首页> 外文期刊>Chronobiology international >CIRCADIAN MODULATION OF CRUSTACEAN HYPERGLYCEMIC HORMONE IN CRAYFISH EYESTALK AND RETINA
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CIRCADIAN MODULATION OF CRUSTACEAN HYPERGLYCEMIC HORMONE IN CRAYFISH EYESTALK AND RETINA

机译:螯虾和视网膜中的高血糖素激素的Circadian调制

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Previous studies suggested the retina could be a putative locus of daily crustacean hyperglycemic hormone (CHH) secretion, as it possesses its own metabolic machinery and is independent of the well-known CHH eyestalk locus responsible for the circadian secretion of this peptide. However, it has been proposed that hemolymph glucose and lactate concentrations play a dual role in the regulation of CHH in crayfish. To elucidate the temporal relationship between these two different CHH production loci and to examine their relationship with glucose regulation, we investigated the expression of CHH daily and circadian rhythms in the eyestalk and retina of crayfish using biochemical methods and time series analysis. We wanted to determine whether (1) putative retina and eyestalk CHH rhythmic expressions are correlated and if the oscillations of the two metabolic products of lactate and glucose in the blood due to CHH action on the target tissue correlate, and (2) retina CHH (RCHH) and the possible retinal substrate glycogen and its product glucose are temporally correlated. We found a negative correlation between daily and circadian changes of relative CHH abundance in the retina and eyestalk. This correlation and the cross-correlation values found between eyestalk CHH and hemolymph and glucose confirm that CHH produced by the X-organ sinus gland complex is under the previously proposed dual feedback control system over the 24 h time period. However, the presence of both glycogen and glucose in the retina, the cross-correlation values found between these parameters and hemolymph lactate and glucose, as well as RCHH and hemolymph and retina metabolic markers suggest RCHH is not under the same temporal metabolic control as eyestalk CHH. Nonetheless, their expression may be linked to common rhythms-generating processes. (Author correspondence: mlfm@hp.fciencias.unam.mx; mfajul@gmail.com)
机译:以前的研究表明,视网膜可能是日常甲壳类高血糖激素(CHH)分泌的推测部位,因为它具有自己的代谢机制,并且独立于负责该肽的昼夜节律分泌的众所周知的CHH眼球部位。然而,已经提出血淋巴葡萄糖和乳酸浓度在小龙虾的CHH调节中起双重作用。为了阐明这两个不同的CHH产生基因座之间的时间关系,并检查它们与葡萄糖调节的关系,我们使用生化方法和时间序列分析研究了CHH日常和昼夜节律在小龙虾的眼柄和视网膜中的表达。我们想确定(1)假定的视网膜和眼球CHH的节律表达是否相关,以及由于CHH作用于靶组织的血液中乳酸和葡萄糖的两种代谢产物的振荡是否相关,以及(2)视网膜CHH( RCHH)和可能的视网膜底物糖原及其产物葡萄糖在时间上相关。我们发现视网膜和眼球中相对CHH丰度的每日变化和昼夜节律变化之间呈负相关。这种相关性以及在眼柄CHH与血淋巴和葡萄糖之间发现的互相关值证实了X器官窦腺复合体产生的CHH在24小时内处于先前提出的双反馈控制系统之下。然而,视网膜中糖原和葡萄糖的存在,这些参数与血淋巴乳酸和葡萄糖以及RCHH和血淋巴与视网膜代谢标记之间的互相关值表明,RCHH与眼语不在同一时间代谢控制下CHH。但是,它们的表达可能与常见的节奏产生过程有关。 (作者通讯:mlfm@hp.fciencias.unam.mx; mfajul@gmail.com)

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