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Adaptive responses of Dermacoccus abyssi HZAU 226 to lysozyme stress
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作者 Xinshuai Zhang Yuanyuan Chen +1 位作者 Ailing Guo Jun Lv 《Food Bioscience》 2024年第2期1115-1125,共11页
Lysozyme possesses unique biological properties and finds wide-ranging applications,but the adaptive responses of microorganisms under lysozyme stress remain poorly understood.In this study,we investigated the respons... Lysozyme possesses unique biological properties and finds wide-ranging applications,but the adaptive responses of microorganisms under lysozyme stress remain poorly understood.In this study,we investigated the response mechanisms of Dermacoccus abyssi HZAU 226 and Kocuria rhizophila H9,which with different lysozyme resistance.The results revealed similar regulatory mechanisms in two strains.D.abyssi demonstrated resistance to cationic activity and displayed typical growth curves,membrane permeability was concentration-dependent.Under 5 mg/mL lysozyme stress,the isoelectric point increased and the negative zeta potential decreased.The hydrophobicity and adhesion with a concomitant increase in the surface N/C and P/C element ratios,cells stretched in length and increased adhesion to limit lysozyme diffusion,and peptidoglycan modification and two-component regulatory genes were significantly up-regulated.The findings help to understand the relationship between adaptive stress responses and lysozyme resistance,provided a theoretical basis for the development of new food antibacterial agents. 展开更多
关键词 Dermacoccus abyssi HZAU 226 Kocuria rhizophila H9 Lysozyme Stress response Food antibacterial agents X-ray photoelectron spectroscopy
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一株耐受蛋清蛋白的鸡蛋腐败菌S菌株的分离鉴定及其De novo测序分析 被引量:2
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作者 张璟 陈倩 +3 位作者 顾丽红 阮瑶 张新帅 郭爱玲 《现代食品科技》 EI CAS 北大核心 2019年第3期58-64,共7页
本实验采用传统微生物培养法从鸡蛋中分离出一株革兰氏阳性腐败菌S菌株,经形态学观察、生理生化分析及16S rDNA序列比对,对其进行了鉴定,并构建系统发育树。采用抑菌圈法及存活率试验探究该菌株对蛋清环境的耐受性,并基于Illumina HiSe... 本实验采用传统微生物培养法从鸡蛋中分离出一株革兰氏阳性腐败菌S菌株,经形态学观察、生理生化分析及16S rDNA序列比对,对其进行了鉴定,并构建系统发育树。采用抑菌圈法及存活率试验探究该菌株对蛋清环境的耐受性,并基于Illumina HiSeq测序平台对该菌株的全基因组进行了De novo测序,获得基因组框架图。结果表明,该菌株生理生化反应特征与皮生球菌属相似,且16S rDNA序列与Dermacoccus abyssi(登录号AY894323)的同源性高达99%,鉴定为深渊皮生球菌(Dermacoccus abyssi)。该菌株在含有蛋清或溶菌酶的试管中能生长,在添加了蛋清或溶菌酶的孔径中没有抑菌圈产生。对蛋白编码基因的功能注释结果显示,细菌参与膜转运、离子结合、氨基酸和碳水化合物代谢及能量转换相关的基因丰富,推测其在鸡蛋中可能通过调节相关基因来耐受蛋清抑菌环境。该菌株对蛋清及溶菌酶的耐受性,为其在鸡蛋中的存活提供了有利条件。 展开更多
关键词 鸡蛋腐败 深渊皮生球菌 存活机制 Denovo测序
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