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Tang, S. N.

Publications and source records attributed to Tang, S. N..

2 recordsLinked to original sources

Causes and consequences of experimental variation in Nicotiana benthamiana transient expression

Infiltration of Agrobacterium tumefaciens into Nicotiana benthamiana has become a foundational technique in plant biology, enabling efficient delivery of transgenes in planta with technical ease, robust signal, and relatively high throughput. Despite transient expressions prevalence in disciplines such as synthetic biology, little work has been done to describe and address the variability inherent in this system, a concern for experiments that rely on highly quantitative readouts. In a comprehensive analysis of N. benthamiana agroinfiltration experiments, we model sources of variability that affect transient expression. Our findings emphasize the need to validate normalization methods under the specific conditions of each study, as distinct normalization schemes do not always reduce variation either within or between experiments. Using a dataset of 1,915 plants collected over three years, we develop a model of variation in N. benthamiana transient expression, using power analysis to determine the number of individual plants required for a given effect size. Drawing on our longitudinal data, these findings inform practical guidelines for minimizing variability through strategic experimental design and power analysis, providing a foundation for more robust and reproducible use of N. benthamiana in quantitative plant biology and synthetic biology applications.

plant biology↗

Identification of novel prophages and variants of Integrative and Conjugative Elements in Elizabethkingia anophelis clinical isolates from Seremban, Malaysia

Elizabethkingia anophelis is an emerging multidrug-resistant pathogen that has been identified globally, including in Malaysia. In this study, we used the Oxford Nanopore Technologies (ONT) long-read platform to generate the complete genome sequences of seven clinical isolates of E. anophelis from a tertiary hospital in the city of Seremban, located in the state of Negeri Sembilan in Peninsular Malaysia. These sequences were analysed alongside over 400 publicly available E. anophelis genomes from other countries. Three of the seven E. anophelis isolates, Eli4, Eli5, and Eli6, were almost identical and their isolation over a period of six weeks from the same hospital was suggestive of nosocomial transmission. Besides these three isolates, the other E. anophelis isolates were genetically diverse and related to distinct isolates from other countries. No plasmids were identified in the genomes of all seven E. anophelis isolates. A novel 39,686 bp prophage was identified in the genome of E. anophelis Eli4 while a presumptive incomplete prophage was found in the genomes of Eli2, Eli4, Eli5 and Eli6. E. anophelis genomes are notable for possessing integrative and conjugative elements (ICEs), which enable the bacterium to acquire new genes, including those encoding antimicrobial resistance or virulence. Several novel ICE sequences were discovered in the Seremban E. anophelis genomes, and this includes an ICE found in Eli8, designated Eli8_ICE1, which encodes phage defence genes such as type I restriction-modification systems, a bacterial cyclic oligonucleotide-based anti-phage signalling system (CBASS) and prokaryotic argonaute systems. The latter two phage defence genes have so far not been reported in the E. anophelis genome. This study demonstrates the utility of long-read sequencing in assessing the diversity and plasticity of E. anophelis genomes and emphasises further research into the role of ICEs in phage defence systems and their potential impact on antimicrobial treatment and phage therapy. RepositoriesThe Elizabethkingia anophelis genomes in this study have been deposited in the NCBI database under BioProject PRJNA1175025.

microbiology↗