Plant-specific microbial diversity facilitates functional redundancy at the soil-root interface [0.03%]
植株特异性的微生物多样性促进了土壤-根系界面的功能冗余性
Wisnu Adi Wicaksono,Martina Köberl,Richard Allen White rd et al.
Wisnu Adi Wicaksono et al.
Aims: Plant-specific microbial diversity reflecting host-microbe coevolution was frequently shown at the structural level but less on the functional scale. We studied the microbiome of three compartments at the soil root ...
Early belowground interactions in lupin-wheat intercropping assessed by a simple root phenotyping approach [0.03%]
基于简单的根系表型分析方法评估豌豆-小麦间作的早期地下相互作用
Roberta Rossi,Daniele Cavalli,Tommaso Notario et al.
Roberta Rossi et al.
Background and aims: Legume-cereal intercropping is a common strategy to enhance agricultural sustainability. Many plant-plant interactions occur in the underground but remain poorly understood due to methodological chall...
Marco Lombardi,Riccardo Fusi,Atish Bansod et al.
Marco Lombardi et al.
Background: In recent years, the root system has emerged as a critical determinant of crop resilience and productivity under soil-related environmental stresses. Among root architectural traits, the root angle is particul...
Comparative assessment of root exudation in maize: Influence of experimental setup, growth conditions and root hairs [0.03%]
玉米根系分泌物的比较评估:实验设计、生长条件和根毛的影响
Michael Santangeli,Anna Heindl,Lisa Stein et al.
Michael Santangeli et al.
Background and aims: A major challenge in root exudation research is obtaining exudates samples that accurately reflect the exudation processes under natural soil growth conditions. Both growth environment and experimenta...
Root decomposition affects soil hydraulic properties in four contrasting herbaceous species [0.03%]
根系分解影响四种不同草本植物的土壤含水特性
D Boldrin,A K Leung,M Marin et al.
D Boldrin et al.
Background and aims: To optimise soil conditions for agriculture and engineering, we must better understand how root growth and decomposition affect soil hydraulic properties. This paper investigates soil hydraulic proper...
Caterpillar-induced plant-soil feedback affects resistance in wild and cultivated cabbage [0.03%]
Caterpillar诱导的植物-土壤反馈影响野生和栽培甘蓝的抗性
Kris A de Kreek,Rieta Gols,Johannah M de Zeeuw et al.
Kris A de Kreek et al.
Background and aims: Aboveground insect herbivory can change the plant rhizosphere and modulate the composition of the soil microbiome. However, it is unclear to what extent these changes in the rhizosphere affect plant r...
Phosphorus and base cations drive contrasting root dynamics in a central Amazon forest [0.03%]
磷和碱土金属驱动中央亚马逊雨林中的根系动态分布
Jéssica Schmeisk-Rosa,Kelly M Andersen,Amanda L Cordeiro et al.
Jéssica Schmeisk-Rosa et al.
Background and aims: In highly weathered soils of central Amazonia, where nutrients such as phosphorus (P) and base cations are scarce, fertilization experiments have demonstrated above- and belowground effects on total n...
Drought increases root and rhizodeposition carbon inputs into soils [0.03%]
干旱通过增加根系和根分泌对土壤的碳输入而影响土壤碳氮循环
Elena Kost,Dominika Kundel,Matti Barthel et al.
Elena Kost et al.
Aims: Increasing droughts affect crop yield and health. Plants can respond to drought by adapting their root biomass, root morphology, and quality and quantity of rhizodeposition to improve water and nutrient uptake. Besi...
Biochar enhances nitrogen use efficiency in lettuce by promoting its metabolic assimilation [0.03%]
生物炭通过促进氮的代谢同化来提高生菜的氮肥利用效率
Alvaro F Garcia-Rodriguez,Francisco J Moreno-Racero,Rosario Álvarez et al.
Alvaro F Garcia-Rodriguez et al.
Background and aims: Peat replacement with biochar (BC) offers a sustainable strategy in horticultural substrates but its effects on plant nitrogen (N) metabolism and N use efficiency (NUE) remain unclear. This study test...
Root and mycorrhizal contributions to soil organic carbon changes following 12 years of poplar coppice on former cropland and grassland [0.03%]
基于农用地和草地的 poplar 根系和菌根对土壤有机碳变化贡献长达 12 年的杨树林采伐轮伐制度的影响
Gonzalo Berhongaray,Ivan A Janssens,M Francesca Cotrufo et al.
Gonzalo Berhongaray et al.
Background and aims: The establishment of bioenergy plantations as short-rotation coppice poplar systems has been proposed as a sustainable strategy to mitigate climate change through carbon capture. This study evaluates ...