Works matching IS 0028646X AND DT 2022 AND VI 233 AND IP 1
Results: 45
The rise of necrotrophic effectors.
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- New Phytologist, 2022, v. 233, n. 1, p. 11, doi. 10.1111/nph.17811
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Handling the heat – photosynthetic thermal stress in tropical trees.
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- New Phytologist, 2022, v. 233, n. 1, p. 236, doi. 10.1111/nph.17809
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Forest understorey communities respond strongly to light in interaction with forest structure, but not to microclimate warming.
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- New Phytologist, 2022, v. 233, n. 1, p. 219, doi. 10.1111/nph.17803
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Regulation of plant immunity and growth by tomato receptor‐like cytoplasmic kinase TRK1.
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- New Phytologist, 2022, v. 233, n. 1, p. 458, doi. 10.1111/nph.17801
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The mRNA‐binding proteome of a critical phase transition during Arabidopsis seed germination.
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- New Phytologist, 2022, v. 233, n. 1, p. 251, doi. 10.1111/nph.17800
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PuC3H35 confers drought tolerance by enhancing lignin and proanthocyanidin biosynthesis in the roots of Populus ussuriensis.
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- New Phytologist, 2022, v. 233, n. 1, p. 390, doi. 10.1111/nph.17799
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Recent origination of circular RNAs in plants.
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- New Phytologist, 2022, v. 233, n. 1, p. 515, doi. 10.1111/nph.17798
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Environmental and plant community drivers of plant pathogen composition and richness.
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- New Phytologist, 2022, v. 233, n. 1, p. 496, doi. 10.1111/nph.17797
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Accumulation of 22 kDa α‐zein‐mediated nonzein protein in protein body of maize endosperm.
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- New Phytologist, 2022, v. 233, n. 1, p. 265, doi. 10.1111/nph.17796
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Red light shines a path forward on leaf minimum conductance.
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- New Phytologist, 2022, v. 233, n. 1, p. 5, doi. 10.1111/nph.17794
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Linked selection shapes the landscape of genomic variation in three oak species.
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- New Phytologist, 2022, v. 233, n. 1, p. 555, doi. 10.1111/nph.17793
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Mutually opposing activity of PIN7 splicing isoforms is required for auxin‐mediated tropic responses in Arabidopsis thaliana.
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- New Phytologist, 2022, v. 233, n. 1, p. 329, doi. 10.1111/nph.17792
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A CLE–BAM–CIK signalling module controls root protophloem differentiation in Arabidopsis.
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- New Phytologist, 2022, v. 233, n. 1, p. 282, doi. 10.1111/nph.17791
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Perennial, but not annual legumes synergistically benefit from infection with arbuscular mycorrhizal fungi and rhizobia: a meta‐analysis.
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- New Phytologist, 2022, v. 233, n. 1, p. 505, doi. 10.1111/nph.17787
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In vivo monitoring of drought‐induced embolism in Callitris rhomboidea trees reveals wide variation in branchlet vulnerability and high resistance to tissue death.
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- New Phytologist, 2022, v. 233, n. 1, p. 207, doi. 10.1111/nph.17786
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Abscisic acid employs NRP‐dependent PIN2 vacuolar degradation to suppress auxin‐mediated primary root elongation in Arabidopsis.
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- New Phytologist, 2022, v. 233, n. 1, p. 297, doi. 10.1111/nph.17783
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Methane emissions may be driven by hydrogenotrophic methanogens inhabiting the stem tissues of poplar.
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- New Phytologist, 2022, v. 233, n. 1, p. 182, doi. 10.1111/nph.17778
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Stress associated proteins coordinate the activation of comprehensive antiviral immunity in Phalaenopsis orchids.
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- New Phytologist, 2022, v. 233, n. 1, p. 145, doi. 10.1111/nph.17776
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SERKs regulate embryonic cuticle integrity through the TWS1‐GSO1/2 signaling pathway in Arabidopsis.
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- New Phytologist, 2022, v. 233, n. 1, p. 313, doi. 10.1111/nph.17775
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Global maps and factors driving forest foliar elemental composition: the importance of evolutionary history.
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- New Phytologist, 2022, v. 233, n. 1, p. 169, doi. 10.1111/nph.17771
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Pathogen‐driven coevolution across the CBP60 plant immune regulator subfamilies confers resilience on the regulator module.
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- New Phytologist, 2022, v. 233, n. 1, p. 479, doi. 10.1111/nph.17769
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UDP‐N‐acetylglucosamine pyrophosphorylase enhances rice survival at high temperature.
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- New Phytologist, 2022, v. 233, n. 1, p. 344, doi. 10.1111/nph.17768
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Drought reduces water uptake in beech from the drying topsoil, but no compensatory uptake occurs from deeper soil layers.
