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38篇 您的检索式:作者名="Varanini"
    题名 作者 年代 出处 被引量
1Nitrate induction triggers different transcriptional changes in a high and a low nitrogen use efficiency maize inbred line显示文摘In higher plants, NO3 can induce its own uptake and the magnitude of this induction is positively related to the external anion concentration. This phenomenon has been characterized in both herbaceous and woody plants. Here,different adaptation strategies of roots from two maize(Zea mays L., ZmAGOs) inbred lines differing in nitrogen use efficiency(NUE) and exhibiting different timing of induction were discussed by investigating NO3 ‐induced changes in their transcriptome. Lo5 line(high NUE) showing the maximum rate of NO3 uptake 4 h after the provision of 200 mmol/L NO3 treatment modulated a higher number of transcripts relative to T250(low NUE) that peaked after 12 h. The two inbred lines share only 368 transcripts that are modulated by the treatment with NO3 and behaved differently when transcripts involved in anion uptake and assimilation were analyzed. T250 line responded to the NO3 induction modulating this group of Researchgenes as reported for several plant species. On the contrary,the Lo5 line did not exhibit during the induction changes in this set of genes. Obtained data suggest the importance of exploring the physiological and molecular variations among different maize genotypes in response to environmental clues like NO3 provision, in order to understand mechanisms underlying NUE.Anita Zamboni Stefania Astolfi Sabrina Zuchi Youry Pii Katia Guardini Paola Tononi Zeno Varanini 2014Journal of Integrative Plant Biology2014,56,11:6
2Sucrose accumulation in developing peach fruit 显示文摘Vizzotto G Pinton R varanini Z 1996Physiol Plant1996,96,:1
3Sucrose accumulation in developing peach fruit显示文摘Vizzoto G Pinton R Varanini Z 1996Physiol Plant1996,96,:1
4Sucrose accumulation in developing peach fruit显示文摘Vizzotto G Pinton R Varanini Z 1996Physiol Plant1996,96,:1
5Two plasma membrane H^+-ATPase genes are differentially expressed in iron-deficient cucumber plants 显示文摘Santi S Cesco S Varanini Z 2005Plant Physiol Biochem2005,43,:1
6Sucrose accumulation in developing peach fruit 显示文摘Vizzotto G Pinton R Varanini Z 1996Plant Physiol1996,96,:1
7Sucrose accumulation in developing peach fruit 显示文摘VIZZOTTO G PINTON R VARANINI Z 1996Physiologia Plantarum1996,96,2:1
8Sucrose accumulation in developing peach fruit显示文摘Vizzotto G Pinton R Varanini Z 1996Physiol Plant1996,96,:1
9Sucrose accumulation in developing peach fruit 显示文摘VIZZOTO G PINTON R VARANINI Z 1996Physiol Plant1996,96,:1
10Two plasma membrane H ^+ - ATPase genes are differentially expressed in iron - deficient cucumber plants 显示文摘SANTI S CESCO S VARANINI Z 2005Plant Physiol Biochem2005,43,:1
11Soil humic substances effect transport propertise of tonoplast resides isolated from oatroots显示文摘PINTON R VARANINI Z VIZZOTTO G 1992Plant and Soil1992,142,:1
12Pre- dicting the end of an atrial fibrillation episode : the Phys- ioNet challenge 显示文摘CANTINIF F CONFORTI F VARANINI M 2004Computers in Cardiology2004,31,:1
13Sucroseaccumulation in developing peach fruit显示文摘VIZZOTTO G PINTON R VARANINI Z COSTA G 1996Physiol Plant1996,96,:1
14Sucrose accumulation in developing peach fruit显示文摘Vizzoto G Pinton R Varanini Z 1996Plant Physiol1996,96,:1
15Soil humic substances effect transport propertise of tonoplast vesicles isolated from oat roots显示文摘PINTON R VARANINI Z VIZZOTTO G 1992Plant and Soil1992,142,:1
16Spectral analysis of cardiovascular time series by the S-transform 显示文摘 De Paolis G Emdin M 1997IEEE Comp Cardiology1997,24,:1
17Sucrose accumulation in developing peach fruit显示文摘VIZZOTTO G PINTON R VARANINI Z 1996Physiologia Plantarum1996,,96:1
18Sucrose accumulation in developing peach fruit显示文摘Vizzotto G Pinton R Varanini Z 1996Physiol Plant1996,96,:1
19Sucrose accumulation in developing peach fruit 显示文摘Vizzotto G Pinton R Varanini Z 1996Physiologia Plantarum1996,96,:1
20Spectral Analysis of Cardiovascular Time Series by the S Transform显示文摘Varanini M Paolis G Emdin M 1997Computers in Cardiology1997,24,3:1
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