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References
Оглавление1 Altieri, M.A., C.I. Nicholls, and R. Montalba. 2017. Technological approaches to sustainable agriculture at a crossroads: An agroecological approach. Sustainability 9:349. doi:10.3390/su9030349
2 Anderson, M.K., and J. Rosenthal. 2015. An ethnobiological approach to reconstructing indigenous fire regimes in the foothill chaparral of the Western Sierra Nevada. J. Ethnobiol. 35(1):4–36. doi:10.2993/0278‐0771‐35.1.4
3 Anderson, L.S., and F.L. Sinclair. 1993. Ecological interactions in agroforestry systems. Agroforestry Abstracts 6(2):57–91.
4 Atangana, A., D. Khasa, S. Chang, and A. Degrande. 2013. Definitions and classifications of agroforestry systems In: A. Degrande, D. Khasa, and S. Chang, (eds.), Tropical agroforestry. Dordrecht, The Netherlands: Springer. p. 35–47. doi:10.1007/978‐94‐007‐7723‐1.
5 Baker, T.P., M.T. Moroni, D.S. Mendham, R. Smith, and M.A. Hunt. 2018. Impacts of windbreak shelter on crop and livestock production. Crop Pasture Sci. 69(8):785–796. doi:10.1071/CP17242
6 Bentrup, G., and T. Kellerman. 2004. Where should buffers go? Modeling riparian habitat connectivity in northeast Kansas. J. Soil Water Conserv. 59:209–213.
7 Blanco‐Canqui, H., C.J. Gantzer, S.H. Anderson, E.E. Alberts, and A.L. Thompson. 2004. Grass barrier and vegetative filter strip effectiveness in reducing runoff, sediment, nitrogen, and phosphorus loss. Soil Sci. Soc. Am. J. 68:1670–1678. doi:10.2136/sssaj2004.1670
8 Brandle, J. R., E. Takle and Z. Zhou. 2022. Windbreak practices. Chapter 5. In: H.E. Garrett, S. Jose, and M.A. Gold, (eds.), North American agroforestry. 3rd ed. Madison, WI: Agronomy Society of America.
9 Brunetti, J. 2006. Forage quality and livestock health: A nutritionist’s view. In: T. Morris and M. Keilty, editors, Alternative health practices for livestock. Wiley‐Blackwell Publishers, London. p. 85–103. doi:10.1002/9780470384978.ch8
10 Bukowski, C., and J. Munsell. 2018. The Community food forest handbook: How to plan, organize, and nurture edible gathering places. Chelsea Green Publishing, Hartford, VT.
11 Clark, K.H., and K.A. Nicholas. 2013. Introducing urban food forestry: A multifunctional approach to increase food security and provide ecosystem services. Landsc. Ecol. 28(9):1649–1669. doi:10.1007/s10980‐013‐9903‐z
12 Costanza, R., R. d’Arge, R. de Groot, S. Farber, M. Grasso, B. Hannon, K. Limburg, S. Naeem, R.V. O’Neill, J. Paruelo, R.G. Raskin, P. Sutton, and M. van den Belt. 1997. The value of the world’s ecosystem services and natural capital. Nature 387:253–260. doi:10.1038/387253a0
13 Curtis, A., J. Birkhead, and T. De Lacy. 1995. Community participation in landcare policy in Australia: the Victorian experience with regional landcare plans. Soc. Nat. Resour. 8:415–430. doi:10.1080/08941929509380933
14 den Herder, M., G. Moreno, R.M. Mosquera‐Losada, J.H.N. Palma, A. Sidiropoulou, J.J. Santiago Freijanes, J. Crous‐Duran, J.A. Paulo, M. Tomé, A. Pantera, V.P. Papanastasie, K. Mantzanas, P. Pachana, A. Papadopoulos, T. Plieninger, and P.J. Burgess. 2017. Current extent and stratification of agroforestry in the European Union. Agric. Ecosyst. Environ. 241:121–132. doi:10.1016/j.agee.2017.03.005
15 Dosskey, M.G., K.D. Hoagland, and J.R. Brandle. 2007. Change in filter strip performance over ten years. J. Soil Water Conserv. 62:21–32.
