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Armillaria root disease-caused mortality of avocado trees was associated with Armillaria mexicana
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Armillaria root disease-caused mortality of lychee trees was associated with Desarmillaria caespitosa
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Litchi chinensis
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Persea americana
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Pines stump could serve as Armillaria inoculum for avocado orchards established in cleared forest areas
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Pinus sp
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gen tef1
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pudrición de raíces
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root disease
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tef1 gene
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2“…Soybean inoculated with USDA123 has a lower yield than strains known to have high nitrogen fixation efficiency, such as USDA110. …”
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3“…However, the EPS biosynthesis pathway in Bradyrhizobium diazoefficiens USDA110 remains elusive. Here we used transposon (Tn) mutagenesis with the aim to identify genetic elements required for EPS biosynthesis in B. diazoefficiens USDA110. …”
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4por Bueno, Erika, Kisha, Ted, Maki, Sonja L., von Wettberg, Eric J. B., Singer, Susan“…In this study, we describe population structure and genetic diversity among 32 USDA germplasm accessions of C. fasciculata using 317 AFLP markers developed from 12 primer pairs, to assess where geographically there is the most genetic variation. …”
Publicado 2019
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5por Acharya, Bimala, Mackasmiel, Lucas, Taheri, Ali, Ondzighi-Assoume, Christine A., Weng, Yiqun, Dumenyo, C. Korsi“…The purpose of this study is to identify BW-resistant melon accessions in the United States Department of Agriculture (USDA) collection. We tested 118 melon accessions in two inoculation trials under controlled environments. …”
Publicado 2021
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6por Hernandez, Christopher O., Labate, Joanne, Reitsma, Kathleen, Fabrizio, Jack, Bao, Kan, Fei, Zhangjun, Grumet, Rebecca, Mazourek, Michael“…We present the analysis of genotype data generated through genotyping-by-sequencing of the USDA germplasm collections of Cucurbita pepo, C. moschata, and C. maxima. …”
Publicado 2023
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7Evaluation of public submissions to the USDA for labeling of cell-cultured meat in the United States“…Department of Agriculture’s Food Safety and Inspection Services (USDA-FSIS) call on the labeling of cell-cultured meat and poultry. …”
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8por Kaneko, Takakazu, Maita, Hiroko, Hirakawa, Hideki, Uchiike, Nobukazu, Minamisawa, Kiwamu, Watanabe, Akiko, Sato, Shusei“…The complete nucleotide sequence of the genome of the soybean symbiont Bradyrhizobium japonicum strain USDA6(T) was determined. The genome of USDA6(T) is a single circular chromosome of 9,207,384 bp. …”
Publicado 2011
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9“…The soil data were converted to the USDA (United States Department of Agriculture) standard using PSD models and the fractal concept. …”
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11“…The Rfg1 allele encodes a member of the Toll-interleukin receptor/nucleotide-binding site/leucine-rich repeat class of plant resistance proteins that restricts nodulation by S. fredii strains USDA257 and USDA205, and an allelic variant of this gene also restricts nodulation by Bradyrhizobium japonicum USDA122. …”
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12por Bari, Md. Abdullah Al, Zheng, Ping, Viera, Indalecio, Worral, Hannah, Szwiec, Stephen, Ma, Yu, Main, Dorrie, Coyne, Clarice J., McGee, Rebecca J., Bandillo, Nonoy“…In this study, we applied and evaluated genomic prediction’s potential to a set of 482 pea (Pisum sativum L.) accessions—genotyped with 30,600 single nucleotide polymorphic (SNP) markers and phenotyped for seed yield and yield-related components—for enhancing selection of accessions from the USDA Pea Germplasm Collection. Genomic prediction models and several factors affecting predictive ability were evaluated in a series of cross-validation schemes across complex traits. …”
Publicado 2021
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13“…In this study, we investigated the ability of two classical soybean symbionts—S. fredii USDA191 and B. diazoefficiens USDA110—and their type 3 secretion system (T3SS) mutants, to nodulate pigeon pea. …”
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14“…Bradyrhizobium diazoefficiens USDA110 is an important model strain for the study of symbiotic nitrogen fixation (SNF), and its SNF ability largely depends on the TRN. …”
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16por Hafeez, Muhammad Bilal, Iqbal, Shahid, Li, Yuanyuan, Saddiq, Muhammad Sohail, Basra, Shahzad M. A., Zhang, Hui, Zahra, Noreen, Akram, Muhammad Z., Bertero, Daniel, Curti, Ramiro N.“…A set of 117 quinoa genotypes belonging to the USDA quinoa collection was evaluated for 11 phenotypic quantitative traits (grain yield (Y), its biological and numerical components plus phenological variables) in a RCBD during two consecutive growing seasons at the University of Agriculture, Faisalabad, Pakistan under mid-autumn sowings. …”
Publicado 2022
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17por Hoffman, Neil E.“…The literature contains hundreds of examples of crops that may serve this purpose, yet most remain un-launched due to high regulatory barriers. Recently the USDA revised its biotechnology regulations to make them more risk-proportionate, science-based, and streamlined. …”
Publicado 2022
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18por Sugawara, Masayuki, Tsukui, Takahiro, Kaneko, Takakazu, Ohtsubo, Yoshiyuki, Sato, Shusei, Nagata, Yuji, Tsuda, Masataka, Mitsui, Hisayuki, Minamisawa, Kiwamu“…We report the complete genome sequence of Bradyrhizobium diazoefficiens USDA 122, a nitrogen-fixing soybean symbiont. The genome consists of a 9.1 Mb circular chromosome, and 8,551 coding sequences (CDSs) were predicted on the genome. …”
Publicado 2017
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19por Wadl, Phillip A., Olukolu, Bode A., Branham, Sandra E., Jarret, Robert L., Yencho, G. Craig, Jackson, D. Michael“…There are two sweetpotato germplasm collections (Plant Genetic Resources Conservation Unit and US Vegetable Laboratory) maintained by the USDA, ARS for sweetpotato crop improvement. To date, no genome-wide assessment of genetic diversity within these collections has been reported in the published literature. …”
Publicado 2018
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20por Rohila, Jai S., Edwards, Jeremy D., Tran, Gioi D., Jackson, Aaron K., McClung, Anna M.“…The purpose of this study was to evaluate the natural genetic variation available in the United States Department of Agriculture (USDA) rice mini-core collection (URMC) for early vigor traits under salt stress and identify quantitative trait loci (QTLs) for seedling-stage salt tolerance via a genome-wide association study (GWAS). …”
Publicado 2019
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