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1.
Microb Genom ; 9(3)2023 03.
Artículo en Inglés | MEDLINE | ID: mdl-36884020

RESUMEN

Agaricus sinodeliciosus is a rare wild edible mushroom from northwest China, and grows naturally in mild saline-alkali soil, which is also unusual in mushrooms. A. sinodeliciosus represents a potential model organism for explaining saline-alkali tolerance mechanisms and revealing related physiological processes in mushrooms. Here, we provide a high-quality genome of A. sinodeliciosus. Comparative genomic analyses reveal A. sinodeliciosus has numerous changes to its genome organization after a solitary evolutionary history under saline-alkali environments, such as gene family contraction, retrotransposon expansion and rapid evolution of adaptative genes. Our saline and alkali tolerance tests show that mycelium growth and fruit body formation of this species are effected by mild alkalinity. Transcriptomic analyses reveal that genes involved in carbon and nitrogen utilization, cell stability and fruit body formation of A. sinodeliciosus could be activated under mildly alkaline conditions. In particular, the 'starch and sucrose metabolism', 'biosynthesis of amino acids' and 'phenylpropanoid biosynthesis' pathways are important for mildly alkaline tolerance of A. sinodeliciosus. Like plants and arbuscular mycorrhizal fungi, in the rot fungus A. sinodeliciosus, the biosynthesis of intracellular small molecules could be enhanced to counter osmotic and oxidative stresses caused by mild alkalinity, and the biosynthesis of monolignol could be suppressed to increase cell wall infiltrates under mildly alkaline conditions. This research provides an understanding of the genomic evolution and mechanisms of A. sinodeliciosus in tolerance to saline-alkali environments. The A. sinodeliciosus genome constitutes a valuable resource for evolutionary and ecological studies of Agaricus.


Asunto(s)
Agaricus , Agaricus/genética , Agaricus/metabolismo , Transcriptoma , Álcalis/metabolismo , Genómica , Evolución Molecular
2.
World J Clin Cases ; 7(16): 2330-2335, 2019 Aug 26.
Artículo en Inglés | MEDLINE | ID: mdl-31531327

RESUMEN

BACKGROUND: Mushroom exposure is a global health issue. The manifestations of mushroom poisoning (MP) may vary. Some species have been reported as rhabdomyolytic, hallucinogenic, or gastrointestinal poisons. Critical or even fatal MPs are mostly attributable to Amanita phalloides, with the development of severe liver or renal failure. Myocardial injury and even cases mimicking ST-segment elevation myocardial infarction (STEMI) have been previously reported, while cardiac arrhythmia or cardiac arrest is not commonly seen. CASE SUMMARY: We report a 68-year-old woman with MP who suffered from delirium, seizure, long QT syndrome on electrocardiogram (ECG), severe cardiac arrhythmias of multiple origins, and cardiac arrest. She was intubated and put on blood perfusion. Her kidney and liver functions were intact; creatine kinase-MB was mildly elevated, and then fell within normal range during her hospital stay. We sent the mushrooms she left for translation elongation factor subunit 1α, ribosomal RNA gene sequence, and internal transcribed spacer sequence analyses. There were four kinds of mushrooms identified, two of which were found to be toxic. CONCLUSION: This is the first time that we found cardiac toxicity caused by Panaeolus subbalteatus and Conocybe lactea, which were believed to be toxic to the liver, kidney, and brain. We suggest that intensive monitoring and ECG follow-up are essential to diagnose prolonged QT interval and different forms of tachycardia in MP patients, even without the development of severe liver or renal failure. The mechanisms need to be further investigated and clarified based on animal experiments and molecular signal pathways.

3.
Yi Chuan ; 40(11): 944-963, 2018 Nov 20.
Artículo en Chino | MEDLINE | ID: mdl-30465528

RESUMEN

Complex genomes are noted to be extremely difficult to sequence or assemble by using ordinary methods. Complex genomes are typically characterized as being highly repetitive, highly heterozygous, extremely GC biased, or naturally contaminated, i.e., contaminations which cannot be removed before sequencing. To solve these problems with sequencing and assembling complex genomes, three major techniques include: (1) DNA extraction experiments, (2) Sequencing technologies and platforms, and (3) Algorithms and strategies for assembling. In this review, we summarize these state-of-the-art technologies and strategies used in these directions. We also review the representative projects of complex genome sequencing and address the development of these technologies and strategies for solving the challenges when sequencing or assembling complex genomes.


Asunto(s)
Genoma , Anotación de Secuencia Molecular/métodos , Análisis de Secuencia de ADN/métodos , Algoritmos , Animales , ADN/genética , ADN/aislamiento & purificación , Genómica , Humanos
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