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“绿肥-玉米-大豆”轮作体系对作物产量及品质的影响 被引量:2
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作者 陈念 范競升 +3 位作者 刘思林 陆文宇 连腾祥 牟英辉 《大豆科学》 CAS CSCD 北大核心 2020年第4期555-563,共9页
为了明确绿肥—玉米—大豆轮作体系对在华南地区的农业生产的影响,本研究将冬种绿肥作物(黑麦草、白三叶草)作为植生覆盖作物,以冬季杂草休闲为对照,配合不同的耕作方式(免耕、旋耕),探究绿肥—玉米—大豆的轮作体系对作物产量及品质的... 为了明确绿肥—玉米—大豆轮作体系对在华南地区的农业生产的影响,本研究将冬种绿肥作物(黑麦草、白三叶草)作为植生覆盖作物,以冬季杂草休闲为对照,配合不同的耕作方式(免耕、旋耕),探究绿肥—玉米—大豆的轮作体系对作物产量及品质的影响。结果表明:不同的覆盖作物和耕作方式对绿肥作物的养分和产量有一定的影响,同时免耕黑麦草较适合作为玉米的前茬,可有效抑制玉米种植期间杂草的发生。绿肥—玉米—大豆的轮作对于大豆的产量及品质无显著影响,但黑麦草作为冬季覆盖作物对增加夏大豆的产量具有一定的促进作用。 展开更多
关键词 轮作体系 耕作方式 植生覆盖 产量 品质
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The rhizospheric microbiome becomes more diverse with maize domestication and genetic improvement 被引量:1
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作者 HUANG Jun LI Yun-feng +3 位作者 MA Yuan-ying LI Yan-sheng JIN Jian lian teng-xiang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第4期1188-1202,共15页
Domestication and genetic improvement of maize improve yield and stress tolerance due to changes in morphological and physiological properties, which likely alter rhizosphere microbial diversity. Understanding how the... Domestication and genetic improvement of maize improve yield and stress tolerance due to changes in morphological and physiological properties, which likely alter rhizosphere microbial diversity. Understanding how the evolution of maize germplasm impacts its rhizobacterial traits during the growth stage is important for optimizing plant-microbe associations and obtaining yield gain in domesticated germplasms. In this study, a total of nine accessions representing domestication and subsequent genetic improvement were selected. We then sequenced the plant DNA and rhizobacterial DNA of teosinte, landraces and inbred lines at the seedling, flowering and maturity stages in a field trial. Moreover, the soil chemical properties were determined at the respective stages to explore the associations of soil characteristics with bacterial community structures. The results showed that domestication and genetic improvement increased the rhizobacterial diversity and substantially altered the rhizobacterial community composition. The core microbiome in the rhizosphere differed among germplasm groups. The co-occurrence network analysis demonstrated that the modularity in the bacterial network of the inbred lines was greater than those of teosinte and the landraces. In conclusion, the increased diversity of the rhizobacterial community with domestication and genetic improvement may improve maize resilience to biotic stresses and soil nutrient availability to plants. 展开更多
关键词 TEOSINTE LANDRACES inbred lines domestication and improvement core microbiome network
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