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- New Phytologist, 2022, v. 233, n. 1, p. 194, doi. 10.1111/nph.17767
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A dated phylogeny shows Plio‐Pleistocene climates spurred evolution of antibrowsing defences in the New Zealand flora.
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- New Phytologist, 2022, v. 233, n. 1, p. 546, doi. 10.1111/nph.17766
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Highly efficient transformation of the model zygnematophycean alga Closterium peracerosum‐strigosum‐littorale complex by square‐pulse electroporation.
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- New Phytologist, 2022, v. 233, n. 1, p. 569, doi. 10.1111/nph.17763
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Evolutionary divergence in embryo and seed coat development of U's Triangle Brassica species illustrated by a spatiotemporal transcriptome atlas.
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- New Phytologist, 2022, v. 233, n. 1, p. 30, doi. 10.1111/nph.17759
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Phytophthora infestans Ago1‐associated miRNA promotes potato late blight disease.
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- New Phytologist, 2022, v. 233, n. 1, p. 443, doi. 10.1111/nph.17758
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Mesophyll conductance exerts a significant limitation on photosynthesis during light induction.
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- New Phytologist, 2022, v. 233, n. 1, p. 360, doi. 10.1111/nph.17757
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Holocentric plants are more competitive under higher UV‐B doses.
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- New Phytologist, 2022, v. 233, n. 1, p. 15, doi. 10.1111/nph.17750
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Phylogenomic analysis points to a South American origin of Manihot and illuminates the primary gene pool of cassava.
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- New Phytologist, 2022, v. 233, n. 1, p. 534, doi. 10.1111/nph.17743
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Unravelling the molecular networks that regulate kiwifruit flavor.
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- New Phytologist, 2022, v. 233, n. 1, p. 8, doi. 10.1111/nph.17740
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Coevolution and photoprotection as complementary hypotheses for autumn leaf reddening: a nutrient‐centered perspective.
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- New Phytologist, 2022, v. 233, n. 1, p. 22, doi. 10.1111/nph.17735
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Crop genetic erosion: understanding and responding to loss of crop diversity.
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- New Phytologist, 2022, v. 233, n. 1, p. 84, doi. 10.1111/nph.17733
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Shifting seasonal patterns of water availability: ecosystem responses to an unappreciated dimension of climate change.
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- New Phytologist, 2022, v. 233, n. 1, p. 119, doi. 10.1111/nph.17728
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Epigenetics: a catalyst of plant immunity against pathogens.
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- New Phytologist, 2022, v. 233, n. 1, p. 66, doi. 10.1111/nph.17699
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Fly pollination drives convergence of flower coloration.
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- New Phytologist, 2022, v. 233, n. 1, p. 52, doi. 10.1111/nph.17696
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Reversion of fruit‐dependent inhibition of flowering in Citrus requires sprouting of buds with epigenetically silenced CcMADS19.
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- New Phytologist, 2022, v. 233, n. 1, p. 526, doi. 10.1111/nph.17681
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Revisiting florivory: an integrative review and global patterns of a neglected interaction.
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- New Phytologist, 2022, v. 233, n. 1, p. 132, doi. 10.1111/nph.17670
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Discovering the forest in plain sight: a pop‐up Symposium focusing on seasonally dry tropical forests.
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- New Phytologist, 2022, v. 233, n. 1, p. 62, doi. 10.1111/nph.17644
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Integrative analyses of metabolome and genome‐wide transcriptome reveal the regulatory network governing flavor formation in kiwifruit (Actinidia chinensis).
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- New Phytologist, 2022, v. 233, n. 1, p. 373, doi. 10.1111/nph.17618
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The Parastagonospora nodorum necrotrophic effector SnTox5 targets the wheat gene Snn5 and facilitates entry into the leaf mesophyll.
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- New Phytologist, 2022, v. 233, n. 1, p. 409, doi. 10.1111/nph.17602
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A triple threat: the Parastagonospora nodorum SnTox267 effector exploits three distinct host genetic factors to cause disease in wheat.
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- New Phytologist, 2022, v. 233, n. 1, p. 427, doi. 10.1111/nph.17601
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Cuticular conductance of adaxial and abaxial leaf surfaces and its relation to minimum leaf surface conductance.
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- New Phytologist, 2022, v. 233, n. 1, p. 156, doi. 10.1111/nph.17588
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Do woody vines use gelatinous fibers to climb?
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- New Phytologist, 2022, v. 233, n. 1, p. 126, doi. 10.1111/nph.17576
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Issue Information.
- Published in:
- New Phytologist, 2022, v. 233, n. 1, p. 1, doi. 10.1111/nph.17481
- Publication type:
- Article