为了探究长期干旱胁迫下连翘不同器官的非结构性碳水化合物(NSC)含量与水力特性的协调及响应机制。以连续3年不同水分条件处理后的连翘幼苗为研究对象,设置3个水分处理(适宜供水、中度干旱胁迫和重度干旱胁迫),研究长期干旱胁迫后连翘...为了探究长期干旱胁迫下连翘不同器官的非结构性碳水化合物(NSC)含量与水力特性的协调及响应机制。以连续3年不同水分条件处理后的连翘幼苗为研究对象,设置3个水分处理(适宜供水、中度干旱胁迫和重度干旱胁迫),研究长期干旱胁迫后连翘幼苗的光合特性、生物量的分配、NSC各组分含量、水力特性的变化及其碳水两者之间的相关关系。结果表明:(1)适宜供水、中度干旱、重度干旱胁迫下,枝条的栓塞程度分别为30.7%、41.8%和42.3%,枝条导水率分别为0.95、0.71、0.65 kg m^(-1)s-1MPa^(-1)。(2)重度干旱胁迫显著降低了净光合速率、蒸腾速率、气孔导度、水分利用效率。(3)重度干旱胁迫导致地上和粗根生物量显著降低,细根生物量和根冠比显著增加。此外,各器官的NSC含量显著降低,其根系NSC消耗量最高,根系的可溶性总糖和淀粉含量显著降低,枝条的可溶性总糖、葡萄糖和蔗糖含量增加了12.9%、31.1%和45.7%,而淀粉含量降低了40.7%。(4)枝条栓塞程度和导水率与可溶性总糖、淀粉、蔗糖和葡萄糖含量显著相关,其栓塞程度与可溶性总糖、葡萄糖和蔗糖呈正相关,而与淀粉呈负相关(P<0.01)。综上所述,干旱导致连翘枝条木质部的栓塞程度增加,导水率、光合作用和水分运输效率均显著降低,但连翘通过提高枝条内可溶性总糖、葡萄糖、蔗糖含量和降低淀粉、NSC含量以提高植物在干旱条件下的存活机率及旱后水分恢复能力,研究为半干旱区连翘培育和经营提供理论依据。展开更多
The lack of clarity of how natural vegetation restoration influences soil organic carbon(SOC) content and SOC components in soil aggregate fractions limits the understanding of SOC sequestration and turnover in forest...The lack of clarity of how natural vegetation restoration influences soil organic carbon(SOC) content and SOC components in soil aggregate fractions limits the understanding of SOC sequestration and turnover in forest ecosystems.The aim of this study was to explore how natural vegetation restoration affects the SOC content and ratio of SOC components in soil macroaggregates(>250 μm), microaggregates(53–250 μm), and silt and clay(<53 μm) fractions in 30-, 60-, 90-and 120-year-old Liaodong oak(Quercus liaotungensis Koidz.) forests, Shaanxi, China in 2015.And the associated effects of biomasses of leaf litter and different sizes of roots(0–0.5, 0.5–1.0, 1.0–2.0 and >2.0 mm diameter) on SOC components were studied too.Results showed that the contents of high activated carbon(HAC), activated carbon(AC) and inert carbon(IC) in the macroaggregates, microaggregates and silt and clay fractions increased with restoration ages.Moreover, IC content in the microaggregates in topsoil(0–20 cm) rapidly increased;peaking in the 90-year-old restored forest, and was 5.74 times higher than AC content.In deep soil(20–80 cm), IC content was 3.58 times that of AC content.Biomasses of 0.5–1.0 mm diameter roots and leaf litter affected the content of aggregate fractions in topsoil, while the biomass of >2.0 mm diameter roots affected the content of aggregate fractions in deep soil.Across the soil profiles, macroaggregates had the highest capacity for HAC sequestration.The effects of restoration ages on soil aggregate fractions and SOC content were less in deep soil than in topsoil.In conclusion, natural vegetation restoration of Liaodong oak forests improved the contents of SOC, especially IC within topsoil and deep soil.The influence of IC on aggregate stability was greater than the other SOC components, and the aggregate stability was significantly affected by the biomasses of litter, 0.5–1.0 mm diameter roots in topsoil and >2.0 mm diameter roots in deep soil.Natural vegetation restoration of Liaodong oak forests promoted SOC sequestration by soil macroaggregates.展开更多
