期刊:Cambridge University Press eBooks [Cambridge University Press] 日期:2009-10-15卷期号:: 214-254
标识
DOI:10.1017/cbo9780511805400.007
摘要
The uptake rate of food and/or limiting nutrients depends on their availability and the processing capacity of the individual. The uptake rate of non-limiting nutrients can follow the same pattern in multiple reserve systems, or can be linked to the uptake of limiting compounds in single-reserve systems; transitions between these modes will be discussed later. The uptake of non-essential compounds differs from that of essential ones by the absence of regulated use. The first purpose of this chapter is to show how energetics interferes with many aspects of the uptake of non-essential compounds and how compounds affect metabolism. This chapter starts with the effects of reactive oxygen species ( ros ), a process known as ageing, and its links with energetics. After a brief introduction to other toxins and toxicants, the kinetics of non-essential compounds is discussed in terms of variations on the core model: a one-compartment model. Then follows a discussion of the inverse relationship, i.e. how compounds affect the energetics of individuals and the consequences for populations. Effects of different compounds can be compared on the basis of parameter values. The covariation of parameter values is discussed in Chapter 8. Ageing: effects of ros The frequently observed correlation between life span and the inverse volume-specific metabolic rate for different species (see, e.g. [1022]) has guided a lot of research, see [350]. Animals tend to live longer at low food levels than at high ones, which couples ageing to energetics.