16 Dupraz, C., G.J. Lawson, N. Lamersdorf, V.P. Papanastasis, A. Rosati, and J. Ruiz‐Mirazo. 2018a. Temperate agroforestry: The European way. p. 98–152. In: A.M. Gordon, S.M. Newman, and B. Coleman (ed.), Temperate agroforestry systems. 2nd Edition. Wallingford, U.K.: CABI.
17 Dupraz, C., C. Blitz‐Frayret, I. Lecomte, Q. Molto, F. Reyes, and M. Gosme. 2018b. Influence of latitude on the light availability for intercrops in an agroforestry alley‐cropping system. Agroforest Syst 92:1019–1033. doi:10.1007/s10457‐018‐0214‐x
18 Dupraz, C., K.J. Wolz, I. Lecomte, G. Talbot, G. Vincent, R. Mulia, F. Bussière, H. Ozier‐Lafontaine, S. Andrianarisoa, N. Jackson, G. Lawson, N. Dones, H. Sinoquet, B. Lusiana, D. Harja, S. Domenicano, F. Reyes, M. Gosme, and M. Van Noordwijk. 2019. Hi‐sAFe: A 3D agroforestry model for integrating dynamic tree–crop interactions. Sustainability 11:2293. doi:10.3390/su11082293
19 Edwards, C.A., T.L. Grove, R.R. Harwood, and C.J.P. Colfer. 1993. The role of agroecology and integrated farming systems in agricultural sustainability. Agric. Ecosyst. Environ. 46:99–121. doi:10.1016/0167‐8809(93)90017‐J
20 Eichhorn, M.P., P. Paris, F. Herzog, L.D. Incoll, F. Liagre, K. Mantzanas, M. Mayus, G. Moreno, V.P. Papanastasis, D.J. Pilbeam, A. Pisanelli, and C. Dupraz. 2006. Silvoarable systems in Europe– past, present and future prospects. Agrofor. Syst. 67:29–50. doi:10.1007/s10457‐005‐1111‐7
21 Elevitch, C.R., D.N. Mazaroli, and D. Ragone. 2018. Agroforestry standards for regenerative agriculture. Sustainability 10(9):3337. doi:10.3390/su10093337
22 Faulkner, P.A., B. Owooh, and J. Idassi. 2014. Assessment of the adoption of agroforestry technologies by limited‐resource farmers in North Carolina. J. Ext. 52(5): 5RIB7. https://joe.org/joe/2014october/rb7.php.
23 Feliciano, D., A. Ledo, J. Hillier, and D.R. Nayak. 2018. Which agroforestry options give the greatest soil and above ground carbon benefits in different world regions? Agric. Ecosyst. Environ. 254:117–129 doi:10.1016/j.agee.2017.11.032
24 Ferguson, R.S., and S.T. Lovell. 2014. Permaculture for agroecology: Design, movement, practice and worldview. A Review. Agron. Sustain. Dev. 34:251–274. doi:10.1007/s13593‐013‐0181‐6
25 Garrett, H.E., W.B. Kurtz, L.E. Buck, L.H. Hardesty, M.A. Gold, H.A. Pearson, J.P. Lassoie, and J.P. Slusher. 1994. Agroforestry: An integrated land use management system for production and farmland conservation. The Agroforestry component of the Resource Conservation Act appraisal for the Soil Conservation Service. NRCS, Washington, D.C.
26 Garrett, H.E., S. Jose, and M.A. Gold, editors. 2022. North American agroforestry. 3rd ed. American Society of Agronomy, Inc., Madison, WI.
