数字农科院2.0

Potential of different common (Fagopyrum esculentum Moench) and Tartary (Fagopyrum tataricum (L.) Gaertn.) buckwheat accessions to sustainably manage surrounding weeds

文献类型: 外文期刊

作者: Vieites-Alvarez, Y.;Hussain, Mi;Reigosa, Mj;Kolmanic, A.;Meglic, V;Cepkova, PH.;Zhou, M.;Janovska, D.;Sanchez-Moreiras, Am

作者机构:

关键词: Agroecology;Allelopathy;Buckwheat;Polyphenols;Root exudates;Sustainable weed management

期刊名称: EUROPEAN JOURNAL OF AGRONOMY

ISSN: 1161-0301

年卷期: 2024 年 153 卷

页码:

收录情况: SCIE(2024版)

摘要: Twenty-nine accessions of two buckwheat species (Fagopyrum esculentum Moench (common buckwheat) and Fagopyrum tataricum (L.) Gaertn. (Tartary buckwheat) were evaluated for their allelopathic potential against two resistant weeds, the monocot Lolium rigidum Gaud. and the dicot Portulaca oleracea L. The bulking use of synthetic herbicides and their consequent contamination of the environment and resulting increment of herbicide-resistant weeds, imminently requires a solution to achieve sustainable weed management without chemical inputs. The results obtained in this study suggest that buckwheat accessions can sustainably manage weeds through plant interference as competition or allelopathy. This research showed that accessions differ in their potential for sustainably managing both weeds with F. esculentum accessions being more effective against L. rigidum and F. tataricum accessions against both, monocot and dicot weeds. The chemical profile of buckwheat accessions was evaluated to know the content of polyphenols in common and Tartary buckwheat accessions and to know more about their ability to manage weeds sustainably. Differences in the chemical profile between the two buckwheat species were clear. While common buckwheat accessions showed more orientin, vitexin and hyperoside, Tartary buckwheat accessions had higher amounts of rutin, quercetin and kaempferol. We propose that the screening and selection of accessions with strong polyphenol content and vigorous growth can be a step towards organic farming due to its relation to the weed management.

分类号:

  • 相关文献

[1]AMF colonization affects allelopathic effects of Zea mays L. root exudates and community structure of rhizosphere bacteria. Junqing Ma,Yi Xie,Yisen Yang,Changliang Jing,Xiangwei You,Juan Yang,Chenyu Sun,Shengfeng Qin,Jianhua Chen,Kexin Cao,Jinghua Huang,Yiqiang Li. 2022

[2]Dynamics of soil microbiome and allelochemical interactions: an overview of current knowledge and prospects. Ayomide Emmanuel Fadiji,Adegboyega Adeniji,Adedayo Ayodeji Lanrewaju,Olubukola Oluranti Babalola. 2025

[3]Ecology, invasion history and biodiversity-driven management of the coconut black-headed caterpillar Opisina arenosella in Asia. Hui Lu,Baoqian Lyu,Jihong Tang,Qiqi Wu,Kris A.G. Wyckhuys,Khac Hoang Le,Patchareewan Chongchitmate,Haiyan Qiu,Qikai Zhang. 2023

[4]Legume integration for biological control deserves a firmer scientific base. Wyckhuys, Kris A. G.,Gonzalez-Chang, M.,Lavandero, B.,Gc, Y.,Hadi, Bar. 2023

[5]Contrasting National Plant Protection Needs, Perceptions and Techno-Scientific Capabilities in the Asia-Pacific Region. Gc, Yubak D.,Hadi, B. A. R.,Wyckhuys, K. A. G.. 2022

[6]Island and Mountain Ecosystems as Testbeds for Biological Control in the Anthropocene. Wyckhuys, Kris A. G.,Sanchez Garcia, Francisco J.,Santos, Ana M. C.,Canal, Nelson A.,Furlong, Michael J.,Melo, Maria C.,Dhoj, G. C. Yubak,Pozsgai, Gabor. 2022

[7]Hoverflies provide pollination and biological pest control in greenhouse-grown horticultural crops. Hui Li,Kris A.G. Wyckhuys,Kongming Wu. 2023

