TL;DR: Genetic analyses of resistance in the PNW, and elsewhere, reveal a pattern whereby genes for resistance are inherited in interspecific hybrids from the exotic, noncoevolved Populus parent.
Abstract: Summary
The cultivation of hybrid poplar in the Pacific North-west (PNW) has expanded in the last 15 years. Native Populus trichocarpa is susceptible to many pests and fungal pathogens but its interspecific hybrids were largely disease-free until 1991 when Melampsora medusae f. sp. deltoidae first appeared in the region. Genetic analyses of resistance in the PNW, and elsewhere, reveal a pattern whereby genes for resistance are inherited in interspecific hybrids from the exotic, noncoevolved Populus parent. With some pathogen/poplar hybrid combinations, this resistance segregates in the F1 generation, but with others, only in the F2. Such exapted resistance is now known to occur in P. trichocarpa (versus the exotic, eastern North American rust species, M. medusae f. sp. deltoidae), in Populus deltoides (versus the Eurasian rust, Melampsora larici-populina, the PNW population of Septoria populicola, and an undescribed PNW eriophyid mite), and in Populus maximowiczii (versus Melampsora occidentalis, and the PNW populations of Venturia populina, S. populicola, and Linospora tetraspora).
TL;DR: Stable isotopes provided additional evidence of mycoparasitism, as E. caricis was enriched with 15N relative to its associated rust fungus, as were parasites and myCoparasites generally with respect to their hosts, and the analysis revealed that mycoparsites of rust and powdery mildew fungi have evolved from a common ancestor.
TL;DR: Seasonal patterns varied with trait, plantation, year, and origin of clones, and the patterns of genetic variation have implications for short-rotation intensive-culture forestry and management of natural populations.
TL;DR: The trait/growth relationships as well as trait stability within clones have implications for selecting clonal stock in poplar culture and conservation and genetic correlations with growth revealed similar trends as phenotypic analyses.
Abstract: A common-garden study of Populus trichocarpa Torr. & Gray was established in spring 1986 with 128 clones collected from sites along two mesic (Hoh and Nisqually) and two xeric (Dungeness and Yakima) river valleys in Washington. Two replicate plantations, one in Puyallup and the other in Wenatchee, Wash., were established with this material. Over 2 years data were taken on stem growth, leaf/crown characters, spring/autumn phenology, and the incidence of Melampsora occidentalis leaf rust. Combining clones from all four sources, correlation/regression analyses were used to examine clonal stability of traits between test sites and trait relationships with stem growth; broad-sense heritabilities (H
2) and genetic correlations revealed the genetic strength of these traits. At Puyallup, many leaf/crown traits predicted stem growth moderately to very well (r
2>0.50), e.g., total leaf area (TLA) to diameter gave an r
2 of 0.91 and current-terminal leaf size, of 0.79. Some regressions were quadratic, suggesting a threshold level in a trait (e.g., leaf size) beyond which stem growth levels off. Upper-crown TLA was more closely related to height than TLA of the lower sylleptics, but the reverse was true for diameter. A decline in r
2 values from upper to lower crown positions was sharper for correlations of TLAs with height than with diameter. Thus, leaf area allocation seems to differentially affect stem growth. When autumn leaf fall (LF) and rust incidence (R) were regressed with growth, r
2 values ranged from 0.58 to 0.71, but those of spring flush (SF) were only 0.10 to 0.12. Early LF and high R, both negatively affecting growth, had a strong geographic component as it occurred mainly on lower-elevation Yakima clones. At Wenatchee, field conditions were harsher and microsites more variable, so trait/growth relationships were weaker. Genetic correlations with growth revealed similar trends as phenotypic analyses. Unlike leaf/crown traits, clonal scores of LF, SF, and R were fairly stable across the two test sites (r
2: 0.58–0.80). These traits also showed strong genetic control (H
2: 0.96–0.98). The trait/growth relationships as well as trait stability within clones have implications for selecting clonal stock in poplar culture and conservation.
TL;DR: Potted ramets of 14 western black cottonwood clones from southern British Columbia were inoculated with Melampsoraoccidentalis H. Jacks to produce a range of disease severities, and their size and dry weight were determined after 1 or 2 years.
Abstract: Potted ramets of 14 western black cottonwood (Populustrichocarpa Torr. & Gray) clones from southern British Columbia were inoculated with Melampsoraoccidentalis H. Jacks to produce a range of disease severities, and their size and dry weight were determined after 1 or 2 years. Response to inoculation varied significantly between clones. Clones from drier interior locations were less resistant than those from coastal or moister interior locations. Local- (within leaf) or systemic-induced resistance was not detected. Yield (total dry weight) decreased linearly with disease severity. Percent reduction in yield was greater than the cumulative percent leaf area infected for all clones. Yield losses were substantial: dry weights of ramets with disease severity levels similar to those experienced by natural cottonwood populations were about 75% of controls; heavily infected ramets were <50% of controls. Stem:root ratios increased rapidly with increasing disease severity in all clones, and at significantly differ...