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The behavioral thermoregulation of the red swamp crayfish, Procambarus clarki, was investigated in its burrow environment. In the field, air and water temperatures within crayfish burrows fluctuated less compared with surface temperatures in the Mojave Desert. However, crayfish could still experience sub-optimal temperature regimes inside burrows. In the laboratory, P. clarki heated and cooled more rapidly in water than in air. In a thermal gradient, the crayfish selected a water temperature of 22 degrees C and avoided water temperatures above 31 degrees C and below 12 degrees C. Observations of behavior in an artificial burrow showed that P. clarki displayed three main shuttling behaviors between water and air in response to temperature. The number of bilateral emersions and emigrations, as well as the amount of time spent in air (in a 24 h period), were significantly greater at 34 degrees C than at 12, 16, 22 or 28 degrees C. This reflected an increased use of the behavioral thermoregulation at temperatures approaching the critical thermal maximum of this species. Upon migrating from 34 degrees C water into 38 degrees C air, crayfish body temperature decreased significantly. These periods of emersion were interspersed with frequent dipping in the water, allowing the crayfish to gain the benefits of evaporative cooling, without the physiological costs incurred by long-term exposure to air.  相似文献   

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1. Crayfish (Procambarus clarki) myosin was obtained from abdominal flexor muscle. The Ca2+-ATPase activity of crayfish myosin was much lower than that of rabbit skeletal myosin. However, F-actin-activated Mg2+-ATPase of crayfish and its superprecipitation closely resembled those of rabbit skeletal myosin. This fact suggests that the ability of crayfish myosin to combine with F-actin is essentially the same as that of skeletal myosin, although the chemical structures of both the myosin molecules when involved in their Ca2+-ATPast activity must be different from each other. 2. Crayfish and rabbit skeletal myosins were subjected to SDS-polyacrylamide gel electrophoresis. Crayfish myosin was found to have one heavy chain and two distinct light chain components (CF-gl and CF-g2), which have molecular weights of 18,000 and 16,000, respectively. These light chains correspond in molecular weight to the light chains (SK-g2 and SK-g3) in rabbit skeletal myosin. 3. CF-g1 could be liberated from the crayfish myosin molecule reacting with 5,5'-dithio-bis (2-nitrobenzoic acid), (Nbs2), without recovery of ATPase activity by the addition of DTT. These properties are equivalent to those of SK-g2 in rabbit skeletal myosin, although Nbs2-treated crayfish myosin did not recover its ATPase activity at all.  相似文献   

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  • 1.1. An intermittent feed led to an increase in the molt interval but a decrease in the increasing rate of carapace length after each molt in eyestalkless young crayfish. Procambarus clarki.
  • 2.2. In the eyestalkless, medium-sized crayfish, the molt interval slightly increased but the increasing rate of carapace length slightly decreased when either 1 or 6 walking legs were removed from their bodies.
  • 3.3. The eyestalkless crayfish which were fed sufficiently can grow normally, representing that they have a normal water balance.
  • 4.4. In crayfish, the rapid growth itself may be one of the factors for the precocious molt.
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Summary A proprioceptor in the telson of the crayfish Procambarus clarki was found, which is made up of about five units. These show range fractionation, i.e. different threshold distributions and their response to bending of the telson has a transient and a stationary component. The peak frequencies reached during the period of the transient component were shown to increase with increasing bending velocity and had — with the exception of one case — the highest values when extension (contrary to flexion) was imposed. The position characteristic discharge frequencies of the stationary component and their variation with different telson positions were considerably smaller. The receptor signals movement and position to the central nervous system and is therefore called a phasictonic one.I am grateful to Prof. Dr. T. H. Bullock for his hospitality and interest in this work and also want to thank Mr. John W. Thorson for many constructive discussions. This work was aided by grants from the U.S. Public Health Service, National Science Foundation and Office of Naval Research to Prof. Dr. T. H. Bullock.  相似文献   

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1. Food deprivation resulted in significant decreases in muscle carbohydrate, lipid and water content and increased ATP, ADP, AMP and total adenylate levels over the 21-day experimental period. 2. In the hepatopancreas phosphoarginine was significantly higher on day 21 in the starved crayfish. 3. Muscle energy charges remained within optimal (unstressed) ranges, while hepatopancreatic energy charges of food-deprived crayfish fell into suboptimal (stressed) ranges, indicating the necessity of examining organs separately to accurately ascertain metabolic changes in response to stressors.  相似文献   

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The molecular heterogeneity and tissue specificity of crustacean tropomyosin were investigated, using muscle and nonmuscle tissues from the crayfish, Cambarus clarki. In muscle, three types of tropomyosin isoforms were found on two-dimensional gel electrophoresis. One of them was specific to cardiac muscle, and the other two were shared by skeletal and visceral muscles. In nonmuscle tissues, four types of isoforms were found on two-dimensional gel electrophoresis and in immunoreplica tests using an antiserum against crayfish skeletal muscle tropomyosin. Two of them were common to the muscle isoforms, but the other two were not detected in muscles. Furthermore, nonmuscle tissues contained several peculiar isoforms, the electrophoretic mobilities of which were considerably higher than those of the other isoforms mentioned above. When tropomyosin was purified from the mid-gut gland, these isoforms with high mobilities were found in the crude tropomyosin preparation. These results showed that the crayfish tropomyosin was heterogeneous and that the isoforms were distributed in a tissue-specific manner, like vertebrate tropomyosin. However, the results did not coincide with those of our previous study on horseshoe crab tropomyosin, which showed molecular heterogeneity but no tissue specificity. In view of the difference in the isoform distributions between the two major groups (Crustacea and Merostomata) of Arthropoda, the significance of the tissue specificity of tropomyosin isoforms was discussed.  相似文献   