[8]Agro-food innovation and sustainability transition: A conceptual synthesis. Xiangping Jia. 2021

[9]Crop Pests And Predators Exhibit I.nconsistent Responses To Surrounding L andscape Composition. Karp, DS, Chaplin-Kramer, R, Meehan, TD, Martin, EA, DeClerck, F, Grab, H, Gratton, C, Hunt, L, Larsen, AE, Martinez-Salinas, A, O'Rourke, ME, Rusch, A, Poveda, K, Jonsson, M, Rosenheim, JA, Schellhorn, NA, Tscharntke, T, Wratten, SD, Zhang, W, Iverson, AL, Adler, LS, Albrecht, M, Alignier, A, Angelella, GM, Anjum, MZ, Avelino, J, Batary, P, Baveco, JM, Bianchi, FJJA, Birkhofer, K, Bohnenblust, EW, Bommarco, R, Brewer, MJ, Caballero-Lopez, B, Carriere, Y, Carvalheiro, LG, Cayuela, L, Centrella, M, Cetkovic, A, Henri, DC, Chabert, A, Costamagna, AC, De la Mora, A, de Kraker, J, Desneux, N, Diehl, E, Diekotter, T, Dormann, CF, Eckberg, JO, Entling, MH, Fiedler, D, Franck, P, van Veen, FJF, Frank, T, Gagic, V, Garratt, MPD, Getachew, A, Gonthier, DJ, Goodell, PB, Graziosi, I, Groves, RL, Gurr, GM, Hajian-Forooshani, Z, Heimpel, GE, Herrmann, JD, Huseth, AS, Inclan, DJ, Ingrao, AJ, Iv, P, Jacot, K, Johnson, GA, Jones, L, Kaiser, M, Kaser, JM, Keasar, T, Kim, TN, Kishinevsky, M, Landis, DA, Lavandero, B, Lavigne, C, Le Ralec, A, Lemessa, D, Letourneau, DK, Liere, H, Lu, YH, Lubin, Y, Luttermoser, T, Maas, B, Mace, K, Madeira, F, Mader, V, Cortesero, AM, Marini, L, Martinez, E, Martinson, HM, Menozzi, P, Mitchell, MGE, Miyashita, T, Molina, GAR, Molina-Montenegro, MA, O'Neal, ME, Opatovsky, I, Ortiz-Martinez, S, Nash, M, Ostman, O, Ouin, A, Pak, D, Paredes, D, Parsa, S, Parry, H, Perez-Alvarez, R, Perovic, DJ, Peterson, JA, Petit, S, Philpott, SM, Plantegenest, M, Plecas, M, Pluess, T, Pons, X, Potts, SG, Pywell, RF, Ragsdale, DW, Rand, TA, Raymond, L, Ricci, B, Sargent, C, Sarthou, JP, Saulais, J, Schackermann, J, Schmidt, NP, Schneider, G, Schuepp, C, Sivakoff, FS, Smith, HG, Whitney, KS, Stutz, S, Szendrei, Z, Takada, MB, Taki, H, Tamburini, G, Thomson, LJ, Tricault, Y, Tsafack, N, Tschumi, M, Valantin-Morison, M, Trinh, MV, van der Werf, W, Vierling, KT, Werling, BP, Wickens, JB, Wickens, VJ, Woodcock, BA, Wyckhuys, K, Xiao, HJ, Yasuda, M, Yoshioka, A, Zou, Y. 2018

