Experimental Simulation Study on the Dominant Enrichment Area of Terrestrial Organic Matter in the Shallow‐delta Sedimentary System of the Yacheng Formation in the Qiongdongnan Basin

Author(s):  
Xinde XU ◽  
Xibing YANG ◽  
Tong QU ◽  
Gang GAO ◽  
Gang LIANG ◽  
...  
2015 ◽  
Vol 19 (3) ◽  
pp. 230-239 ◽  
Author(s):  
Stephen R. Carpenter ◽  
Jonathan J. Cole ◽  
Michael L. Pace ◽  
Grace M. Wilkinson

Author(s):  
Xuliang Lou ◽  
Jianming Zhao ◽  
Xiangyang Lou ◽  
Xiejiang Xia ◽  
Yilu Feng ◽  
...  

Soil organic matter contains more carbon than global vegetation and the atmosphere combined. Gaining access to this source of organic carbon is challenging and requires at least partial removal of polyphenolic and/or soil mineral protections, followed by subsequent enzymatic or chemical cleavage of diverse plant polysaccharides. Soil-feeding animals make significant contributions to the recycling of terrestrial organic matter. Some humivorous earthworms, beetles, and termites, among others, have evolved the ability to mineralize recalcitrant soil organic matter, thereby leading to their tremendous ecological success in the (sub)tropical areas. This ability largely relies on their symbiotic associations with a diverse community of gut microbes. Recent integrative omics studies, including genomics, metagenomics, and proteomics, provide deeper insights into the functions of gut symbionts. In reviewing this literature, we emphasized that understanding how these soil-feeding fauna catabolize soil organic substrates not only reveals the key microbes in the intestinal processes but also uncovers the potential novel enzymes with considerable biotechnological interests.


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