27 Garrity, D.P. 2004. Agroforestry and the achievement of the Millennium Development Goals. Agrofor. Syst. 61:5–17.
28 Garrity, D.P. 2005. Forestry in agriculture: The vision of Landcare. p. 47–52. In A.G. Brown (ed.), Forests, wood and livelihoods: Finding a future for all. Record of a conference conducted by the ATSE Crawford Fund Parliament House, Canberra. 16 August 2005. Fyshwick, Australia; Crawford Fund. http://www.crawfordfund.org/publications/pdf/forestwoods.pdf#page=54
29 Garrity, D.P., F.K. Akinnifesi, O.C. Ajayi, S.G. Weldesemayat, J.G. Mowo, A. Kalinganire, M. Larwanou, and J. Bayala. 2010. Evergreen Agriculture: a robust approach to sustainable food security in Africa. Food Secur. 2(3):197–214. doi:10.1007/s12571‐010‐0070‐7
30 Geertsema, W., W.A.H. Rossing, D.A. Landis, F.J.J.A. Bianchi, P.C.J. van Rijn, J.H.J. Schaminée, T. Tscharntke, and W. van der Werf. 2016. Actionable knowledge for ecological intensification of agriculture. Front. Ecol. Environ 14(4):209–216. doi:10.1002/fee.1258
31 Gold, M.A. 2019. Agroforestry for the cultivation of nuts. In: M.R. Mosquera‐Losada and R. Prabhu, editors, Agroforestry for sustainable agriculture. Burleigh Dodds Science Publishing, Cambridge, UK. doi:10.19103/AS.2018.0041.17
32 Gold, M.A., L.D. Godsey, and S.J. Josiah. 2004. Markets and marketing strategy for agroforestry specialty products in North America. Agrofor. Syst. 61:371–382.
33 Gold, M.A., M.M. Cernusca, and M.M. Hall, editors. 2013. Handbook for agroforestry planning and design. Ann Arbor, MI: MU Center for Agroforestry. http://www.centerforagroforestry.org/pubs/training/HandbookP&D13.pdf
34 Gold, M.A., H.L. Hemmelgarn, G.O. Mori, and C. Todd, editors. 2018. Training manual for applied agroforestry practices. 2018 Edition. Ann Arbor, MI: MU Center for Agroforestry, http://www.centerforagroforestry.org/pubs/training/FullTrainingManual_2018.pdf
35 Gordon, A.M., S.M. Newman, and B. Coleman, editors. 2018. Temperate agroforestry systems. 2nd ed. Wallingford, U.K. CABI. doi:10.1079/9781780644851.0000
36 Heavey, J.P., and T.A. Volk. 2014. Living snow fences show potential for large storage capacity and reduced drift length shortly after planting. Agrofor. Syst. 88:803–814. doi:10.1007/s10457‐014‐9726‐1
37 Hildebrand, P.E. 1990. Farming systems research‐extension. In: J.G.W. Jones and P.R. Street, editors, Systems theory applied to agriculture and the food chain. Springer‐Verlag, New York, p. 131–144.
38 Hillbrand, A., S. Borelli, M. Conigliaro, and A. Olivier. 2017. Agroforestry for landscape restoration. FAO, Rome.
39 IPES‐Food. 2016. From uniformity to diversity: a paradigm shift from industrial agriculture to diversified agroecological systems. International Panel of Experts on Sustainable Food systems, Brussels, Belgium. http://www.ipes‐food.org/_img/upload/files/UniformityToDiversity_FULL.pdf
40 Jordan, N., G. Boody, W. Broussard, J.D. Glover, D. Keeney, B.H. McGown, G. McIsaac, M. Muller, H. Murray, J. Neal, C. Pansing, R.E. Turner, K. Warner, and D. Wyse. 2007. Sustainable development of the agricultural bio‐economy. Science 316: 1570–1571. http://www.sciencemag.org/cgi/content/full/316/5831/1570?ijkey=5fR9HWpeNY.HQ&keytype=ref&siteid=sci doi:10.1126/science.1141700
41 Jose, S., A.R. Gillespie, and S.G. Pallardy. 2004. Interspecific interactions in temperate agroforestry. Agrofor. Syst. 61:237–255.
