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Gnp4/LAX2, a RAWUL protein, interferes with the OsIAA3–OsARF25 interaction to regulate grain length via the
#auxin signaling pathway in#rice http://bit.ly/2MGWkUg#openaccesspic.twitter.com/YhpZpKlulv
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Early mannitol-triggered changes in the
#Arabidopsis leaf (phospho)proteome reveal growth regulators http://bit.ly/2BwrQ30#openaccesspic.twitter.com/BN3Vtw9xtl
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#Arabidopsis UMAMIT24 and 25 are amino acid exporters involved in#seed loading http://bit.ly/2CUZrnZ#openaccess See videos at JXB YouTube http://bit.ly/2D8OlMn pic.twitter.com/Yrv1bE3Ogd
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Greater lateral
#root branching density in#maize improves#phosphorus acquisition from low phosphorus soil http://bit.ly/2Ad5qTx#openaccesspic.twitter.com/xx03lXhwpA
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Garcia Tavares et al. have identified a Key Gene to Accelerate Sugarcane Growth http://bit.ly/2pgNeQJ in
@JXBot http://bit.ly/2peNsI9 pic.twitter.com/4IgvMfOmFd
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CUP-SHAPED COTYLEDON1 (CUC1) and CUC2 regulate
#cytokinin homeostasis to determine ovule number in#Arabidopsis http://bit.ly/2BxaDGC#openaccesspic.twitter.com/2nANuhMuff
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Viewpoint: Extracellular vesicles: a missing component in plant cell wall remodeling http://bit.ly/2pgw6uh by L de la Canal & M Pinedopic.twitter.com/J7t1n5OeUp
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On the cover: view of inflorescence stem of A. thaliana hda19 fd double mutant. This aberrant condition results from a dysfunctional inflorescence meristem that initiates a spiral of individual stamen-like organs in place of floral meristems. Gorham et al http://bit.ly/2D30h1Z pic.twitter.com/dLfeM1YKoj
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Insight: Growing plants in fluctuating environments: why bother? http://bit.ly/2MK5YSc by Shizue Matsubarapic.twitter.com/x0ZN2UlXfV
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New issue Online http://bit.ly/2D25APh plant epitranscriptome, SPL genes & plant architecture, salt tissue tolerance, root branching & P, peroxisomal responses to drought …pic.twitter.com/fSLo3sgGH1
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GhHUB2, a
#ubiquitin ligase, is involved in#cotton fiber development via the ubiquitin–26S proteasome pathway http://bit.ly/2N49GXA#openaccessThanks. Twitter will use this to make your timeline better. UndoUndo -
JXB Retweeted
What We're Reading:
@JXBot on post-translational mods, plant epitranscriptome, awesome power of P-lation, of LRR-RKs and TFs. Xyllela fastidiosa, carboxysomes in chloroplasts, auxin in crown gall, jumping sex genes, CLASP-BR feedback & JA-Ile agonists. https://plantae.org/what-were-reading-september-14th/ …pic.twitter.com/gOE6kK6l0k
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AtCaM4 interacts with a Sec14-like protein, PATL1, to regulate
#freezing tolerance in#Arabidopsis in a CBF-independent manner http://bit.ly/2Po5J1D pic.twitter.com/1ShV7yPi4t
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A SOC1-like gene MtSOC1a promotes
#flowering and primary stem elongation in#Medicago http://bit.ly/2wfmYcs#openaccesspic.twitter.com/LtEaeCbZ6P
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JXB Retweeted
Great that people are signing up to review for
@JXBot here at#PPPCD18 in#PeerReviewWeek Why not create a profile? https://submit.jxbot.org pic.twitter.com/7wAd3TFpKG
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#Mesophyll conductance in#cotton bracts: anatomically determined internal CO2 diffusion constraints on photosynthesis http://bit.ly/2MV1DjO@JaumeFlexas73#openaccesspic.twitter.com/WIuBigFnb4
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Expression of SULTR2;2, encoding a low-affinity sulphur transporter, in the
#Arabidopsis bundle sheath and vein cells is mediated by a positive regulator http://bit.ly/2ObKteK#openaccesspic.twitter.com/wt5EeGU7Jj
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JXB Retweeted
A recent exemple from Mark Stitt's lab: https://academic.oup.com/jxb/advance-article/doi/10.1093/jxb/ery276/5059140 … "Response of Arabidopsis primary metabolism and circadian clock to low night temperature in a natural light environment"
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JXB Retweeted
VACANCY: INDEPENDENT TRUSTEE FOR SEB - https://goo.gl/qJe7Fp pic.twitter.com/Lp3tElntDc
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#Photorespiration differs among#Arabidopsis thaliana ecotypes and is correlated with photosynthesis http://bit.ly/2nYTuMg#openaccesspic.twitter.com/7lw6z2OFM5
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