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Mizuguchi, Y.

Publications and source records attributed to Mizuguchi, Y..

2 recordsLinked to original sources

Discriminating predation attempt outcomes during natural foraging using the post-buzz pause in Japanese large-footed bat Myotis macrodactylus

Bats emit a series of echolocation calls with an increasing repetition rate (the terminal buzz), when attempting to capture prey. This is often used as an acoustic indicator of prey-capture attempts. However, because it is directly linked to foraging efficiency, predation success is a more useful measure than predation attempts in ecological research. The characteristics of echolocation calls that consistently signify predation success across different situations have not been identified. Due to additional influencing factors, identification of these characteristics is particularly challenging for wild bats foraging in their natural environment compared to those in flight chambers. This study documented the natural foraging behavior of wild Japanese large-footed bat Myotis macrodactylus using synchronized acoustic and video recordings. From the video recordings, we could assign 137 attacks to three outcome categories: prey captured (51.8%), prey dropped (29.2%), and failed attempt (19%). Based on previous indications from laboratory studies that the length of the silent interval following the terminal buzz (post-buzz pause) might reflect the prey capture outcome, we compared post-buzz pause durations among categories of attack outcomes. The post-buzz pause was longest in the case of successful capture, suggesting that the length of the post-buzz pause is a useful acoustic indicator of predation success during natural foraging in M. macrodactylus. Our finding will advance the study of bat foraging behavior using acoustic data, including estimations of foraging efficiency and analyses of feeding habitat quality. Summary statementWe investigated the natural foraging behavior of wild Myotis macrodactylus and found that the length of the post-buzz pause is a useful acoustic indicator of predation success.

animal behavior and cognition↗

Distinct repertoire expansion patterns during affinity maturation of antigen responding camelid-derived single-domain VHH antibody

Antibody maturation is the central function of the adaptive immune response. This process is driven by the repetitive selection of mutations that increase the affinity toward antigens. We hypothesized that precise observation of this process by high-throughput sequencing along time course of immunization will enable us to predict the antibodies reacting to the immunized antigen without any additional in vitro screening. An alpaca was immunized by IgG fragments using multiple antigen injections and antibody repertoire development was traced via high-throughput sequencing periodically for months. The sequences were processed into clusters and the antibodies in the 16 most abundant clusters were generated to determine whether the clusters included antigen-binding antibodies. The sequences of most antigen-responsive clusters resembled those of germline cells in the early stages. These sequences were observed to accumulate significant mutations and also showed continuous sequence turnover throughout the experimental period. The foregoing characteristics gave us 75% successful prediction of clusters composed of antigen-responding VHHs against IgG fragment. In addition, the prediction method was applied to the data from other alpaca immunized by epidermal growth factor receptor and 77% successful prediction confirmed the generality of the prediction method. Superior to previous studies, we identified the immune responsive but very rare clusters or sequences from the immunized alpaca without any empirical screening data. Significance StatementWe have developed a method for selecting VHH antibody sequences that react to antigens without in vitro screening by performing a large-scale sequence analysis of VHH along the immunization time course, clustering the sequences, and tracking the evolution of the sequences in the clusters. This method enables the identification of antibodies with low frequencies of occurrence, which has been difficult with existing in silico antibody identification methods.

immunology↗