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  • 1.1. P. elarki is an oxyconformer, with an oxygen uptake rate of 144 ± 4 μl/g wet wt/hr at oxygen tensions above 90% saturation and an uptake rate of 18 ± 3 μl g wet wt/hr at 15 torr.
  • 2.2. Between 159 and 40 tort, blood pH decreases slightly from 7.77 ± 0.03 to 7.65 ± .04, and at 15 torr, blood pH drops to 7.36 ± 0.06.
  • 3.3. At normoxia, blood lactate levels are low at 0.66 ± 0.01 mM/l blood. After 2 and 5 hr exposure to 15 tort, blood lactate levels increase to 3.29 ± 0.47 and 8.91 ± 0.14 mM/l blood, respectively. Upon return to normoxia, blood lactate levels decrease and are comparable to normoxic controls after 13 hr.
  • 4.4. During mild hypoxia, P. elarki maintains adequate oxygen transport by utilizing a high O2 affinity hemocyanin in conjunction with a low metabolic demand by its tissues.
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1. The microsomal mixed-function oxygenase (MFO) system from the hepatopancreas and green gland of the red swamp crayfish, Procambarus clarkii has been characterized with respect to the constitution of electron transport proteins and the ability to catalyze the metabolism of xenobiotics. 2. Cytochrome P-450 content of hepatopancreas microsomes was approximately 10-fold higher than that of green gland and comparable to that of rat liver. NADPH-cytochrome c reductase activity in hepatopancreas microsomes was approximately 2% of that found in rat liver microsomes. 3. Green gland microsomes catalyzed higher turnover rates of aminopyrine N-demethylase and benzo[a]pyrene hydroxylase than hepatopancreas microsomes. With hepatopancreas microsomes, organic hydroperoxides supported a greater rate of aminopyrine N-demethylation than did NADPH plus O2. 4. P. clarkii hepatopancreas microsomes generally displayed a lower binding affinity (Ks) for a number of type I and type II ligands than did rat liver microsomes.  相似文献   

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Hinsch GW 《Tissue & cell》1992,24(3):379-385
The testis of the crayfish,Procambarus paeninsulanus, was prepared for light and electron microscopic study. It is composed of tubules containing germ-spermatogenic and somatic-Sertoli cells. In sections of tubules lacking sperm, the Sertoli cells rest on the basement membrane. A desmosome-like junction is found near the luminal surface between two adjacent Sertoli cells. It is closely associated with a long, septate junction. Between Sertoli cells which have surrounded numerous spermatids, the undulating membranes exhibit profiles of pleated septate junctions in tangential sections. The morphology of the pleated septate junctions between adjacent Sertoli cells suggests a possible role as a permeability barrier.  相似文献   

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Hinsch GW 《Tissue & cell》1993,25(5):737-742
The testes of the crayfish, Procambarus paeninsulanus, were prepared for light and transmission electron microscopy. During early stages of spermatogenesis, when the spermatogonia are dividing, processes from a single Sertoli cell extend between numerous spermatogonia. As the cells enter meiosis, many points of contact can be observed between the Sertoli cell processes and spermatocytes. These desmosome-gap junctions are maintained between the germ and Sertoli cells until the early spermatid stage.  相似文献   

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ABSTRACT

There is increasing evidence showing that the gasotransmitter hydrogen sulfide (H2S) and NF-κB-mediated signaling may play an important role in regulating immune response. However, essentially nothing is known about them in crustaceans, especially the red swamp crayfish (Procambarus clarkii). In this work, we used immunohistochemical method to investigate, for the first time, the presence and distribution of a H2S biosynthetic enzyme (cystathionine β-synthase, CBS) and a member of NF-κB family (RelA/p65) in crayfish hepatopancreas. Results indicated that (1) CBS-like and NF-κB p65-like immunopositive cells coexisted in hepatopancreas; (2) NF-κB p65 was diffusely localized and highly expressed in the cytoplasm of R- and B-cells, but CBS was observed mainly in connective tissue, especially in sinusoids; (3) and normally, at mean optical density (MOD) level, their expression was about 0.0032 ± 0.0028 and 0.0072 ± 0.0039, and proportion (%) of positive cells was 14.37 ± 5.76 and 23.5 ± 14.3, respectively.  相似文献   

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  • 1.1. The fiber types of uropod muscles of the crayfish, Procambarus clarkii, were determined by the myofibrillar ATP-ase histochemistry and electrophysiology.
  • 2.2. The ATP-ase histochemistry was carried out on the sections of the whole tailfan and the slow muscles were identified as being of the slow type on the basis of their low staining intensities.
  • 3.3. The location of slow bundles in the mixed type muscles i.e. the dorsal rotator (DRT), the ventral rotator (VRT), and the telson-uropodalis posterior (TUP) was confirmed.
  • 4.4. TUP was newly revealed in this study to be a mixed muscle.
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