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绿僵菌与植物的多重关系及其在植物保护中的应用潜力 被引量:7
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作者 农向群 王广君 +2 位作者 蔡霓 刘蓉 张泽华 《植物保护》 CAS CSCD 北大核心 2022年第3期22-30,54,共10页
绿僵菌是广为知晓的昆虫病原真菌,被用作生物杀虫剂防治多种农林植物害虫。近年发现它也是根际微生物群落的一员,且有证据表明它内生于一些植物的根组织中,具有促进植物生长、拮抗植物病原菌、诱导植物抗性等作用。本文着重综述绿僵菌... 绿僵菌是广为知晓的昆虫病原真菌,被用作生物杀虫剂防治多种农林植物害虫。近年发现它也是根际微生物群落的一员,且有证据表明它内生于一些植物的根组织中,具有促进植物生长、拮抗植物病原菌、诱导植物抗性等作用。本文着重综述绿僵菌根际作用和植物内生性研究进展,从对植物的直接作用角度,了解其田间生态适应性及与植物的互作关系,以拓展昆虫病原真菌作为植物保护剂的认识,有助于根据生态学特点制定未来的生物防治应用策略。 展开更多
关键词 绿僵菌 植物内生真菌 根际定殖 真菌-植物互作 植保多功能
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病毒诱导的基因沉默在茄科植物基因功能研究中的应用进展 被引量:6
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作者 曲玲 李彦龙 +5 位作者 安巍 焦恩宁 赵建华 刘兰英 秦垦 曹有龙 《河南农业科学》 CSCD 北大核心 2018年第7期8-19,共12页
茄科植物中有许多重要的经济与药用植物,随着茄科植物基因组测序工作的陆续完成,急需对基因组中大量功能未知基因的生物学功能进行鉴定。病毒诱导的基因沉默(VIGS)是近20 a发展起来的一种研究植物基因功能的高效反向遗传学技术,在总结V... 茄科植物中有许多重要的经济与药用植物,随着茄科植物基因组测序工作的陆续完成,急需对基因组中大量功能未知基因的生物学功能进行鉴定。病毒诱导的基因沉默(VIGS)是近20 a发展起来的一种研究植物基因功能的高效反向遗传学技术,在总结VIGS作用原理、VIGS载体开发和改良研究现状的基础上,就近年来VIGS在茄科植物品质性状、生长发育、植物-病原真菌互作以及代谢产物生物合成和调控相关重要基因功能分析等方面的国内外研究进展进行了综述,并讨论了VIGS技术应用于茄科植物存在的问题和前景展望。 展开更多
关键词 茄科植物 病毒诱导的基因沉默 基因功能解析 VIGS载体 植物-病原真菌 代谢产物生物合成与调控
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Alteration in Biochemical Response in Sesamum indicum upon Different Plant-Pathogen Interactions
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作者 A. Sharma S, Sharma N. Joshi P. Sharma 《Journal of Agricultural Science and Technology(B)》 2011年第1期68-75,共8页
Sesamum, an important oil yielding crop suffers a huge loss in its yield due to attack of large number of fungal pathogens. In semi-arid regions Sesamum is mainly affected by two major plant-pathogenic fungus viz. Mac... Sesamum, an important oil yielding crop suffers a huge loss in its yield due to attack of large number of fungal pathogens. In semi-arid regions Sesamum is mainly affected by two major plant-pathogenic fungus viz. Macrophomina phaseolina and Fusarium oxysporum. The aim of the study was to analyze the metabolic alterations in Sesamum after infection with both pathogens. This accomplished by individually by (the word estimating is not quantitative) the levels of total phenolic compounds and the activities of phenylalanine ammonia lyase (PAL) of one week old plants. The PAL showed high activity in infected plants, revealing the active phase in the synthesis of secondary metabolites in the Sesamum plant after infection. As a consequence, in infected plants the contents of polyphenols along with salicylic acid (SA) considerably exceeded when compared to control plants. This in vivo study of M. phaseolina and F. oxysporum infection reveals the differences of resistance levels in sesame against these two pathogens. These results provide important information regarding the plant-pathogen interactions and also forfor Sesamum improvement programs seeking the adaptation to diverse range of fungal attack along with adverse environmental factors. 展开更多
关键词 Fusarium oxysporum Macrophomina phaseolina phenylalanine ammonia lyase POLYPHENOLS salicylic acid Seasamum
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Phylogenetic constrains on mycorrhizal specificity in eight Dendrobium(Orchidaceae) species 被引量:11
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作者 Xiaoke Xing Xueting Ma +2 位作者 Jinxin Men Yanhong Chen Shunxing Guo 《Science China(Life Sciences)》 SCIE CAS CSCD 2017年第5期536-544,共9页
