Nitrogen management to reduce yield-scaled global warming potential in rice

文献类型: 外文期刊

第一作者: Liang, X. Q.

作者: Liang, X. Q.;Ye, Y. S.;Ji, Y. J.;Tian, G. M.;Li, H.;Wang, S. X.;van Kessel, C.;Linquist, B. A.

作者机构:

关键词: CH4 and N2O;Global warming potential;Manure;Rice;Urea;Yield-scaled emissions

期刊名称:FIELD CROPS RESEARCH ( 影响因子:5.224; 五年影响因子:6.19 )

ISSN: 0378-4290

年卷期: 2013 年 146 卷

页码:

收录情况: SCI

摘要: Fertilizer N is usually required to achieve optimal yields but when applied in excess there is increased risk of pollution, including higher greenhouse gas (GHG) emissions. Thus, optimal N management must consider both yields and environmental effects. Yield-scaled GWP (Global Warming Potential), which is the GWP (in CO2 equivalents) per Mg of grain yield, is a useful metric for evaluating management options where the goal is to achieve both high yields with minimal environmental burden. A 6-year field study was conducted to test the hypothesis that the lowest yield-scaled GHG emissions for rice occur when N is applied at optimal N rates for maximum yields, independent of the source of N applied. We tested this hypothesis for organic (manure) and inorganic (urea) N sources. The N rates and sources in each growing season were: 0, 90, 180 and 270 kg N ha(-1) applied as either urea alone or pig manure combined with urea (where N was added as manure and supplied 60% of the total N rate). The N rates to achieve maximum yields (90 to 180 kg N ha(-1) depending on year) were similar for both N sources. Seasonal CH4 and N2O emissions varied significantly between years but the magnitude of emissions was determined largely by N source. Across N rates, application of manure increased GWP by almost 60% relative to the urea treatments due to higher CH4 and N2O emissions. When urea was used as the sole N source, yield-scaled GWP (87 kg CO2 (eq). Mg-1 grain) was lowest at optimal N rates for maximum yields. In contrast, when manure was used, yield-scaled GWP was higher than for urea and increased with increasing manure-N rates (from 104 to 171 kg CO2 (eq). Mg-1 grain). The lowest yield-scaled GWP for manure was when no manure was applied - despite the low yields. Thus, when manure is used as an N source in flooded rice systems, over application should be avoided. (C) 2013 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Nitrification and acidification from urea application in red soil (Ferralic Cambisol) after different long-term fertilization treatments. Cai, Zejiang,Wang, Boren,Xu, Minggang,Zhang, Huimin,Zhang, Lu,Cai, Zejiang,Wang, Boren,Xu, Minggang,Zhang, Huimin,Zhang, Lu,Gao, Suduan. 2014

[2]Long-term effects of organic amendments on the rice yields for double rice cropping systems in subtropical China. Bi, Lidong,Zhang, Bin,Zhang, Jiguang,Liang, Yin,Liu, Guangrong,Li, Zuzhang,Liu, Yiren,Ye, Chuan,Yu, Xichu,Lai, Tao,Yin, Jianmin.

[3]Integrative impacts of soil tillage on crop yield, N use efficiency and greenhouse gas emission in wheat-corn cropping system. Latifmanesh, H.,Zheng, C. Y.,Song, Z. W.,Deng, A. X.,Zhang, B. M.,Zhang, W. J.,Huang, J. L.,Li, L.,Chen, Z. J.,Zheng, Y. T.. 2016

[4]Greenhouse gas emissions, soil quality, and crop productivity from a mono-rice cultivation system as influenced by fallow season straw management. Liu, Wei,Hussain, Saddam,Wu, Lishu,Qin, Ziguo,Li, Xiaokun,Lu, Jianwei,Khan, Fahad,Geng, Mingjian,Cao, Weidong.

[5]Nitrous Oxide and Methane Fluxes During the Maize Season Under Optimized Management in Intensive Farming Systems of the North China Plain. Shi Yue-Feng,Wu Wen-Liang,Meng Fan-Qiao,Zheng Liang,Wang Da-Peng,Ye Hui,Shi Yue-Feng,Wang Da-Peng,Ding Guang-Wei.

