Scientists look inside the ‘spider’ growing on the tip of a rare viper’s tail科学家们观察生长在一种罕见蝰蛇尾巴尖端的“蜘蛛”内部结构
The spider-tailed horned viper lures prey by wiggling an arachnid-shaped growth on its tail. Scientists finally looked inside the appendage.

Omid Mozaffari/Field Museum
In the arid, inhospitable climate of western Iran’s Zagros Mountains, life has found a remarkable way to survive.
Circling above, a bird glimpses what at first glance looks like a plump spider climbing on the rocks. But as the avian predator swoops in, it becomes the prey as something that initially appeared to be a rock moves to snap it up.
The roughened rock is actually the bumpy surface of a viper with hornlike features on its head — and the “spider” is the tip of its tail, flicking with tantalizing movement.
When scientists collected a specimen of the spider-tailed horned viper in Iran in 1968, they disregarded the arachnid-shaped tail tip.
“Everybody who looks at the tail thinks it has a tumor or some sort of growth or a parasite on it, and that it’s some sort of anomaly,” said Sara Ruane, associate curator of herpetology and director of core laboratories at the Field Museum’s Negaunee Integrative Research Center in Chicago. “And it wasn’t until another individual was collected in 2003 that somebody thought, ‘You know, maybe this is the norm for this species.’”
The 1968 specimen remains within the Field Museum’s collections as the holotype, or the individual that scientists reference to establish the species’ physical characteristics, Ruane said. Researchers used this holotype in 2006 to describe the snake as a newly identified species, Pseudocerastes urarachnoides.
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Now, Ruane and her colleagues have used X-ray imaging to get a detailed look inside the vertebrae at the tip of the tail. The findings were published Thursday in the scientific journal The Anatomical Record .
“In some other snakes, like sand boas and rubber boas, the vertebrae at the tip of the tail have extreme shapes that look really alien,” said lead study author Dr. Georgios Georgalis, an associate professor in the Institute of Systematics and Evolution of Animals at the Polish Academy of Sciences in Kraków. “We wanted to investigate if the spider-tailed horn viper’s tail was similarly strange inside.”
Instead, the researchers uncovered something unexpected — and it’s a lesson in why skeletons don’t always tell the complete story of animals, both living and long extinct.
While a doctoral student, Ruane first saw a “mind-blowing” video in 2008 of a spider-tailed horned viper moving its unusual tail to lure birds.
Other vipers are known to flick their tails, especially baby vipers with bright green or neon yellow tail tips that might appear like a wiggly worm to unsuspecting frogs.
“But the apparatus on the tip of the spider tail viper is on a whole other level,” Ruane said.
Sara Ruane/Field Museum
The viper is elusive, using its musculature to live along dramatic cliff faces. The creature’s extreme habitat makes it challenging to study or collect in the wild.
“Some of the video I’ve seen of these snakes in action shows them in tiny crevices that you would never think any animal is able to cling onto very well, let alone a snake that doesn’t have any limbs,” Ruane said. “When it actually grabs a bird, sometimes the whole snake goes flying off the rock face along with the bird. The snake’s whole style of life is also pretty wild.”
When Ruane and Georgalis met at a conference in 2023, he expressed an interest in studying the viper’s holotype. As a paleontologist, Georgalis studies modern snakes to understand the fragmented fossil remains of ancient extinct ones.
Ruane recalled thinking the timing was excellent because the Field Museum was getting a new X-ray computed tomography, or XCT, lab. The technology enables the scanning of objects to create thousands of X-rays, resulting in 3D renderings that can peer inside structures without damaging specimens — such as the inside of a snake’s tail.
Snake skeletons have hundreds of vertebrae, which means that snake vertebral columns have been poorly studied in the past, said Dr. Kurt Schwenk, professor emeritus in the department of ecology and evolutionary biology at the University of Connecticut in Storrs. Schwenk was not involved in the study.
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The holotype was one of the first specimens to be scanned once the lab was up and running in late 2024. The scans revealed that the vertebrae within the tail were normal and typical of most vipers, Georgalis said.
Instead, the fleshy appendage is composed of elongated and modified scales, he said, with no bony element present.
“If we had these remains only as fossils today, we would not be able to reconstruct or imagine its spider-like tail morphology,” Georgalis wrote in an email. “This is a ‘painful’ reminder that fossil remains in paleontology do not afford the ‘absolute truth’ on how magnificent were once extinct reptiles and other now lost animals.”
