autogeny
简明释义
n. 单性生殖;自生
英英释义
The process by which an organism develops from its own tissues, often referring to the ability of certain organisms to reproduce without fertilization. | 一种生物从自身组织发育的过程,通常指某些生物在没有受精的情况下繁殖的能力。 |
单词用法
同义词
反义词
例句
1.The high molding distortion magnesium alloy with the autogeny allowing the crystal wnganced belongs to the metal technical domain.
一种自生准晶增强的高塑性变形镁合金,属于金属材料技术领域。
2.The high molding distortion magnesium alloy with the autogeny allowing the crystal wnganced belongs to the metal technical domain.
一种自生准晶增强的高塑性变形镁合金,属于金属材料技术领域。
3.The concept of autogeny is often discussed in the context of biological evolution.
在生物进化的背景下,自生这一概念常常被提及。
4.Researchers are studying autogeny to understand how certain species adapt without external influences.
研究人员正在研究自生,以了解某些物种如何在没有外部影响的情况下适应。
5.In some insects, autogeny allows them to develop and thrive in isolated environments.
在某些昆虫中,自生使它们能够在孤立的环境中发展和繁荣。
6.The principles of autogeny can be applied to artificial intelligence development.
自生的原理可以应用于人工智能的发展。
7.Understanding autogeny is crucial for conservation efforts aimed at endangered species.
理解自生对于旨在保护濒危物种的努力至关重要。
作文
In the realm of biological sciences, the concept of autogeny refers to a fascinating process of self-development and growth that occurs in certain organisms. This term is derived from Greek roots, where 'auto' means self and 'geny' implies origin or birth. Understanding autogeny not only sheds light on the complexities of life cycles but also enhances our appreciation for the diversity of reproductive strategies in nature. One of the most intriguing aspects of autogeny is its role in the life cycles of various species. For instance, certain insects exhibit this phenomenon, where they can develop from eggs into adults without the need for fertilization by a male. This method of reproduction is particularly advantageous in environments where mates are scarce or conditions are harsh. The ability to reproduce through autogeny ensures the continuation of the species even in challenging circumstances, showcasing nature's adaptability. Moreover, autogeny is not limited to insects; it is also observed in some species of fish and amphibians. The discovery of these reproductive strategies has led scientists to explore the genetic and environmental factors that influence autogeny. Research indicates that certain genes may trigger this self-reproductive mechanism, allowing organisms to respond swiftly to their surroundings. For example, in a rapidly changing habitat, those capable of autogeny might thrive while others struggle to adapt. The implications of autogeny extend beyond biology into ecological studies and conservation efforts. By understanding how species utilize this reproductive strategy, ecologists can better predict population dynamics and the resilience of ecosystems. In scenarios where human activities threaten natural habitats, knowing which species can rely on autogeny may inform conservation strategies aimed at preserving biodiversity. Furthermore, the study of autogeny raises important questions about the evolution of reproductive strategies. It prompts researchers to consider how such mechanisms may have developed over time and what advantages they confer to organisms. As we delve deeper into the evolutionary biology of autogeny, we uncover the intricate relationships between organisms and their environments, revealing the delicate balance that sustains life on Earth. In conclusion, autogeny is a remarkable biological phenomenon that exemplifies the ingenuity of nature. Its significance spans across various fields, from genetics to ecology, highlighting the interconnectedness of life. As we continue to study autogeny and its implications, we gain valuable insights into the resilience and adaptability of living organisms, reminding us of the wonders of the natural world. Understanding this concept not only enriches our knowledge of biology but also fosters a deeper respect for the myriad forms of life that inhabit our planet.
自生性是生物科学领域中的一个迷人概念,指的是某些生物体内发生的自我发展和成长过程。这个术语源于希腊语,其中“auto”意为自我,“geny”表示起源或出生。理解自生性不仅揭示了生命周期的复杂性,还增强了我们对自然中繁殖策略多样性的欣赏。 自生性最引人入胜的一个方面是它在各种物种生命周期中的作用。例如,某些昆虫表现出这种现象,它们可以在没有雄性受精的情况下从卵子发育成成虫。这种繁殖方式在配偶稀缺或条件恶劣的环境中尤为有利。通过自生性繁殖的能力确保了物种在困难情况下的延续,展示了自然的适应性。 此外,自生性不仅限于昆虫;某些鱼类和两栖动物也观察到了这一现象。这些繁殖策略的发现促使科学家探索影响自生性的遗传和环境因素。研究表明,某些基因可能会触发这种自我繁殖机制,使生物能够迅速响应其周围环境。例如,在快速变化的栖息地中,那些能够依赖自生性的物种可能会繁荣,而其他物种则难以适应。 自生性的影响超越了生物学,延伸到生态研究和保护工作。通过了解物种如何利用这种繁殖策略,生态学家可以更好地预测种群动态和生态系统的韧性。在人类活动威胁自然栖息地的情况下,了解哪些物种可以依赖自生性可能会为旨在保护生物多样性的保护策略提供信息。 此外,自生性的研究引发了关于繁殖策略进化的重要问题。它促使研究人员考虑这种机制是如何随着时间的发展而形成的,以及它们为生物带来了什么优势。当我们深入探讨自生性的进化生物学时,我们揭示了生物与环境之间错综复杂的关系,展现了维持地球生命的微妙平衡。 总之,自生性是一个非凡的生物现象,体现了自然的智慧。它的重要性跨越多个领域,从遗传学到生态学,突显了生命的相互联系。随着我们继续研究自生性及其影响,我们获得了有关生物的韧性和适应性的宝贵见解,提醒我们自然界的奇迹。理解这一概念不仅丰富了我们对生物学的知识,也培养了我们对栖息在我们星球上无数生命形式的更深层次的尊重。
文章标题:autogeny的意思是什么
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