Nowghani Fargol, Jonusaite Sima, Watson-Leung Trudy, Donini Andrew, Kelly Scott P
Department of Biology, York University, Toronto, ON, Canada M3J 1P3.
Aquatic Toxicology Unit, Ontario Ministry of the Environment and Climate Change, 125 Resources Road, Etobicoke, ON, Canada M9P 3V6.
J Exp Biol. 2017 Nov 1;220(Pt 21):3997-4006. doi: 10.1242/jeb.166132. Epub 2017 Aug 31.
This study investigated ionoregulatory strategies used by freshwater (FW) nymphs of the mayfly Like other FW organisms, nymphs maintain hemolymph ion levels (in mmol l: Na ∼102; Cl ∼84; K ∼6; pH ∼7.35) far in excess of their surroundings. This appears to be accomplished by the combined actions of the alimentary canal, Malpighian tubules (MTs) and tracheal gills. The alimentary canal contributes in a region-specific manner, a view supported by: (1) spatial differences in the activity of basolateral Na/K-ATPase (NKA) and apical V-type H-ATPase (VA) and (2) region-specific Na and K flux rates. Both indicate a prominent role for the hindgut (rectum) in K reabsorption. MTs also exhibit region-specific differences in Na and K flux rates that are coupled with an organized but tortuous architecture. NKA and VA activities were highest in MTs versus all other organs examined. Tracheal gills were found to be sites of Na uptake, but no difference in Na uptake was found between gills taken from different regions of the abdomen or spatially along individual gills. This is likely because each gill exhibited a dense population of NKA and/or VA immunoreactive cells (putative ionocytes). Data provide new insight into how FW mayfly nymphs regulate salt and water balance using the alimentary canal, MTs and tracheal gills as well as the first direct evidence that tracheal gills acquire ions from FW.
本研究调查了蜉蝣淡水若虫所采用的离子调节策略。与其他淡水生物一样,若虫的血淋巴离子水平(单位:mmol/l:钠约102;氯约84;钾约6;pH值约7.35)远高于其周围环境。这似乎是通过消化道、马氏管(MTs)和气管鳃的共同作用来实现的。消化道以区域特异性方式发挥作用,这一观点得到以下支持:(1)基底外侧钠/钾-ATP酶(NKA)和顶端V型H-ATP酶(VA)活性的空间差异,以及(2)区域特异性钠和钾的通量率。两者均表明后肠(直肠)在钾重吸收中起重要作用。MTs在钠和钾的通量率方面也表现出区域特异性差异,且与一种有组织但曲折的结构相关。与所有其他检查的器官相比,MTs中的NKA和VA活性最高。发现气管鳃是钠摄取的部位,但取自腹部不同区域或沿单个鳃在空间上的鳃之间,钠摄取没有差异。这可能是因为每个鳃都有大量NKA和/或VA免疫反应性细胞(假定的离子细胞)。数据为淡水蜉蝣若虫如何利用消化道、MTs和气管鳃调节盐和水平衡提供了新的见解,同时也首次直接证明气管鳃从淡水中获取离子。