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Water influx accompanying the swelling of embryos during normal development of horseshoe crabs, Limulus polyphemus and Tachypleus tridentatus , following a rupture of the chorion, was analyzed. The increase in volume of perivitelline fluid during deveopment was about 90 percent of the increase in total embryo weight. Considerable water discharge was observed on drying the embryos in air and a reversible water influx occurred with a second immersion in sea water, even though the embryos died as a result of this treatment. Since the osmotic pressure of the perivitelline fluids decreased markedly during development until the end of swelling, a close correlation between swelling and osmotic pressure was recognized. These results indicate that certain osmoactive substances may be produced in the perivitelline fluid at the initial stage of swelling.  相似文献   
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In the preceding study, the present authors differentiated the activity patterns of the suprahyoid (SH) muscles during pharyngeal swallowing of tasty and tasteless foods by using “TP” values that assigned activity of electromyograms (EMG) to a standardized time scale. In the present study, we calculated not only the TP values but also the InP values (by subtracting the preceding TP‐10 values from TP) to analyze activity patterns of the SH EMG during pharyngeal swallowing of foods dissolved in unitary (monosodium glutamate [MSG] and disodium inosine‐5′‐monophosphate [IMP]) and binary (MSG + IMP) “umami‐” tasting solutions of low and high concentration. We found that SH activity patterns differed slightly between low and high concentration of unitary and binary umami‐tasting foods, but that SH activity patterns measured while swallowing umami‐tasting foods did not differ from those measured while swallowing sweet‐ or salty‐tasting foods, or tasteless food.  相似文献   
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It is well known that the motility of spermatozoa in rainbow trout is suppressed by K+. We showed here that although trout sperm are completely immotile in medium containing 5 mM K+, motility was initiated by the subsequent addition of several mM Ca2+, suggesting that both K+and Ca2+are related to the process of the initiation of sperm motility. It was further found that K+channel blockers tetraethylammonium, nonyltriethylammonium, Ba2+and Cs+, as well as the Ca2+channel blocker verapamil, inhibited the initiation of sperm motility at doses at which these reagents inhibit chnnel-related functions in other cells. However, Na+channel blocker, tetrodotoxin and anion channel blocker 4, 4-diisothiocyatatostilbene-2, 2'-disulfonic acid inhibited the motility only at extremely high doses. These results suggest that transport of K+and Ca2+through ion channels at the plasma membrane of spermatozoa is the first event that triggers the initiation of sperm motility in rainbow trout.  相似文献   
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Cadmium (Cd) accumulations in a Cd hyper‐accumulator fern, Athyrium yokoscense (Ay), and tobacco, Nicotiana tabacum (Nt), were kinetically analysed using the positron‐emitting tracer imaging system under two medium conditions (basal and no‐nutrient). In Ay, maximumly 50% and 15% of the total Cd accumulated in the distal roots and the shoots under the basal condition, respectively. Interestingly, a portion of the Cd in the distal roots returned to the medium. In comparison with Ay, a little fewer Cd accumulations in the distal roots and clearly higher Cd migration to the shoots were observed in Nt under the basal condition (maximumly 40% and 70% of the total Cd, respectively). The no‐nutrient condition down‐regulated the Cd migration in both species, although the regulation was highly stricter in Ay than in Nt (almost no migration in Ay and around 20% migration in Nt). In addition, the present work enabled to estimate physical and physiological Cd accumulation capacities in the distal roots, and demonstrated condition‐dependent changes especially in Ay. These results clearly suggested occurrences of species‐/condition‐specific regulations in each observed parts. It is probable that integration of these properties govern the specific Cd tolerance/accumulation in Ay and Nt.  相似文献   
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Rates of light-saturated net photosynthesis (PNmax) and darkrespiration (Rd) on a leaf area basis, leaf dry mass per area(LMA), leaf nitrogen content on a leaf area basis (LNa) andinstantaneous nitrogen use efficiency (NUE=PNmax/LNa) were followedduring leaf development in six evergreen broad-leaved tree speciestypical of warm-temperate forests in Japan. These species wereCastanopsissieboldii, Quercus myrsinaefolia, Quercus glauca, Machilus thunbergii,Cinnamomum japonicumandNeolitsea sericea.When expansion of leafarea was complete, PNmax was about one third of its peak valueand increased for another 15 to 44 d. Rd at full leaf expansionwas about 1.5 to 3.5-times greater than steady-state rates.These facts suggest that leaf development was still underwayat the time of full leaf area expansion. Low PNmax at full leafexpansion was caused both by low leaf nitrogen content and lowNUE. PNmax increased with the increase in LMA during leaf developmentin all six species; data from the literature for other specieswith different life forms also indicated a similar tendency.The steady-state LMA varied markedly among species. Becauseleaves with larger steady-state LMAs need more resources fortheir construction, they will also need longer periods for maturation.We hypothesized that the period required for the attainmentof peak PNmax, the ‘leaf maturation period’, dependson the steady-state LMA. Plotting data from the present studytogether with those from literature for other plants acrossseveral life forms showed a strong positive relationship betweenleaf maturation period and steady-state LMA, supporting thehypothesis.Copyright 1998 Annals of Botany Company. Castanopsis sieboldii, Cinnamomum japonicum,delayed period, expansion period, full leaf expansion,Machilus thunbergii,maturation period,Neolitsea sericea, Quercus glauca, Quercus myrsinaefolia,steady-state LMA.  相似文献   
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To increase systemic resistance to herbivory, some clonal plants transmit internal cues among clonal ramets to prevent widespread damage to genets. Sagebrush (Artemisia tridentata) (Asteraceae) is known to use volatile cues to induce resistance within and between plants (so‐called volatile communication). In the present study, we observed the extent and frequency of clonal growth in a natural sagebrush population in western North America to understand the influence of clonal growth on volatile communication. We used genetic analysis involving microsatellite markers and excavation of the root systems. In addition, we characterized the volatile profiles from the headspace of sagebrush ramets. Excavation of the root system of sagebrush plants revealed that sagebrush propagates clonally below ground and that daughter ramets grow near the mother stem. Volatiles were variable among genetically different ramets, although clonal ramets (genetically identical ramets) released similar volatiles, suggesting a genetic basis for volatile similarity. Sagebrush has been shown to be most responsive to volatiles released from artificially produced clones and suffers less herbivore damage as a result. Therefore, these results, taken into consideration together, imply that volatile communication may occur among genetically identical ramets under natural conditions, and that volatile similarity between the releaser and receiver may be recognized by the receiver and increase resistance against herbivory.  相似文献   
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