Hu Hao, Wisniewski Michael E, Abdelfattah Ahmed, Zheng Xiaodong
College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, 310058, China.
U.S. Department of Agriculture-Agricultural Research Service (USDA-ARS), 2217 Wiltshire Road, Kearneysville, WV, 25430, USA.
Extremophiles. 2017 Jul;21(4):789-803. doi: 10.1007/s00792-017-0943-1. Epub 2017 Jun 8.
Cold-adapted biocontrol yeast was selected from four yeast isolates from Tibet against gray mold of cherry tomato in cold storage. The strain numbered LB2 showed the best biocontrol activity and identified as Cryptococcus laurentii. Competition for nutrient, space, and induced fruit resistance was also its antagonistic mechanism. Compared with C. laurentii from sea-level place, the reason why LB2 had a better biocontrol activity was studied. More trehalose and proline in cell of LB2 made it exhibit a better cellular activity at low temperature, such as higher population dynamics in the wounds of cherry tomato and more biocontrol-related enzyme secretion, chitinase and β-glucanase. The better oxidative stress tolerance was another characteristic of LB2. Maybe because of the ideal culture condition, there was no obvious difference between these two yeasts in the growth in vitro test at low temperature. Although the same phenomenon existed in the low pH stress test, LB2 still had higher cell concentration under this stress. Comparative transcriptomics method was also applied to analyze the cell activity of LB2 and C. laurentii at different temperatures. The results showed that more active response in the intracellular structure and intracellular metabolic process to cold temperature made LB2 had a better activity. The present study indicated a possibility to select cold-adapted biocontrol yeast from Tibet and also showed its primary action mechanism.
从西藏分离得到的4株酵母中筛选出了对冷藏樱桃番茄灰霉病具有生防作用的冷适应酵母。编号为LB2的菌株表现出最佳的生防活性,经鉴定为罗伦隐球酵母。营养竞争、空间竞争以及诱导果实抗性也是其拮抗机制。研究了与来自海平面地区的罗伦隐球酵母相比,LB2具有更好生防活性的原因。LB2细胞中更多的海藻糖和脯氨酸使其在低温下表现出更好的细胞活性,如在樱桃番茄伤口处具有更高的种群动态以及分泌更多的与生物防治相关的酶,几丁质酶和β-葡聚糖酶。更好的氧化应激耐受性是LB2的另一个特性。可能由于理想的培养条件,这两种酵母在低温体外生长试验中没有明显差异。尽管在低pH胁迫试验中也存在相同现象,但在此胁迫下LB2仍具有更高的细胞浓度。还应用比较转录组学方法分析了LB2和罗伦隐球酵母在不同温度下的细胞活性。结果表明,LB2对低温在细胞内结构和细胞内代谢过程中有更活跃的响应,使其具有更好的活性。本研究表明了从西藏筛选冷适应生防酵母的可能性,并揭示了其主要作用机制。