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Scooped by Mary Williams
January 19, 2017 2:53 AM
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The RLA1/SMOS1 Transcription Factor Functions with OsBZR1 to Regulate Brassinosteroid Signaling and Rice Architecture ($)

The RLA1/SMOS1 Transcription Factor Functions with OsBZR1 to Regulate Brassinosteroid Signaling and Rice Architecture ($) | The Plant Cell | Scoop.it

The RLA1/SMOS1 Transcription Factor Functions with OsBZR1 to Regulate Brassinosteroid Signaling and Rice Architecture

Shenglong Qiao, Shiyong Sun, Linlin Wang, Zhihua Wu, Chengxiang Li, Xiaoming Li, Tao Wang, Linna Leng, Weisheng Tian, Tiegang Lu, and Xuelu Wang

Plant Cell 2017 tpc.16.00611; Advance Publication January 18, 2017; doi:10.1105/tpc.16.00611

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January 14, 2017 7:43 AM
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IN BRIEF: A Tale of Two CENPCs: Centromere Localization of KINETOCHORE NULL 2 and CENP-C

IN BRIEF: A Tale of Two CENPCs: Centromere Localization of KINETOCHORE NULL 2 and CENP-C | The Plant Cell | Scoop.it

A Tale of Two CENPCs: Centromere Localization of KINETOCHORE NULL 2 and CENP-C

Jennifer Mach

Plant Cell 2017 tpc.17.00035; Advance Publication January 13, 2017; doi:10.1105/tpc.17.00035 OPEN

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January 14, 2017 7:38 AM
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Tracheophytes Contain Conserved Orthologs of a Basic Helix-loop-helix Transcription Factor to Modulate ROOT HAIR SPECIFIC Genes

Tracheophytes Contain Conserved Orthologs of a Basic Helix-loop-helix Transcription Factor to Modulate ROOT HAIR SPECIFIC Genes | The Plant Cell | Scoop.it

Tracheophytes Contain Conserved Orthologs of a Basic Helix-loop-helix Transcription Factor to Modulate ROOT HAIR SPECIFIC Genes

Youra Hwang, Hee-Seung Choi, Hyun-Min Cho, and Hyung-Taeg Cho

Plant Cell 2017 tpc.16.00732; Advance Publication January 13, 2017; doi:10.1105/tpc.16.00732 OPEN

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January 13, 2017 7:56 AM
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The Rice Receptor-like Kinases DWARF AND RUNTISH SPIKELET1 and 2 Repress Cell Death and Affect Sugar Utilization in Reproductive Development ($)

The Rice Receptor-like Kinases DWARF AND RUNTISH SPIKELET1 and 2 Repress Cell Death and Affect Sugar Utilization in Reproductive Development ($) | The Plant Cell | Scoop.it

The Rice Receptor-like Kinases DWARF AND RUNTISH SPIKELET1 and 2 Repress Cell Death and Affect Sugar Utilization in Reproductive Development

Cuixia Pu, Yongfeng Han, Shu Zhu, Fengyan Song, Ying Zhao, Chunyan Wang, Yongcun Zhang, Qian Yang, Jiao Wang, Shuolei Bu, Lijing Sun, Shengwei Zhang, Suqiao Zhang, Daye Sun, and Ying Sun

Plant Cell 2017 tpc.16.00218; Advance Publication January 12, 2017; doi:10.1105/tpc.16.00218

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January 7, 2017 10:58 AM
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Targeting of A. thaliana KNL2 to centromeres depends on the conserved CENPC-k motif in its C-terminus

Targeting of A. thaliana KNL2 to centromeres depends on the conserved CENPC-k motif in its C-terminus | The Plant Cell | Scoop.it

Targeting of A. thaliana KNL2 to centromeres depends on the conserved CENPC-k motif in its C-terminus

Michael Sandmann, Paul Talbert, Dmitri Demidov, Markus Kuhlmann, Twan Rutten, Udo Conrad, and Inna Lermontova

Plant Cell 2017 tpc.16.00720; Advance Publication January 6, 2017; doi:10.1105/tpc.16.00720 OPEN

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January 7, 2017 10:43 AM
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Arabidopsis seed mitochondria are bioenergetically active immediately upon imbibition and specialize via biogenesis in preparation for autotrophic growth

Arabidopsis seed mitochondria are bioenergetically active immediately upon imbibition and specialize via biogenesis in preparation for autotrophic growth | The Plant Cell | Scoop.it

Arabidopsis seed mitochondria are bioenergetically active immediately upon imbibition and specialize via biogenesis in preparation for autotrophic growth

