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981.
Larvae of pit-building antlions are expected to be more efficient at capturing prey than those of non-pit-builders. To test this prediction, feeding behaviors were compared in the same experimental conditions among pit-building Baliga micans and Myrmeleon bore, and non-pit-building Distoleon contubernalis. The number of prey eaten did not differ between species. D. contubernalis larvae used the walls of the experimental chamber as fence traps to capture prey. In the field, they were also found near edges of natural barriers, such as rocks, stones, tree roots, and plant stems. Artificial pitfall traps captured more arthropods near the edges of fences than farther from them. Larvae of the two pit-building species were located in the central part of the experimental chamber. In their natural habitats, the number of arthropods captured by artificial pitfall traps increased with pit size; thus, larger pits may be more efficient for capturing prey. In conclusion, pit-building and non-pit-building antlion larvae are both efficient hunters; the former hunt efficiently by making larger pitfall traps, and the latter do so by waiting for prey at the edge of the natural fences along which arthropods walk. 相似文献
982.
983.
Micronucleus induction by quinacrine dihydrochloride (Q) was tested in CD-1 male mice by single, double, and triple oral treatment(s) with 50 or 250 mg/kg. The mice were killed 24 h after the last treatment. Femoral marrow cells were analyzed on slides stained with Giemsa and acridine orange. Both staining methods gave similar results. The frequencies of micronucleated polychromatic erythrocytes (MPE) were marginally increased, in comparison with a concurrent negative control group, only in the triple treatment group of 250 mg/kg. There were, however, no big differences in MPE frequencies among the treatment regimens. 相似文献
984.
Keiichi Honda Hisashi Ômura Nanao Hayashi Fumiko Abe Tatsuo Yamauchi 《Physiological Entomology》2001,26(1):6-10
Oviposition response of Ideopsis similis (L.) (Lepidoptera: Danaidae) was examined for 12 phenanthroindolizidine alkaloids present in its host plant, Tylophora tanakae (Maxim.) (Asclepiadaceae). At least five alkaloids, i.e. (+)‐isotylocrebrine (3,4,6,7‐tetramethoxyphenanthroindolizidine; l ), (+)‐3‐demethyliso‐ tylocrebrine ( 3 ), (+)‐isotylocrebrine N‐oxide ( 5 ), (+)‐6‐demethyltylocrebrine ( 8 ) and (–)‐7‐demethyltylophorine ( 10 ), were found to individually stimulate oviposition by females. Of these, compounds 1, 3 and 10 were regarded as key components most responsible for host recognition or preference. However, female egg‐laying was much higher in response to a mixture of the five alkaloids. In two‐choice bioassays, more eggs were deposited on samples comprising the five alkaloids than on samples consisting of a single alkaloid. This suggests strongly that host selection by the butterfly is mediated by the synergistic action of several phenanthroindolizidine alkaloids present in the host plant. 相似文献
985.
986.
Abe T Kakehata S Kitani R Maruya S Navaratnam D Santos-Sacchi J Shinkawa H 《The Journal of membrane biology》2007,215(1):49-56
The development of motor protein activity in the lateral membrane of the mouse outer hair cell (OHC) from postnatal day 5
(P5) to P18 was investigated under whole-cell voltage clamp. Voltage-dependent, nonlinear capacitance (C
v), which represents the conformational fluctuations of the motor molecule, progressively increased during development. At
P12, the onset of hearing in the mouse, C
v was about 70% of the mature level. C
v saturated at P18 when hearing shows full maturation. On the other hand, C
lin, which represents the membrane area of the OHC, showed a relatively small increase with development, reaching steady state
at P10. This early maturation of linear capacitance is further supported by morphological estimates of surface area during
development. These results, in light of recent prestin knockout experiments and our results with quantitative polymerase chain
reaction, suggest that, rather than the incorporation of new motors into the lateral membrane after P10, molecular motors
mature to augment nonlinear capacitance. Thus, current estimates of motor protein density based on charge movement may be
exaggerated. A corresponding indicator of motor maturation, the motor’s operating voltage midpoint, V
pkcm, tended to shift to depolarized potentials during postnatal development, although it was unstable prior to P10. However,
after P14, V
pkcm reached a steady-state level near −67 mV, suggesting that intrinsic membrane tension or intracellular chloride, each of which can modulate V
pkcm, may mature at P14. These developmental data significantly alter our understanding of the cellular mechanisms that control
cochlear amplification and provide a foundation for future analysis of genetic modifications of mouse auditory development. 相似文献
987.
988.
Unno H Ichimaida F Suzuki H Takahashi S Tanaka Y Saito A Nishino T Kusunoki M Nakayama T 《The Journal of biological chemistry》2007,282(21):15812-15822
The BAHD family is a class of acyl-CoA-dependent acyltransferases that are involved in plant secondary metabolism and show a diverse range of specificities for acyl acceptors. Anthocyanin acyltransferases make up an important class of the BAHD family and catalyze the acylation of anthocyanins that are responsible for most of the red-to-blue colors of flowers. Here, we describe crystallographic and mutational studies of three similar anthocyanin malonyltransferases from red chrysanthemum petals: anthocyanidin 3-O-glucoside-6'-O-malonyltransferase (Dm3MaT1), anthocyanidin 3-O-glucoside-3', 6'-O-dimalonyltransferase (Dm3MaT2), and a homolog (Dm3MaT3). Mutational analyses revealed that seven amino acid residues in the N- and C-terminal regions are important for the differential acyl-acceptor specificity between Dm3MaT1 and Dm3MaT2. Crystallographic studies of Dm3MaT3 provided the first structure of a BAHD member, complexed with acyl-CoA, showing the detailed interactions between the enzyme and acyl-CoA molecules. The structure, combined with the results of mutational analyses, allowed us to identify the acyl-acceptor binding site of anthocyanin malonyltransferases, which is structurally different from the corresponding portion of vinorine synthase, another BAHD member, thus permitting the diversity of the acyl-acceptor specificity of BAHD family to be understood. 相似文献
989.
990.