共 34 条
- [11] Bai E, Boutton T W, Liu F, Et al., Spatial variation of soil δ<sup>13</sup>C and its relation to carbon input and soil texture in a subtropical lowland woodland, Soil Biology and Biochemistry, 44, 1, pp. 102-112, (2012)
- [12] Fan K K, Delgado-Baquerizo M, Guo X, Et al., Suppressed N fixation and diazotrophs after four decades of fertilization, Microbiome, 7, 1, (2019)
- [13] Fan K K, Weisenhorn P, Gilbert J A, Et al., Soil pH correlates with the co-occurrence and assemblage process of diazotrophic communities in rhizosphere and bulk soils of wheat fields, Soil Biology and Biochemistry, 121, pp. 185-192, (2018)
- [14] Fierer N, Bradford M A, Jackson R B, Et al., Toward an ecological classification of soil bacteria, Ecology, 88, 6, pp. 1354-1364, (2007)
- [15] Falkowski P, Scholes R J, Boyle E, Et al., The global carbon cycle: a test of our knowledge of earth as a system, Science, 290, 5490, pp. 291-296, (2000)
- [16] Guillaume T, Muhammad D, Kuzyakov Y., Losses of soil carbon by converting tropical forest to plantations: erosion and decomposition estimated by δ<sup>13</sup> C, Global Change Biology, 21, 9, pp. 3548-3540, (2015)
- [17] Liu Y B, Pan X B, Li J S, A 1961-2010 record of fertilizer use, pesticide application and cereal yields: a review, Agronomy for Sustainable Development, 35, 1, pp. 83-93, (2015)
- [18] Lynn T M, Ge T D, Yuan H Z, Et al., Soil carbon-fixation rates and associated bacterial diversity and abundance in three natural ecosystems, Microbial Ecology, 73, 3, pp. 645-657, (2017)
- [19] Mendez-Millan M, Nguyen Tu T T, Balesdent J, Et al., Compound-specific<sup>13</sup>C and<sup>14</sup>C measurements improve the understanding of soil organic matter dynamics, Biogeochemistry, 118, 13, pp. 205-223, (2013)
- [20] Norman J S, Friesen M L., Complex N acquisition by soil diazotrophs: how the ability to release exoenzymes affects N fixation by terrestrial free-living diazotrophs, The ISME Journal, 11, 2, pp. 315-326, (2016)