干旱区科学2023,Vol.15Issue(10) :1216-1230.DOI:10.1007/s40333-023-0029-0

Nutrient coordination mechanism of tiger nut induced by rhizosphere soil nutrient variation in an arid area,China

TAN Jin WU Xiuqin LI Yaning SHI Jieyu LI Xu
干旱区科学2023,Vol.15Issue(10) :1216-1230.DOI:10.1007/s40333-023-0029-0

Nutrient coordination mechanism of tiger nut induced by rhizosphere soil nutrient variation in an arid area,China

TAN Jin 1WU Xiuqin 1LI Yaning 1SHI Jieyu 1LI Xu1
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作者信息

  • 1. School of Soil and Water Conservation,Beijing Forestry University,Beijing 100083,China
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Abstract

Tiger nut is a bioenergy crop planted in arid areas of northern China to supply oil and adjust the planting structure.However,in the western region of Inner Mongolia Autonomous Region,China,less water resources have resulted in a scarcity of available farmland,which has posed a huge obstacle to planting tiger nut.Cultivation of tiger nut on marginal land can effectively solve this problem.To fully unlock the production potential of tiger nut on marginal land,it is crucial for managers to have comprehensive information on the adaptive mechanism and nutrient requirement of tiger nut in different growth periods.This study aims to explore these key information from the perspective of nutrient coordination strategy of tiger nut in different growth periods and their relationship with rhizosphere soil nutrients.Three fertilization treatments including no fertilization(N:P(nitrogen:phosphorous)=0:0),traditional fertilization(N:P=15:15),and additional N fertilizer(N:P=60:15))were implemented on marginal land in the Dengkou County.Plant and soil samples were collected in three growth periods,including stolon tillering period,tuber expanding period,and tuber mature period.Under no fertilization,there was a significant correlation between N and P contents of tiger nut roots and tubers and the same nutrients in the rhizosphere soil(P<0.05).Carbon(C),N,and P contents of roots were significantly higher than those of leaves(P<0.05),and the C:N ratio of all organs was higher than those under other treatments before tuber maturity(P<0.05).Under traditional fertilization,there was a significant impact on the P content of tiger nut tubers(P<0.05).Under additional N fertilizer,the accumulation rate of N and P was faster in stolons than in tubers(P<0.05)with lower N:P ratio in stolons during the tuber expansion period(P<0.05),but higher N:P ratio in tubers(P<0.05).The limited availability of nutrients in the rhizosphere soil prompts tiger nut to increase the C:N ratio,improving N utilization efficiency,and maintaining N:P ratio in tubers.Elevated N levels in the rhizosphere soil decrease the C:N ratio of tiger nut organs and N:P ratio in stolons,promoting rapid stolon growth and shoot production.Supplementary P is necessary during tuber expansion,while a higher proportion of N in fertilizers is crucial for the aboveground biomass production of tiger nut.

Key words

tiger nut/stoichiometry/rhizosphere soil/nitrogen addition/marginal land

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基金项目

National Key Research and Development Program of China(2019YFC0507600)

National Key Research and Development Program of China(2019YFC0507601)

出版年

2023
干旱区科学
中国科学院新疆生态与地理研究所,科学出版社

干旱区科学

CSTPCDCSCD北大核心
影响因子:1.743
ISSN:1674-6767
参考文献量3
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