日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Improved vectors for retron-mediated CRISPR-Cas9 genome editing in Saccharomyces cerevisiae

酿酒酵母中用于逆转录子介导的 CRISPR-Cas9 基因组编辑的改进载体

Stuecker, Tara N; Hood, Stephanie E; Molina Pineda, Julio; Lenaduwe, Sonali; Winter, Joshua; Sadhu, Meru J; Lewis, Jeffrey A

Surprising regulatory plasticity for the conserved HOG pathway in diverse Saccharomyces cerevisiae strains

酿酒酵母不同菌株中保守的HOG通路表现出令人惊讶的调控可塑性

Stacy, Carson L; Scholes, Amanda N; Stuecker, Tara N; Hood, Stephanie E; Crook, Crystal C; Espana-Pena, Maria; Paré, Adam C; Lewis, Jeffrey A

Dynamic global acetylation remodeling during the yeast heat shock response.

酵母热休克反应期间的动态全局乙酰化重塑

Hardman-Kavanaugh Rebecca E, Storey Aaron J, Stuecker Tara N, Hood Stephanie E, Barrett-Wilt Gregory A, Krishnamurthi Venkata R, Wang Yong, Byrum Stephanie D, Mackintosh Samuel G, Edmondson Rick D, Wahls Wayne P, Tackett Alan J, Lewis Jeffrey A

Natural variation in yeast reveals multiple paths for acquiring higher stress resistance

酵母的自然变异揭示了获得更高抗逆性的多种途径

Scholes, Amanda N; Stuecker, Tara N; Hood, Stephanie E; Locke, Cader J; Stacy, Carson L; Zhang, Qingyang; Lewis, Jeffrey A

Linkage mapping of yeast cross protection connects gene expression variation to a higher-order organismal trait

酵母交叉保护的连锁作图将基因表达变异与更高级别的生物性状联系起来。

Stuecker, Tara N; Scholes, Amanda N; Lewis, Jeffrey A

Independent Mechanisms for Acquired Salt Tolerance versus Growth Resumption Induced by Mild Ethanol Pretreatment in Saccharomyces cerevisiae

酿酒酵母获得性耐盐性和轻度乙醇预处理诱导的生长恢复的独立机制

McDaniel, Elizabeth A; Stuecker, Tara N; Veluvolu, Manasa; Gasch, Audrey P; Lewis, Jeffrey A

Do biofilm communities respond to the chemical signatures of fracking? A test involving streams in North-central Arkansas

生物膜群落是否会对水力压裂的化学特征做出反应?一项在阿肯色州中北部溪流中进行的试验

Johnson, Wilson H; Douglas, Marlis R; Lewis, Jeffrey A; Stuecker, Tara N; Carbonero, Franck G; Austin, Bradley J; Evans-White, Michelle A; Entrekin, Sally A; Douglas, Michael E

Phylogenetic and amino acid conservation analyses of bacterial L-aspartate-α-decarboxylase and of its zymogen-maturation protein reveal a putative interaction domain

对细菌L-天冬氨酸-α-脱羧酶及其酶原成熟蛋白的系统发育和氨基酸保守性分析揭示了一个推定的相互作用域。

Stuecker, Tara N; Bramhacharya, Shanti; Hodge-Hanson, Kelsey M; Suen, Garret; Escalante-Semerena, Jorge C