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Articles citing this paper

The Transverse Veins of the Wheat Leaf

J Kuo, TP O'brien and S-Y Zee
25(4) pp.721 - 738


28 articles found in Crossref database.

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Revisiting yield in terms of phloem transport to grains suggests phloem sap movement might be homeostatic
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An analysis of resistance to water flow through wheat and tall fescue leaves during pressure chamber efflux experiments
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Plant, Cell & Environment. 1985 8(1). p.7
Improved Yield and Photosynthate Partitioning in AVP1 Expressing Wheat (Triticum aestivum) Plants
Regmi Kamesh C., Yogendra Kalenahalli, Farias Júlia Gomes, Li Lin, Kandel Raju, Yadav Umesh P., Sha Shengbo, Trittermann Christine, Short Laura, George Jessey, Evers John, Plett Darren, Ayre Brian G., Roy Stuart John, Gaxiola Roberto A.
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ULTRASTRUCTURAL FEATURES OF DEVELOPING SIEVE ELEMENTS IN LEMNA MINOR L.—THE PROTOPLAST
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American Journal of Botany. 1976 63(8). p.1145
The effect of low temperatures on the phloem transport of radioactive assimilates in the stolon of Saxifraga sarmentosa L.
CHAMBERLAIN IRENE S., SPANNER D. C.
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VASCULAR SYSTEM OF LODICULES OF DACTYLIS GLOMERATA L.
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American Journal of Botany. 1983 70(1). p.17
ULTRASTRUCTURAL FEATURES OF DEVELOPING SIEVE ELEMENTS IN LEMNA MINOR L.—SIEVE PLATE AND LATERAL SIEVE AREAS
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American Journal of Botany. 1976 63(9). p.1174
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Suberized bundle sheaths in grasses (Poaceae) of different photosynthetic types I. Anatomy, ultrastructure and histochemistry
Eastman P. Ann K., Dengler Nancy G., Peterson Carol A.
Protoplasma. 1988 142(2-3). p.92
Development of protophloem in roots ofAegilops comosa var.thessalica. II. Sieve-element differentiation
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Wheat and Wheat Improvement (2015)
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PATHWAY OF WATER MOVEMENT IN HYDROIDS OF POLYTRICHUM COMMUNE HEDW. (BRYOPSIDA)
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Pit-field distribution, plasmodesmatal frequency, and assimilate flux in the mestome sheath cells of wheat leaves
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Ultrastructure of metaphloem sieve elements inZea mays
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