制,以确保功能性精子细胞的传递以及功能性合子和胚乳两者的形成。在这篇综述中,我们将讨论有关定向花粉管生长过程及其与导致花粉管破裂的协同细胞的通讯,四种配子的相互作用导致细胞融合的知识的最新知识,并最后讨论开花植物如何预防植物生长的机制。多个精子细胞进入(多精子)以最大化其繁殖成功。

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