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Beneficial rhizobacterium provides positive plant–soil feedback effects to Ageratina adenophora 被引量:4
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作者 SUN Yuan-yuan ZHANG Qiu-xin +3 位作者 ZHAO Yun-peng diao yue-hui GUI Fu-rong YANG Guo-qing 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第5期1327-1335,共9页
Rhizosphere microbial communities play important roles in facilitating or inhibiting the establishment of exotic species.Since some invasive plants interact with soil microbial communities such as rhizosphere bacteria... Rhizosphere microbial communities play important roles in facilitating or inhibiting the establishment of exotic species.Since some invasive plants interact with soil microbial communities such as rhizosphere bacteria,changes triggered by rhizosphere bacteria may alter competitive interactions between exotic and native plants.This study compared the Bacillus cereus content in soils with different degrees of Ageratina adenophora invasion,and investigated the effects of A.adenophora allelochemicals on B.cereus growth and soil characteristics and the feedback effects of B.cereus on A.adenophora growth.Bacillus cereus content in the rhizosphere of A.adenophora increased with intensification of the invasion process,and newly invaded soil contained almost twice as much bacteria as noninvaded soil.When rhizosphere soil was added to the root exudates of A.adenophora,the contents of B.cereus were twice as much as the control,except on the first day.Certain soil parameters increased significantly,such as ammonium nitrogen(NH_(4)^(+)-N)and available phosphorus(AP),which were increased by 41 and 27%,respectively.Soil treatment with B.cereus promoted the degradation of two allelochemicals from the rhizosphere of A.adenophora,amorpha-4,7(11)-dien-8-one and 6-hydroxy-5-isopropy1-3,8-dimethyl-4 a,5,6,7,8,8 ahexahydraphthalen-2(1 H)-one,to varying degrees;and increased the germination rate by 50%,root length by 117%,shoot length by 48%and fresh weight by 81%for A.adenophora compared to those of untreated soil.Our results confirmed that the invasion of A.adenophora will promote an increase of B.cereus,a beneficial rhizosphere bacterium,which in turn induces a positive feedback effect on A.adenophora. 展开更多
关键词 Ageratina adenophora Bacillus cereus FEEDBACK ALLELOCHEMICALS root exudates
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昆虫迁飞行为及其调控机制 被引量:5
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作者 刘鹏程 刁跃珲 +2 位作者 郭嘉雯 高博雅 胡高 《应用昆虫学报》 CAS CSCD 北大核心 2021年第3期520-529,共10页
迁飞是昆虫长期适应资源与环境的季节性变化所形成的一种行为策略。迁飞昆虫不仅通过迁飞逃避不良环境,也因其极高的繁殖力确保种群在新的生境中实现快速增长甚至暴发成灾,对整个自然生态系统和农业生态系统影响甚大。本文首先基于部分... 迁飞是昆虫长期适应资源与环境的季节性变化所形成的一种行为策略。迁飞昆虫不仅通过迁飞逃避不良环境,也因其极高的繁殖力确保种群在新的生境中实现快速增长甚至暴发成灾,对整个自然生态系统和农业生态系统影响甚大。本文首先基于部分迁飞概念,描述了迁飞型和居留型个体在形态、行为、生理上的差异,重点介绍了迁飞与生殖的耦合关系,以及诱导迁飞的外界环境因子,最后综述了昆虫迁飞行为调控的分子机制方面的研究进展。从感受不良环境信号到决定迁飞,从起飞、飞行、降落到决定继续迁飞或终止迁飞,这一系列过程受昆虫内分泌、表观等诸多因素的调控,但其背后的分子机制有待深入研究。 展开更多
关键词 部分迁飞 卵子发生与飞行共轭 迁飞意愿 表观调控 迁飞与生殖
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