J. Jacob Parnell
Utah State University
26 Papers
246 Citations
J. Jacob Parnell is an academic researcher from Utah State University. The author has contributed to research in topics: Burkholderia xenovorans & Biology. The author has an hindex of 18, co-authored 25 publications. Previous affiliations of J. Jacob Parnell include Novozymes & Michigan State University.
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Papers
From the Lab to the Farm: An Industrial Perspective of Plant Beneficial Microorganisms
J. Jacob Parnell,Randy M. Berka,Hugh A. Young,Joseph M. Sturino,Yaowei Kang,D. M. Barnhart,Matthew V. DiLeo +6 more
TL;DR: An overview of critical considerations involved with taking a strain from discovery to the farmer's field is provided, including what farmers desire in potential microbial products, how mode of action informs decisions on product applications, the influence of variation in laboratory and field study data, and the importance of consistent efficacy, product stability and quality.
Burkholderia xenovorans LB400 harbors a multi-replicon, 9.73-Mbp genome shaped for versatility
Patrick S. G. Chain,Vincent J. Denef,Konstantinos T. Konstantinidis,Konstantinos T. Konstantinidis,Lisa M. Vergez,Lisa M. Vergez,Loreine Agulló,Valeria Latorre Reyes,Valeria Latorre Reyes,Loren Hauser,Macarena Córdova,Luis Gómez,Myriam González,Miriam Land,Victoria Lao,Frank W. Larimer,John J. LiPuma,Eshwar Mahenthiralingam,Stephanie Malfatti,Stephanie Malfatti,Christopher J. Marx,J. Jacob Parnell,Alban Ramette,Paul G. Richardson,Michael Seeger,Daryl J. Smith,Theodore Spilker,Woo Jun Sul,Tamara V. Tsoi,Luke E. Ulrich,Igor B. Zhulin,James M. Tiedje +31 more
TL;DR: The first nonpathogenic B. xenovorans LB400 (LB400) isolate has been sequenced in this article, where the authors find significant differences in functional specialization between the three replicons of LB400.
Soil Chemical Analysis Applied as an Interpretive Tool for Ancient Human Activities in Piedras Negras, Guatemala
TL;DR: In this article, the applicability of soil chemical analysis to the interpretation of ancient human activity areas in the Maya region was studied for potential implications in anthropogenically modified soils, including soil phosphate and trace metals as indicators of ancient activity.
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Chemical Analyses of Ancient Anthrosols in Residential Areas at Piedras Negras, Guatemala
E. Christian Wells,Richard E. Terry,J. Jacob Parnell,Perry J. Hardin,Mark W. Jackson,Stephen Houston +5 more
TL;DR: In this paper, the results of phosphate and heavy metals analyses of soils in residential areas at Piedras Negras, Guatemala, were presented and some preliminary interpretations of the patterns obtained.
184
The story in the floors: Chemical signatures of ancient and modern Maya activities at Aguateca, Guatemala
TL;DR: In this article, the results of soil chemical analysis of modern and ancient residential structures at the archaeological park of Aguateca, Guatemala were reported, showing that high levels of heavy metals in the modern structures probably derived from the filing of machetes and the disposal of flashlight batteries, whereas the use of mineral pigments and craft activities appear to have contributed to the concentrations of these elements in archaeological contexts.
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