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27 Applications of Quantitative Microscopy in Plant Surface Microbiology 549<br />

Philip-Hollingsworth S, Orgambide G, Bradford J, Smith D, Hollingsworth R, Dazzo FB<br />

(1995) Mutation or increased copy number of nodE has no effect on the spectrum of<br />

chitolipooligosaccharide Nod factors made by Rhizobium leguminosarum bv. trifolii.<br />

J Biol Chem 270:20968–20977<br />

Philip-Hollingsworth S, Hollingsworth RI, Dazzo FB (1997) Structural requirements of<br />

chitolipooligosaccharides from Rhizobium leguminosarum bv. trifolii for uptake and<br />

mitogenic activity in legume roots as revealed by synthetic analogs and bioreactive<br />

fluorescent probes. J Lipid Res 38:1229–1241<br />

Reddy PM, Ladha JK, So R, Hernandez R, Dazzo FB, Angeles O, Ramos M, de Bruijn F<br />

(1997) Rhizobial communication with rice: induction of phenotypic changes, mode<br />

of invasion and extent of colonization. Plant Soil 194:81–98<br />

Reddy C, Liu J, Wadekar M, Prabhu A, Trione D, Marshall E, Zurdo J, Liu F-I, Urbance J,<br />

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microscopy of microorganisms and their ecology. 2002 Ann. Mtg., Long-Term Ecological<br />

Research in Row-Crop Agriculture, KBS-LTER Site. Abstract at <br />

Reddy C, Liu F-I, Zurdo J, Dazzo FB (2002b) A new CMEIAS color recognition program<br />

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Plant-Microbe Interact 6:127–134<br />

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and distribution of trifoliin A, a Rhizobium-trifolii binding lectin, in Trifolium repens<br />

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bacteria to <strong>plant</strong> roots. Mol Microbiol 6:2897–2903<br />

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unique root-nodule symbiosis between Rhizobium and the aquatic legume, Neptunia<br />

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particulate form of the lectin, trifoliin A, which binds Rhizobium trifolii. Physiol Plant<br />

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van Rhijn P, Goldberg R, Hirsch A1 (1998) Lotus corniculatus nodulation specificity is<br />

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