Plant phylogeny constrains orchid mycorrhizal(OrM) fungal community composition in some orchids. Here, we investigated the structures of the OrM fungal communities of eight Dendrobium species in one niche to determine... Plant phylogeny constrains orchid mycorrhizal(OrM) fungal community composition in some orchids. Here, we investigated the structures of the OrM fungal communities of eight Dendrobium species in one niche to determine whether similarities in the OrM fungal communities correlated with the phylogeny of the host plants and whether the Dendrobium-OrM fungal interactions are phylogenetically conserved. A phylogeny based on DNA data was constructed for the eight coexisting Dendrobium species,and the OrM fungal communities were characterized by their roots. There were 31 different fungal lineages associated with the eight Dendrobium species. In total, 82.98% of the identified associations belonging to Tulasnellaceae, and a smaller proportion involved members of the unknown Basidiomycota(9.67%). Community analyses revealed that phylogenetically related Dendrobium tended to interact with a similar set of Tulasnellaceae fungi. The interactions between Dendrobium and Tulasnellaceae fungi were significantly influenced by the phylogenetic relationships among the Dendrobium species. Our results provide evidence that the mycorrhizal specificity in the eight coexisting Dendrobium species was phylogenetically conserved. 展开更多
关键词 orchid mycorrhiza mycorrhizal network fungal community composition phylogenetic conservatism
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Diverse plant mixtures sustain a greater arbuscular mycorrhizal fungi spore viability than monocultures after 12 years 被引量:3
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作者 Peter Dietrich Christiane Roscher +3 位作者 Adam Thomas Clark Nico Eisenhauer Bernhard Schmid Cameron Wagg 《Journal of Plant Ecology》 SCIE CSCD 2020年第4期478-488,共11页
Aims Intensive land management practices can compromise soil biodiversity,thus jeopardizing long-term soil productivity.Arbuscular mycorrhizal fungi(AMF)play a pivotal role in promoting soil productivity through oblig... Aims Intensive land management practices can compromise soil biodiversity,thus jeopardizing long-term soil productivity.Arbuscular mycorrhizal fungi(AMF)play a pivotal role in promoting soil productivity through obligate symbiotic associations with plants.However,it is not clear how properties of plant communities,especially species richness and composition influence the viability of AMF populations in soils.Methods Here we test whether monocultures of eight plant species from different plant functional groups,or a diverse mixture of plant species,maintain more viable AMF propagules.To address this question,we extracted AMF spores from 12-year old plant monocultures and mixtures and paired single AMF spores with single plants in a factorial design crossing AMF spore origin with plant species identity.Important Findings AMF spores from diverse plant mixtures were more successful at colonizing multiple plant species and plant individuals than AMF spores from plant monocultures.Furthermore,we found evidence that AMF spores originating from diverse mixtures more strongly increased biomass than AMF from monocultures in the legume Trifolium repens L.AMF viability and ability to interact with many plant species were greater when AMF spores originated from 12-year old mixtures than monocultures.Our results show for the first time that diverse plant communities can sustain AMF viability in soils and demonstrate the potential of diverse plant communities to maintain viable AMF propagules that are a key component to soil health and productivity. 展开更多
关键词 aboveground–belowground interactions biodiversity biomass production MUTUALISM plant–AMF interaction root colonization
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