[6]Differences in CH4 and N2O emissions between rice nurseries in Chinese major rice cropping areas. Zhang, Yi,Jiang, Yu,Zhang, Mingqian,Zhang, Weijian,Li, Zhijie,Zhang, Xin,Deng, Aixing,Zhang, Weijian,Feng, Jinfei,Chen, Jin. 2014

[7]Interactive effects of straw incorporation and tillage on crop yield and greenhouse gas emissions in double rice cropping system. Zhang, Jun,Lamine, Samoura Mohamed,Jiang, Yu,Afreh, Daniel,Qian, Haoyu,Feng, Xiaomin,Zheng, Chengyan,Deng, Aixing,Song, Zhenwei,Zhang, Weijian,Hang, Xiaoning.

[8]Enhancement of farmland greenhouse gas emissions from leakage of stored CO2: Simulation of leaked CO2 from CCS. Zhang, Xueyan,Ma, Xin,Li, Yue,Ma, Xin,Li, Yue,Wu, Yang.

[9]Nitrous oxide and methane emissions from a Chinese wheat-rice cropping system under different tillage practices during the wheat-growing season. Zhang, Yuefang,Sheng, Jing,Wang, Zichen,Chen, Liugen,Zheng, Jianchu.

[10]Integrated management practices significantly affect N2O emissions and wheat-maize production at field scale in the North China Plain. Shi, Yuefeng,Wu, Wenliang,Meng, Fanqiao,Zheng, Liang,Zhang, Zhihua,Wang, Dapeng.

[11]Liquid-Phase Synthesis of Cyanuric Acid from Urea. Li, Chun-Jiu,She, Dong-Mei,Yu, Hai-Lin,Huang, Qi-Liang,Li, Fen-Ming. 2010

[12]Denitrification losses and N2O emissions from nitrogen fertilizer applied to a vegetable field. Cao, B,He, FY,Xu, QM,Yin, B,Cai, GX. 2006

[13]EFFECT OF TIMING AND RATIO OF UREA FERTILIZATION ON N-15 RECOVERY AND YIELD OF COTTON. Liu, A. Z.,Liu, J. R.,Zheng, C. S.,Sun, M.,Wang, G. P.,Li, Y. B.,Zhao, X. H.,Dong, H. L.. 2017

[14]Relative effects of ammonia and nitrite on the germination and early growth of aerobic rice. Haden, Van R.,Hobbs, Peter,Duxbury, John M.,Xiang, Jing,Peng, Shaobing,Bouman, Bas A. M.,Visperas, Romeo,Ketterings, Quirine M..

[15]Fate of labeled urea-N-15 as basal and topdressing applications in an irrigated wheat-maize rotation system in North China plain: II summer maize. Yang, Yunma,Wang, Xiaobin,Dai, Kuai,Zhao, Quansheng,Zhang, Xiaoming,Zhang, Dingchen,Feng, Zonghui,Wu, Xueping,Cai, Dianxiong,Yang, Yunma,Wang, Xiaobin,Dai, Kuai,Zhao, Quansheng,Zhang, Xiaoming,Zhang, Dingchen,Feng, Zonghui,Wu, Xueping,Cai, Dianxiong,Yang, Yunma,Jia, Shulong,Meng, Chunxiang,Sun, Yanming,Grant, Cynthia.

[16]Effect of urea supplementation on performance and safety indiets of Dorper crossbred sheep. Wang, B.,Ma, T.,Jiang, C. -G.,Diao, Q. -Y.,Deng, K. -D..

[17]Phosphorus amounts and distribution in a Saskatchewan soil after five years of swine and cattle manure application. Qian, P,Schoenau, JJ,Wu, T,Mooleki, R. 2004

[18]Determination of Urea in Milk and Milk Products by In-line Dialysis-Flow Injection-Spectrophotometry. Zhao Li-Jing,Yan Jie,Ma Dong-Sheng,Xiao Jing-Ze,Zhao Ping,Fan Zhi-Ying. 2011

[19]Characteristics and Driven Factors of Nitrous Oxide and Carbon Dioxide Emissions in Soil Irrigated with Treated Wastewater. Xue Yan-dong,Yang Pei-ling,Li Yun-kai,Ren Shu-mei,Su Yan-ping,Niu Yong-tao,Luo Yuan-pei. 2012

[20]Nitrogen release dynamics and transformation of slow release fertiliser products and their effects on tea yield and quality. Han, Wen-Yan,Ma, Li-Feng,Shi, Yuan-Zhi,Ruan, Jian-Yun,Kemmitt, Sarah J.. 2008

作者其他论文 更多>>
  • Low-depth Raw Reads of Nanopore Sequencing Enables Rapid and Accurate Bacterial Identification

    作者:Gao, W.;Hong, W.;Wu, Y.;Liu, Y.;Fan, X.;Wang, H.;Wang, M.;Yang, B.;Wang, T.;Li, H.;Liu, S.;Li, J.

