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水稻耐低钾基因型的筛选及吸钾特性的研究 被引量:14
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作者 王波 杨振明 鲍士旦 《植物营养与肥料学报》 CAS CSCD 1999年第1期85-88,共4页
筛选水稻耐低钾基因型最直接、客观方法是在低钾土壤上进行田间实验直接筛选,其结果可作为其他方法的比较标准。但该方法需时较长、工作量大,不能满足大批量快速、高速筛选的要求。因此,近年来国内外许多学者在探索用液培的方法进行... 筛选水稻耐低钾基因型最直接、客观方法是在低钾土壤上进行田间实验直接筛选,其结果可作为其他方法的比较标准。但该方法需时较长、工作量大,不能满足大批量快速、高速筛选的要求。因此,近年来国内外许多学者在探索用液培的方法进行筛选[1,2]。但以往的研究大都缺... 展开更多
关键词 水稻 耐低钾基因型 筛选 吸钾特性 液培试验
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Bacillus cereus X5 Enhanced Bio-Organic Fertilizers Effectively Control Root-Knot Nematodes(Meloidogyne sp.) 被引量:7
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作者 XIAO Tong-Jian CHEN Fang +3 位作者 GAO Chao ZHAO Qing-Yun SHEN Qi-Rong RAN Wei 《Pedosphere》 SCIE CAS CSCD 2013年第2期160-168,共9页
The efficacy of Bacillus cereus X5 as a potential biological control agent against root-knot nematodes was evaluated in vitro by examining second-stage juvenile mortality and egg hatching rate under addition of cultur... The efficacy of Bacillus cereus X5 as a potential biological control agent against root-knot nematodes was evaluated in vitro by examining second-stage juvenile mortality and egg hatching rate under addition of culture filtrate and in planta by application of bio-organic fertilizers enhanced with B. cereus X5, B. thuringiensis BTG, or Trichoderma harzianum SQR-T037 alone or together in greenhouse and field experiments. The biofumigation of the root-knot nematode-infested soil with organic materials (chicken manure, pig manure and rice straw) alone or in combination with B. cereus X5 was also conducted in greenhouse experiments. In laboratory, the filtrate of B. cereus X5 more effectively reduced egg hatching rates during the incubation period for 14 d and more effectively killed the second-stage juvenile during the incubation period of 24 h than that of B. thuringiensis BTG. The highest dry shoot weights for greenhouse tomatoes and field muskmelons were found in both the treatment consisting of the bio-organic fertilizer enhanced with the three biocontrol agents and the treatment consisting of the bio-organic fertilizer enhanced only with B. cereus X5. The two bio-organic fertilizers achieved better nematicidal effects than those enhanced only with B. thuringiensis BTG or T. harzianum SQR-T037. B. cereus X5 also enhanced effect of biofumigation, which resulted in increased plant biomass and reduced nematode counts in the roots and rhizosphere soil. Therefore, these results suggested that biological control of root-knot nematodes both in greenhouses and fields could be effectively achieved by using B. cereus X5 and agricultural wastes. 展开更多
关键词 BIOFUMIGATION biological control culture filtrate MUSKMELON rhizosphere soil
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