Works (5)

Updated: March 7th, 2024 05:00

2024 journal article

<i>IPD3</i>, a master regulator of arbuscular mycorrhizal symbiosis, affects genes for immunity and metabolism of non-host <i>Arabidopsis</i> when restored long after its evolutionary loss

PLANT MOLECULAR BIOLOGY, 114(2).

By: E. Hornstein n, M. Charles n, M. Franklin n, B. Edwards n, S. Vintila n, M. Kleiner n, H. Sederoff n

author keywords: Mycorrhizae; Symbiosis; Non-mycorrhizal; Genetic engineering; Systems biology; Plant transcriptomics
TL;DR: Interestingly, the effect of expressing IPD3 in Arabidopsis and knocking it out in Lotus was strongest in plants not exposed to AMF, which is revealed to be due to changes in IPD3 genotype causing a transcriptional state, which partially mimics AMF exposure in non-inoculated plants. (via Semantic Scholar)
UN Sustainable Development Goal Categories
2. Zero Hunger (Web of Science; OpenAlex)
15. Life on Land (Web of Science)
Sources: Web Of Science, ORCID, NC State University Libraries
Added: February 22, 2024

2024 article

Long- and short-read sequencing methods discover distinct circular RNA pools in <i>Lotus japonicus</i>

Budnick, A., Franklin, M. J., Utley, D., Edwards, B., Charles, M., Hornstein, E. D., & Sederoff, H. (2024, January 20). PLANT GENOME, Vol. 1.

By: A. Budnick n, M. Franklin n, D. Utley n, B. Edwards n, M. Charles n, E. Hornstein n, H. Sederoff n

TL;DR: This is the first identification of L. japonicus circRNA and provides a resource for further characterization of their function in gene regulation and the comparison of methodologies and technologies to sequence, identify, analyze, and validate circRNA from plant tissues will enable further research to characterize the function and biogenesis of circRNA in L. japonicus. (via Semantic Scholar)
Sources: Web Of Science, ORCID, NC State University Libraries
Added: January 28, 2024

2023 article

Back to the Future: Re-Engineering the Evolutionarily Lost Arbuscular Mycorrhiza Host Trait to Improve Climate Resilience for Agriculture

Hornstein, E. D., & Sederoff, H. (2023, September 13). CRITICAL REVIEWS IN PLANT SCIENCES, Vol. 9.

By: E. Hornstein n & H. Sederoff n

author keywords: Agriculture; climate change; genetic engineering; microbiome; mycorrhizae; molecular biology; symbiosis; sustainability
Sources: Web Of Science, ORCID, NC State University Libraries
Added: September 15, 2023

2022 journal article

High-throughput detection of T-DNA insertion sites for multiple transgenes in complex genomes

BMC GENOMICS, 23(1).

By: B. Edwards n, E. Hornstein n, N. Wilson n & H. Sederoff n

author keywords: Transgene; Insertion site; Polyploid; T-DNA; Sequencing
MeSH headings : DNA, Bacterial / genetics; Plant Breeding; Plants, Genetically Modified / genetics; Transgenes
TL;DR: A simple method to identify the sites of transgene insertions using T-DNA-specific primers and high-throughput sequencing that enables identification of multiple insertion sites in the T 1 generation of any crop transformed via Agrobacterium. (via Semantic Scholar)
Sources: Web Of Science, NC State University Libraries
Added: October 17, 2022

2022 journal article

Lessons for a SECURE Future: Evaluating Diversity in Crop Biotechnology Across Regulatory Regimes

FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 10.

By: D. George n, E. Hornstein n, C. Clower n, A. Coomber n, D. Dillard n, N. Mugwanya n, D. Pezzini n, C. Rozowski n

author keywords: crop biotechnology; SECURE rule; regulation; diversity trends; innovation; United States
TL;DR: It is suggested that diversity in crop biotechnology does not follow a single trajectory dictated by the shifts in regulation, and outcomes of SECURE might be more varied and restrictive despite the revamped exemption categories. (via Semantic Scholar)
Sources: Web Of Science, NC State University Libraries, ORCID
Added: May 31, 2022

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