首页> 外文期刊>Frontiers in Plant Science >The Persimmon 9-lipoxygenase Gene DkLOX3 Plays Positive Roles in Both Promoting Senescence and Enhancing Tolerance to Abiotic Stress
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The Persimmon 9-lipoxygenase Gene DkLOX3 Plays Positive Roles in Both Promoting Senescence and Enhancing Tolerance to Abiotic Stress

机译:柿子9-脂氧合酶基因 DkLOX3 在促进衰老和增强对非生物胁迫的耐受性中均发挥积极作用

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The lipoxygenase (LOX) pathway is a key regulator for lipid peroxidation, which is crucial for plant senescence and defense pathways. In this study, the transcriptional expression patterns of three persimmon ( Diospyros kaki L. ‘Fupingjianshi’) 9-lipoxygenase genes ( DkLOX1 , DkLOX3 , and DkLOX4 ) were investigated. DkLOX1 was specifically expressed in fruit, particularly in young fruit, and showed little response to the postharvest environments. DkLOX4 was expressed in all tissues and slightly stimulated by mechanical damage and low temperature. DkLOX3 was expressed mainly in mature fruit, and the expression was extremely high throughout the storage period, apparently up-regulated by mechanical damage and high carbon dioxide treatments. Further functional analysis showed that overexpression of DkLOX3 in tomato ( Solanum lycopersicum cv. Micro-Tom) accelerated fruit ripening and softening. This was accompanied by higher malondialdehyde (MDA) content and lycopene accumulation, advanced ethylene release peak and elevated expression of ethylene synthesis genes, including ACS2 , ACO1 , and ACO3 . In addition, DkLOX3 overexpression promoted dark induced transgenic Arabidopsis leaf senescence with more chlorophyll loss, increased electrolyte leakage and MDA content. Furthermore, the functions of DkLOX3 in response to abiotic stresses, including osmotic stress, high salinity and drought were investigated. Arabidopsis DkLOX3 overexpression ( DkLOX3 -OX) transgenic lines were found to be more tolerant to osmotic stress with higher germination rate and root growth than wild-type. Moreover, DkLOX3 -OX Arabidopsis plants also exhibited enhanced resistance to high salinity and drought, with similar decreased O_(2)~(-)and H_(2)O_(2)accumulation and upregulation of stress-responsive genes expression, including RD22 , RD29A , RD29B , and NCED3 , except for FRY1 , which plays a negative role in stress response. Overall, these results suggested that DkLOX3 plays positive roles both in promoting ripening and senescence through lipid peroxidation and accelerated ethylene production and in stress response via regulating reactive oxygen species accumulation and stress responsive genes expression.
机译:脂氧合酶(LOX)途径是脂质过氧化的关键调节剂,对植物衰老和防御途径至关重要。在这项研究中,研究了三个柿子(柿柿(Diospyros kaki L.'Fupingjianshi'))9-脂加氧酶基因(DkLOX1,DkLOX3和DkLOX4)的转录表达模式。 DkLOX1在水果中特别是在年轻水果中表达,并且对收获后的环境几乎没有反应。 DkLOX4在所有组织中表达,并受到机械损伤和低温的轻微刺激。 DkLOX3主要在成熟果实中表达,在整个贮藏期间表达极高,显然受到机械损伤和高二氧化碳处理的上调。进一步的功能分析表明,DkLOX3在番茄中的过度表达促进了果实的成熟和软化。这伴随着更高的丙二醛(MDA)含量和番茄红素积累,提前的乙烯释放峰和乙烯合成基因(包括ACS2,ACO1和ACO3)的表达升高。此外,DkLOX3过表达促进了黑暗诱导的转基因拟南芥叶片衰老,并增加了叶绿素损失,增加了电解质泄漏和MDA含量。此外,研究了DkLOX3响应非生物胁迫(包括渗透胁迫,高盐度和干旱)的功能。发现拟南芥DkLOX3过表达(DkLOX3-OX)转基因品系比野生型对渗透胁迫具有更高的发芽率和根系生长耐受性。此外,DkLOX3-OX拟南芥植物还表现出增强的对高盐分和干旱的抗性,同时降低了O_(2)〜(-)和H_(2)O_(2)的积累并上调了胁迫响应基因的表达,包括RD22, RD29A,RD29B和NCED3除外,FRY1在压力响应中起负作用。总体而言,这些结果表明,DkLOX3在通过脂质过氧化促进乙烯的成熟和衰老,加速乙烯生成以及在通过调节活性氧的积累和应激反应基因表达的应激反应中均发挥积极作用。

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