Hou Peng, Wang Yong-jun, Wang Kong-jun, Yang Jin-sheng, Li Deng-hai, Dong Shu-ting, Liu Jing-guo
State Key Laboratory of Crop Biology, College of Agronomy, Shandong Agricultural University, Tai' an, Shandong, China.
Ying Yong Sheng Tai Xue Bao. 2008 Aug;19(8):1741-6.
To reveal the characteristics of the dynamic changes of soil microbial populations and enzyme activities in super-high yielding ( > 15,000 kg x hm(-2)) summer maize farmland soil, a comparative study was conducted in the experimental fields in National Maize Engineering Research Center (Shandong). On the fields with an annual yield of >15,000 kg x hm(-2) in continuous three years, a plot with the yield of 20 322 kg x hm(-2) (HF) was chosen to make comparison with the conventional farmland (CF) whose maize yield was 8920. 1 kg x hm(-2). The numbers of bacteria, fungi, and actinomycetes as well as the activities of urease and invertase in 0-20 cm soil layer were determined. The results showed that in the growth period of maize, the numbers of bacteria, fungi, and actinomycetes in the two farmland soils increased first and declined then. At the later growth stages of maize, the numbers of soil microbes, especially those of bacteria and actinomycetes, were lower in HF than those in CF. At harvest stage, the ratio of the number of soil bacteria to fungi (B/ F) in HF was 2.03 times higher than that at sowing stage, and 3.02 times higher than that in CF. The B/F in CF had less difference at harvest and sowing stages. The soil urease activity in HF was significantly lower than that in CF at jointing stage, and the invertase activity in HF decreased rapidly after blooming stage, being significantly lower than that in CF.
为揭示超高产(>15000 kg·hm⁻²)夏玉米农田土壤微生物种群和酶活性的动态变化特征,在国家玉米工程技术研究中心(山东)试验田开展了对比研究。在连续三年年产量>15000 kg·hm⁻²的田块中,选取产量为20322 kg·hm⁻²的地块(HF)与玉米产量为8920.1 kg·hm⁻²的常规农田(CF)进行比较。测定了0 - 20 cm土层中细菌、真菌、放线菌数量以及脲酶和蔗糖酶活性。结果表明,在玉米生长期间,两种农田土壤中细菌、真菌和放线菌数量均先增加后下降。在玉米生长后期,HF土壤中微生物数量,尤其是细菌和放线菌数量低于CF。收获期,HF土壤细菌与真菌数量比(B/F)较播种期提高了2.03倍,比CF高3.02倍。CF的B/F在收获期和播种期差异较小。拔节期HF土壤脲酶活性显著低于CF,开花期后HF土壤蔗糖酶活性迅速下降,显著低于CF。