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揭示隐藏的响应:干旱和氮素挑战下小竹()根际的宏基因组学见解。

Unveiling the Hidden Responses: Metagenomic Insights into Dwarf Bamboo () Rhizosphere under Drought and Nitrogen Challenges.

机构信息

College of Life Science, Sichuan Normal University, Chengdu 610101, China.

Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610213, China.

出版信息

Int J Mol Sci. 2024 Oct 8;25(19):10790. doi: 10.3390/ijms251910790.

Abstract

Dwarf bamboo () is a crucial food source for the giant pandas. With its shallow root system and rapid growth, dwarf bamboo is highly sensitive to drought stress and nitrogen deposition, both major concerns of global climate change affecting plant growth and rhizosphere environments. However, few reports address the response mechanisms of the dwarf bamboo rhizosphere environment to these two factors. Therefore, this study investigated the effects of drought stress and nitrogen deposition on the physicochemical properties and microbial community composition of the arrow bamboo rhizosphere soil, using metagenomic sequencing to analyze functional genes involved in carbon and nitrogen cycles. Both drought stress and nitrogen deposition significantly altered the soil nutrient content, but their combination had no significant impact on these indicators. Nitrogen deposition increased the relative abundance of the microbial functional gene , while decreasing the abundances of , , , and . Drought stress inhibited the functional genes of key microbial enzymes involved in starch and sucrose metabolism, but promoted those involved in galactose metabolism, inositol phosphate metabolism, and hemicellulose degradation. NO-N showed the highest correlation with N-cycling functional genes ( < 0.01). Total C and total N had the greatest impact on the relative abundance of key enzyme functional genes involved in carbon degradation. This research provides theoretical and technical references for the sustainable management and conservation of dwarf bamboo forests in giant panda habitats under global climate change.

摘要

矮小箭竹()是大熊猫的重要食物来源。矮小箭竹具有浅根系和快速生长的特点,对干旱胁迫和氮沉降高度敏感,而这两者都是影响植物生长和根际环境的全球气候变化的主要关注点。然而,很少有报道涉及矮小箭竹根际环境对这两个因素的响应机制。因此,本研究采用宏基因组测序分析碳氮循环相关功能基因的方法,调查了干旱胁迫和氮沉降对箭竹根际土壤理化性质和微生物群落组成的影响。干旱胁迫和氮沉降均显著改变了土壤养分含量,但两者的组合对这些指标没有显著影响。氮沉降增加了微生物功能基因的相对丰度,而降低了、、、和的相对丰度。干旱胁迫抑制了与淀粉和蔗糖代谢相关的关键微生物酶功能基因,但促进了与半乳糖代谢、肌醇磷酸盐代谢和半纤维素降解相关的功能基因。NO-N 与氮循环功能基因的相关性最高(<0.01)。总 C 和总 N 对参与碳降解的关键酶功能基因的相对丰度影响最大。本研究为在全球气候变化下,对大熊猫栖息地矮小箭竹森林进行可持续管理和保护提供了理论和技术参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4673/11477272/a70701a35ce8/ijms-25-10790-g001.jpg

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