{"refrec":{"BRefID":347546,"RR":"<b>Zhang, S.; Bai, Q.; Melville, D.S.; Feng, C.; Piersma, T.; Ma, Z.</b> (2021). Food supplementation as a conservation intervention: A framework and a case of helping threatened shorebirds at a refuelling site. <i>Biol. Conserv. 264</i>: 109394. <a href=\"https://dx.doi.org/10.1016/j.biocon.2021.109394\" target=\"_blank\">https://dx.doi.org/10.1016/j.biocon.2021.109394</a>","BEntID":344238,"PublicFlag":1,"CheckedFlag":0,"wosflag":1,"vabbflag":1,"RefStringPartII":". <i>Biol. Conserv. 264</i>: 109394. <a href=\"https://dx.doi.org/10.1016/j.biocon.2021.109394\" target=\"_blank\">https://dx.doi.org/10.1016/j.biocon.2021.109394</a>","DocTypID":8,"DocType":"Journal article","MarineFlag":0,"FreshFlag":0,"BrackishFlag":0,"TerrestrialFlag":0,"Authorstring":"Zhang, S.; Bai, Q.; Melville, D.S.; Feng, C.; Piersma, T.; Ma, Z.","OrigTitleTranslFlag":0,"Authorstringtrunc":"Zhang, S. <i>et al.</i>","Englishabstract":"<p>    Supplemental feeding to mitigate the effects of food shortages may in some    cases provide critical help to    <a        href=\"https://www.sciencedirect.com/topics/earth-and-planetary-sciences/species-conservation\"        title=\"Learn more about species conservation from ScienceDirect's AI-generated Topic Pages\"    >        species conservation    </a>    . However, supplemental feeding may have both positive and negative effects    on wildlife and the environment. A scientifically designed feeding project    helps to achieve conservation targets and reduces adverse effects. Here, we    summarize a three-step framework for    <a        href=\"https://www.sciencedirect.com/topics/earth-and-planetary-sciences/food-supplementation\"        title=\"Learn more about food supplementation from ScienceDirect's AI-generated Topic Pages\"    >        food supplementation    </a>    that we used in practice: (1) determining whether supplemental feeding is    required; (2) designing and implementing a practical feeding scheme; and    (3) evaluating the effectiveness of food supplementation. We supplemented    food for great knots (<em>Calidris tenuirostris</em>), an endangered    migratory    <a        href=\"https://www.sciencedirect.com/topics/earth-and-planetary-sciences/wader\"        title=\"Learn more about shorebird from ScienceDirect's AI-generated Topic Pages\"    >        shorebird    </a>    , at a recently impoverished refuelling site (Yalu Jiang estuary) in the    Yellow Sea in spring 2018. The abundance of the    <a        href=\"https://www.sciencedirect.com/topics/agricultural-and-biological-sciences/staple-foods\"        title=\"Learn more about staple food from ScienceDirect's AI-generated Topic Pages\"    >        staple food    </a>    of great knots (<em>Potamocorbula laevis</em>, which had become very rare    after 2012), was insufficient for the birds to refuel before the migratory    flight to the    <a        href=\"https://www.sciencedirect.com/topics/earth-and-planetary-sciences/breeding-site\"        title=\"Learn more about breeding grounds from ScienceDirect's AI-generated Topic Pages\"    >        breeding grounds    </a>    . In our practical test, living <em>P. laevis</em> were collected in    subtidal areas and transported to the intertidal area where great knots had    been foraging in earlier years. The supplemented areas attracted 48% of all    the great knots present in the 200 km<sup>2</sup> study area. Nearly 90% of    the supplemented food was consumed. Most great knots (>80%) foraged inthe high-density supplementation zone where the densities of    <em>P. laevis</em> were restored to the naturally occurring levels in    2011–2012. Here, food intake rates (mg AFDM/s) were 4.2 times those in the    adjacent control zones. The framework and the feeding practice should help    guide future supplemental feeding in a wide range of species.</p>","AbstractOtherLang":null,"BibLvlCode":"AS","StandardTitle":"Food supplementation as a conservation intervention: A framework and a case of helping threatened shorebirds at a refuelling site","OrigTitleLangCode":"en","OrigTitleLangCodeExtended":"eng","OrigTitleLangID":15,"DateLastModified":{"date":"2026-06-10 01:32:39.947713","timezone_type":1,"timezone":"+02:00"},"UserAccessRight":null,"UserAccID":null,"AuthorKeywords":"East Asian-Australasian flyway; Food shortage; Foraging; Fuel storage; Species conservation; Staging site","OtherDescriptors":null,"Notes":null,"AnaPub":2021,"MonPub":null,"DateUpdate":"2021-11-24","DateCreate":"2021-11-24","SecASFANote":null,"ConfID":null,"PeerRev":1,"VlizCoreFlag":1,"WoScode":"WOS:000722192800008","VABBcode":null,"OpenAcc":0,"DOI":"10.1016/j.biocon.2021.109394"},"refs":null,"anarec":{"AnaID":347546,"PubliDate":2021,"Pagination":"109394","XtraPublOfAnaID":null,"ISBN":null,"Volume":"264","Issue":null,"BRefMon":null,"BRefMonRR":null,"BRefXtra":null,"BRefXtraRR":null,"SerBRefID":42439,"SerRR":"Biological Conservation. 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