生物肥料(Sinorhizobium meliloti)液体孕育剂配方对苜蓿生长、产量和氮素吸收的影响

Nitrogen Pub Date : 2023-02-24 DOI:10.3390/nitrogen4010009
Auges Gatabazi, M. Botha, Mireille Asanzi Mvondo-She
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引用次数: 1

摘要

卢塞恩被认为是南非最好的豆科作物。它通常用于生产优质干草。它还在土壤保持、更新和作物轮作系统中发挥重要作用,因为它通过共生固氮为后续作物提供大量氮,这使其成为集约化饲料生产系统的首选。液体孕育剂配方的肥料已被证明有助于豆科作物的生长和产量的增加。因此,本文旨在研究接种墨氏中华根瘤菌液体制剂对苜蓿生长、产量和含氮量的影响。菌株RF14 (Sinorhizobium meliloti)来自南非比勒陀利亚(Pretoria) (East) Roodeplaat (Plant Health and Protection)的农业研究理事会。液体接种剂含活细胞6.5 × 109 mL−1。根据Kooen-Gieger气候分类,实验在两个不同的气候带进行。第一个地点在豪登省的Bronkhorspruit (Blesbokfontein农场),第二个地点在西北省的Hartbeesfontein (Rietfontein农场)。结果表明,在两种生物气候带,用墨氏中华根瘤菌液体接种剂接种苜蓿苜蓿均能显著提高根瘤数量、大小、生长和产量。与阴性对照相比显著增加。在所有接种处理中,与对照相比,墨氏中华根瘤菌接种剂增加了氮素积累。本研究结果为应用根瘤菌接种剂通过结瘤提高土壤肥力提供了重要信息。此外,种子活力的提高还转化为苜蓿植株的整体生长和产量的提高。
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Assessing Liquid Inoculant Formulation of Biofertilizer (Sinorhizobium meliloti) on Growth, Yield, and Nitrogen Uptake of Lucerne (Medicago sativa)
Lucerne is regarded as the best legume crop for forage to be cultivated in South Africa. It is commonly used to produce good quality hay. It also plays an important role in soil conservation, regeneration, and crop rotation systems as it supplies substantial amounts of nitrogen to succeeding crops through symbiotic N2 fixation, which makes it the preferable choice for intensive forage production systems. Fertilizer in liquid inoculant formulations has demonstrated to contribute growth and yield increase for leguminous crops. Therefore, the aim of this paper was to determine the effects of Sinorhizobium meliloti liquid formulation inoculation on the growth, yield, and nitrogen content in lucerne. The strain RF14 (Sinorhizobium meliloti) was collected from the Agricultural Research Council at Roodeplaat (Plant Health and Protection located (East), Pretoria (South Africa). The liquid inoculant contained 6.5 × 109 viable cells mL−1. According to the Kooen–Gieger climatic classification, the experiments were conducted on two different climatic zones. The first site was in Bronkhorspruit (Blesbokfontein farm) in the Gauteng province and the second was in Hartbeesfontein (Rietfontein Farm) in the Northwest province. The results showed that lucerne inoculation with liquid inoculant formulation of Sinorhizobium meliloti significantly increased nodule number, size, growth, and yield in both bioclimatic zones. The significantly increased were compared to the negative control. The Sinorhizobium meliloti inoculant increased nitrogen accumulation in all inoculated treatments compared to the control. The finding of this research provides important information on the impact of rhizobium microbial inoculant application in the improvement of soil fertility through nodule formation. In addition, seed vigor improvement was translated in overall growth and yield increase in lucerne plants.
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