进化中的权衡:无毒腺蜘蛛的适应性景观。

IF 11.8 2区 生物学 Q1 MULTIDISCIPLINARY SCIENCES
Yiming Zhang, Yunxiao Shen, Pengyu Jin, Bingyue Zhu, Yejie Lin, Tongyao Jiang, Xianting Huang, Yang Wang, Zhe Zhao, Shuqiang Li
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引用次数: 0

摘要

背景:毒腺在几乎所有蜘蛛类群的捕食和防御策略中都起着关键作用。然而,蜘蛛家族 Uloboridae 缺乏毒腺,并进化出一种适应性策略:它们直接用蛛丝过度包裹猎物,而不是先用毒素麻痹猎物。这种生存策略的转变非常吸引人,但其背后的遗传基础却鲜为人知:跨越多个蜘蛛类群,我们对 Octonoba sinensis 进行了多组学分析,并在基因组水平上描述了 Uloboridae 家族的适应性进化。我们观察到肌肉中肌球蛋白和肌动蛋白的编码基因处于正选择状态,能量代谢功能增强,与气管发育和组织机械强度相关的基因家族扩大或出现,这些都与蛸蛛科蜘蛛独特的解剖结构和捕食行为有关。此外,我们还扫描了该科 2 个物种基因组中缺失或处于宽松纯化选择下的元素以及毒素基因同源物。结果表明,这些蜘蛛基因组中的缺失区和宽松选择区主要集中在与发育和神经系统相关的区域。对毒素同源物的搜索揭示了毒素与非毒素之间可能存在的基因功能转移,并证实该类蜘蛛的基因组中没有可靠的毒素基因:这项研究证明了蜘蛛利用化学或物理策略在不同捕食策略之间的权衡,并为这种权衡的可能机制提供了见解。无毒蜘蛛需要调动与运动功能和肢体机械强度相关的多种发育和代谢途径,以弥补因缺乏毒腺而导致的适应性下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A trade-off in evolution: the adaptive landscape of spiders without venom glands.

Background: Venom glands play a key role in the predation and defense strategies of almost all spider groups. However, the spider family Uloboridae lacks venom glands and has evolved an adaptive strategy: they excessively wrap their prey directly with spider silk instead of paralyzing it first with toxins. This shift in survival strategy is very fascinating, but the genetic underpinnings behind it are poorly understood.

Results: Spanning multiple spider groups, we conducted multiomics analyses on Octonoba sinensis and described the adaptive evolution of the Uloboridae family at the genome level. We observed the coding genes of myosin and twitchin in muscles are under positive selection, energy metabolism functions are enhanced, and gene families related to tracheal development and tissue mechanical strength are expanded or emerged, all of which are related to the unique anatomical structure and predatory behavior of spiders in the family Uloboridae. In addition, we also scanned the elements that are absent or under relaxed purifying selection, as well as toxin gene homologs in the genomes of 2 species in this family. The results show that the absence of regions and regions under relaxed selection in these spiders' genomes are concentrated in areas related to development and neurosystem. The search for toxin homologs reveals possible gene function shift between toxins and nontoxins and confirms that there are no reliable toxin genes in the genome of this group.

Conclusions: This study demonstrates the trade-off between different predation strategies in spiders, using either chemical or physical strategy, and provides insights into the possible mechanism underlying this trade-off. Venomless spiders need to mobilize multiple developmental and metabolic pathways related to motor function and limb mechanical strength to cover the decline in adaptability caused by the absence of venom glands.

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来源期刊
GigaScience
GigaScience MULTIDISCIPLINARY SCIENCES-
CiteScore
15.50
自引率
1.10%
发文量
119
审稿时长
1 weeks
期刊介绍: GigaScience seeks to transform data dissemination and utilization in the life and biomedical sciences. As an online open-access open-data journal, it specializes in publishing "big-data" studies encompassing various fields. Its scope includes not only "omic" type data and the fields of high-throughput biology currently serviced by large public repositories, but also the growing range of more difficult-to-access data, such as imaging, neuroscience, ecology, cohort data, systems biology and other new types of large-scale shareable data.
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