    关键词:assembly; reads; Nanopore sequencing; Illumina sequencing; bacterial identification

  • Global consortium for the classification of fungi and fungus-like taxa

    作者:Hyde, K. D.;Dai, D. Q.;Du, T. Y.;Li, Q.;Liu, X. F.;Tibpromma, S.;Wijayawardene, N. N.;Hyde, K. D.;Absalan, S.;Afshari, N.;Amuhenage, T. B.;Apurillo, C. C. S.;Armand, A.;Asghari, R.;Bera, I;Bhunjun, C. S.;Boonmee, S.;Bundhun, D.;Chaharmiri-Dokhaharani, S.;Chen, C.;Chethana, K. W. T.;Du, T. Y.;Gajanayake, A. J.;Gentekaki, E.;Gomdola, D.;Gomes de Farias, A. R.;Gunarathne, A.;He, S.;Huanraluek, N.;Hurdeal, V. G.;Jayawardena, R. S.;Karimi, O.;Khyaju, S.;Lestari, A. S.;Li, C. J. Y.;Li, H.;Li, L.;Li, Y. X.;Liao, C. F.;Linn, M. M.;Lu, L.;Luangharn, T.;Luo, L.;Ma, J.;Madagammana, A. D.;Mapook, A.;Marasinghe, D. S.;Meng, Q. F.;Mukhopadyay, S.;Noorabadi, M. T.;Norphanphoun, C.;Pem, D.;Perera, R. H.;Phonemany, M.;Phukhamsakda, C.;Phutthacharoen, K.;Rathnayaka, A. R.;Samarakoon, B. C.;Seifollahi, E.;Su, H. L.;Sun, Y. R.;Sysouphanthong, P.;Tan, T. H.;Tang, X.;Tavakol, N. M.;Thiyagaraja, V;Thongklang, N.;Walker, A.;Wannasawang, N.;Wijesinghe, S. N.;Wu, N.;Xiong, Y. R.;Xu, R. F.;Xu, R. J.;Yang, H. D.;Yang, J.;Yang, Y. H.;Yasanthika, E.;Yu, F. M.;Zeng, M.;Zhang, F.;Zhang, J. Y.;Zin, H. H.;Hyde, K. D.;Amuhenage, T. B.;Apurillo, C. C. S.;Armand, A.;Asghari, R.;Bhunjun, C. S.;Boonmee, S.;Bundhun, D.;Chen, C.;Chethana, K. W. T.;Gajanayake, A. J.;Gentekaki, E.;Gomdola, D.;Gunarathne, A.;He, S.;Hurdeal, V. G.;Jayawardena, R. S.;Karimi, O.;Khyaju, S.;Lestari, A. S.;Li, C. J. Y.;Li, H.;Li, L.;Li, Y. X.;Liao, C. F.;Linn, M. M.;Liu, X. F.;Luo, L.;Ma, J.;Madagammana, A. D.;Meng, Q. F.;Mukhopadyay, S.;Pem, D.;Phonemany, M.;Phutthacharoen, K.;Samarakoon, B. C.;Su, H. L.;Sun, Y. R.;Tang, X.;Thongklang, N.;Walker, A.;Wu, N.;Xiong, Y. R.;Xu, R. F.;Xu, R. J.;Yang, H. D.;Yang, Y. H.;Yasanthika, E.;Yu, F. M.;Zeng, M.;Zhang, F.;Zhang, J. Y.;Zin, H. H.;Abdel-Wahab, M. A.;Abdollahzadeh, J.;Abeywickrama, P. D.;Yan, J. Y.;Zhang, W.;Absalan, S.;Afshari, N.;de Silva, N., I;Lumyong, S.;Promputtha, I;Tennakoon, D. S.;Ainsworth, A. M.;Kirk, P. M.;Liimatainen, K.;Akulov, O. Y.;Aleoshin, V. V.;Mikhailov, K., V;Aleoshin, V. V.;Mikhailov, K., V;Al-Sadi, A. M.;Thamodini, G. K.;Alvarado, P.;Alves, A.;Amalfi, M.;De Kesel, A.;Ertz, D.;Haelewaters, D.;Amalfi, M.;Ertz, D.;Amira, Y.;Anderson, J. L.;Antonin, V;Aouali, S.;Aptroot, A.;Apurillo, C. C. S.;Araujo, J. P. M.;Ariyawansa, H. A.;Arumugam, E.;Gunaseelan, S.;Kaliyaperumal, M.;Kezo, K.;Murugadoss, R.;Assis, D. M. A.;Barbosa, R. N.;da