[10]Global scientific progress and shortfalls in biological control of the fall armyworm Spodoptera frugiperda. Wyckhuys K.A.G.,Akutse K.S.,Amalin D.M.,Araj S.-E.,Barrera G.,Beltran M.J.B.,Ben Fekih I.,Calatayud P.-A.,Cicero L.,Cokola M.C.,Colmenarez Y.C.,Dessauvages K.,Dubois T.,Durocher-Granger L.,Espinel C.,Fallet P.,Fernández-Triana J.L.,Francis F.,Gómez J.,Haddi K.,Harrison R.D.,Haseeb M.,Iwanicki N.S.A.,Jaber L.R.,Khamis F.M.,Legaspi J.C.,Lomeli-Flores R.J.,Lopes R.B.,Lyu B.,Montoya-Lerma J.,Montecalvo M.P.,Polaszek A.,Nguyen T.D.,Nurkomar I.,O'Hara J.E.,Perier J.D.,Ramírez-Romero R.,Sánchez-García F.J.,Robinson-Baker A.M.,Silveira L.C.,Simeon L.,Solter L.F.,Santos-Amaya O.F.,Talamas E.J.,de Souza Tavares W.,Trabanino R.,Turlings T.C.J.,Valicente F.H.,Vásquez C.,Wang Z.,Wengrat A.P.G.S.,Zang L.-S.,Zhang W.,Zimba K.J.,Wu K.,Elkahky M.,Hadi B.A.R.. 2024

[11]Functional structure of the natural enemy community of the fall armyworm, Spodoptera frugiperda in the Americas. Kris A.G. Wyckhuys,Komivi S. Akutse,Divina M. Amalin,Salah Eddin Araj,Gloria Barrera,Marie Joy B. Beltran,Ibtissem Ben Fekih,Paul André Calatayud,Lizette Cicero,Marcellin C. Cokola,Yelitza C. Colmenarez,Kenza Dessauvages,Thomas Dubois,Léna Durocher-Granger,Carlos Espinel,José L. Fernández-Triana,Frederic Francis,Juliana Gómez,Khalid Haddi,Rhett D. Harrison,Muhammad Haseeb,Natasha S.A. Iwanicki,Lara R. Jaber,Fathiya M. Khamis,Jesusa C. Legaspi,Refugio J. Lomeli-Flores,Rogerio B. Lopes,Baoqian Lyu,James Montoya-Lerma,Tung D. Nguyen,Ihsan Nurkomar,Jermaine D. Perier,Gabor Pozsgai,Ricardo Ramírez-Romero,Annmarie S. Robinson-Baker,Francisco J. Sanchez-Garcia,Luis C. Silveira,Larisner Simeon,Leellen F. Solter,Oscar F. Santos-Amaya,Wagner de Souza Tavares,Rogelio Trabanino,Carlos Vásquez,Zhenying Wang,Ana P.G.S. Wengrat,Lian Sheng Zang,Wei Zhang,Kennedy J. Zimba,Kongming Wu,Maged Elkahky. 2024

[12]Transitioning towards dynamic, nature-based crop defenses: Dynamic, nature-based crop defenses: KAG Wyckhuys, X-W Wang and M Elkahky. Kris A.G. Wyckhuys,Xiao Wei Wang,Maged Elkahky. 2024

[13]Orchard systems offer low-hanging fruit for low-carbon, biodiversity-friendly farming. Wyckhuys, Kris A. G.,Abram, Paul K.,Barrios, Edmundo,Cancino, Jorge,Collatz, Jana,Fancelli, Marilene,Klein, Alexandra-Maria,Lindell, Catherine A.,Osterman, Julia,Pinto, Maria,Tang, Fiona H. M.,Tena, Alejandro,Elkahky, Maged. 2025

[14]Context-dependent response of crop pests to landscape composition. Yang, Long,Pan, Yunfei,Wyckhuys, Kris A. G.,Li, Minlong,Wang, Kaitao,Liu, Bing,Liu, Yangtian,Jia, Shuangshuang,Li, Qian,Li, Yan,Desneux, Nicolas,Lu, Yanhui. 2025

