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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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Pines stump could serve as Armillaria inoculum for avocado orchards established in cleared forest areas
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22por 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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23por 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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24por 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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25por 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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26por 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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27por Nguyen, Hien P., Ratu, Safirah T. N., Yasuda, Michiko, Teaumroong, Neung, Okazaki, Shin“…Bradyrhizobium elkanii USDA61 possesses a functional type III secretion system (T3SS) that controls host-specific symbioses with legumes. …”
Publicado 2020
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28“…The structure analysis showed that the USDA collection was distributed across seven subpopulations; 63% of the accessions were grouped into an identifiable subpopulation. …”
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29por Rosero, Daisy V., Soto Mas, Francisco, Nervi, Laura, Sebastian, Rachel, Casanova, Vanessa, Guldan, Steve“…Participants included organic producers listed in the USDA Organic Integrity Database. Respondents represented producers from 40 states. …”
Publicado 2023
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30por Muñoz-Amatriaín, María, Cuesta-Marcos, Alfonso, Endelman, Jeffrey B., Comadran, Jordi, Bonman, John M., Bockelman, Harold E., Chao, Shiaoman, Russell, Joanne, Waugh, Robbie, Hayes, Patrick M., Muehlbauer, Gary J.“…We used a barley SNP iSelect platform with 7,842 SNPs to genotype 2,417 barley accessions sampled from the USDA National Small Grains Collection of 33,176 accessions. …”
Publicado 2014
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31“…INTRODUCTION: The Smart Snacks in Schools interim final rule was promulgated by the US Department of Agriculture (USDA) as authorized by the Healthy, Hunger-Free Kids Act of 2010 (PL 111–296) and implementation commenced beginning July 1, 2014; however, in the years leading up to this deadline, national studies suggested that most schools were far from meeting the USDA standards. …”
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32por Hahn, Julia, Tsoy, Olga V., Thalmann, Sebastian, Čuklina, Jelena, Gelfand, Mikhail S., Evguenieva-Hackenberg, Elena“…Our analysis of 1391 ORFs recently annotated in the soybean symbiont Bradyrhizobium japonicum USDA 110 revealed that 78% of them contain less than 80 codons. …”
Publicado 2016
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33por Holdsworth, William L., Gazave, Elodie, Cheng, Peng, Myers, James R., Gore, Michael A., Coyne, Clarice J., McGee, Rebecca J., Mazourek, Michael“…In order to assist pea development efforts, we assembled the USDA Pea Single Plant Plus Collection (PSPPC), which contains 431 P. sativum accessions with morphological, geographic and taxonomic diversity. …”
Publicado 2017
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35por Schläppi, Michael R., Jackson, Aaron K., Eizenga, Georgia C., Wang, Aiju, Chu, Chengcai, Shi, Yao, Shimoyama, Naoki, Boykin, Debbie L.Enlace del recurso
Publicado 2017
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36por Cohen, Juliana F.W., Schwartz, Marlene B., Leider, Julien, Turner, Lindsey, Chriqui, Jamie F.Enlace del recurso
Publicado 2020
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37“…The objective was to assess the nutritional impact of adding a serving of mushrooms in USDA Food Patterns using a similar approach to that used by USDA for Dietary Guidelines. …”
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39por Shi, Ainong, Bhattarai, Gehendra, Xiong, Haizheng, Avila, Carlos A, Feng, Chunda, Liu, Bo, Joshi, Vijay, Stein, Larry, Mou, Beiquan, du Toit, Lindsey J, Correll, James C“…The objectives of this study were to conduct a genome-wide associating study (GWAS), to identify single nucleotide polymorphism (SNP) markers associated with white rust resistance in spinach, and to perform genomic prediction (GP) to estimate the prediction accuracy (PA). A GWAS panel of 346 USDA (US Dept. of Agriculture) germplasm accessions was phenotyped for white rust resistance under field conditions and GWAS was performed using 13 235 whole-genome resequencing (WGR) generated SNPs. …”
Publicado 2022
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