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1.
Front Plant Sci ; 15: 1374877, 2024.
Article in English | MEDLINE | ID: mdl-38807777

ABSTRACT

Climate-induced drought impacts plant growth and development. Recurring droughts increase the demand for water for food production and landscaping. Native plants in the Intermountain West region of the US are of keen interest in low water use landscaping as they are acclimatized to dry and cold environments. These native plants do very well at their native locations but are difficult to propagate in landscape. One of the possible reasons is the lack of associated microbiome in the landscaping. Microbiome in the soil contributes to soil health and impacts plant growth and development. Here, we used the bulk soil from the native plant Ceanothus velutinus (snowbrush ceanothus) as inoculant to enhance its propagation. Snowbrush ceanothus is an ornamental plant for low-water landscaping that is hard to propagate asexually. Using 50% native bulk soil as inoculant in the potting mix significantly improved the survival rate of the cuttings compared to no-treated cuttings. Twenty-four plant growth-promoting rhizobacteria (PGPR) producing indole acetic acid (IAA) were isolated from the rhizosphere and roots of the survived snowbrush. Seventeen isolates had more than 10µg/mL of IAA were shortlisted and tested for seven different plant growth-promoting (PGP) traits; 76% showed nitrogen-fixing ability on Norris Glucose Nitrogen free media,70% showed phosphate solubilization activity, 76% showed siderophore production, 36% showed protease activity, 94% showed ACC deaminase activity on DF-ACC media, 76% produced catalase and all of isolates produced ammonia. Eight of seventeen isolates, CK-6, CK-22, CK-41, CK-44, CK-47, CK-50, CK-53, and CK-55, showed an increase in shoot biomass in Arabidopsis thaliana. Seven out of eight isolates were identified as Pseudomonas, except CK-55, identified as Sphingobium based on 16S rRNA gene sequencing. The shortlisted isolates are being tested on different grain and vegetable crops to mitigate drought stress and promote plant growth.

2.
Endoscopy ; 46(2): 149-52, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24415526

ABSTRACT

BACKGROUND AND STUDY AIMS: Endoscopic ultrasound-guided fine needle aspiration (EUS-FNA) of lymph nodes is used for staging of gastrointestinal malignancies. False-positive rates of 5 % - 7 % are not well understood. Elements of EUS examinations that contribute to false-positive cytological findings were investigated. PATIENTS AND METHODS: 13 patients undergoing EUS staging of gastrointestinal luminal malignancy were consecutively enrolled together with 3 patients with extraluminal tumors (pancreas, lung) defined as controls. After EUS, cellular debris and fluid were collected from the FNA needle catheter, instrument channel, and endoscope tip for cytologic and histologic investigation. RESULTS: 6 of 13 patients (46 %) had malignant cells contaminating the FNA needle catheter, instrument channel, or endoscope tip. Malignant cells were present in the instrument channel in 5 cases (38 %), exterior tip of echoendoscope in 4 (31 %) and needle catheter in 2 (15 %). CONCLUSIONS: Echoendoscopes used for FNA in patients with luminal tumors are at risk for malignant cell contamination of the instrument channel, FNA needle catheter, and echoendoscope tip. FNA needle contamination can contribute to false-positive findings.


Subject(s)
Adenocarcinoma/pathology , Carcinoma, Squamous Cell/pathology , Digestive System Neoplasms/pathology , Endoscopic Ultrasound-Guided Fine Needle Aspiration , Lung Neoplasms/pathology , Adenocarcinoma/diagnostic imaging , Carcinoma, Squamous Cell/diagnostic imaging , Digestive System Neoplasms/diagnostic imaging , Endoscopic Ultrasound-Guided Fine Needle Aspiration/instrumentation , False Positive Reactions , Humans , Lung Neoplasms/diagnostic imaging , Neoplasm Staging , Prospective Studies , Single-Blind Method
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