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解析接种不同 Cd 耐受型玉米品种的粘质沙雷氏菌 CP-13 的根系分泌物、离子组学和生理生化特性。

Deciphering distinct root exudation, ionomics, and physio-biochemical attributes of Serratia marcescens CP-13 inoculated differentially Cd tolerant Zea mays cultivars.

机构信息

Department of Botany, Faculty of Life Sciences, Government College University, Faisalabad, 38000, Pakistan.

Department of Bioinformatics and Biotechnology, Government College University, Faisalabad, 38000, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(47):71632-71649. doi: 10.1007/s11356-022-20945-0. Epub 2022 May 23.

Abstract

Cadmium (Cd) being a non-essential, mobile, and toxic heavy metal, negatively affects the plant growth and physiology. Current work investigated the impact of Serratia marcescens CP-13 inoculation on root organic acids and nutrient exudates of two maize cultivars varying in Cd tolerance under induced Cd toxicity. Seedlings of Cd-sensitive (Sahiwal-2002) and Cd-tolerant (MMRI-Yellow) cultivars were grown either inoculated or non-inoculated with CP-13 in Petri plates having various Cd stress levels (0, 6, 12, 18, 24, 30 μM). Seedlings were transferred to rhizoboxes for the collection of root exudates and analysis of physio-biochemical traits. Both maize cultivars exuded higher organic acids and nutrient exudates under non-inoculated conditions as compared to inoculated ones. Non-inoculated tolerant cultivar exhibited higher nutrient accumulation, biomass, antioxidants, total chlorophyll, Cd release meanwhile reduced Cd uptake, lipid peroxidation, exudation of organic acids, and nutrients than the sensitive one. However, under CP-13 inoculation, Cd sensitive cultivar exhibited less exudation of organic acids (citric acid, acetic acid, malic acid, glutamic acid, formic acid, succinic acid, and oxalic acid), nutrients mobilization (K, Na, Zn, Ca, and Mg), total chlorophyll, antioxidants (APX, SOD, POD), total soluble sugar, diminished MDA, and Cd uptake. The significant reduction in release of root exudates by both cultivars was likely due to the plant growth promoting traits of CP-13 which confer Cd tolerance. The maximum release of rhizospheric root exudates were documented at 30 μM applied Cd stress. Therefore, the Serratia sp. CP-13 was proposed as a potential inoculant for bioremediation of Cd together with maize cultivars.

摘要

镉(Cd)是一种非必需的、可移动的有毒重金属,它会对植物的生长和生理产生负面影响。目前的工作研究了在诱导的 Cd 毒性下,不同 Cd 耐性的两个玉米品种的根有机酸和养分渗出物在接种蜡样芽孢杆菌 CP-13 后的变化。将 Cd 敏感(Sahiwal-2002)和 Cd 耐性(MMRI-Yellow)品种的幼苗在含有不同 Cd 胁迫水平(0、6、12、18、24、30 μM)的 Petri 板中进行接种或不接种 CP-13 的培养。将幼苗转移到根盒中以收集根渗出物并分析生理生化特性。与接种相比,两种玉米品种在未接种条件下都分泌出更多的有机酸和养分。与敏感品种相比,未接种的耐性品种表现出更高的养分积累、生物量、抗氧化剂、总叶绿素、Cd 释放,同时降低了 Cd 吸收、脂质过氧化、有机酸和养分的渗出。然而,在 CP-13 接种下,Cd 敏感品种的有机酸(柠檬酸、乙酸、苹果酸、谷氨酸、甲酸、琥珀酸和草酸)、养分动员(K、Na、Zn、Ca 和 Mg)、总叶绿素、抗氧化剂(APX、SOD、POD)、总可溶性糖、减少 MDA 和 Cd 吸收的渗出量较少。两种品种根系分泌物释放量的显著减少可能是由于 CP-13 的植物生长促进特性赋予了 Cd 耐性。在施加的 30 μM Cd 胁迫下,记录到根际根渗出物的最大释放。因此,建议将蜡样芽孢杆菌 CP-13 作为一种潜在的接种剂,与玉米品种一起用于 Cd 的生物修复。

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