42 Jose, S., M.A. Gold, and H.E. Garrett. 2018. Temperate agroforestry in the United States: Current trends and future directions. In: A. Gordon, S.M. Newman, and B. Coleman, editors, Temperate agroforestry systems. 2nd ed. CABI, Wallingford, UK. doi:10.1079/9781780644851.0050
43 Jose, S., B.M. Kumar, and D. Walter. 2017. Ecological considerations in sustainable silvopasture design and management. Agrofor. Syst. 93:317–331. doi:10.1007/s10457‐016‐0065‐2
44 Jose, S., H.E. Garrett, M.A. Gold, J.P. Lassoie, L.E. Buck, and D. Current. 2022. Agroforestry as an integrated, multifunctional land use management strategy. Chapter 1. In: Garrett, H.E., S. Jose, and M.A. Gold, editors, North American agroforestry. 3rd ed. Agronomy Society of America, Madison, WI.
45 Jose, S., and E.J. Holzmueller. 2022. Tree‐crop interactions in temperate agroforestry. In: H.E. Garrett, S. Jose, and M.A. Gold, editors, North American agroforestry. 3rd ed. Agronomy Society of America, Madison, WI.
46 Josiah, S.J., H. Brott, and J. Brandle. 2004. Producing woody floral products in an alleycropping system in Nebraska. Horttechnology 14(2):203–207. doi:10.21273/HORTTECH.14.2.0203
47 Kort, J. 1988. Benefits of windbreaks to field and forage crops. Agric. Ecosyst. Environ. 22–23:165–190.
48 Krebs, J., and S. Bach. 2018. Permaculture– Scientific evidence of principles for the agroecological design of farming systems. Sustainability 10(9):3218. doi:10.3390/su10093218
49 Kremen, C., and A.M. Merenlender. 2018. Landscapes that work for biodiversity and people. Science 362. doi:10.1126/science.aau6020
50 LaCanne, C.E., and J.G. Lundgren. 2018. Regenerative agriculture: merging farming and natural resource conservation profitably. PeerJ 6:e4428. doi:10.7717/peerj.4428
51 Lelle, M. and M.A. Gold. 1994. Agroforestry systems for temperate climates: Lessons from Roman Italy. Forest and Conservation History 38(3): 118–126.
52 Lerch, R.N., C.H. Lin, K.W. Goyne, R.J. Kremer, and S.H. Anderson. 2017. Vegetative buffer strips for reducing herbicide transport in runoff: Effects of buffer width, vegetation, and season. J. Am. Water Resour. Assoc. 53(3):1–17 (JAWRA). doi:10.1111/1752‐1688.12526
53 Liebman, M., and L.A. Schulte. 2015. Enhancing agroecosystem performance and resilience through increased diversification of landscapes and cropping systems. Elementa. Science of the Anthropocene. 3:000041. doi:10.12952/journal.elementa.000041
54 Lovell, S.T. 2010. Multifunctional urban agriculture for sustainable land use planning in the United States. Sustainability 2:2499–2522. doi:10.3390/su2082499
55 Lovell, S.T., S. DeSantis, C.A. Nathan, M.B. Olson, V.E. Mendez, H.C. Kominami, D.L. Erickson, K.S. Morris, and W.B. Morris. 2010. Integrating agroecology and landscape multifunctionality in Vermont: An evolving framework to evaluate the design of agroecosystems. Agric. Syst. 103:327–341. doi:10.1016/j.agsy.2010.03.003
56 Lovell, S.T., C. Dupraz, M. Gold, S. Jose, R. Revord, E. Stanek, and K. Wolz. 2017. Temperate agroforestry research– Considering multifunctional woody polycultures and the design of long‐term field trials. Agrofor. Syst. 92(5):1397–1415. doi:10.1007/s10457‐017‐0087‐4
57 Lovric, M., M. Rois‐Diaz, M. den Herder, A. Pisanelli, N. Lovric, and P.J. Burgess. 2018. Driving forces for agroforestry update in Mediterranean Europe: Application of the analytic network process. Agroforest Syst 92: 863–876. doi:10.1007/s10457‐018‐0202‐1
58 Lundgren, B.O., and J.B. Raintree. 1982. Sustained agroforestry. In: B. Nestel, editor, Agricultural research for development: Potentials and challenges in Asia. ISNAR, The Hague, The Netherlands. p. 37–49.
