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Biomedical subjects

T O Diener

Publications and source records attributed to T O Diener.

13 recordsLinked to original sources

Identification of multiple structural domains regulating viroid pathogenicity.

To investigate the role of individual structural domains in viroid pathogenicity and replication, a series of interspecific chimeras was constructed by exchanging the terminal left (TL) and/or pathogenicity (P) domains between tomato apical stunt (TASVd) and citrus exocortis (CEVd) viroids. All six chimeras tested were replicated stably in tomato, and the symptoms exhibited by infected plants were intermediate between those induced by the parental viroids. Quantitative comparisons of symptom development and progeny accumulation revealed that: (i) the TL domain of TASVd contains a determinant required for appearance of severe veinal necrosis in tomato, (ii) the severe epinasty and stunting characteristic of TASVd requires the presence of its TL and P domains, and (iii) the variable (V) and terminal right (TR) domains comprising the right side of the native structure also play an important role in viroid pathogenicity. Chimeras containing the right side of TASVd accumulated to higher levels early in infection, and infected plants developed more severe symptoms than those whose right halves were derived from CEVd. Although the individual contributions of the TL and P domains to symptom induction could not be completely separated from that of viroid titer, the TL domain appears to exert a greater effect upon symptom severity than does the P domain. The TL, P, V, and TR domains of TASVd and CEVd contain three discrete regions of sequence and/or structural variability that may correspond to the pathogenicity determinants uncovered by our genetic analysis.

Base Sequence

Viroid discovery.

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History, 20th Century

Viroids: structure and function.

Viroids are nucleic acid species of relatively low molecular weight and unique structure that cause several important diseases of cultivated plants. Similar nucleic acid species may be responsible for certain diseases of animals and humans. Viroids are the smallest known agents of infectious disease. Unlike viral nucleic acids, viroids are not encapsidated. Despite their small size, viroids replicate autonomously in cells of susceptible plant species. Known viroids are single-stranded, covalently closed circular, as well as linear, RNA molecules with extensive regions of intramolecular complementarity; they exist in their native state as highly base-paired rods.

Base Sequence

Separation and infectivity of circular and linear forms of potato spindle tuber viroid.

Potato spindle tuber viroid can be separated into two fractions by polyacrylamide gelelectrophoresis in the presence of formamide and urea. One fraction contains predominantly circular molecules; the second fraction contains almost exclusively linear molecules. The purity of the fractions was estimated by electron microscopy of formaldehyde-denatured molecules. The length distributions of denatured circular and linear molecules were determined. Both circular and linear molecules were found to be infectious.

Electrophoresis, Polyacrylamide Gel

Towards an understanding of viroid nature and replication.

In leaf strips and in nuclei isolated from potato spindle tuber viroid (PSTV)-infected tomato, incorporation of [3H]UMP into PSTV is shown to be inhibited by pre-treatment of the leaf-strips with actinomycin D. These results demonstrate that PSTV is synthesized in the cell nucleus and that replication may occur from a DNA template.

Cell Nucleus