Gael Paszkiewicz, Jose Manuel Gualberto, Abdelilah Benamar, David Macherel, and David C. Logan

Plant Cell 2017 tpc.16.00700; Advance Publication January 6, 2017; doi:10.1105/tpc.16.00700 OPEN

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Scooped by Mary Williams
December 24, 2016 2:59 AM
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CORRECTION: Phylobiochemical Characterization of Prephenate Aminotransferases Reveals Evolution of the Plant Arogenate Phenylalanine Pathway

CORRECTION: Phylobiochemical Characterization of Prephenate Aminotransferases Reveals Evolution of the Plant Arogenate Phenylalanine Pathway | The Plant Cell | Scoop.it

CORRECTION: Phylobiochemical Characterization of Prephenate Aminotransferases Reveals Evolution of the Plant Arogenate Phenylalanine Pathway

Hiroshi Maeda

Plant Cell 2016 tpc.16.00951; Advance Publication December 23, 2016; doi:10.1105/tpc.16.00951 OPEN

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Scooped by Mary Williams
December 24, 2016 2:48 AM
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Different Endomembrane Trafficking Pathways Establish Apical and Basal Polarities

Different Endomembrane Trafficking Pathways Establish Apical and Basal Polarities | The Plant Cell | Scoop.it

Different Endomembrane Trafficking Pathways Establish Apical and Basal Polarities

Ruixi Li, Cecilia Rodriguez Furlan, Junqi Wang, Wilhelmina van de Ven, Ting Gao, Natasha V Raikhel, and Glenn R Hicks

Plant Cell 2016 tpc.16.00524; Advance Publication December 23, 2016; doi:10.1105/tpc.16.00524

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December 24, 2016 2:37 AM
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WIND1 promotes shoot regeneration through transcriptional activation of ENHANCER OF SHOOT REGENERATION1 in Arabidopsis

WIND1 promotes shoot regeneration through transcriptional activation of ENHANCER OF SHOOT REGENERATION1 in Arabidopsis | The Plant Cell | Scoop.it

WIND1 promotes shoot regeneration through transcriptional activation of ENHANCER OF SHOOT REGENERATION1 in Arabidopsis

Akira Iwase, Hirofumi Harashima, Momoko Ikeuchi, Bart Rymen, Mariko Ohnuma, Shinichiro Komaki, Kengo Morohashi, Tetsuya Kurata, Masaru Nakata, Masaru Ohme-Takagi, Erich Grotewold, and Keiko Sugimoto

Plant Cell 2016 tpc.16.00623; Advance Publication December 23, 2016; doi:10.1105/tpc.16.00623 OPEN

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Scooped by Mary Williams
December 22, 2016 12:55 PM
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in Brief: It was a Great, Green Year: Identification of a Chlorophyll Dephytylase That Functions in Chlorophyll Turnover

in Brief: It was a Great, Green Year: Identification of a Chlorophyll Dephytylase That Functions in Chlorophyll Turnover | The Plant Cell | Scoop.it

It was a Great, Green Year: Identification of a Chlorophyll Dephytylase That Functions in Chlorophyll Turnover

Jennifer Mach

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Scooped by Mary Williams
December 15, 2016 3:32 AM
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Best of 2016: Top Topics in The Plant Cell journal

Best of 2016: Top Topics in The Plant Cell journal | The Plant Cell | Scoop.it

We’ve highlighted some of the Plant Cell papers that were widely shared, liked, blogged, retweeted and otherwise garnered high-levels of attention this year. Perhaps you can use some holiday-season quiet time to catch up on those you missed.

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Scooped by Mary Williams
December 13, 2016 4:04 AM
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Epigenetic Regulation of the Sex Determination Gene MeGI in Polyploid Persimmon

Epigenetic Regulation of the Sex Determination Gene MeGI in Polyploid Persimmon | The Plant Cell | Scoop.it

Epigenetic Regulation of the Sex Determination Gene MeGI in Polyploid Persimmon

Takashi Akagi, Isabelle Marie Henry, Takashi Kawai, Luca Comai, and Ryutaro Tao

Plant Cell 2016 tpc.16.00532; Advance Publication December 12, 2016; doi:10.1105/tpc.16.00532 OPEN

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December 7, 2016 3:30 AM
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Neighbor Detection Induces Organ-specific Transcriptomes, Revealing Patterns Underlying Hypocotyl-specific Growth

Neighbor Detection Induces Organ-specific Transcriptomes, Revealing Patterns Underlying Hypocotyl-specific Growth | The Plant Cell | Scoop.it