As a reptile morphologist, Schwenk didn’t expect that the lure would include anything other than soft tissue.
Sara Ruane et al/Field Museum
“Modifications of the scales into various structures, such as spines, horns, knobs, etc., are fairly common in lizards and snakes and outside of the head, rarely, if ever, involve the underlying skeleton,” Schwenk wrote in an email.
While snake vertebrae are typically shorter in the tail, Schwenk noticed that the tail vertebrae seemed unusually slight in the spider-tailed horned viper.
“Having shorter vertebrae in the tail makes it especially flexible,” Schwenk said. “This would enhance the tail’s ability to make the tight, sinuous bends used to create the realistic, spider-like movements of the lure.”
Questions remain about the spider-tailed horned viper, such as how it evolved this interesting feature, known as a caudal lure, on the end of its tail.
“If you look at the two species that are most closely related to the spider-tailed viper, they’ve got funny-looking tails,” Ruane said of the Persian horned viper and the Field’s horned viper.
“It seems smaller than it should be, and very keratinized,” Ruane said of the hard, dry outer coating of the tail, “and at least on the specimens I’ve seen, it’s a different color. The snake is sort of a sandy brown or gray, and then the tail is black.”
Many snakes twitch their tails, whether to scare off predators or lure prey, but the spider-tailed horned viper may be an extreme example, such as rattlesnakes, of how features evolve over time out of certain behaviors, she said.
Sara Ruane and Stephanie Smith/Field Museum
Future research could focus on what genetic mechanisms may have been turned on or off to make the spider-like appendage appear, Ruane added.
Schwenk said he believes the behavior was likely present in the viper’s ancestors.
“The spider-tailed viper has taken this ancestral behavior and modified it into something really spectacular,” Schwenk said. “The spider-like structure in combination with sinuous motions of the tail create an impression of a moving spider that is so realistic that the first time I saw a video of the behavior I was completely fooled. It’s a wonderful example of the power of natural selection to shape animal form and function.”
奥米德·莫扎法里/菲尔德博物馆