59 MacFarland, K., C. Elevitch, J.B. Friday, K. Friday, F.K. Lake, and D. Zamora. 2017. Chapter 5: Human dimensions of agroforestry systems. In: Schoeneberger, M.M.; Bentrup, G.; Patel‐Weynand, T. eds. 2017. Agroforestry: Enhancing resiliency in U.S. agricultural landscapes under changing conditions. Gen. Tech. Report WO‐96. Washington, DC: U.S. Department of Agriculture, Forest Service. p. 73–90.
60 Mantau, U., J.L.G. Wong, and S. Curl. 2007. Towards a taxonomy of forest goods and services. Small‐scale For. 6:391–409. doi:10.1007/s11842‐007‐9033‐z
61 Matson, P.A., W.J. Parton, A.G. Power, and M.J. Swift. 1997. Agricultural intensification and ecosystem properties. Science 277:504–509. doi:10.1126/science.277.5325.504
62 McAdam, J., P. Burgess, A. Graves, A. Riguero‐Rodríquez, and M.R. Mosquera‐Losada. 2009. Classifications and functions of agroforestry systems in Europe. In: A. Rigueiro‐Rodríguez, J. McAdam, and M. Mosquera‐Losada, editors, Agroforestry in Europe: Current status and future prospects. Springer Science + Business Media B.V., Dordrecht. p. 21–42.
63 Merwin, M.L. 1997. The status, opportunities and needs for agroforestry in the United States: A national report. Association for Temperate Agroforestry. Center for Agroforestry, University of Missouri, Columbia, MO. http://www.aftaweb.org/resources1.php?page=34#1
64 Mori, G.O., M.A. Gold, and S. Jose. 2018. Specialty crops in temperate agroforestry systems: Sustainable management, marketing and promotion for the Midwest region of the U.S.A. In: F. Montagnini, editor, Integrating landscapes: Agroforestry for biodiversity conservation and food sovereignty. Advances in agroforestry. Vol. 12. Springer, Dordrecht. p. 331–366. doi:10.1007/978‐3‐319‐69371‐2_14
65 Mosquera‐Losada, M.R., J.J. Santiago‐Freijanes, A. Pisanelli, M. Rois, J. Smith, M. den Herder, G. Moreno, N. Ferreiro‐Domínguez, N. Malignier, N. Lamersdorf, F. Balaguer, A. Pantera, A. Rigueiro‐Rodríguez, J.A. Aldrey, P. Gonzalez‐Hernández, J.L. Fernández‐Lorenzo, R. Romero‐Franco, and P.J. Burgess. 2018. Agroforestry in the European Common Agricultural Policy. Agrofor. Syst. 92(4):1117–1127. doi:10.1007/s10457‐018‐0251‐5
66 Mosquera‐Losada, M.R., and R. Prabhu, editors. 2019. Agroforestry for sustainable agriculture. Burleigh Dodds Science Publishing, Cambridge, UK. doi:10.19103/AS.2018.0041
67 Munsell, J.F., C.J. Bukowski, M.M. Yanez, and J.A. Allen. 2022. Urban food forests and community agroforestry systems. In: H.E. Garrett, S. Jose, and M.A. Gold, editors, North American agroforestry. 3rd ed. Madison, WI: Agronomy Society of America.