Neighbor Detection Induces Organ-specific Transcriptomes, Revealing Patterns Underlying Hypocotyl-specific Growth

Markus Kohnen, Emanuel Schmid-Siegert, Martine Trevisan, Laure Allenbach Petrolati, Fabien Sénéchal, Patricia Müller-Moulé, Julin N. Maloof, Ioannis Xenarios, and Christian Fankhauser

Plant Cell 2016 tpc.16.00463; Advance Publication December 6, 2016; doi:10.1105/tpc.16.00463 OPEN

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January 19, 2017 2:48 AM
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The Origin of Floral Organ Identity Quartets ($)

The Origin of Floral Organ Identity Quartets ($) | The Plant Cell | Scoop.it

The Origin of Floral Organ Identity Quartets

Philip Ruelens, Zhicheng Zhang, Hilda van Mourik, Steven Maere, Kerstin Kaufmann, and Koen Geuten

Plant Cell 2017 tpc.16.00366; Advance Publication January 18, 2017; doi:10.1105/tpc.16.00366

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January 14, 2017 7:39 AM
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Recognition of the Magnaporthe oryzae effector AVR-Pia by the decoy domain of the rice NLR immune receptor RGA5

Recognition of the Magnaporthe oryzae effector AVR-Pia by the decoy domain of the rice NLR immune receptor RGA5 | The Plant Cell | Scoop.it

Recognition of the Magnaporthe oryzae effector AVR-Pia by the decoy domain of the rice NLR immune receptor RGA5

Diana Ortiz, Karine De Guillen, Stella Cesari, Véronique Chalvon, Jérome Gracy, André Padilla, and Thomas Kroj

Plant Cell 2017 tpc.16.00435; Advance Publication January 13, 2017; doi:10.1105/tpc.16.00435 OPEN

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January 13, 2017 7:59 AM
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IN BRIEF: More than Window Dressing: Revealing 5-Methylcytocine Patterns that Decorate Arabidopsis RNA

IN BRIEF: More than Window Dressing: Revealing 5-Methylcytocine Patterns that Decorate Arabidopsis RNA | The Plant Cell | Scoop.it

More than Window Dressing: Revealing 5-Methylcytocine Patterns that Decorate Arabidopsis RNA

Jennifer A Lockhart

Plant Cell 2017 tpc.17.00026; Advance Publication January 12, 2017; doi:10.1105/tpc.17.00026 OPEN

 

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Scooped by Mary Williams
January 9, 2017 3:00 AM
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UUAT1 Is a Golgi-Localized UDP-Uronic Acid Transporter that Modulates the Polysaccharide Composition of Arabidopsis Seed Mucilage.

UUAT1 Is a Golgi-Localized UDP-Uronic Acid Transporter that Modulates the Polysaccharide Composition of Arabidopsis Seed Mucilage. | The Plant Cell | Scoop.it

UUAT1 Is a Golgi-Localized UDP-Uronic Acid Transporter that Modulates the Polysaccharide Composition of Arabidopsis Seed Mucilage.

Susana Saez-Aguayo, Carsten Rautengarten, Henry Temple, Dayan Sanhueza, Troy Ejsmentewicz, Omar Sandoval-Ibañez, Daniela Alejandra Doñas-Cofré, Juan Pablo Parra-Rojas, Berit Ebert, Arnaud lehner, Jean-Claude Mollet, Paul Dupree, Henrik V. Scheller, Joshua L Heazlewood, Francisca C. Reyes, and Ariel Orellana

Plant Cell 2017 tpc.16.00465; Advance Publication January 6, 2017; doi:10.1105/tpc.16.00465 OPEN

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January 7, 2017 10:51 AM
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Transcriptome-wide Mapping of RNA 5-Methylcytosine in Arabidopsis mRNAs and non-coding RNAs ($)

Transcriptome-wide Mapping of RNA 5-Methylcytosine in Arabidopsis mRNAs and non-coding RNAs ($) | The Plant Cell | Scoop.it

Transcriptome-wide Mapping of RNA 5-Methylcytosine in Arabidopsis mRNAs and non-coding RNAs

Rakesh David, Alice Burgess, Brian Parker, Jun Li, Kalinya Pulsford, Tennille Sibbritt, Thomas Preiss, and Iain R Searle

Plant Cell 2017 tpc.16.00751; Advance Publication January 6, 2017; doi:10.1105/tpc.16.00751

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December 24, 2016 3:21 AM
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Recognizing featured Plant Cell first authors, December 2016

