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翅碱蓬生态化学计量内稳性对模拟氮磷沉降的响应 被引量:12
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作者 陶韦 武嘉文 +4 位作者 刘长发 方蕾 刘远 苑静涵 李晋 《水生态学杂志》 CSCD 北大核心 2017年第4期18-26,共9页
生物有机体元素组成内稳性是生态化学计量学核心概念之一,研究植物N、P生态化学计量内稳性及N、P分配可以明确其生态策略和适应性、竞争性。采用室内盆栽方法,研究了翅碱蓬(Suaeda heteroptera)N、P内稳性与生长对模拟N、P沉降增加的响... 生物有机体元素组成内稳性是生态化学计量学核心概念之一,研究植物N、P生态化学计量内稳性及N、P分配可以明确其生态策略和适应性、竞争性。采用室内盆栽方法,研究了翅碱蓬(Suaeda heteroptera)N、P内稳性与生长对模拟N、P沉降增加的响应。结果表明,N沉降增加情况下,翅碱蓬吸收积累N表现为"绝对"的生态化学计量内稳性;P沉降增加情况下,翅碱蓬吸收积累P呈现一定的生态化学内稳性,调节系数HP为0.754,HN∶P为0.792。N沉降增加促进了翅碱蓬积累P,翅碱蓬生长可能受N限制。N、P沉降增加情况下,翅碱蓬株重、P吸收积累量与株高间均表现为异速生长。N沉降增加,翅碱蓬株重生长比株高快,P积累相对减慢。P沉降增加,翅碱蓬株高生长比株重快,P积累也相对更快。 展开更多
关键词 N沉降 P沉降 生态化学计量内稳性 异速生长 翅碱蓬
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Stoichiometric homeostasis in response to variable water and nutrient supply in a Robinia pseudoacacia plant-soil system 被引量:1
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作者 Bingqian Su Zhouping Shangguan 《Journal of Plant Ecology》 SCIE CSCD 2022年第5期991-1006,共16页
All organisms need elements in fixed proportions for carrying out normal metabolic processes and how flexible they are depends on how effective they are utilizing these resources from external sources.It is important ... All organisms need elements in fixed proportions for carrying out normal metabolic processes and how flexible they are depends on how effective they are utilizing these resources from external sources.It is important to understand the interactions among plant,soil and microbial biomass carbon(C),nitrogen(N)and phosphorus(P)stoichiometry under different conditions of resource supply.We conducted a pot experiment on 1-year-old Robinia pseudoacacia seedlings for nearly 5 months under different water,nitrogen and phosphorus supplies,and we determined plant,soil and microbial biomass C,N and P stoichiometry.We found that plant,soil and microbial nutrients and stoichiometry exhibited a certain degree of plasticity in response to the changes in water and nutrient conditions in their environments.Variation partitioning analysis showed that root stoichiometry accounted for a large part of the variance in microbial stoichiometry.Structural equation modeling further revealed that root stoichiometry and leaf stoichiometry were two direct factors affecting microbial biomass C:N and C:P,and that root stoichiometry had the greatest direct effect.In addition,the degree of homeostasis for microbial biomass C and C:P was more sensitive to changes in soil nutrients than changes in other factors,and other elements and elemental ratios displayed strict homeostasis.These results highlight the importance of studying microbial stoichiometry in improving our understanding of nutrient cycling of the plant-soil system under different water and nutrient supply. 展开更多
关键词 ecological stoichiometry HOMEOSTASIS microbial biomass plant properties Robinia pseudoacacia
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