68 Munsell, J.F., and J.L. Chamberlain. 2019. Agroforestry for a vibrant future: Connecting people, creating livelihoods, and sustaining places. Agroforest Syst 93(5):1605–1608. doi:10.1007/s10457‐019‐00433‐0
69 Nair, P.K.R. 1989. Classification of agroforestry systems. In: P.K. Nair, editor, Agroforestry systems in the tropics. Kluwer Academic Publishers, Dordrecht, The Netherlands. doi:10.1007/978‐94‐009‐2565‐6_4
70 Nair, P.K.R. 1993. Classification of agroforestry systems In: An introduction to agroforestry. Kluwer Academic Publishers, Dordrecht, The Netherlands. doi:10.1007/978‐94‐011‐1608‐4_3
71 Nair, P.K.R., S.C. Allen, and M.E. Bannister. 2005. Agroforestry today: An analysis of the 750 presentations to the 1st World Congress of Agroforestry, 2004. J. For. 103(8):417–421.
72 Nair, P.K.R. 2007. The coming age of agroforestry. J. Sci. Food Agric. 87:1613–1619. doi:10.1002/jsfa.2897
73 National Research Council. 1993. Soil and water quality: An agenda for agriculture. National Academy Press, Washington, D.C.
74 Nelson, M. 2014. Indigenous Science and Traditional Ecological Knowledge. In: Warrior, R. (Ed.), The World of Indigenous North America. Routledge.
75 Newman, S.M., and A.M. Gordon. 2018. Temperate agroforestry: Key elements, current limits and opportunities for the future. In: Gordon, A.M., S.M. Newman, and B. Coleman (ed.), Temperate agroforestry systems. 2nd Edition. Wallingford, U.K. CABI.
76 Norgaard, K.M. 2014. The politics of fire and the social impacts of fire exclusion on the Klamath. Humboldt J. Soc. Relat. 36:77–101 https://www.jstor.org/stable/humjsocrel.36.77.
77 Ong, C.K., C.R. Black, and J. Wilson, editors. 2015. Tree‐crop interactions: Agroforestry in a changing climate. 2nd ed. CABI, Wallingford, U.K. doi:10.1079/9781780645117.0000
78 OTA (Organic Trade Association). 2018. Maturing U.S. organic sector grows 6.4 percent in 2017. Organic Trade Association’s 2018 Organic Industry Survey. Washington, D.C.: Organic Trade Association. https://ota.com/news/press‐releases/20201
79 Palma, J.H.N., A.R. Graves, R.G.H. Bunce, P.J. Burgess, R. de Filippi, K.J. Keesman, H. van Keulen, F. Liagre, M. Mayus, G. Moreno, Y. Reisner, and F. Herzog. 2007. Modeling environmental benefits of silvoarable agroforestry in Europe. Ecol. Eng. 29:450–462. doi:10.1016/j.ecoleng.2006.09.016
80 Park, H., N. Turner, and E. Higgs. 2018. Exploring the potential of food forestry to assist in ecological restoration in North America and beyond. Restor. Ecol. 26(2):284–293. doi:10.1111/rec.12576
81 Park, H., M. Kramer, J.M. Rhemtulla, and C.C. Konijnendijk. 2019. Urban food systems that involve trees in North America and Europe: A scoping review. Urban Forestry and Urban Greening doi:10.1016/j.ufug.2019.06.003
82 Pent, G.J., J.H. Fike, J.N. Orefice, S.H. Sharrow, D. Brauer, and T.R. Clason. 2022. Silvopasture practices. In: H.E. Garrett, S. Jose, and M.A. Gold, editors, North American agroforestry. 3rd ed. Madison, WI: Agronomy Society of America.
83 Pimentel, D., C. Harvey, P. Resosudarmo, K. Sinclair, D. Kurz, M. McNair, S. Crist, L. Shpritz, L. Fitton, R. Saffouri, and R. Blair. 1995. Environmental and economic costs of soil erosion and conservation benefits. Science 267:1117–1123.