Silva, D. K. A.;da Silva, G. A.;da Silva, R. M. F.;da Silva Santos, A. C.;de Oliveira, N. T.;Diniz, A. G.;Gibertoni, T. B.;Machado, A. R.;Malosso, E.;Meiras-Ottoni, A.;Melo, R. F. R.;Mendes-Alvarenga, R. L.;Santiago, A. L. C. M. A.;Souza-Motta, C. M.;Tiago, P., V;Vieira, L. C.;Atienza, V;Garrido-Benavent, I;Avasthi, S.;Azevedo, E.;Caeiro, M. F.;Azevedo, E.;Caeiro, M. F.;Bahkali, A. H.;Bhat, D. J.;Jones, E. B. G.;Bakhshi, M.;Zare, R.;Banihashemi, Z.;Bao, D. F.;Luo, Z. L.;Shen, H. W.;Baral, H. O.;Barata, M.;Barata, M.;Barbosa, F. R.;Barreto, R. W.;Thines, M.;Thines, M.;Thines, M.;Belamesiatseva, D. B.;Shabashova, T. G.;Bennett Reuel, M.;dela Cruz, T. E. E.;Bennett Reuel, M.;Bezerra, J. D. P.;Bezerra, J. D. P.;Bezerra, J. L.;Bhat, D. J.;Bianchinotti, M., V;Blaszkowski, J.;Boekhout, T.;Tedersoo, L.;Bonito, G.;Boonyuen, N.;Luangsa-ard, J. J.;Bregant, C.;Linaldeddu, B. T.;Buchanan, P.;Johnston, P. R.;McKenzie, E. H. C.;Burgaud, G.;Jany, J. L.;Burgess, T.;Buyck, B.;Cabarroi-Hernandez, M.;Castro-Jauregui, O.;Cortes-Perez, A.;Guzman-Davalos, L.;Ramirez-Cruz, V;Caceres, M. E. S.;Zhang, J. F.;Cai, L.;Raza, M.;Wei, X. L.;Cai, M. F.;Calabon, M. S.;Calaca, F. J. S.;Calaca, F. J. S.;Callalli, M.;Callalli, M.;Callalli, M.;Camara, M. P. S.;Cano-Lira, J. F.;Cantillo, T.;Cao, B.;He, M. Q.;Liu, F.;Liu, S. L.;Wang, K.;Zhao, R. L.;Zhou, L. W.;Carlavilla, J. R.;Carvalho, A.;Castaneda-Ruiz, R. F.;Castlebury, L.;Catania, M. D., V;Cavalcanti, L. H.;Cazabonne, J.;Cazabonne, J.;Cedeno-Sanchez, M. L.;Chaiwan, N.;Chakraborty, N.;Chaverri, P.;Chaverri, P.;Cheewangkoon, R.;Samarakoon, M. C.;Thiyagaraja, V;Chen, C. Y.;Chen, K. H.;Chen, Q.;Chen, W. H.;Chen, Y. P.;Dissanayake, A. J.;Li, W. L.;Liu, J. K.;Maharachchikumbura, S. S. N.;Tian, Q.;Tian, W. H.;Wu, N.;Yu, X. D.;Yu, Y. X.;Zhang, S. N.;Coleine, C.;Li, C. J. Y.;Selbmann, L.;Conde, T. O.;Corazon-Guivin, M. A.;Corazon-Guivin, M. A.;Costa-Rezende, D. H.;Courtecuisse, R.;Crouch, J. A.;Crous, P. W.;Groenewald, J. Z.;Groenewald, M.;Herandez-Restrepo, M.;Houbraken, J.;Sandoval-Denis, M.;Cui, B. K.;Dai, Y. C.;He, S. H.;Li, Y.;Liu, S.;Liu, Z. B.;Song, C. G.;Sun, Y. F.;Wang, C. G.;Xu, T. M.;Yuan, Y.;Zhang, Q. Y.;Zhang, Y.;Zhao, H.;Zhou, M.;Cui, Y. Y.;Ge, Z-W;He, S.;Li, Y. C.;Luo, L.;Su, H. L.;Wang, X. Y.;Worthy, F. R.;Xu, R. F.;Xu, R. J.;Cui, Y. Y.;Li, Y. C.;Wang, X. Y.;Worthy, F. R.;Wu, G.;da Silva, I. R.;Anderson, J. L.;Fernandes, I;Fryar, S. C.;Damm, U.;Darmostuk, V;Flakus, A.;Janik, P.;Rodriguez-Flakus, P.;Ronikier, A.;Zoha, Daroodi;Das, K.;Das, K.;Davoodian, N.;Davydov, E. A.;Dayarathne, M. C.;Decock, C.;Blondelle, A.;de