互花米草对伊马唑酸胁迫的生理和转录组学分析。

IF 4.3 2区 生物学 Q1 PLANT SCIENCES
Yaning Liu, Zhengmao Li, Lixia Li, Xiangyang Jiang, Chen Gao, Jiqiang Zhao
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引用次数: 0

摘要

互花米草的防治作为中国外来入侵物种管理的一个重要方面,已成为沿海省份防治工作的重要组成部分,而伊马扎吡酸因其高效低毒的优点已逐步应用于防治工作。本研究采用6.0 L/亩25%伊马唑酸水溶液胁迫处理,测定并分析了互花草在持续胁迫下的生理活性和转录组谱。利用叶绿素荧光技术分析了互花草光合作用机理和光合生理状态。利用根系成像系统分析了互花草的根系结构,并利用高通量测序技术对互花草的转录组进行了表征。其中,伊马扎吡酸暴露后,叶片荧光成像面积均减小,Fv/Fm、Y(II)、PIabs等荧光指标显著降低,Y(NO)显著升高,Y(NPQ)先升高后降低。同时,对互花草的总根长、根表面积和生物量均有抑制作用。在转录组学分析中,伊马扎吡酸抑制了互花草苯丙氨酸生物合成、核苷酸糖相关代谢、缬氨酸、亮氨酸和异亮氨酸生物合成和DNA复制相关基因的表达。这些结果表明,伊马扎吡酸胁迫对互花荆芥叶片的影响是异质性的,胁迫初期叶片启动光保护机制以保证光系统的正常运作,而胁迫后期PSII反应中心受到破坏,最终破坏光合系统。同时,伊马扎吡酸胁迫改变了互花草代谢和生长发育等基本生理过程,从而影响植物根系的生长发育,最终导致互花草死亡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological and transcriptomic analysis of Spartina alterniflora in response to imazapyr acid stress.

As a key aspect of managing of invasive alien species in China, the prevention and control of Spartina alterniflora have become an important part of the work in coastal provinces, and imazapyr acid has been gradually applied in the control work due to its advantages of high efficiency and low toxicity. In this study, we applied 6.0 L/acre of 25% imazapyr acid aqueous stress treatment, and determined and analyzed the physiological activities and transcriptome profiles of S. alterniflora under sustained stress. Chlorophyll fluorescence was used as a technical tool to analyze the mechanism of photosynthesis and the photosynthetic physiological status of S. alterniflora. We analyzed the root system structure of S. alterniflora using a root system imaging system, and characterized the transcriptome of S. alterniflora by high-throughput sequencing technology. Specifically, after imazapyr acid exposure, the fluorescence imaging area of leaves were all decreased, and the fluorescence indexes such as Fv/Fm, Y(II) and PIabs were significantly decreased, while Y(NO) was significantly increased, and Y(NPQ) showed an increase followed by a decrease. Meanwhile, total root length, root surface area and biomass of S. alterniflora were suppressed after imazapyr acid exposure. In transcriptomic analysis, imazapyr acid inhibited the expression of genes involved in phenylpropanoid biosynthesis, nucleotide sugar-related metabolism, valine, leucine and isoleucine biosynthesis, and DNA replication in S. alterniflora. These results indicate that the effects of imazapyr acid stress on the leaves of S. alterniflora are heterogeneous, with the leaves initiating photoprotective mechanisms to ensure the normal functioning of the photosystem in the early stage of stress, and the PSII reaction centers being damaged in the late stage of stress, ultimately destroying the photosynthetic system. Meanwhile, imazapyr acid stress alters basic physiological processes such as metabolism and growth and development of S. alterniflora, thus affecting the growth and development of the plant root system, and ultimately leading to the death of S. alterniflora.

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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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