Cryptic diversity begets challenges and opportunities in biodiversity research

Author:

CHENG Rui1,LUO Arong1,ORR Michael12,GE Deyan1,HOU Zhong'e1,QU Yanhua1,GUO Baocheng1,ZHANG Feng3,SHA Zhongli4,ZHAO Zhe1,WANG Mingqiang15,SHI Xiaoyu1,HAN Hongxiang1,ZHOU Qingsong1,LI Yuanning6,LIU Xingyue7,SHAO Chen8,ZHANG Aibing9,ZHOU Xin7,ZHU Chaodong11011

Affiliation:

1. Key Laboratory of Zoological Systematics and Evolution Institute of Zoology Chinese Academy of Sciences Beijing China

2. Entomologie Staatliches Museum für Naturkunde Stuttgart Stuttgart Germany

3. College of Plant Protection Nanjing Agricultural University Nanjing China

4. Institute of Oceanology Chinese Academy of Sciences Qingdao China

5. Chengdu Institute of Biology Chinese Academy of Sciences Chengdu China

6. Institute of Oceanography Shandong University Qingdao China

7. Department of Entomology China Agricultural University Beijing China

8. College of Life Sciences Shaanxi Normal University Xi'an China

9. College of Life Science Capital Normal University Beijing China

10. State Key Laboratory of Integrated Pest Management, Institute of Zoology Chinese Academy of Sciences Beijing China

11. College of Life Sciences/International College University of Chinese Academy of Sciences Beijing China

Abstract

AbstractHow 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.

Publisher

Wiley

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