文摘为了探究长期干旱胁迫下连翘不同器官的非结构性碳水化合物(NSC)含量与水力特性的协调及响应机制。以连续3年不同水分条件处理后的连翘幼苗为研究对象,设置3个水分处理(适宜供水、中度干旱胁迫和重度干旱胁迫),研究长期干旱胁迫后连翘幼苗的光合特性、生物量的分配、NSC各组分含量、水力特性的变化及其碳水两者之间的相关关系。结果表明:(1)适宜供水、中度干旱、重度干旱胁迫下,枝条的栓塞程度分别为30.7%、41.8%和42.3%,枝条导水率分别为0.95、0.71、0.65 kg m^(-1)s-1MPa^(-1)。(2)重度干旱胁迫显著降低了净光合速率、蒸腾速率、气孔导度、水分利用效率。(3)重度干旱胁迫导致地上和粗根生物量显著降低,细根生物量和根冠比显著增加。此外,各器官的NSC含量显著降低,其根系NSC消耗量最高,根系的可溶性总糖和淀粉含量显著降低,枝条的可溶性总糖、葡萄糖和蔗糖含量增加了12.9%、31.1%和45.7%,而淀粉含量降低了40.7%。(4)枝条栓塞程度和导水率与可溶性总糖、淀粉、蔗糖和葡萄糖含量显著相关,其栓塞程度与可溶性总糖、葡萄糖和蔗糖呈正相关,而与淀粉呈负相关(P<0.01)。综上所述,干旱导致连翘枝条木质部的栓塞程度增加,导水率、光合作用和水分运输效率均显著降低,但连翘通过提高枝条内可溶性总糖、葡萄糖、蔗糖含量和降低淀粉、NSC含量以提高植物在干旱条件下的存活机率及旱后水分恢复能力,研究为半干旱区连翘培育和经营提供理论依据。
基金funded by the National Key Research and Development Program of China (2017YFC0504601)the Science and Technology Service Network Initiative of Chinese Academy of Sciences (KFJ-STS-ZDTP-036)the National Natural Science Foundation of China (41671513)
文摘The lack of clarity of how natural vegetation restoration influences soil organic carbon(SOC) content and SOC components in soil aggregate fractions limits the understanding of SOC sequestration and turnover in forest ecosystems.The aim of this study was to explore how natural vegetation restoration affects the SOC content and ratio of SOC components in soil macroaggregates(>250 μm), microaggregates(53–250 μm), and silt and clay(<53 μm) fractions in 30-, 60-, 90-and 120-year-old Liaodong oak(Quercus liaotungensis Koidz.) forests, Shaanxi, China in 2015.And the associated effects of biomasses of leaf litter and different sizes of roots(0–0.5, 0.5–1.0, 1.0–2.0 and >2.0 mm diameter) on SOC components were studied too.Results showed that the contents of high activated carbon(HAC), activated carbon(AC) and inert carbon(IC) in the macroaggregates, microaggregates and silt and clay fractions increased with restoration ages.Moreover, IC content in the microaggregates in topsoil(0–20 cm) rapidly increased;peaking in the 90-year-old restored forest, and was 5.74 times higher than AC content.In deep soil(20–80 cm), IC content was 3.58 times that of AC content.Biomasses of 0.5–1.0 mm diameter roots and leaf litter affected the content of aggregate fractions in topsoil, while the biomass of >2.0 mm diameter roots affected the content of aggregate fractions in deep soil.Across the soil profiles, macroaggregates had the highest capacity for HAC sequestration.The effects of restoration ages on soil aggregate fractions and SOC content were less in deep soil than in topsoil.In conclusion, natural vegetation restoration of Liaodong oak forests improved the contents of SOC, especially IC within topsoil and deep soil.The influence of IC on aggregate stability was greater than the other SOC components, and the aggregate stability was significantly affected by the biomasses of litter, 0.5–1.0 mm diameter roots in topsoil and >2.0 mm diameter roots in deep soil.Natural vegetation restoration of Liaodong oak forests promoted SOC sequestration by soil macroaggregates.