1 ZHANGX L, LIUH H, DUP, et al. Advances in crocetin[J]. Northwest Pharmaceutical Journal, 2008,23(6):411-414.
2 ZHANGF S, SHENJ B, FENGG, et al. Rhizosphere Ecology: Process and Management[M]. Beijing: China Agricultural University Press,2009,114-122.
3 LIUS H, LIUS Q, ZHANGZ K, et al. Influence of garlic continuous cropping on rhizosphere soil microorganisms and enzyme activities[J]. Scientia Agricultura Sinica, 2010,43(5):1000-1006.
4 XUS X, ZHANGS M, YOUX Y, et al. Degradation of soil phenolic acids by Phanerochaete chrysosporium under continuous cropping of cucumber[J]. Chinese Journal of Applied Ecology, 2008,19(11):2480-2484.
5 GAOF, YINB Z, HUJ L, et al. Study on the overcoming continuous cropping obstacles of strawberry using soil additives taking autotoxicity effective degradation strains B3512 as functional bacteria[J]. Journal of Hebei Agricultural Science, 2009,13(9):20-22.
6 TORSVIKV, ØVREÅSL,THINGSTADT F. Prokaryotic diversity-magnitude, dynamics, and controling factors [J]. Science, 2002,296(5570):1064-1066.
7 GAMSW. Biodiversity of soil-inhabiting fungi[J]. Biodiversity and Conservation, 2007,16(1):69-72.DOI:10.1007/s10531-006-9121-y
8 LIUB, WANGJ P, CHENQ Q, et al. Metagenomic analysis of microbial community in a microbial fermentation-bed for pig raising[J]. Fujian Journal of Agricultural Science, 2016, 31(6): 630-648.
9 ZHANGJ, SUNZ Y, ZHONGX Z, et al. Maturity and microbial community structure dynamics during simulated windrow composting of solid fraction of dairy manure[J]. Chinese Journal of Applied Environmental Biology, 2016,22 (3): 423-429.
10 DAIY T, YANZ J, IE J H, et al. Soil bacteria diversity in rhizosphere under two types of vegetation restoration based on high throughput sequencing[J]. Acta Pedologica Sinica, 2017, 54(3): 735-748.
11 TANS S. Analysis of Plant Community Structure and Species Diversity in the Baishanzu Natural Reserve[D]. Hangzhou: Zhejiang University, 2012:65-72.
12 WANGY Y, GUOD F. Soil fungal diversity and its relationship with soil physical and chemical properties in saline alkali soil of Yellow River Delta[J]. Acta Agriculturae Zhejiangensis, 2016, 28(11): 1901-1907. DOI:10.3969/j.issn.1004-1524.2016.11.15
13 PAN Q M, HAN X G, BAI Y F, et al Advances in physiology and ecology studies on stored non-structure carbohydrates in plants[J]. Bulletin of Botany, 2002,19(1):30-38.
Cited
Shared Discussed相关知识
新形势下微生物肥料产业运行状况及发展方向
新型复合微生物肥料对玫瑰花生长效果的研究
微生物肥料的作用机理、现状及展望
有机生物活性肥料对土壤肥力、微生物及酶活性的影响
微生物菌肥施用量对油菜种子发芽及幼苗生长的影响
有机(类)肥料对作物产量、土壤养分及土壤微生物多样性的影响
综述丨浙大&苏大&浙江省人民医院: 肠道微生物代谢物在肿瘤进展和癌症治疗中的研究进展(国人佳作)
含有黑树莓饮食对小鼠结肠微生物群和植物化学代谢物的影响
微生物菌肥及土壤调理剂对连作黄瓜生长、品质及产量的影响.pdf
肥料对花卉生长的影响
网址: 微生物肥料对西红花生长及代谢物的影响 https://m.huajiangbk.com/newsview681530.html
上一篇: 通过微生物肥料增强土壤健康和植物 |
下一篇: 微生物菌肥对玫瑰防病促生作用及土 |