2022
DOI: 10.3389/fpls.2022.905358
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Effects of Long-Term Fertilization and Stand Age on Root Nutrient Acquisition and Leaf Nutrient Resorption of Metasequoia glyptostroboides

Abstract: The plant nutrient acquisition strategies are diverse, such as root nutrient acquisition and leaf nutrient resorption, playing important roles in driving soil processes, vegetation performance as well as ecosystem nutrient cycling. However, it is still in a debate whether there is a synergy or tradeoff between above- and below-ground nutrient acquisition strategy under nitrogen (N) and phosphorus (P) addition, or with stand age. Herein, this study investigated the responses of root-soil accumulation factor (RS… Show more

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Cited by 2 publications
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“…High fertilization conditions can increase nutrient transport around the soil to a wider area where roots are present, thus promoting forest root growth more efficiently [32]. In addition, the growth of fine roots is still affected by the fertilization method, stand type, and stand age [32,[42][43][44]. At present, Sapindus mukorossi is now at the first fruiting stage, and it has not formed a well-developed root system, which is very limited for absorbing and utilizing the nutrient resources in the deep soil.…”
Section: Effect Of Fertilization On Fine Root Traitsmentioning
confidence: 99%
“…High fertilization conditions can increase nutrient transport around the soil to a wider area where roots are present, thus promoting forest root growth more efficiently [32]. In addition, the growth of fine roots is still affected by the fertilization method, stand type, and stand age [32,[42][43][44]. At present, Sapindus mukorossi is now at the first fruiting stage, and it has not formed a well-developed root system, which is very limited for absorbing and utilizing the nutrient resources in the deep soil.…”
Section: Effect Of Fertilization On Fine Root Traitsmentioning
confidence: 99%