Rhizosheath drought responsiveness is variety‐specific and a key component of belowground plant adaptation

组分(热力学) 适应(眼睛) 钥匙(锁) 生物 多样性(控制论) 神经科学 生态学 计算机科学 人工智能 物理 热力学
作者
Franziska Steiner,Andreas J. Wild,Nicolas Tyborski,Shu‐Yin Tung,Tina Koehler,Franz Buegger,Andrea Carminati,Barbara Eder,J. Groth,Benjamin D. Hesse,Johanna Pausch,Tillmann Lüders,Wouter K. Vahl,Sebastian Wolfrum,Carsten W. Mueller,Alix Vidal
出处
期刊:New Phytologist [Wiley]
卷期号:242 (2): 479-492 被引量:20
标识
DOI:10.1111/nph.19638
摘要

Summary Biophysicochemical rhizosheath properties play a vital role in plant drought adaptation. However, their integration into the framework of plant drought response is hampered by incomplete mechanistic understanding of their drought responsiveness and unknown linkage to intraspecific plant–soil drought reactions. Thirty‐eight Zea mays varieties were grown under well‐watered and drought conditions to assess the drought responsiveness of rhizosheath properties, such as soil aggregation, rhizosheath mass, net‐rhizodeposition, and soil organic carbon distribution. Additionally, explanatory traits, including functional plant trait adaptations and changes in soil enzyme activities, were measured. Drought restricted soil structure formation in the rhizosheath and shifted plant–carbon from litter‐derived organic matter in macroaggregates to microbially processed compounds in microaggregates. Variety‐specific functional trait modifications determined variations in rhizosheath drought responsiveness. Drought responses of the plant–soil system ranged among varieties from maintaining plant–microbial interactions in the rhizosheath through accumulation of rhizodeposits, to preserving rhizosheath soil structure while increasing soil exploration through enhanced root elongation. Drought‐induced alterations at the root–soil interface may hold crucial implications for ecosystem resilience in a changing climate. Our findings highlight that rhizosheath soil properties are an intrinsic component of plant drought response, emphasizing the need for a holistic concept of plant–soil systems in future research on plant drought adaptation.

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