雨季旱地柱花草、水杨花、卧枕草和紫荆草根瘤菌总菌数和磷溶菌数的评价

A. S. Diningtyas, I. W. Suarna, S. Lindawati
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引用次数: 0

摘要

溶磷菌是指能将磷分解为可被植物吸收的磷元素的细菌。因此,本研究需要了解雨季旱地植物根茎中细菌总数和磷溶菌总数。本研究采用加性线性模型,仅假设不同植物种类引起的磷化菌群。选取了无根植物(NR)、柱花草(Sg)、金穗草(Gs)、卧卧Brachiaria decumbens (Bd)和紫荆草(Pp) 5个处理,共4个重复。观察变量为总平板计数(TPC)、磷酸溶化菌总数(PSB)、磷元素(磷素)和含水量。研究结果表明:土地TPC约为1.06 ~ 7.12 × 107 cfu/g, PSB约为4.78 ~ 7.60 × 106 cfu/g。处理NR时P元素含量最高,为12、16 ppm。处理Bd土壤含水量最高,为4.86%。由此可见,旱地植物Sg、Gs、Bd和Pp的非根际和根际TPC和BPF在雨季是不同的。P元素含量为6.14 ~ 23.07 ppm,水分含量为1.68% ~ 4.86%。关键词:磷酸溶菌;非根瘤菌;根瘤菌
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EVALUATION OF TOTAL BACTERIA AND PHOSPHATE SOLUBILIZED BACTERIA IN RHIZOSFIRS OF Stylosanthes guianensis, Gliricidia sepium, Bracharia decumbens, AND Pennisetum purpureum AT UPLAND IN RAINY SEASON
Phosphate solubilized bacteria is bacteria that useful to solve P bound to be P elements which could be absorped by plant. So, this research is needed to know total population of bacteria and phosphate solubilized bacteria in plants rhizosfer at dry land in rainy season. The research followed aditive linier model with assumption phosphate solubilized bacteria population caused by different of plant species only. Samples taken were consisted of 5 treatments in plants rhizosfer i.e. non rhizosfer (NR), Stylosanthes guianensis (Sg), Gliricidia sepium (Gs), Brachiaria decumbens (Bd), and Pennisetum purpureum (Pp) with 4 replications. Variable observed were Total Plate Count (TPC), total of Phosphate Solublilized Bacteria (PSB), P element (phosphore) ail water content. The research results showed that the TPC of land about 1.06 - 7.12 × 107 cfu/g, PSB about 4.78 - 7.60 × 106 cfu/g. P element at treatment NR was the highest 12,16 ppm. The highest soil water content on the treatment Bd was 4.86%. It can be concluded that TPC and BPF in non rhizosphere and rhizosphere of plants Sg, Gs, Bd and Pp on dry land in the rainy season are different. The content of P elements ranged from 6.14 to 23.07 ppm and the moisture content ranged from 1.68 to 4.86%. Key words: phosphate soluble bacteria, non rhizosfer, rhizosfer
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