Suppr超能文献

食硬壳动物螃蟹的螯不对称性:右利手占主导地位以及利手反转与螯的大小和闭合力量有关。

Chela asymmetry in a durophagous crab: predominance of right-handedness and handedness reversal is linked to chela size and closing force.

作者信息

Masunari Nobufumi, Hiro-oku Masanori, Dan Shigeki, Nanri Takahiro, Kondo Masayoshi, Goto Masaki, Takada Yoshitake, Saigusa Masayuki

机构信息

Research Institute for Fisheries Science, Okayama Prefectural Technology Centre for Agriculture, Forestry, and Fisheries, Ushimado 6641-6, Okayama-Setouchi 701-4303, Japan.

Tamano Laboratory, National Research Institute of Fisheries and Environment of Inland Sea, Fisheries Research Agency, Chikko 5-21-1, Okayama-Tamano 706-0002, Japan.

出版信息

J Exp Biol. 2015 Nov;218(Pt 22):3658-70. doi: 10.1242/jeb.120196. Epub 2015 Sep 28.

Abstract

The swimming crab Portunus trituberculatus is a durophagous brachyuran. Right-handed crabs are predominant, but left-handed crabs are also found in nature. Left-handedness may arise from loss of the right crusher. We examined whether heterochely (morphology) was correlated with differences in closing force (physical property) and handedness (behaviour). The closing force was stronger in larger chela with greater apodeme height and handedness resided in the chela with stronger closing force. With loss of the right chela (autotomy), handedness transitioned from the right to left chela, and all crabs were left-handed thereafter. Reversed handedness was accompanied with a reduction of size and closing force in the regenerated right chela, and growth of the original left chela. After handedness reversal, dentition on the left dactylus of the newly-converted crusher was close to that of the original right crusher, but did not attain the same shape, even after 10 moults. Left-handed crabs were significantly worse than right-handed crabs at crushing hard-shelled prey. Chela formation was symmetrical in the zoea, and heterochely and right-handedness started in the megalopa, regardless of maternal handedness. Since the left chela is capable of being the crusher, heterochely may be caused by differences in morphogenetic velocity between the right and left chelae, under a signal discriminating right from left. Right-handedness is an attribute of P. trituberculatus, that would be inheritable across generations. It is probable that right-handedness was used in the earliest durophagous crabs, and this trend has been succeeded to extant species.

摘要

三疣梭子蟹是一种食硬壳动物的短尾蟹。大多数螃蟹是右螯足为主,但自然界中也能发现左螯足为主的螃蟹。左螯足为主可能是由于右螯足粉碎器的缺失。我们研究了螯足形态差异(形态学)是否与闭合力差异(物理特性)和螯足为主情况(行为)相关。较大的螯足且不动关节高度更高时,闭合力更强,且螯足为主情况存在于闭合力更强的螯足上。当右螯足自切丢失后,螯足为主情况从右螯足转变为左螯足,此后所有螃蟹都变为左螯足为主。螯足为主情况反转伴随着再生右螯足尺寸和闭合力的减小,以及原来左螯足的生长。螯足为主情况反转后,新转变的粉碎器左指节上的齿列接近原来右粉碎器的齿列,但即使经过10次蜕皮也未达到相同形状。左螯足为主的螃蟹在粉碎硬壳猎物方面明显比右螯足为主的螃蟹差。在蚤状幼体阶段,螯足形成是对称的,无论母体的螯足为主情况如何,在大眼幼体阶段开始出现螯足形态差异和右螯足为主情况。由于左螯足能够成为粉碎器, 螯足形态差异可能是在区分左右的信号作用下,左右螯足形态发生速度不同所致。右螯足为主是三疣梭子蟹的一个属性,可能具有跨代遗传性。很可能最早的食硬壳动物螃蟹就已出现右螯足为主的情况,这一趋势一直延续到现存物种。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验