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豆科植物根瘤形成条件初探 被引量:6
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作者 李湘 杨红玉 《西南农业学报》 CSCD 2007年第1期95-98,共4页
豆科植物的根瘤可以从空气中固定氮气而在贫瘠的土壤中生长。它的形成需要土壤中的根瘤菌或人工培养的根瘤菌与植物共同形成。但根瘤的形成还可由培养根瘤菌的无菌滤液诱导形成,这充分说明根瘤菌生长过程中分泌的某种可溶性物质具有刺... 豆科植物的根瘤可以从空气中固定氮气而在贫瘠的土壤中生长。它的形成需要土壤中的根瘤菌或人工培养的根瘤菌与植物共同形成。但根瘤的形成还可由培养根瘤菌的无菌滤液诱导形成,这充分说明根瘤菌生长过程中分泌的某种可溶性物质具有刺激植物形成根瘤的作用,但这种根瘤由于不能形成豆血红蛋白而呈淡绿色或白色,且根瘤中有大量淀粉积累。实验中通过对根瘤的接种、观察、分析,总结了根瘤形成的原因,使我们对根瘤的研究更加深入。 展开更多
关键词 豆科植物 根瘤菌 根瘤 无菌滤液
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Formation of Nodular Structures and Nitrogen Fixation by Rhizobia on Oilseed Rape Roots Following Treatment with Pectinolytic Bacteria
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作者 HUXIAOJIA ZHANGXUEJIANG 《Pedosphere》 SCIE CAS CSCD 1996年第2期107-110,共4页
Nodular structures were formed by rhizobia on oilseed rape roots following treatment with pectinolytic bacteria. Nodules developed within 50 days.Photomicrograph of nodule cells showed that the capsulated bacteria wer... Nodular structures were formed by rhizobia on oilseed rape roots following treatment with pectinolytic bacteria. Nodules developed within 50 days.Photomicrograph of nodule cells showed that the capsulated bacteria were intrarellular.Rhizobia reisolated from the root nodules retained not only the ability of nodulation but also the characteristic of resistance to 100 μg neomycin mL-1.A low nitrogenaSe activity of the nodules was determined by the method of acetylene reduction. 展开更多
关键词 NODULATION oilseed rape pectinolytic bacteria rhisobia.
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