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Marsupial milk : identifying signals for regulating mammary function and development of the young

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posted on 2010-01-01, 00:00 authored by Julie SharpJulie Sharp, Christophe Lefevre, J Kwek, D Topcic, Laurine Buscara, C Pooley, R de Iongh, M Familari, Kevin Nicholas
The role of milk in providing nutrition for the young is well established. However, it is becoming apparent that milk has a more comprehensive role in programming and regulating growth and development of the suckled young, and an autocrine impact on the mammary gland so that it functions appropriately during the lactation cycle. This central role of milk is best studied in animal models, such as marsupials that have evolved a different lactation strategy to eutherians and allow researchers to more easily identify regulatory mechanisms that are not as readily apparent in eutherian species. For example, the tammar wallaby (Macropus eugenii) has evolved with a unique reproductive strategy of a short gestation, birth of an altricial young and a relatively long lactation during which the mother progressively changes the composition of the major, and many of the minor components of milk. Thus, in contrast to eutherians, there is a far greater investment in development of the young during lactation and it is likely that many of the signals that regulate development of eutherian embryos in utero are delivered by the milk. This requires the co-ordinated development and function of the mammary gland. Inappropriate timing of these signalling events in mammals may result in either limited or abnormal development of the young, and potentially a higher incidence of mature onset disease. The tammar is emerging as an attractive model to better understand the role of milk factors in these processes.

History

Title of book

Marsupial genetics and genomics

Chapter number

15

Pagination

317 - 334

Publisher

Springer

Place of publication

Dordrecht, The Netherlands

ISBN-13

9789048190225

ISBN-10

9048190223

Language

eng

Publication classification

B1 Book chapter

Copyright notice

2010, Springer

Extent

23

Editor/Contributor(s)

J Deakin, P Waters, J Marshall Graves