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微塑料对植物影响的研究现状、未来展望与植物激素抵抗微塑料的分子生物学机制
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作者 赵泓雨 周宇杰 +12 位作者 李建忠 郑涵 毕继安 余初浪 周宇航 侯凡 戴彬凤 钟列权 严成其 张海鹏 杨勇 陈剑平 王成雨 《浙江农业学报》 北大核心 2025年第7期1595-1604,共10页
近年来,塑料制品使用的持续增长导致微塑料污染问题日益严重。微塑料因其难降解性、小粒径、广泛分布且易被生物摄取等特性,对自然环境构成严重威胁。其中,微塑料对陆地生态系统,特别是农业生态系统的污染风险正受到广泛关注。高等植物... 近年来,塑料制品使用的持续增长导致微塑料污染问题日益严重。微塑料因其难降解性、小粒径、广泛分布且易被生物摄取等特性,对自然环境构成严重威胁。其中,微塑料对陆地生态系统,特别是农业生态系统的污染风险正受到广泛关注。高等植物作为生态系统中不可或缺的一环,在维持生态平衡中扮演着关键角色。本研究综述了微塑料的定义、来源及其进入植物途径,系统阐述了微塑料对高等植物生长和发育的具体影响,探讨了植物应对微塑料胁迫的生理响应及其对植物激素的调控作用,例如,微塑料进入植物可能导致控制有丝分裂关键基因CDC2的表达下调,扰乱植物生长周期;同时,影响GDT1、GDH2、GAD等参与植物三羧酸循环的关键基因的表达,并降低腺嘌呤核苷三磷酸(ATP)的合成速率,进而影响光合作用。这些基因表达下调,最终损害植物必需的营养代谢过程。此外,本文还分析了微塑料影响植物激素的作用机制和植物抗氧化系统的响应。这些研究有助于深入理解微塑料对植物生物学的复杂效应。在此基础上,展望了未来的研究方向,并评估了微塑料污染的潜在生态风险。通过整合当前对微塑料影响植物生物学的认知,本研究旨在为微塑料污染的防控和管理提供科学依据,促进生态系统的可持续发展。总之,本综述不仅总结了当前关于微塑料影响高等植物生长发育的研究,还提出了新的研究思路,为应对微塑料污染挑战提供了重要参考。 展开更多
关键词 微塑料 植物 激素 环境污染
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Characterization and Proteomic Analysis of Novel Rice Lesion Mimic Mutant with Enhanced Disease Resistance 被引量:4
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作者 Yang Yong Lin Qiujun +10 位作者 Chen Xinyu Liang Weifang Fu yuwen Xu Zhengjin Wu yuanhua Wang Xuming Zhou Jie yu chulang Yan Chengqi Mei Qiong Chen Jianping 《Rice science》 SCIE CSCD 2021年第5期466-478,I0020-I0028,共22页
Lesion mmic mutants(LMMs)are plants that spontaneously form lesions without pathogeninfection or external stimulus and exhibit resistance to pathogens.Here,a rice LMM was created by ethylmethane sulfonate mutagenesis,... Lesion mmic mutants(LMMs)are plants that spontaneously form lesions without pathogeninfection or external stimulus and exhibit resistance to pathogens.Here,a rice LMM was created by ethylmethane sulfonate mutagenesis,named as hpil(hydrogen peroxide induced lesion).Diaminobenzidineand trypan blue staining showed that large amounts of H_(2)O_(2) were produced and cell death was occurredat and around the parts of lesion mimic in the rice leaves.The phenotype of hpil is controlled by a singlerecessive gene,localized at a 2 Mb interval on chromosome 2.The data suggested that hpil is a novelLMM with enhanced bacterial and fungal disease resistance,and multiple pathogenesis-related proteins(PRs)were up-regulated.The proteomes of leaves at three positions(different degrees of lesion mimicseverity)were characterized in hpil compared with its wild type plant.Differentially expressed proteinswere detected by two dimensional difference gel electrophoresis and 274 proteins were identified byMALDITOF/TOFTM.These proteins were related to metabolic process,cellular process and response tostimulus,with mostly down-regulated in hpil leaves.Many of these proteins were related to the Calvincycle,photosynthetic electron transport chain,glycolysis/gluconeogenesis and phosphonates pathways.Some resistance-related proteins including 14-3-3 proteins,OsPR10 and antioxidases such asperoxidase,superoxide dismutase and ascorbate peroxidase were up-regulated in leaves with lesionmimic.These results provide the foundation for cloning of the target gene and shed light on themechanism involved in autaimmunity of rice. 展开更多
关键词 lesion mimic muta nt H_(2)O_(2) disease resista nee pathoge nesis・related protein resista nce・related pathway
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