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一只鸟盘旋在空中,瞥见一个东西,乍一看像是只肥硕的蜘蛛正攀爬在岩石上。但当这只鸟类捕食者俯冲而下时,它自己却成了猎物,因为原本看似岩石的东西突然移动,一口吞下了它。
粗糙的岩石实际上是蝰蛇凹凸不平的表面,它的头部有角状特征——而“蜘蛛”则是它的尾巴尖,正以诱人的动作摆动着。
1968 年,科学家在伊朗采集到一条蜘蛛尾角蝰的标本时,忽略了它形似蜘蛛的尾尖。
“每个人看到这条尾巴都会觉得它长了肿瘤、某种赘生物或者寄生虫,觉得这是一种异常情况,”芝加哥菲尔德博物馆内高尼综合研究中心爬虫学副馆长兼核心实验室主任萨拉·鲁安说。“直到2003年采集到另一只个体后,才有人想到,‘也许这才是该物种的正常情况。’”
鲁安表示,1968年的标本至今仍保存在菲尔德博物馆的馆藏中,是正模标本,也就是科学家用来确定物种物理特征的参考个体。研究人员在2006年利用这个正模标本将这种蛇描述为一个新物种,命名为乌拉蛛形伪角蛇(Pseudocerastes urarachnoides)。
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现在,鲁安和她的同事们利用X射线成像技术,详细观察了尾尖椎骨的内部结构。该研究结果于周四发表在科学期刊《解剖学记录》上。
“在其他一些蛇类中,例如沙蟒和橡胶蟒,尾尖的椎骨形状非常奇特,看起来十分怪异,”该研究的主要作者、波兰科学院克拉科夫动物系统学与进化研究所的副教授乔治·乔治亚利斯博士说。“我们想研究一下蜘蛛尾角蝰的尾巴内部是否也同样奇特。”
然而,研究人员却发现了一些意想不到的事情——这也说明了为什么骨骼并不总是能完整地讲述动物(包括现存的和早已灭绝的动物)的故事。
2008 年,鲁安在攻读博士学位期间,第一次看到了一段“令人震惊”的视频,视频中一条蜘蛛尾角蝰蛇摆动着它不寻常的尾巴来引诱鸟类。
已知其他蝰蛇会摆动尾巴,尤其是尾巴尖端呈亮绿色或荧光黄色的幼蝰蛇,在毫无戒心的青蛙看来,它们可能像一条蠕动的虫子。
“但蜘蛛尾蝰蛇尾尖上的装置则完全是另一个层次的,”鲁安说。
萨拉·鲁安/菲尔德博物馆
这种蝰蛇行踪隐秘,凭借强壮的肌肉在险峻的悬崖峭壁上生存。其极端的栖息地环境使得在野外对其进行研究或采集极具挑战性。
“我看过一些这些蛇的视频,它们能钻进一些你根本想不到任何动物能牢牢抓住的狭小缝隙里,更何况是一条没有四肢的蛇,”鲁安说。“当它们抓住一只鸟时,有时整条蛇会连同鸟一起从岩壁上飞出去。这种蛇的生活方式也相当狂野。”
2023年,鲁安和乔治亚利斯在一次会议上相遇,鲁安当时表示有兴趣研究这种蝰蛇的正模标本。作为一名古生物学家,乔治亚利斯研究现代蛇类,以此来了解古代已灭绝蛇类的零碎化石遗骸。
鲁安回忆说,他当时觉得时机绝佳,因为菲尔德博物馆正在筹建一个新的X射线计算机断层扫描(XCT)实验室。这项技术能够扫描物体,生成数千张X射线照片,从而生成3D图像,可以在不损坏标本的情况下观察物体内部结构——例如蛇尾的内部结构。
康涅狄格大学斯托尔斯分校生态与进化生物学系荣誉教授库尔特·施文克博士表示,蛇的骨骼有数百节椎骨,这意味着过去对蛇的脊柱研究甚少。施文克并未参与这项研究。
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正模标本是实验室于 2024 年底投入运行后首批进行扫描的标本之一。乔治亚利斯说,扫描结果显示,尾部的椎骨正常,与大多数蝰蛇的椎骨相似。
他说,这种肉质附属物是由细长且经过改造的鳞片组成,不含任何骨骼成分。
“如果我们今天只能拥有这些化石遗骸,我们将无法重建或想象它蜘蛛般的尾巴形态,”乔治亚利斯在一封电子邮件中写道。“这令人痛心地提醒我们,古生物学中的化石遗骸并不能提供关于已灭绝的爬行动物和其他现已消失的动物究竟有多么辉煌的‘绝对真相’。”
作为一名爬行动物形态学家,施文克没想到诱饵除了软组织之外还会包含其他东西。
Sara Ruane 等人/菲尔德博物馆
施文克在一封电子邮件中写道:“鳞片发生各种变化,形成棘刺、角、瘤状物等结构,在蜥蜴和蛇类中相当常见,而且除了头部以外,很少(如果有的话)会涉及到下面的骨骼。”
虽然蛇的尾椎骨通常较短,但施文克注意到,蜘蛛尾角蝰的尾椎骨似乎异常纤细。
施文克说:“尾椎骨较短使其特别灵活。这将增强尾部做出紧密、蜿蜒弯曲的能力,从而营造出拟饵逼真的、类似蜘蛛的运动。”
关于蜘蛛尾角蝰,仍然存在一些疑问,例如它尾巴末端的这种被称为尾部诱饵的有趣特征是如何进化出来的。
“如果你看看与蜘蛛尾蝰关系最密切的两种蛇,你会发现它们的尾巴看起来很滑稽,”鲁安谈到波斯角蝰和菲尔德角蝰时说道。
“它看起来比应有的尺寸要小,而且角质化程度很高,”鲁安指着尾巴坚硬干燥的外层说道,“至少在我见过的标本中,它的颜色也不一样。蛇身呈沙棕色或灰色,而尾巴是黑色的。”
她说,许多蛇都会抽动尾巴,无论是为了吓走捕食者还是引诱猎物,但蜘蛛尾角蝰蛇可能是一个极端的例子,就像响尾蛇一样,说明了某些行为如何随着时间的推移而演变出某些特征。
萨拉·鲁安和斯蒂芬妮·史密斯/菲尔德博物馆
鲁安补充说,未来的研究可以集中于哪些基因机制可能被开启或关闭,从而使蜘蛛状的附属物出现。
施文克表示,他认为这种行为很可能存在于蝰蛇的祖先身上。
“蜘蛛尾蝰继承了这种祖先习性,并将其演化成了令人惊叹的奇观,”施文克说道。“它那蜘蛛般的结构,再加上尾巴蜿蜒的摆动,营造出一种蜘蛛移动的逼真效果,以至于我第一次看到这段视频时,完全被骗了。这真是自然选择塑造动物形态和功能的绝佳例证。”