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添加碳对鹰嘴豆根鞘组织的影响。

The impact of carbon addition on the organisation of rhizosheath of chickpea.

机构信息

School of Life and Environmental Sciences, Centre for Carbon, Water and Food, The University of Sydney, Camden, NSW, 2570, Australia.

School of Environmental and Rural Science, University of New England, Armidale, NSW, 2351, Australia.

出版信息

Sci Rep. 2018 Dec 21;8(1):18028. doi: 10.1038/s41598-018-36958-0.

Abstract

Spatio-temporal development of the rhizosheath during root elongation has the potential to modify the function of the rhizosphere under abiotic stress. We quantified the impact of carbon (i.e. glucose) addition on the development and function of rhizosheath of drought tolerant and sensitive chickpea (Cicer arietinum L.) by integrating soil pore volume obtained from X-ray microtomography (µCT), soil physical and microbial respiration measures, and measurements of root traits. Structural equation modelling indicated the feedback mechanisms between added carbon, root traits, pore geometry, and soil functions differed between the cultivars in a fashion congruent with the concept of soil as a self-organising system that interacts with an introduced root system. The drought tolerant cultivar partitioned more photosynthetically fixed carbon to the roots, had more root hairs and more porous rhizosheath, as compared with the sensitive cultivar.

摘要

在根伸长过程中,根鞘的时空发育有可能改变非生物胁迫下根际的功能。我们通过整合 X 射线微断层扫描(µCT)获得的土壤孔隙体积、土壤物理和微生物呼吸测量以及根系性状测量,定量研究了碳(即葡萄糖)添加对耐旱和敏感鹰嘴豆(Cicer arietinum L.)根鞘发育和功能的影响。结构方程模型表明,添加的碳、根系性状、孔隙几何形状和土壤功能之间的反馈机制在不同品种之间存在差异,这与土壤作为与引入根系相互作用的自组织系统的概念是一致的。与敏感品种相比,耐旱品种将更多的光合作用固定碳分配到根部,具有更多的根毛和更具多孔性的根鞘。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bca3/6303379/747416bfbf51/41598_2018_36958_Fig1_HTML.jpg

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