Groot, M. D.;De Lange, R.;Haelewaters, D.;Santamaria, B.;Schoutteten, N.;Sulistyo, B.;Van Caenegem, W.;de Groot, M. D.;Zamora, J. C.;Karakehian, J. M.;Delgado, G.;Denchev, C. M.;Denchev, T. T.;de Silva, N., I;Tennakoon, D. S.;de Souza, F. A.;Dentinger, B.;Devadatha, B.;Devadatha, B.;Dianese, J. C.;Dima, B.;Dissanayake, L. S.;Dogan, H. H.;Chen, C.;Doilom, M.;Dong, W.;Dong, Z. Y.;Li, H.;Li, Y. X.;Liao, C. F.;Luo, M.;Manawasinghe, I. S.;Xiong, Y. R.;Xu, B.;Yang, Y. H.;Zhang, Y. X.;Dolatabadi, S.;Ma, J.;Nanayakkara, C. M.;Dos Santos, L. A.;Alves-Silva, G.;Drechsler-Santos, E. R.;Dubey, M. K.;Dutta, A. K.;Egidi, E.;Elliott, T. F.;Elshahed, M. S.;Youssef, N. H.;Erdogdu, M.;Etayo, J.;Evans, H. C.;Fan, X. L.;Fan, Y. G.;Fedosova, A. G.;Zhurbenko, M. P.;Fell, J.;Fernandes, I;Fernandes, I;Firmino, A. L.;Fiuza, P. O.;Xu, R.;Fragoso de Souza, C. A.;Frisvad, J. C.;Fryar, S. C.;Gabaldon, T.;Torruella, G.;Gabaldon, T.;Torruella, G.;Gabaldon, T.;Gabaldon, T.;Gannibal, P. B.;Gannibal, P. B.;Garcia, D.;Gene, D. J.;Garcia, D.;Gene, D. J.;Garcia-Sandoval, S. R.;Garcia-Sandoval, S. R.;Senanayake, I. C.;Garzoli, L.;Gautam, A. K.;Wu, H. X.;Ghobad-Nejhad, M.;Giachini, A. J.;Goes-Neto, A.;Galindo, L. J.;Gorjon, S. P.;Goto, B. T.;Granados-Montero, M. M.;Granados-Montero, M. M.;Griffith, G. W.;Grossart, H. P.;Grossart, H. P.;Gueidan, C.;Baschien, C.;Yurkov, A.;Gusmao, L. F. P.;Gutierrez, A. C.;Chen, J.;Haelewaters, D.;Haelewaters, D.;Halling, R.;Halling, R.;Han, Y. F.;Hapuarachchi, K. K.;Zhao, C. L.;Harder, C. B.;Harrington, T. C.;Hattori, T.;Wu, W. P.;Healy, R.;Heredia, G.;Hodge, K. T.;Iturriaga, T.;Holgado-Rojas, M.;Holgado-Rojas, M.;Holgado-Rojas, M.;Hongsanan, S.;Hongsanan, S.;Horak, E.;Horak, E.;Hosoya, T.;Takamatsu, S.;Huang, S. K.;Hur, J. S.;Hustad, V. P.;Iotti, M.;Leonardi, M.;Rossi, W.;Jafar, E.;Xu, R.;Jayalal, R. G. U.;Jayasiri, S. C.;Jayawardena, R. S.;Jeewon, R.;Jeewon, R.;Jin, J.;Zafari, D.;Jones, E. B. G.;Zhang, H.;Justo, A.;Kaishian, P.;Kakishima, M.;Piepenbring, M.;Kang, G. P.;Tan, T. H.;Kang, G. P.;Tan, T. H.;Kang, J. C.;Karpov, S. A.;Karunarathna, S. C.;Kaufmann, M.;Kemler, M.;Kirchmair, M.;Neuhauser, S.;Peintner, U.;Zucconi, L.;Kitaura, M. J.;Klawonn, I;Kolarik, M.;Kong, A.;Kuhar, F.;Kukwa, M.;Kumar, S.;Kusan, I;Matocec, N.;Mesic, A.;Posta, A.;Tkalcec, Z.;Lado, C.;Larsson, K. H.;Larsson, K. H.;Latha, K. P. D.;Leontyev, D. L.;Leontyev, D. L.;Lestari, A. S.;Li, D. W.;Li, H. Y.;Li, L.;Lu, Y. Z.;Ma, J.;Zhang, J. Y.;Li, Q. R.;Wurzbacher, C.;Xiao, Y. P.;Lee, H. B.;Wijayawardene, N. N.;Lim, Y. W.;Lim, Y. W.;Lin, C. G.;Linde, C. C.;Liu, N. G.;Liu, N. G.;Liu, X. Y.;Liu, X. Z.;Wisitrassameewong, K.;Lumbsch, H. T.;Lumyong, S.;Lumyong, S.;White, J. F.;Zeng, N. K.;Madrid, H.;Magurno, F.;Magyar, D.;Mahadevan, N.;Mahadevan, N.;Maharachchikumbura, S. S. N.;Maimaiti, Y.;Raza, M.;Manamgoda, D. S.;Udayanga, D.;Wartchow, F.;Mardones, M.;Cedeno-Sanchez, M. L.;Marin-Felix, Y.;Stadler, M.;Cedeno-Sanchez, M. L.;Marin-Felix, Y.;Stadler, M.;Marquez, R.;Masigol, H.;May, T. W.;Yuan, H. S.;Mendieta, S.;Meng, Q. F.;Menkis, A.;Menolli, N., Jr.;Nascimento, C. C.;Silva-Filho, A. G. S.;Meza Calvo, J. G.;Miller, S. L.;Moncada, B.;Moncada, B.;Moncalvo, J. M.;Moncalvo, J. M.;Monteiro, J. S.;Monteiro, J. S.;Monteiro, M.;Mora-Montes, H. M.;Moreau, P. A.;Mueller, G. M.;Nagy, L. G.;Najafiniya, M.;Nascimento, C. C.;Nei, Y.;Neves, M. A.;Niego, A. G. T.;Nilsson, R. H.;Niskanen, T.;Niveiro, N.;Noordeloos, M. E.;Noordeloos, M. E.;Nunez Otano, N. B.;O'Donnell, R. P.;Oehl, F.;Olariaga, I;Orlando, O. P.;Pang, K. L.;Pang, K. L.;Papp, V;Pawlowska, J.;Pereira, O. L.;Perera, R. H.;Perera, R. H.;Perez-Moreno, J.;Perez-Ortega, S.;Peter, G.;Phillips, A. J. L.;Jeronimo, G. H.;Jesus, A. L.;Pires-Zottarelli, C. L. A.;Poinar, G.;Prieto, M.;Quandt, C. A.;Radek, R.;Rahnama, K.;Raj, K. N. A.;Rajeshkumar, K. C.;Sruthi, O. P.;Rama, T.;Rama, T.;Rambold, G.;Rasconi, S.;Ren, G. C.;Ren, G. C.;Robledo, G. L.;Flakus, A.;Rodriguez-Flakus, P.;Ryberg, M.;Ryvarden, L. R.;Salvador-Montoya, C. A.;Samant, B.;Sanchez-Castro, I;Sanchez-Garcia, M.;Sarma, V. V.;Savchenko, A.;Savchenko, K.;Saxena, R. K.;Scholler, M.;Selbmann, L.;Selcuk, F.;Senanayake, I. C.;Shen, Y. M.;Simmons, D. R.;Singh, R.;Sir, E. B.;Yu, Q.;Stemler, J.;Stemler, J.;Stemler, J.;Stemler, J.;Stephenson, S. L.;Strassert, J. F. H.;Su, L.;Su, L.;Suetrong, S.;Norphanphoun, C.;Sun, Y. R.;Wang, Y.;Zeng, X. Y.;Svantesson, S.;Svantesson, S.;Takamatsu, S.;Tanaka, K.;Tang, A. M. C.;Tang, X.;Wei, D. P.;Tanney, J. B.;Taylor, J. E.;Taylor, P. W. J.;Tedersoo, L.;Zhang, F.;Zhang, J. F.;Thiyagaraja, V;Wanasinghe, D. N.;Tibell, L.;Tibell, S.;Tomsovsky, M.;Toome-Heller, M.;Yakovchenko, L.;Yang, H. D.;Yang, Z. L.;Yu, F. M.;Zeng, M.;Zhao, Q.;Tsurykau, A.;Tsurykau, A.;Untereiner, W. A.;Uzunov, B. A.;Valle, L. G.;Van den Wyngaert, S.;Van Vooren, N.;Velez, P.;Verma, R. K.;Vieira, W. A. S.;Vizzini, A.;Walker, A. K.;Yapa, N.;Joshi, Y.;Wang, S. X.;Wijesundara, D. S. A.;Xu, L. J.;Yu, Z. F.

