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高温环境调控橄榄油生物合成网络。

A High Temperature Environment Regulates the Olive Oil Biosynthesis Network.

作者信息

Nissim Yael, Shlosberg Maya, Biton Iris, Many Yair, Doron-Faigenboim Adi, Hovav Ran, Kerem Zohar, Avidan Benjamin, Ben-Ari Giora

机构信息

Institute of Plant Sciences, ARO, The Volcani Center, Rishon LeZion 7528809, Israel.

Institute of Biochemistry, Food Science and Nutrition, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 76100, Israel.

出版信息

Plants (Basel). 2020 Sep 1;9(9):1135. doi: 10.3390/plants9091135.

Abstract

Climate change has been shown to have a substantial impact on agriculture and high temperatures and heat stress are known to have many negative effects on the vegetative and reproductive phases of plants. In a previous study, we addressed the effects of high temperature environments on olive oil yield and quality, by comparing the fruit development and oil accumulation and quality of five olive cultivars placed in high temperature and moderate temperature environments. The aim of the current study was to explore the molecular mechanism resulting in the negative effect of a high temperature environment on oil quantity and quality. We analyzed the transcriptome of two extreme cultivars, 'Barnea', which is tolerant to high temperatures in regard to quantity of oil production, but sensitive regarding its quality, and 'Souri', which is heat sensitive regarding quantity of oil produced, but relatively tolerant regarding its quality. Transcriptome analyses have been carried out at three different time points during fruit development, focusing on the genes involved in the oil biosynthesis pathway. We found that heat-shock protein expression was induced by the high temperature environment, but the degree of induction was cultivar dependent. The 'Barnea' cultivar, whose oil production showed greater tolerance to high temperatures, exhibited a larger degree of induction than the heat sensitive 'Souri'. On the other hand, many genes involved in olive oil biosynthesis were found to be repressed as a response to high temperatures. as well as genes showed cultivar dependent expression patterns according to their heat tolerance characteristics. The transcription factors , , and were identified as key factors in regulating the oil biosynthesis pathway in response to heat stress, based on their co-expression characteristics with other genes involved in this pathway. Our results may contribute to identifying or developing a more heat tolerant cultivar, which will be able to produce high yield and quality oil in a future characterized by global warming.

摘要

气候变化已被证明对农业有重大影响,高温和热胁迫对植物的营养生长和生殖阶段有许多负面影响。在之前的一项研究中,我们通过比较置于高温和中温环境下的五个橄榄品种的果实发育、油脂积累和品质,研究了高温环境对橄榄油产量和品质的影响。本研究的目的是探索导致高温环境对油脂产量和品质产生负面影响的分子机制。我们分析了两个极端品种的转录组,“巴尔内亚”在油脂产量方面耐高温,但在品质方面敏感;“苏里”在油脂产量方面对热敏感,但在品质方面相对耐受。在果实发育的三个不同时间点进行了转录组分析,重点关注参与油脂生物合成途径的基因。我们发现热休克蛋白表达受高温环境诱导,但诱导程度因品种而异。在油脂产量方面对高温表现出更大耐受性的“巴尔内亚”品种,其诱导程度比热敏感的“苏里”品种更大。另一方面,发现许多参与橄榄油生物合成的基因因高温而受到抑制。此外,基因根据其耐热特性表现出品种依赖性表达模式。基于转录因子与该途径中其他相关基因的共表达特性,它们被确定为响应热胁迫调节油脂生物合成途径的关键因子。我们的研究结果可能有助于鉴定或培育出更耐热的品种,使其能够在全球变暖的未来生产出高产优质的油脂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44ed/7569966/20b3f29cc4a9/plants-09-01135-g001.jpg

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