84 Porter, P.A., R.B. Mitchell, and K.J. Moore. 2015. Reducing hypoxia in the Gulf of Mexico: Reimagining a more resilient agricultural landscape in the Mississippi River Watershed. J. Soil Water Conserv. 70(3):63A–68A. doi:10.2489/jswc.70.3.63A
85 Reid, R., and R. Moore. 2018. Agroforestry systems in temperate Australia. Chapter 8. In: Gordon, A.M., S.M. Newman, and B. Coleman, (ed.). 2018. Temperate agroforestry systems. 2nd Edition. CABI. doi:10.1079/9781780644851.0195
86 Rios‐Diaz, M., N. Lovric, M. Lovric, N. Ferreiro‐Dominquez, M.R. Mosquera‐Losada, M. den Herder, A. Graves, J.H.N. Palma, J.A. Paulo, A. Pisanelli, J. Smith, G. Moreno, S. Garcia, A. Varga, A. Pantera, J. Mirck, and P. Burgess. 2018. Farmers’ reasoning behind the update of agroforestry practices: Evidence from multiple case‐studies across Europe. Agrofor. Syst. 92(4):811–828. doi:10.1007/s10457‐017‐0139‐9
87 Rossier, C., and F. Lake. 2014. Indigenous traditional ecological knowledge in agroforestry. Agroforestry Notes #44. USDA National Agroforestry Center, Lincoln, NE. https://www.fs.usda.gov/nac/assets/documents/agroforestrynotes/an44g14.pdf (accessed 5 Aug. 2020).
88 Rule, L.C., C.B. Flora, and S.S. Hodge. 2000. Social dimensions of agroforestry. p. 361–386. In H.E. Garrett, W.J. Rietveld and R.F. Fisher (ed.), North American agroforestry: An integrated science and practice. Agronomy Society of America, Madison, WI.
89 Russell, D., and S. Franzel. 2004. Trees of prosperity: Agroforestry, markets and the African smallholder. Agrofor. Syst. 61:345–355.
90 Schoeneberger, M.M., G. Bentrup, C.F. Francis, and R. Straight. 2006. Creating viable living linkages between farms and communities. In: C. Francis, R. Poincelot, and G. Bird, editors, Developing and extending sustainable agriculture. Haworth Press, Binghamton, NY. p. 225–246.
91 Schulte, L.A.J., Niemi, M.J. Helmers, M. Liebman, J.G. Arbuckle, D.E. James, R.K. Kolka, M.E. O’Neal, M.D. Tomer, J.C. Tyndall, H. Asbjornsen, P. Drobney, J. Neal, G. Van Ryswyk, and C. Witte. 2017. Prairie strips improve biodiversity and the delivery of multiple ecosystem services from corn–soybean croplands. PNAS 114(42):11247–11252. www.pnas.org/cgi/doi/10.1073/pnas.1620229114
92 Schultz, R.C., T.M. Isenhart, J.P. Colletti, W.W. Simpkins, R.P. Udawatta, and P.L. Schultz. 2022. Riparian and upland buffer practices. In: H.E. Garrett, S. Jose, and M.A. Gold, editors, North American agroforestry. 3rd ed. American Society of Agronomy, Madison, WI.
93 Shelton, D.P., R.A. Wilke, T.G. Franti, and S.J. Josiah. 2005. Farmlink‐ promoting conservation one‐to‐one. In: K.N. Brooks and P.F. Folliott, (ed.), Moving agroforestry into the mainstream. The 9th North American Agroforestry Conference Proceedings, June 12‐15, 2005, St. Paul, MN. Dep. of Forest Resources, University of Minnesota, St. Paul, MN. 9 p. http://www.cinram.umn.edu/afta2005/pdf/Josiah.pdf
94 Sinclair, F.L. 1999. A general classification of agroforestry practice. Agrofor. Syst. 46:161–180. doi:10.1023/A:1006278928088
95 Sobels, J., A. Curtis, and S. Lockie. 2001. The role of Landcare group networks in rural Australia: exploring the contribution of social capital. J. Rural Stud. 17(3):265–276. doi:10.1016/S0743‐0167(01)00003‐1
96 Sooby, J. 2003. State of the states 2nd edition: Organic farming systems research at Land Grant Universities 2001 ‐ 2003. Organic Farming Research Foundation, Santa Cruz, CA. http://ofrf.org/publications/pubs/sos2.pdf (accessed 30 Sept. 2007).
