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The debris-cloaking larva of Catapotia laevissima and the origin of defensive strategies in Anamorphidae and other Coccinelloidea (Coleoptera) 变形虫科及其他瓢虫总科残体幼虫及其防御策略的起源(鞘翅目)
3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-09-19 DOI: 10.1007/s13127-023-00622-x
Emmanuel Arriaga-Varela, Richard A. B. Leschen, Wioletta Tomaszewska
Abstract Debris-cloaking, a method of concealment with material collected from the environment, has evolved repeatedly with the purpose of avoiding detection in adults or immatures of various invertebrates including beetles. Fungus beetles in the family Anamorphidae (Coccinelloidea) are small-sized spore feeders of predominantly surface-dwelling habits. Debris-cloaking has been reported only for two genera in the family and nowhere else in Coccinelloidea. Here we report debris-cloaking behaviour in larvae of the Neotropical beetle genus Catapotia , describe its larvae, and compare it to confamilials. We summarise the knowledge on the defensive mechanisms and the natural history traits for members of the coccinellid group of Coccinelloidea. Possible evolutionary origins for the defensive mechanism are reconstructed on the basis of available phylogenetic hypotheses. Groups containing species with a larger body size also have a higher number of defensive strategies in larvae and adults; these include members of Endomychidae and Coccinellidae that exhibit reflex bleeding, aposematic colouration, and gregarious behaviour. Debris-cloaking has likely evolved only once, in the comparatively small-sized Anamorphidae.
摘要:碎片隐身是一种利用从环境中收集的材料进行隐藏的方法,其目的是避免包括甲虫在内的各种无脊椎动物在成年或未成熟时被发现。在变形科真菌甲虫(球菌总)是小型的孢子食用者,主要居住在地面的习惯。碎片隐匿只在该科的两个属报道过,在球菌总科中没有其他报道。在这里,我们报告了新热带甲虫属Catapotia幼虫的碎片隐身行为,描述了它的幼虫,并将其与同科昆虫进行了比较。本文综述了瓢虫总科瓢虫群成员的防御机制和自然史特征。在现有的系统发育假说的基础上,重构了防御机制可能的进化起源。体型较大的种群在幼虫和成虫中也有较多的防御策略;这些包括内生菌科和尾藻科的成员,它们表现出反射性出血、警示性着色和群居行为。碎片隐身可能只在相对较小的变形科进化过一次。
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引用次数: 0
Non-ultrametric phylogenetic trees shed new light on Neanderthal introgression. 非超计量系统发育树为尼安德特人的渐渗提供了新的线索。
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-06-10 DOI: 10.1007/s13127-023-00613-y
Arturo Tozzi

Ultrametric spaces are widely used to depict evolutionary times in phylogenetic trees since they assume that every population/species is located at the tips of bifurcating branches of the same length. The discrete branching of ultrametric trees permits the measurement of distances between pairs of individuals that are proportional to their divergence time. Here the traditional ultrametric concept of bifurcating and divergent phylogenetic tree is overturned and a new type of non-ultrametric diagram is introduced. The objective of this study is the description of gene flows in branching species/populations in terms of converging trees instead of bifurcating trees. To provide an operational example, the paleoanthropological issue of the date of Neanderthal genome's introgression in non-African humans is examined. Neanderthals and ancient humans are not anymore two species that exchange chunks of DNA, rather become a single, novel cluster of extant hominins that must be considered by itself. The novel converging, non-ultrametric phylogenetic trees permit the calibration of molecular clocks with a twofold benefit. When the date of the branching of two population/species from a common ancestor is known, the novel approach allows to calculate the time of subsequent introgressions. On the contrary, when the date of the introgression between two population/species is known, the novel approach allows to detect the time of their previous branching from a common ancestor.

