X. Li, Y-C Wang, C. Busso, Js Xiang, A. Zhang, Y. Qu, Y. Liu
{"title":"Effects of various continuous cropping times on soil nematode structure in cotton fields of Xinjiang, China","authors":"X. Li, Y-C Wang, C. Busso, Js Xiang, A. Zhang, Y. Qu, Y. Liu","doi":"10.32604/phyton.2016.85.027","DOIUrl":null,"url":null,"abstract":"Long-term continuous cropping of cotton had ledto substantial agricultural losses. However, continuous cottoncropping could maintain high crop yields for many years in someareas. The composition and structure of soil nematode communitieswere investigated to explore the effect of continuous croppingand soil depths on these communities. Soil samples werecollected at two soil depths (0-20 cm and 20-40 cm) from cottonfields with a history of 5, 10, 15 or 20 years of continuouscotton cropping in the Karamay region. The results showed that36 genera were found. Significant differences in the numbers oftotal nematodes and trophic groups were observed among continuouscropping times. The highest number of total nematodeswas observed at 20-40 cm depth under continuous 10-croppingyears, and the lowest number at 20-40 cm depth under continuous5-cropping years. There were significant soil depth effects on thedensity of fungivores and plant parasites. Continuous croppingeffects on soil nematode communities could be reflected by valuesof ecological indexes. Continuous cropping times, soil depths andtheir interaction significantly influenced H´, λ, WI, PPI (index ofplant parasites), MI (maturation index excluding plant parasites),PPI/MI, F/B and NCR. The Shannon index (H´) was higher inthe 10-year cotton field than in the other-year fields. The Simpsonindex (λ) was the lowest in the 10-year cotton field. The lowestvalue of WI (index of Wasilewska) appeared at the 20-year cottonfield, which had the majority of plant parasites. Increases of cottoncropping times determined a decreased trend of NCR [=B/(B + F)], and an increased trend of F/B [F and B represent theconsumer abundance of fungi (F) and bacteria (B)]. The bacterialdecomposition pathway was more important in the 5-year situations,and the fungal decomposition pathway was more importantin the 20-year situations. Nematode analysis showed that changes of soil nematode communities and trophic groups could indicatechanges in the soil environment and nematode community structurewith changes of continuous cropping times.","PeriodicalId":20184,"journal":{"name":"Phyton-international Journal of Experimental Botany","volume":"30 1","pages":"27-35"},"PeriodicalIF":1.3000,"publicationDate":"2016-07-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Phyton-international Journal of Experimental Botany","FirstCategoryId":"99","ListUrlMain":"https://doi.org/10.32604/phyton.2016.85.027","RegionNum":4,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"PLANT SCIENCES","Score":null,"Total":0}
引用次数: 2
Abstract
Long-term continuous cropping of cotton had ledto substantial agricultural losses. However, continuous cottoncropping could maintain high crop yields for many years in someareas. The composition and structure of soil nematode communitieswere investigated to explore the effect of continuous croppingand soil depths on these communities. Soil samples werecollected at two soil depths (0-20 cm and 20-40 cm) from cottonfields with a history of 5, 10, 15 or 20 years of continuouscotton cropping in the Karamay region. The results showed that36 genera were found. Significant differences in the numbers oftotal nematodes and trophic groups were observed among continuouscropping times. The highest number of total nematodeswas observed at 20-40 cm depth under continuous 10-croppingyears, and the lowest number at 20-40 cm depth under continuous5-cropping years. There were significant soil depth effects on thedensity of fungivores and plant parasites. Continuous croppingeffects on soil nematode communities could be reflected by valuesof ecological indexes. Continuous cropping times, soil depths andtheir interaction significantly influenced H´, λ, WI, PPI (index ofplant parasites), MI (maturation index excluding plant parasites),PPI/MI, F/B and NCR. The Shannon index (H´) was higher inthe 10-year cotton field than in the other-year fields. The Simpsonindex (λ) was the lowest in the 10-year cotton field. The lowestvalue of WI (index of Wasilewska) appeared at the 20-year cottonfield, which had the majority of plant parasites. Increases of cottoncropping times determined a decreased trend of NCR [=B/(B + F)], and an increased trend of F/B [F and B represent theconsumer abundance of fungi (F) and bacteria (B)]. The bacterialdecomposition pathway was more important in the 5-year situations,and the fungal decomposition pathway was more importantin the 20-year situations. Nematode analysis showed that changes of soil nematode communities and trophic groups could indicatechanges in the soil environment and nematode community structurewith changes of continuous cropping times.
期刊介绍:
Phyton-International Journal of Experimental Botany is an international journal that publishes on the broadest aspects of plant biology and ecology. The journal welcomes the original and exciting submissions that provide new and fundamental insights into the origins, development, and function of plants from the molecular to the whole organism and its interactions within the biotic and abiotic environment. Phyton-International Journal of Experimental Botany publishes outstanding research in the plant and ecology sciences, especially in the areas of plant physiology and biochemistry, plant metabolism, plant ecology and evolution, as well as those making use of synthetic, modeling, bioinformatics, and -omics tools. Manuscripts submitted to this journal must not be under simultaneous consideration or have been published elsewhere, either in part or in whole.