Recognizing featured Plant Cell first authors, December 2016 | The Plant Cell | Scoop.it
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Scooped by Mary Williams
December 24, 2016 2:57 AM
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Induced Genome-Wide Binding of Three Arabidopsis WRKY Transcription Factors during Early MAMP-Triggered Immunity

Induced Genome-Wide Binding of Three Arabidopsis WRKY Transcription Factors during Early MAMP-Triggered Immunity | The Plant Cell | Scoop.it

Induced Genome-Wide Binding of Three Arabidopsis WRKY Transcription Factors during Early MAMP-Triggered Immunity

Rainer P Birkenbihl, Barbara Kracher, and Imre E. Somssich

Plant Cell 2016 tpc.16.00681; Advance Publication December 23, 2016; doi:10.1105/tpc.16.00681

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December 24, 2016 2:43 AM
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Protein Phosphatase 2Cs and Microtubule-Associated Stress Protein 1 Control Microtubule Stability, Plant Growth, and Drought Response

Protein Phosphatase 2Cs and Microtubule-Associated Stress Protein 1 Control Microtubule Stability, Plant Growth, and Drought Response | The Plant Cell | Scoop.it

Protein Phosphatase 2Cs and Microtubule-Associated Stress Protein 1 Control Microtubule Stability, Plant Growth, and Drought Response

Govinal Badiger Bhaskara, Tuan-Nan Wen, Thao Thi Nguyen, and Paul E. Verslues

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December 22, 2016 12:56 PM
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easyGWAS: A Cloud-based Platform for Comparing the Results of Genome-wide Association Studies

easyGWAS: A Cloud-based Platform for Comparing the Results of Genome-wide Association Studies | The Plant Cell | Scoop.it

easyGWAS: A Cloud-based Platform for Comparing the Results of Genome-wide Association Studies

Dominik G. Grimm, Damian Roqueiro, Patrice Salome, Stefan Kleeberger, Bastian Greshake, Wangsheng Zhu, Chang Liu, Christoph Lippert, Oliver Stegle, Bernhard Schölkopf, Detlef Weigel, and Karsten Borgwardt

Plant Cell 2016 tpc.16.00551; Advance Publication December 16, 2016; doi:10.1105/tpc.16.00551 OPEN

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December 15, 2016 12:47 PM
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The Power of Plasticity in Polyploid Persimmon

The Power of Plasticity in Polyploid Persimmon | The Plant Cell | Scoop.it

In Brief by Jennifer Lockhart

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Scooped by Mary Williams
December 13, 2016 4:18 AM
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The N-terminal UND Motif of the Arabidopsis U-box E3 Ligase PUB18 is Critical for the Negative Regulation of ABA-mediated Stomatal Movement and Determines its Ubiquitination Specificity for Exocyst...

The N-terminal UND Motif of the Arabidopsis U-box E3 Ligase PUB18 is Critical for the Negative Regulation of ABA-mediated Stomatal Movement and Determines its Ubiquitination Specificity for Exocyst... | The Plant Cell | Scoop.it

The N-terminal UND Motif of the Arabidopsis U-box E3 Ligase PUB18 is Critical for the Negative Regulation of ABA-mediated Stomatal Movement and Determines its Ubiquitination Specificity for Exocyst Subunit Exo70B1

Dong Hye Seo, Min Yong Ahn, Ki Youl Park, Eun Yu Kim, and Woo Taek Kim

Plant Cell 2016 tpc.16.00347; Advance Publication December 12, 2016; doi:10.1105/tpc.16.00347

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December 7, 2016 3:30 AM
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Orosomucoid Proteins Interact with the Small Subunit of Serine Palmitoyltransferase and Contribute to Sphingolipid Homeostasis and Stress Responses in Arabidopsis

Orosomucoid Proteins Interact with the Small Subunit of Serine Palmitoyltransferase and Contribute to Sphingolipid Homeostasis and Stress Responses in Arabidopsis | The Plant Cell | Scoop.it

Orosomucoid Proteins Interact with the Small Subunit of Serine Palmitoyltransferase and Contribute to Sphingolipid Homeostasis and Stress Responses in Arabidopsis

Jian Li, Jian Yin, Chan Rong, Kai-En Li, Jian-Xin Wu, Li-Qun Huang, Hong-Yun Zeng, Sunil Kumar Sahu, and Nan Yao

Plant Cell 2016 tpc.16.00574; Advance Publication December 6, 2016; doi:10.1105/tpc.16.00574 OPEN

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