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Effects of raised-bed planting for enhanced summer maize yield on rhizosphere soil microbial functional groups and enzyme activity in Henan Province, China

机译:河南省高产玉米夏播增产对根际土壤微生物功能基团和​​酶活性的影响

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Although raised-bed planting systems can enhance productivity of summer maize (Zea mays) relative to other systems employed in China, mechanisms for this remain unclear. Because of their potential to enhance maize yield, we examined effects of raise-bed planting on rhizosphere microbial functional groups and associated enzyme activities in 2006 and 2007 crop seasons. Results confirmed that raised-bed planting significantly and substantially increased maize growth. Microbial functional groups and enzyme activities varied during the maize growing season, with patterns often correlated with plant growth. For raised-bed planting, mean numbers of bacteria, fungi, and actinomycetes across all three sampling times in 2006 were 7.3 x 10(6), 1.6 x 10(4), 1.9 x 10(5) CFOs g(-1) dry soil, respectively, 82, 44, and 43% higher than those in flat planting, respectively. In 2007, relative differences were 108, 40, and 34% higher than those in flat planting, respectively. Raised-bed planting yielded mean saccharase, urease, protease and phosphatase activities across sampling times in 2006 of 2.3 mg glucose g(-1) h(-1), 0.8 mg NH3-N g(-1) h(-1), 10.5 mg glycine kg(-1) h(-1), and 0.4 mg nitrophenol g(-1) h(-1), 6, 18, 34, and 31% higher than those in flat planting, respectively. In 2007, relative differences were 10, 16, 35, and 27% higher than those in flat planting, respectively. Rhizosphere enzyme activities were significantly correlated with maize yields. These results suggest that raised-bed planting (1) may enhance maize productivity in part by increasing availability of essential crop nutrients by stimulating microbial activity, and (2) is potentially important in sustainable increasing China's supply of maize
机译:尽管相对于中国采用的其他系统,高床育苗系统可以提高夏玉米(玉米)的生产力,但其机制尚不清楚。由于它们具有提高玉米产量的潜力,因此我们研究了2006和2007作物季节的高床种植对根际微生物功能群和相关酶活性的影响。结果证实,高床种植大大增加了玉米的生长。玉米生长季节中微生物的功能基团和​​酶活性各不相同,其模式通常与植物的生长有关。对于高架床种植,2006年所有三个采样时间的细菌,真菌和放线菌的平均数量为7.3 x 10(6),1.6 x 10(4),1.9 x 10(5)CFO干(g)​​(-1)土壤分别比平板种植高82%,44%和43%。 2007年的相对差异分别比平地种植高108%,40%和34%。在2006年的采样时间内,高架床种植产生的平均糖酶,脲酶,蛋白酶和磷酸酶活性分别为2.3 mg葡萄糖g(-1)h(-1),0.8 mg NH3-N g(-1)h(-1),分别比平栽分别增加10.5 mg甘氨酸kg(-1)h(-1)和0.4 mg硝基苯酚g(-1)h(-1),6、18、34和31%。 2007年,相对差异分别比平地种植高10%,16%,35%和27%。根际酶活性与玉米产量显着相关。这些结果表明,高床种植(1)可以部分通过刺激微生物活动来增加必需作物营养素的供应,从而提高玉米的生产力;(2)在可持续增加中国玉米供应方面可能具有重要意义。

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