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121.
Bidirectional promoter of the mouse thymidylate synthase gene.   总被引:4,自引:2,他引:2       下载免费PDF全文
W C Liao  J Ash    L F Johnson 《Nucleic acids research》1994,22(20):4044-4049
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Mark and recapture experiments were used to estimate the size-at-age relationship of the coral-eating gastropod Drupella cornus at Ningaloo Reef, Western Australia. Animals 15 mm long increased in length by 5.2 mm in six months at a site in an early stage of an outbreak, but by only 3.8 mm at a site within an established outbreak. Snails larger than 35 mm grew very little. Based on observed growth rates fitted to a Richards function growth equation, snails 28 mm long judged to be reproductively mature would be 2.5 to 3.5 years old, suggesting that local outbreaks represent no more than one or two generations of recruits. Indirect evidence indicates that growth is more rapid in the earlier than in later stages of outbreaking populations. The growth and timing of life-history transitions of D. cornus are not unusual among other muricid species.  相似文献   
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A total of 1,640 stomach contents from 56 South African species of small and medium sized mammals were examined for ticks. Only six ticks were found in three specimens of the caracal Felis caracal. Although identification of the tick species was not possible owing to fragmentation and partial digestion, the genus Haemaphysalis was represented in four of these cases. We conclude that predation by small and medium sized mammals on ticks is uncommon in South Africa.  相似文献   
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Protein translocation at the ER membrane: A complex process becomes more so   总被引:3,自引:0,他引:3  
Protein transport across or insertion into a membrane is facilitated by multicomponent protein complexes that reside in the bilayer. Current models propose that these complexes mediate translocation and integration by an obligate sequence of interactions between the substrate polypeptide and other components. Recent discoveries extend and complicate these models, but, more importantly, they remind us that our current level of understanding of the actual molecular mechanisms involved is crude and represents only the tip of the iceberg.  相似文献   
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Wait, J. L., and R. L. Johnson. Patterns of shorteningand thickening of the human diaphragm. J. Appl.Physiol. 83(4): 1123-1132, 1997.To study how the human diaphragm changesconfiguration during inspiration, we simultaneously measured diaphragmthickening using ultrasound and inspired volumes using apneumotachograph. Diaphragm length was assessed by chest radiography.We found that thickening and shortening were greatest during a breathtaken primarily with the abdomen. However, the degree of thickening wasgreater than expected for fiber shortening, assuming parallel musclefibers and no shear. So, to clarify this unexpected finding, weconsidered geometric models of the diaphragm. How a muscle thickens asits fibers shorten is critically dependent on geometry. Thus, if a flatrectangular sheet of muscle shortens along one dimension, surfacearea-to-length ratio along this dimension should remain constant, andthickness would be inversely proportional to length during shortening.The simplest model of the diaphragm, however, is a cylindrical sheet ofmuscle in the zone of apposition capped by a dome; the ratio of surfacearea to radial fiber length in the dome is substantially less than theratio of area to length of the cylindrical zone of apposition; hence,as the zone of apposition shortens while the dome radius remainsconstant, the ratio of total surface area to combined length (i.e.,dome + zone of apposition) must decrease and thickening of the musclecorrespondingly must increase more than expected for a simplerectangular strip. A similar relationship can be derived betweenthickening and length in a muscle sheet with a wedge-shaped insertioninto a thin flat tendon. Comparison of calculations with these types ofmodels to data from human subjects indicates that the unexpectedthickening in the zone of apposition is explained by the peculiargeometry of the diaphragm. The greater thickening of the diaphragm inthe zone of apposition suggests that more of the muscle mass and more sarcomeres are retained in the zone of apposition as the dome descends.Physiologically, this greater thickening may have importance byreducing wall stress in the zone of apposition and reducing the work orenergy requirements per sarcomere.

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