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991.
Kealoha Andrea K. Doyle Shawn M. Shamberger Kathryn E. F. Sylvan Jason B. Hetland Robert D. DiMarco Steven F. 《Coral reefs (Online)》2020,39(1):119-132
Coral Reefs - On July 25, 2016, turbid water and dead corals, sponges and other invertebrates were discovered at the East Bank (EB) of the Flower Garden Banks (FGB) National Marine Sanctuary.... 相似文献
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Jessica E. Shyvers Brett L. Walker Sara J. Oyler-McCance Jennifer A. Fike Barry R. Noon 《Ibis》2020,162(3):749-765
The Sage Grouse Centrocercus urophasianus is a species of conservation concern throughout its range in western North America. Since the 1950s, the high count of males at leks has been used as an index for monitoring populations. However, the relationship between this lek-count index and population size is unclear, and its reliability for assessing population trends has been questioned. We used non-invasive genetic mark-recapture analysis of faecal and feather samples to estimate pre-breeding population size for the Parachute-Piceance-Roan, a small, geographically isolated population of Sage Grouse in western Colorado, during two consecutive winters from 2012 to 2014. We estimated total pre-breeding population size as 335 (95% confidence interval (CI): 287–382) in the first winter and 745 (95% CI: 627–864) in the second, an approximate doubling in abundance between years. Although we also observed a large increase in the spring lek-count index between those years, high male count data poorly represented mark-recapture estimates of male abundance in each year. Our data suggest that lek counts are useful for detecting the direction and magnitude of large changes in Sage Grouse abundance over time but they may not reliably reflect small changes in abundance that may be relevant to small populations of conservation concern. 相似文献
995.
Weiss Steven Grimm Jacqueline Gonçalves Duarte V. Secci-Petretto Giulia Englmaier Gernot K. Baimukanov Mirgaliy Froufe Elsa 《Hydrobiologia》2020,847(13):2823-2844
Hydrobiologia - A high number of grayling (Thymallus) species have been described from the Altai-Sayan mountain region, for which little to no genetic information is available. We investigated... 相似文献
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Resolving the polymorphism-in-probe problem is critical for correct interpretation of expression QTL studies 总被引:1,自引:0,他引:1
Adaikalavan Ramasamy Daniah Trabzuni J. Raphael Gibbs Allissa Dillman Dena G. Hernandez Sampath Arepalli Robert Walker Colin Smith Gigaloluwa Peter Ilori Andrey A. Shabalin Yun Li Andrew B. Singleton Mark R. Cookson for NABEC John Hardy for UKBEC Mina Ryten Michael E. Weale 《Nucleic acids research》2013,41(7):e88
999.
Nina Hobbhahn Steven D. Johnson Benny Bytebier Edward C. Yeung Lawrence D. Harder 《Annals of botany》2013,112(7):1303-1319
Background and Aims
The Orchidaceae have a history of recurring convergent evolution in floral function as nectar production has evolved repeatedly from an ancestral nectarless state. However, orchids exhibit considerable diversity in nectary type, position and morphology, indicating that this convergence arose from alternative adaptive solutions. Using the genus Disa, this study asks whether repeated evolution of floral nectaries involved recapitulation of the same nectary type or diversifying innovation. Epidermis morphology of closely related nectar-producing and nectarless species is also compared in order to identify histological changes that accompanied the gain or loss of nectar production.Methods
The micromorphology of nectaries and positionally equivalent tissues in nectarless species was examined with light and scanning electron microscopy. This information was subjected to phylogenetic analyses to reconstruct nectary evolution and compare characteristics of nectar-producing and nectarless species.Key Results
Two nectary types evolved in Disa. Nectar exudation by modified stomata in floral spurs evolved twice, whereas exudation by a secretory epidermis evolved six times in different perianth segments. The spur epidermis of nectarless species exhibited considerable micromorphological variation, including strongly textured surfaces and non-secreting stomata in some species. Epidermis morphology of nectar-producing species did not differ consistently from that of rewardless species at the magnifications used in this study, suggesting that transitions from rewardlessness to nectar production are not necessarily accompanied by visible morphological changes but only require sub-cellular modification.Conclusions
Independent nectary evolution in Disa involved both repeated recapitulation of secretory epidermis, which is present in the sister genus Brownleea, and innovation of stomatal nectaries. These contrasting nectary types and positional diversity within types imply weak genetic, developmental or physiological constraints in ancestral, nectarless Disa. Such functional convergence generated by morphologically diverse solutions probably also underlies the extensive diversity of nectary types and positions in the Orchidaceae. 相似文献1000.