97 Taylor, A.H., and C.N. Skinner. 2003. Spatial patterns and controls on historical fire regimes and forest structure in the Klamath Mountains. Ecol. Appl. 13(3):704–719. doi:10.1890/1051‐0761(2003)013[0704:SPACOH]2.0.CO;2
98 Torquebiau, E.F. 2000. A renewed perspective on agroforestry concepts and classification. C.R. Acad. Sci. Paris, Sciences de la vie. Life Sci. 323:1009–1017.
99 Udawatta, R.P., C.J. Gantzer, and S. Jose. 2017. Agroforestry practices and soil ecosystem services. In: M.M. Al‐Kaisi and B. Lowery, editors, Soil health and intensification of agroecosystems. New York: Elsevier, p. 305–333. doi:10.1016/B978‐0‐12‐805317‐1.00014‐2
100 Udawatta, R.P., J.J. Krstansky, G.S. Henderson, and H.E. Garrett. 2002. Agroforestry practices, runoff, and nutrient loss: a paired watershed comparison. J. Environ. Qual. 31:1214–1225.
101 USDA (United States Department of Agriculture). 2015. Twenty‐five years. Inside Agroforestry 23(3). USDA National Agroforestry Center. https://www.fs.usda.gov/nac/assets/documents/insideagroforestry/IA_Vol23Issue3.pdf
102 USDA (United States Department of Agriculture). 2017. Agroforestry: Enhancing resiliency in U.S. agricultural landscapes under changing conditions. In: M.M. Schoeneberger; G. Bentrup; T. Patel‐Weynand (Eds.), Gen. Tech. Report WO‐96. Washington, DC: U.S. Department of Agriculture, Forest Service. doi:10.2737/WO‐GTR‐96
103 USDA (United States Department of Agriculture). 2019. Agroforestry Strategic Framework 2019‐2024. Miscellaneous Publication 1615. Washington, D.C.: USDA. https://www.usda.gov/sites/default/files/documents/usda‐agroforestry‐strategic‐framework.pdf (accessed 12 July 2019).
104 Valdivia, C., M.A. Gold, C. Barbieri, L. Zabek, J. Arbuckle, and C. Flora. 2022. Human and institutional dimensions of agroforestry. In: H.E. Garrett, S. Jose, and M.A. Gold, editors, North American agroforestry. 3rd ed. Agronomy Society of America, Madison, WI.
105 van Noordwijk, M., ed. 2019. Sustainable development through trees on farms: Agroforestry in its fifth decade. Bogor, Indonesia: World Agroforestry (ICRAF) Southeast Asia Regional Program. http://old.worldagroforestry.org/downloads/Publications/PDFS/B19029.pdf
106 Vinyeta, K., F. Lake, and K. Norgaard. 2016. Chapter 3: Vulnerabilities of traditional foods and cultural use species. In The Karuk Tribe, (ed.), Karuk Tribe climate vulnerability assessment (p. 68–138). Karuk Tribe Council, Happy Camp, CA. https://karuktribeclimatechangeprojects.wordpress.com/chapter‐3‐vulnerabilities‐of‐traditional‐foods‐and‐cultural‐use‐species/
107 Wilson, M., S.T. Lovell, and T. Carter. 2018. In: K. Gruley, and K. Keeley, editors, Perennial pathways. Planting tree crops: Designing & installing farm‐scale edible agroforestry. Savanna Institute, Madison, WI. http://www.savannainstitute.org/resources.html.
108 Yang, L., B. Liu, Q. Zhang, Y. Pan, M. Li, and Y. Lu. 2019. Landscape structure alters the abundance and species composition of early‐season aphid populations in wheat fields. Agric. Ecosyst. Environ. 269:167–173. doi:10.1016/j.agee.2018.07.028