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THE AMERICAN MUSTANG


physiological breeding and foaling season are con- troversial and not clearly defined. Photoperiod via the retinohypothalamic tract is a major regulator of the physiological breeding season in mares, as well as in stallions. Cyclicity and follicular develop- ment in approximately 70% to 80% of domestic mares and receptivity to the stallion decreases sig- nificantly as day length (northern hemisphere, 38– 43° N) shortens toward the end of the physiological breeding season.46 It is the author’s opinion that it is unlikely that there are any physiological differ- ences in photoperiod receptivity in feral, free-rang- ing mares, and thus, out-of-season breeding activity may not be a consistent finding among pZP-inocu- lated mares despite treatment. Other factors also play a role in influencing seasonality in mares such as temperature, age, nutrition, lactation, and stress. These modifiers of seasonality would seem to be more prominent and critical among free-ranging horse mares than domestic mares and may have a stronger influence or larger impact on seasonality of the estrous cycle in the majority of wild horse mares. At this writing, while short-term contraceptive


agents are available, there is no ideal contraceptive agent that meets the needs of controlling overpopu- lation of free-ranging horses. Although presump- tively promising, limited information is available on long-term fertility control agents such as pZP-22, pZP incorporated into liposomesi, GnRH and chem- ical vasectomies. Ongoing preliminary studies have indicated inconsistent findings among all fer- tility control agents tested to date. Critical to sci- ence is consistency in the repeatability of results, and as such, current usage of long-term contracep- tive agents in large-scale population reduction of wild horses is not feasible. In view of the absence of an ideal contraception agent, free-ranging horse populations continue to increase at alarming rates— rates concerning enough to entertain the possibility of incorporating sterilization modalities in select groups within a population. If sterilization of select groups of mares and stallions is, in part, an end goal of reducing feral horse populations, formulations in the development of current contraception vaccines may require significant modifications, or other alter- native methods will be required to achieve that end goal. From the author’s perspective, a perspective that may not be shared by all, sterilization of a select group (older mares) of overpopulated wildlife may have several advantages. Firstly and although there are many anecdotal reports of exceptions, the fertil- ity life of a domestic mare is generally accepted to decline at approximately 15 to 16 years of age. More than likely, the decline in fertility is at a younger age in free-ranging horses in view of the relative hostile environment a free-ranging mare is subjected to when compared with domestic mares. Pregnancy (at least in horses) takes a significant toll on a mare’s well-being due to energy demands re- quired to maintain pregnancy and lactation. Addi- tionally, the incidence of uterine pathology in the


430 2014  Vol. 60  AAEP PROCEEDINGS


mare increases with multiple births and age. Body condition scores and longevity increases in mares that have been contracepted for multiple years using yearly injections of a contraceptive agent.45 How- ever, body condition scores, whether contracepted or not, may be dependent upon available nutrition and the social environment of the area in which the mare resides. From a veterinary medical perspective, ster- ilization of mares eliminates or decreases the inci- dences of common, pregnancy-associated conditions such as chronic uterine infections, pyometras, cervi- cal and uterine pathology, and most importantly, the life of a mare during dystocias. All together, the advantages of remaining “open” in older mares far outweigh the physiological disadvantages of be- ing pregnant. Perhaps the combination of steril- ization and contraception methods applied to select groups of mares and in select herd areas of manage- ment may potentially accelerate the reduction of population growth where there is critical need. Re- gardless of which method(s) are used, modeling studies are critical to accurately estimate the num- ber of horses required to be treated in order to have any impact on population growth. In summary, there are several potential fertility


agents for the reduction of feral horse populations. However, based on current data available in the literature, long-acting fertility control agents such as pZP-based vaccines (pZP-22, pZP incorporated in liposomesi), GnRH-based vaccinesb, and chemical vasectomy require further development and inves- tigation with consistent repeatable results in order to meet the needs and requirements of large-scale application for fertility control in feral horse pop- ulations. Essential criteria for a best-fit fertility control method when integrated with large-scale management of feral horse populations are based on a single injection protocol, long-term effectiveness, high percent effectiveness, and positive effect on health and behavior of the targeted animal and its environment.


Acknowledgments


Conflict of Interest The Author declares no conflicts of interest.


References and Footnotes 1. NRC (National Research Council). Using Science to Improve the BLM Wild Horse and Burro Program: A Way Forward. Washington DC: National Academies Press; 2013.


2. Newcombe JR. Human chorionic gonadotropin. In: McKinnon AO, Squires EL, Vaala WE, Varner DD, eds. Equine Repro- duction. Vol. 2. 2nd ed. Oxford, UK: Wiley-Blackwell; 2011: 1804–1810.


3. Vanderwall DK, Rasmussen DM, Woods GL. Effect of re- peated administration of oxytocin during diestrus on dura- tion of function of corpora lutea in mares. J Am Vet Med Assoc 2007;231:1864–1867.


4. Nie GJ, Johnson KE, Barden TD, et al. Use of an intra- uterine glass ball protocol to extend luteal function in mares. J Equine Vet Sci 2003;23:266–273.


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