    关键词:classification; nomenclature; scientific criticism; taxonomy

  • Ethephon Stimulation on Trunk Leads to Leaf Physiological Changes in Rubber Tree Seedlings

    作者:Li, H.;Chen, H.;Kang, X.;Liu, C.;Huang, J.

    关键词:Hevea brasiliensis Muell; Arg; Enzymes activity; Photosynthesis; Starch; Sucrose

  • Multimodal deep learning methods enhance genomic prediction of wheat breeding

    作者:Montesinos-Lopez, Abelardo;Rivera, Carolina;Pinto, Francisco;Pinera, Francisco;Gonzalez, David;Reynolds, Mathew;Crossa, Jose;Perez-Rodriguez, Paulino;Crossa, Jose;Li, H.;Li, H.;Montesinos-Lopez, Osval A.

    关键词:conventional genomic prediction method; novel deep learning method; genomic prediction accuracy (GP accuracy)

  • Development of ruminating behavior in Holstein calves between birth and 30 days of age

    作者:Wang, S.;Diao, Q. Y.;Hu, F. M.;Bi, Y. L.;Piao, M. Y.;Tu, Y.;Wang, S.;Diao, Q. Y.;Hu, F. M.;Bi, Y. L.;Piao, M. Y.;Jiang, L. S.;Tu, Y.;Sun, F.;Li, H.

    关键词:ruminating behavior; first rumination; performance; behavior of calves

  • The Mechanisms of Pod Zone Nitrogen Application on Peanut Pod Yield

    作者:Hou, L.;Lin, R. X.;Wang, X. J.;Zhao, C. Z.;Zhu, X. J.;Li, C. S.;Li, G. H.;Hou, L.;Lin, R. X.;Wang, X. J.;Li, H.;Zhu, X. J.

    关键词:Arachis hypogaea; peanut; nitrogen application; pod zone; pod yield; molecular mechanism

  • Large-scale genome investigations reveal insights into domestication of cultivated mushrooms

    作者:Fu, Y. P.;Dai, Y. T.;Sun, L.;Li, C. T.;Jia, P. S.;Zhang, Z. W.;Li, Y.;Yuan, X. H.;Xiao, S. J.;Li, Z. H.;Yu, H. L.;Yang, R. H.;Tan, Q.;Bao, D. P.;Deng, Y. J.;Wang, S. X.;Wang, Y. F.;Tian, F. H.;Qi, L. L.;Shu, L. L.;Jia, P. S.;Chen, L. C.;Chen, M. Y.;Hu, Q. X.;Tan, H.;Song, T. T.;Zhang, Z. W.;Bonito, G.;Bonito, G.;Zervakis, G., I;Chethana, K. W. T.;Hyde, K. D.

    关键词:database; domestication; genome; multi-omics; mushroom