隐性多样性给生物多样性研究带来了挑战和机遇。

IF 3.5 1区 生物学 Q1 ZOOLOGY
Rui Cheng, Arong Luo, Michael Orr, Deyan Ge, Zhong'e Hou, Yanhua Qu, Baocheng Guo, Feng Zhang, Zhongli Sha, Zhe Zhao, Mingqiang Wang, Xiaoyu Shi, Hongxiang Han, Qingsong Zhou, Yuanning Li, Xingyue Liu, Chen Shao, Aibing Zhang, Xin Zhou, Chaodong Zhu
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引用次数: 0

摘要

地球上究竟有多少种生命?这是一个我们想知道但还无法回答的问题。一些学者推测,如果考虑到隐性多样性,物种数量可能达到 22 亿种,每个基于形态学的昆虫物种可能平均包含 3.1 个隐性物种。由于已描述的物种接近 200 万种,如此高的隐蔽多样性估计值表明隐蔽物种非常普遍。分子物种划界的发展导致了大量隐生物种的发现,隐生生物多样性逐渐进入我们的视野,并引起了更多的关注。本文介绍了隐性物种的概念、演化过程以及发现和确认隐性物种的方法,为隐性物种的研究提供理论和方法指导。提供了如何确认隐性物种的工作流程。此外,还重申了基于多证据的综合分类法的重要性和可靠性,认为这是更好地规范决策过程的一种方法。需要特别关注隐性多样性,并增加分类学方面的资金投入,以确保能够发现和描述超级物种群中的隐性物种。未来,随着对更多疑难类群的研究,对隐性物种的关注也会自然而然地增加,从而使我们最终更好地了解隐性生物多样性的进化和维持规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cryptic diversity begets challenges and opportunities in biodiversity research.

Cryptic diversity begets challenges and opportunities in biodiversity research.

How many species of life are there on Earth? This is a question that we want to know but cannot yet answer. Some scholars speculate that the number of species may reach 2.2 billion when considering cryptic diversity and that each morphology-based insect species may contain an average of 3.1 cryptic species. With nearly two million described species, such high estimates of cryptic diversity would suggest that cryptic species are widespread. The development of molecular species delimitation has led to the discovery of a large number of cryptic species, and cryptic biodiversity has gradually entered our field of vision and attracted more attention. This paper introduces the concept of cryptic species, how they evolve, and methods by which they may be discovered and confirmed, and provides theoretical and methodological guidance for the study of hidden species. A workflow of how to confirm cryptic species is provided. In addition, the importance and reliability of multi-evidence-based integrated taxonomy are reaffirmed as a way to better standardize decision-making processes. Special focus on cryptic diversity and increased funding for taxonomy is needed to ensure that cryptic species in hyperdiverse groups are discoverable and described. An increased focus on cryptic species in the future will naturally arise as more difficult groups are studied, and thereby, we may finally better understand the rules governing the evolution and maintenance of cryptic biodiversity.

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来源期刊
CiteScore
6.40
自引率
12.10%
发文量
81
审稿时长
>12 weeks
期刊介绍: The official journal of the International Society of Zoological Sciences focuses on zoology as an integrative discipline encompassing all aspects of animal life. It presents a broader perspective of many levels of zoological inquiry, both spatial and temporal, and encourages cooperation between zoology and other disciplines including, but not limited to, physics, computer science, social science, ethics, teaching, paleontology, molecular biology, physiology, behavior, ecology and the built environment. It also looks at the animal-human interaction through exploring animal-plant interactions, microbe/pathogen effects and global changes on the environment and human society. Integrative topics of greatest interest to INZ include: (1) Animals & climate change (2) Animals & pollution (3) Animals & infectious diseases (4) Animals & biological invasions (5) Animal-plant interactions (6) Zoogeography & paleontology (7) Neurons, genes & behavior (8) Molecular ecology & evolution (9) Physiological adaptations
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