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岩溶山区玉米白三叶间作对土壤养分及作物生产性能的影响 被引量:3
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作者 唐柳办 王家豪 +2 位作者 王雷挺 王普昶 赵丽丽 《中国草地学报》 CSCD 北大核心 2022年第5期31-39,共9页
以推广种植范围广的玉米和适应性较强的白三叶为对象,初步探讨玉米白三叶间作模式在岩溶山区的生产优势。设置行距30cm(JBY30)、50cm(JBY50)、70cm(JBY70)玉米白三叶间作,以相应行距(DY30、DY50、DY70)的单作玉米和行距30cm(DB30)单作... 以推广种植范围广的玉米和适应性较强的白三叶为对象,初步探讨玉米白三叶间作模式在岩溶山区的生产优势。设置行距30cm(JBY30)、50cm(JBY50)、70cm(JBY70)玉米白三叶间作,以相应行距(DY30、DY50、DY70)的单作玉米和行距30cm(DB30)单作白三叶为对照,测定土壤养分含量及作物生产性能指标,结果表明:JBY30(蜡熟期)土壤有机质含量显著高于DY30(P<0.05);JBY50(灌浆期)全磷含量显著高于DY50(P<0.05);JBY30(抽穗期和灌浆期)、JBY50(灌浆期)和JBY70(抽穗期)全钾含量显著高于相应行距玉米的单作(P<0.05)。间作下玉米粗蛋白(除JBY30外)、粗脂肪、无氮浸出物(除JBY70外)含量均高于相应行距的单作,而粗纤维含量低于单作。间作白三叶粗灰分含量均高于单作。单作白三叶第一茬产量显著高于间作白三叶(P<0.05)。JBY30玉米地上总干物质产量比DY30显著提高了32.23%,比JBY50和JBY70分别显著提高了47.63%和45.20%(P<0.05)。随行距的增大,土地当量比(LER)、间作系统生产力(SP)呈先减小后增大趋势,玉米相对白三叶的资源竞争力(Am)和间作优势则呈下降趋势。JBY30的间作优势最大,LER、SP显著高于JBY50和JBY70(P<0.05)。因此,认为JBY30是适宜岩溶山区玉米白三叶间作系统的最佳间作模式。 展开更多
关键词 玉米白三叶间作 土壤养分 土地当量比 间作系统生产力 间作优势
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The role of maize root size in phosphorus uptake and productivity of maize/faba bean and maize/wheat intercropping systems 被引量:14
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作者 ZHANG YiKai CHEN FanJun +6 位作者 LI Long CHEN YanHua LIU BingRan ZHOU YuLing YUAN LiXing ZHANG FuSuo MI GuoHua 《Science China(Life Sciences)》 SCIE CAS 2012年第11期993-1001,共9页
Interspecific root/rhizosphere interactions affect phosphorus (P) uptake and the productivity of maize/faba bean and maize/wheat intercropping systems. The aim of these experiments was to determine whether manipulatio... Interspecific root/rhizosphere interactions affect phosphorus (P) uptake and the productivity of maize/faba bean and maize/wheat intercropping systems. The aim of these experiments was to determine whether manipulation of maize root growth could improve the productivity of the two intercropping systems. Two near isogenic maize hybrids (the larger-rooted T149 and smaller-rooted T222) were intercropped with faba bean and wheat, under conditions of high- and low-P availability. The larger-rooted T149 showed greater competitive ability than the smaller-rooted T222 in both maize/faba bean and maize/wheat intercropping systems. The higher competitive ability of T149 improved the productivity of the maize/faba bean intercropping system in P-sufficient conditions. In maize/wheat intercropping systems, root growth, shoot biomass, and P uptake of maize were inhibited by wheat, regardless of the P-supply. Compared with T222, the larger-rooted T149 suffered less in the intercropping systems. The total biomass of the maize/wheat intercropping system was higher for wheat/T149 than for wheat/T222 under low-P conditions. These data suggested that genetic improvement of maize root size could enhance maize growth and its ability to compete for P resources in maize/faba bean and maize/wheat intercropping systems. In addition, depending on the P availability, larger maize roots could increase the productivity of intercropping systems. 展开更多
关键词 faba bean INTERCROPPING MAIZE phosphorus uptake root growth WHEAT
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