[15]Human versus machine: Can generative AI anticipate insect biological control outcomes?. Wyckhuys, Kris A. G.,Akutse, Komivi S.,Amalin, Divina M.,Araj, Salah-Eddin,Beltran, Marie Joy B.,Ben Fekih, Ibtissem,Calatayud, Paul-Andre,Cicero, Lizette,Cokola, Marcellin C.,Colmenarezm, Yelitza C.,Dessauvagesj, Kenza,Dubois, Thomas,Durocher-Grangern, Lena,Fernandez-Triana, Jose L.,Francis, Frederic,Haddi, Khalid,Harrison, Rhett D.,Haseeb, Muhammad,Iwanicki, Natasha S. A.,Jaber, Lara R.,Khamis, Fathiya M.,Legaspi, Jesusa C.,Lomeli-Flores, Refugio J.,Lyu, Baoqian,Montoya-Lerma, James,Nurkomar, Ihsan,O'hara, James E.,Perier, Jermaine D.,Ramirez-Romero, Ricardo,Sanchez-Garcia, Francisco J.,Tavares, Wagner De Souza,Robinson-Baker, Ann Marie S.,Silveira, Luis C. P.,Simeon, Larisner,Solter, Leellen F.,Santos-Amaya, Oscar F.,Trabanino, Rogelio,Valicente, Fernando H.,Vasquez, Carlos,Wang, Zhenying,Zang, Lian-Sheng,Zhang, Wei,Zimba, Kennedy J.,Wu, Kongming,Yubak, D. Gc. 2025

[16]Use of functional plants to enhance pest biological control in farming landscapes: progress and prospects. Dong, Zhaoke,Yang, Quanfeng,Wyckhuys, Kris A. G.,Ouyang, Fang,Gurr, Geoff M.,Han, Peng,Gonzalez-Chang, Mauricio,van der Werf, Wopke,Men, Xingyuan,Ge, Feng. 2026

[17]Biological control mitigates spread of vector-borne plant pathogens. Kris A.G. Wyckhuys,Yi Zou,David W. Crowder,Evie Adriani,Annabelle B. Albaytar,Marie Joy B. Beltran,Ibtissem Ben Fekih,Carolina Camargo-Gil,Filomena C. Filomena,Lizette Cicero,Yelitza C. Colmenarez,Claudia M. Cuellar-Palacios,Thomas Dubois,Sanford D. Eigenbrode,Frederic Francis,Alberto Fereres,Khalid Haddi,Fathiya M. Khamis,Cécile Le Lann,Anne Le Ralec,Lorena Lopez,Baoqian Lyu,James Montoya-Lerma,Karen Muñoz-Cardenas,Ihsan Nurkomar,Paola A. Palmeros-Suarez,Jermaine D. Perier,Ricardo Ramírez-Romero,Sacha Roudine,Marcio M. Sanches,Francisco J. Sanchez-Garcia,Freddiewebb B. Signabon,Joan van Baaren,Carlos Vásquez,Pengjun Xu,Yanhui Lu,Maged Elkahky. 2025

[18]Assessing the decline of ladybird populations: a comprehensive analysis of multifactorial threats and evidence-based conservation strategies. Hyder, Moazam,Ullah, Farman,Hussain, Mubasher,Ghafar, Muhammad Adeel,Ul Haq, Inzamam,Bukero, Aslam,Akhtar, Muhammad Rehan,Lodhi, Abdul Mubeen,Ahmed, Zubair,Ali, Faraz,Zhang, Lisheng,Hou, Youming. 2025

[19]Gene Modules Co-Regulated With Biosynthetic G.ene Clusters For Allelopathy B etween Rice And Barnyardgrass. Sultana, Most Humaira,Fu, Fei,Qiu, Jie,Wang, Yingying,Wu, Dongya,Liu, Fangjie,Alamin, Md,Wu, Sanling,Ye, Chuyu,Alamin, Md,Fan, Longjiang,Fan, Longjiang,Wang, Weidi,Qiu, Jie,Wu, Dongya,Wang, Weidi,Ye, Chuyu,Liu, Fangjie,Jia, Lei,Chen, Hongyu,Sultana, Most Humaira,Mao, Lingfeng,Zhu, Qian:Hao,Chen, Hongyu,Jia, Lei,Wang, Yingying,Fu, Fei,Mao, Lingfeng. 2019

[20]Assessment of allelopathic effects of residues of Flaveria bidentis (L.) Kuntze on wheat seedlings. Guo, Jian-Ying,Wan, Fang-Hao,Zhang, Feng-Juan,Chen, Feng-xin,Guo, Ai-Ying. 2012

作者其他论文 更多>>