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地黄不同时期内生促生细菌的筛选及其促生特性分析 被引量:1
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作者 王春艳 腊贵晓 +2 位作者 苏秀红 李萌 董诚明 《生物技术通报》 CAS CSCD 北大核心 2022年第4期242-252,共11页
从地黄中开发优势菌种资源并分析促生特性,为开发地黄微生物专用促生菌肥提供基础。采用稀释平板法,以地黄不同时期根、茎、叶为材料分离内生细菌,根据形态学、生理生化、16S rRNA分析进行分类归属。选出54株内生细菌对产IAA、铁载体活... 从地黄中开发优势菌种资源并分析促生特性,为开发地黄微生物专用促生菌肥提供基础。采用稀释平板法,以地黄不同时期根、茎、叶为材料分离内生细菌,根据形态学、生理生化、16S rRNA分析进行分类归属。选出54株内生细菌对产IAA、铁载体活性,溶磷以及固氮能力进行了评价,结果显示在不同时期共分离出512株内生细菌,将其归类为54组,每组选出1株进行检测,其中41株具有产IAA的能力;29株具有溶磷能力;28株具有产铁载体能力;25株具有固氮能力。该结果为研究地黄专用微生物促生菌肥提供参考,并为后续微生物促生菌肥应用到地黄大田实验中奠定基础。 展开更多
关键词 地黄 分离鉴定 内生细菌 促生
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Characterization of Nitrogen Metabolism in the Low-Nitrogen Tolerant lnt1 Mutant of Arabidopsis thaliana Under Nitrogen Stress 被引量:2
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作者 TENG Yi-Bo LI Ya-Juan +1 位作者 FANG Ping la gui-xiao 《Pedosphere》 SCIE CAS CSCD 2010年第5期623-632,共10页
A growth experiment on agar medium and a hydroponics experiment were carried out to study the nitrogen (N) metabolism of a low-N tolerant mutant (lntl) of Arabidopsis thaliana under different N levels as compared ... A growth experiment on agar medium and a hydroponics experiment were carried out to study the nitrogen (N) metabolism of a low-N tolerant mutant (lntl) of Arabidopsis thaliana under different N levels as compared with the wild- type (WT) Arabidopsis. On the agar medium, no apparent growth differences were observed between the lntl and WT plants under a normal N level of 9 mmol L^-1 NO3. However, under a low N level of 0.18 mmol L^-1 NO3^-, the growth of the WT plants was greatly retarded, while the lntl plants were not affected by low-N stress and showed similar growth with those grown under a normal N level. In the hydroponics experiment, the lntl mutant had higher activities of glutamine synthetase (GS) and NADH-dependent glutamate synthase (NADH-GOGAT) in both leaves and roots under N-deficient conditions. Moreover, they accumulated less ammonium (NH4^+) but more free amino acids in leaves compared with the WT plants. These observations suggest that better N assimilation might contribute to the low-N tolerant phenotype of the lnt1 mutant. 展开更多
关键词 AMMONIUM free amino acids glutamate synthase glutamine synthetase nitrogen assimilation
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