超度量空间被广泛用于描述系统发育树中的进化时间,因为它们假设每个种群/物种都位于相同长度的分叉分支的顶端。超度量树的离散分支允许测量与它们的发散时间成比例的个体对之间的距离。本文推翻了传统的超度量分叉进化树的概念,提出了一种新的非超度量图。本研究的目的是用汇聚树而不是分叉树来描述分支物种/种群中的基因流动。为了提供一个可操作的例子,研究了尼安德特人基因组在非非洲人类中渗入的日期这一古人类学问题。尼安德特人和古人类不再是交换大块DNA的两个物种,而是成为一个必须单独考虑的现存原始人的单一、新颖的集群。新的收敛的、非超度量的系统发育树允许校准分子钟,这有双重好处。当两个种群/物种从一个共同祖先分支的日期已知时,这种新方法可以计算随后渗入的时间。相反,当两个种群/物种之间的渗入日期已知时,这种新方法可以检测它们以前从共同祖先分支的时间。
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引用次数: 0
Application of genomic markers generated for ray-finned fishes in chondrichthyan Phylogenomics 鳐鱼基因组标记在软骨鱼系统基因组学中的应用
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-05-02 DOI: 10.1007/s13127-023-00607-w
Sheng-yong Xu, Ruirui Zhao, S. Cai, Pengfei Li, Zhiqiang Han
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引用次数: 0
Nereididae (Annelida) phylogeny based on molecular data 基于分子数据的线虫科(环节动物)系统发育
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-04-12 DOI: 10.1007/s13127-023-00608-9
Paulo R. Alves, K. Halanych, E. P. Silva, C. S. Santos
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引用次数: 3
The biology of an isolated Mashona mole-rat population from southern Malawi, with implications for the diversity and biogeography of the genus Fukomys 马拉维南部一个分离的Mashona鼹鼠种群的生物学,对Fukomys属的多样性和生物地理学的影响
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-03-28 DOI: 10.1007/s13127-023-00604-z
R. Šumbera, M. Uhrová, S. Begall, K. Caspar, D. Jerkovičová, P. V. Van Daele, W. Chitaukali, C. G. Faulkes, N. Bennett, C. Johannes, H. Burda, O. Mikula
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引用次数: 1
Taxonomy of the rear-edge populations: the case of genus Anterastes (Orthoptera, Tettigoniidae) 后缘种群的分类:食蚁虫属(直翅目,毒蛾科)
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-03-15 DOI: 10.1007/s13127-023-00602-1
Onur Uluar, Özgül Yahyaoğlu, H. H. Başıbüyük, B. Çıplak
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引用次数: 1
Comparative molecular and morphological species delineation of Halammohydra Remane, 1927 (Hydrozoa)—with the description of four new species 海螅(Halammohydra Remane), 1927(水螅纲)的比较分子和形态种描述——附四个新种的描述
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-03-01 DOI: 10.1007/s13127-023-00606-x
Lenke Tödter, K. Worsaae, A. Schmidt-Rhaesa
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引用次数: 0
First record of North Italian roach, Leucos aula (Bonaparte, 1841) on the Pag Island, Croatia—relict of the last glacial maximum? 克罗地亚帕格岛上北意大利蟑螂Leucos aula(波拿巴,1841)的第一次记录——最后一次冰川期的遗迹?
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-02-16 DOI: 10.1007/s13127-023-00605-y
M. Vucić, Feitoumatt Lematt Hama, D. Jelić, Morana Bačić, G. Klobučar, Barbara Anđelić Dmitrović, N. Bogutskaya
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引用次数: 1
Development and structure of the anterior nervous system and sense organs in the holopelagic annelid Tomopteris spp. (Phyllodocida, Errantia) 全浮游环节动物Tomopteris spp.(Phyllodocida,Errantia)前神经系统和感觉器官的发育和结构
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-02-07 DOI: 10.1007/s13127-023-00603-0
G. Purschke, C. Helm
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引用次数: 0
Revealing the diversity of the green Eulalia (Annelida, Phyllodocidae) species complex along the European coast, with description of three new species 揭示欧洲海岸绿色Eulalia(环节动物纲,Phyllodidae)物种群的多样性,并描述三个新物种
IF 1.6 3区 生物学 Q2 Agricultural and Biological Sciences Pub Date : 2023-01-13 DOI: 10.1007/s13127-022-00597-1
Marcos A. L. Teixeira, Pedro E. Vieira, D. Fenwick, J. Langeneck, F. Pleijel, B. Sampieri, J. Hernández, A. Ravara, F. Costa, A. Nygren
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引用次数: 2
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Organisms Diversity & Evolution
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