叶片蒸腾抑制剂减少水稻籽粒Cd积累:内生细菌群落的潜在效应。

IF 4.1 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Toxics Pub Date : 2025-09-05 DOI:10.3390/toxics13090755
Ge Lei, Huijuan Song, Ziwen Gan, Yunchou Yang, Anwei Chen
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引用次数: 0

摘要

土壤中过量的镉可在水稻中积累,对人类健康构成严重威胁。叶片蒸腾抑制剂(TIs)对水稻Cd含量和内生细菌群落的影响尚不清楚。研究了喷施叶面药剂后水稻植株控制Cd转运的关键部位和内生细菌结构特征;一些可能的典型内生菌被ti诱导抑制Cd在水稻植株中的转运。在3个有效镉含量不同的试验点对水稻进行叶面喷施。对水稻植株不同部位的Cd、N、P、K、水溶性糖(WSS)和茎内内生细菌群落进行了测定。叶面施用ti使镉从根到粒的转运因子(TFCd)比对照降低了约20%。TI可使茎节吸附位点浓度由5.10 mmol/g提高到6.83 mmol/g。施用TI增强了内生细菌群落的多样性,Shannon指数由3.29提高到3.92。TI诱导的内生细菌群落在生物膜、抗逆性和金属转运功能上表现出比CK更高的潜力。同时,burkholderaceae和bacterum_g_anaeromyxobacter的相对丰度与TFCd呈显著负相关(p < 0.05),与水溶液糖含量呈显著正相关(p < 0.05)。TI增强了内生菌的多样性和数量。TI诱导的高丰度的特殊内生细菌可能会降低TFCd。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Foliar Transpiration Inhibitor Reduces Cd Accumulation in Rice Grain: The Potential Effect of the Endophytic Bacterial Community.

Foliar Transpiration Inhibitor Reduces Cd Accumulation in Rice Grain: The Potential Effect of the Endophytic Bacterial Community.

Foliar Transpiration Inhibitor Reduces Cd Accumulation in Rice Grain: The Potential Effect of the Endophytic Bacterial Community.

Foliar Transpiration Inhibitor Reduces Cd Accumulation in Rice Grain: The Potential Effect of the Endophytic Bacterial Community.

Excess Cd in soils can be accumulated in rice, presenting a serious human health risk. The effect of foliar transpiration inhibitors (TIs) on the Cd content and the endophytic bacterial community in rice plants was unclear. We evaluated the key part of the rice plant to control the Cd translocation and the profile of the endophytic bacterium structure after spraying with foliar reagents; some possible typical endophytes were induced by the TIs to inhibit the Cd translocation in the rice plant. The rice plants in three sites with different available Cd content were sprayed with foliar TIs. We assessed the Cd, N, P, K and water-soluble saccharide (WSS) in different parts of the rice plant and the endophytic bacteria community in the stem. Foliar application of TIs reduced Cd translocation factor (TFCd) by ~20% from the root to the grain compared with that of CK. The TI can increase the adsorptive site concentration of stem nodes from 5.10 to 6.83 mmol/g. The diversity of the endophytic bacteria community was enhanced after application of TI, and the Shannon index increased from 3.29 to 3.92. The endophytic bacterial community induced by TI showed higher potentiality on the biofilm and stress-tolerant and metal-transport functions than that of CK, respectively. The relative abundances of Burkholderiaceae and Bacterium_g_Anaeromyxobacter were significantly negatively correlated (p < 0.05), with TFCd and positively correlated (p < 0.05), with water-solution saccharide content, simultaneously. The TI enhanced the endophytic diversity and amount. A high abundance of special endophytic bacteria induced by TI might decrease the TFCd.

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来源期刊
Toxics
Toxics Chemical Engineering-Chemical Health and Safety
CiteScore
4.50
自引率
10.90%
发文量
681
审稿时长
6 weeks
期刊介绍: Toxics (ISSN 2305-6304) is an international, peer-reviewed, open access journal which provides an advanced forum for studies related to all aspects of toxic chemicals and materials. It publishes reviews, regular research papers, and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in detail. There is, therefore, no restriction on the maximum length of the papers, although authors should write their papers in a clear and concise way. The full experimental details must be provided so that the results can be reproduced. Electronic files or software regarding the full details of calculations and experimental procedure can be deposited as supplementary material, if it is not possible to publish them along with the text.
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