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Nina Opitz

Showing results (1-10 of 8) with videos related to

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Journal of Experimental Botany|February 17, 2017
Non-syntenic genes drive RTCS-dependent regulation of the embryo transcriptome during formation of seminal root primordia in maize (Zea mays L.)Huanhuan Tai, Nina Opitz, Andrew Lithio, et al.
Journal of Experimental Botany|April 12, 2017
Complexity and specificity of the maize (Zea mays L.) root hair transcriptomeStefan Hey, Jutta Baldauf, Nina Opitz, et al.
BMC Genomics|September 2, 2014
Transcriptomic complexity in young maize primary roots in response to low water potentialsNina Opitz, Anja Paschold, Caroline Marcon, et al.
Journal of Experimental Botany|December 3, 2015
Transcriptomic and anatomical complexity of primary, seminal, and crown roots highlight root type-specific functional diversity in maize (Zea mays L.)Huanhuan Tai, Xin Lu, Nina Opitz, et al.
Journal of Experimental Botany|October 15, 2015
Extensive tissue-specific transcriptomic plasticity in maize primary roots upon water deficitNina Opitz, Caroline Marcon, Anja Paschold, et al.
Journal of Experimental Botany|June 15, 2014
The Aux/IAA gene rum1 involved in seminal and lateral root formation controls vascular patterning in maize (Zea mays L.) primary rootsYanxiang Zhang, Anja Paschold, Caroline Marcon, et al.
Plant Physiology|December 22, 2016
Stability of Single-Parent Gene Expression Complementation in Maize Hybrids upon Water Deficit StressCaroline Marcon, Anja Paschold, Waqas Ahmed Malik, et al.
Plant Physiology|August 10, 2020
<i>BonnMu</i>: A Sequence-Indexed Resource of Transposon-Induced Maize Mutations for Functional Genomics StudiesCaroline Marcon, Lena Altrogge, Yan Naing Win, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Journal of Experimental Botany|February 17, 2017
Non-syntenic genes drive RTCS-dependent regulation of the embryo transcriptome during formation of seminal root primordia in maize (Zea mays L.)Huanhuan Tai, Nina Opitz, Andrew Lithio, et al.
Journal of Experimental Botany|April 12, 2017
Complexity and specificity of the maize (Zea mays L.) root hair transcriptomeStefan Hey, Jutta Baldauf, Nina Opitz, et al.
BMC Genomics|September 2, 2014
Transcriptomic complexity in young maize primary roots in response to low water potentialsNina Opitz, Anja Paschold, Caroline Marcon, et al.
Journal of Experimental Botany|December 3, 2015
Transcriptomic and anatomical complexity of primary, seminal, and crown roots highlight root type-specific functional diversity in maize (Zea mays L.)Huanhuan Tai, Xin Lu, Nina Opitz, et al.
Journal of Experimental Botany|October 15, 2015
Extensive tissue-specific transcriptomic plasticity in maize primary roots upon water deficitNina Opitz, Caroline Marcon, Anja Paschold, et al.
Journal of Experimental Botany|June 15, 2014
The Aux/IAA gene rum1 involved in seminal and lateral root formation controls vascular patterning in maize (Zea mays L.) primary rootsYanxiang Zhang, Anja Paschold, Caroline Marcon, et al.
Plant Physiology|December 22, 2016
Stability of Single-Parent Gene Expression Complementation in Maize Hybrids upon Water Deficit StressCaroline Marcon, Anja Paschold, Waqas Ahmed Malik, et al.
Plant Physiology|August 10, 2020
<i>BonnMu</i>: A Sequence-Indexed Resource of Transposon-Induced Maize Mutations for Functional Genomics StudiesCaroline Marcon, Lena Altrogge, Yan Naing Win, et al.
Pageof 1