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Michael Regulski

Explore the profile of Michael Regulski including associated specialties, affiliations and a list of published articles. Areas
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Articles 27
Citations 1435
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Recent Articles
1.
Cahn J, Regulski M, Lynn J, Ernst E, de Santis Alves C, Ramakrishnan S, et al.
Nat Commun . 2024 Dec; 15(1):10854. PMID: 39738013
Modern maize (Zea mays ssp. mays) was domesticated from Teosinte parviglumis (Zea mays ssp. parviglumis), with subsequent introgressions from Teosinte mexicana (Zea mays ssp. mexicana), yielding increased kernel row number,...
2.
Grosjean N, Zhang L, Kumaran D, Xie M, Fahey A, Santiago K, et al.
J Biol Chem . 2024 Oct; 300(11):107888. PMID: 39395795
Due to neofunctionalization, a single fold can be identified in multiple proteins that have distinct molecular functions. Depending on the time that has passed since gene duplication and the number...
3.
Wang B, Chougule K, Jiao Y, Olson A, Kumar V, Gladman N, et al.
NAR Genom Bioinform . 2024 Aug; 6(3):lqae097. PMID: 39131819
(L.) Moench is a significant grass crop globally, known for its genetic diversity. High quality genome sequences are needed to capture the diversity. We constructed high-quality, chromosome-level genome assemblies for...
4.
Zhang L, Braynen J, Fahey A, Chopra K, Cifani P, Tadesse D, et al.
Front Plant Sci . 2023 Nov; 14:1237722. PMID: 37965006
Metal homeostasis has evolved to tightly modulate the availability of metals within the cell, avoiding cytotoxic interactions due to excess and protein inactivity due to deficiency. Even in the presence...
5.
Gladman N, Hufnagel B, Regulski M, Liu Z, Wang X, Chougule K, et al.
Plant Direct . 2022 May; 6(5):e393. PMID: 35600998
Efficient acquisition and use of available phosphorus from the soil is crucial for plant growth, development, and yield. With an ever-increasing acreage of croplands with suboptimal available soil phosphorus, genetic...
6.
Wang L, Lu Z, Regulski M, Jiao Y, Chen J, Ware D, et al.
Bioinformatics . 2020 Aug; 37(3):382-387. PMID: 32777814
Summary: With the advance of next-generation sequencing technologies and reductions in the costs of these techniques, bulked segregant analysis (BSA) has become not only a powerful tool for mapping quantitative...
7.
Wang L, Lu Z, DelaBastide M, Van Buren P, Wang X, Ghiban C, et al.
Front Plant Sci . 2020 Apr; 11:289. PMID: 32296450
MaizeCODE is a project aimed at identifying and analyzing functional elements in the maize genome. In its initial phase, MaizeCODE assayed up to five tissues from four maize strains (B73,...
8.
Wang B, Tseng E, Baybayan P, Eng K, Regulski M, Jiao Y, et al.
Commun Biol . 2020 Feb; 3(1):78. PMID: 32071408
Haplotype phasing maize genetic variants is important for genome interpretation, population genetic analysis and functional analysis of allelic activity. We performed an isoform-level phasing study using two maize inbred lines...
9.
Gladman N, Jiao Y, Lee Y, Zhang L, Chopra R, Regulski M, et al.
Int J Mol Sci . 2019 Oct; 20(19). PMID: 31597271
As in other cereal crops, the panicles of sorghum ( (L.) Moench) comprise two types of floral spikelets (grass flowers). Only sessile spikelets (SSs) are capable of producing viable grains,...
10.
Gold D, Katsuki T, Li Y, Yan X, Regulski M, Ibberson D, et al.
Nat Ecol Evol . 2018 Dec; 3(1):96-104. PMID: 30510179
We present the genome of the moon jellyfish Aurelia, a genome from a cnidarian with a medusa life stage. Our analyses suggest that gene gain and loss in Aurelia is...