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Regent Instruments winrhizo pro 2017a software
Winrhizo Pro 2017a Software, supplied by Regent Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/winrhizo+pro+2017a+software/software+winrhizo/bio_rxiv__64898__2026__05__14__725292-131-5-9
Average 86 stars, based on 1 article reviews
winrhizo pro 2017a software - by Bioz Stars, 2026-10
86/100 stars

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Article Title: Characterization of Rhizosphere Oxidation Associated with Root Development in Rice Using Planar Oxygen Optodes
Article Snippet: .. Root images were analyzed using WinRHIZO Pro 2017a software (Regent Instruments, Quebec, Canada). ..

Article Title: iPOTs: Internet of Things-based pot system controlling optional treatment of soil water condition for plant phenotyping under drought stress.
Article Snippet: Yuko Numajiri , Kanami Yoshino, Shota Teramoto, Atsushi Hayashi, Ryo Nishijima, Tsuyoshi Tanaka, Takeshi Hayashi, Taiji Kawakatsu , Takanari Tanabata* and Yusaku Uga* Institute of Crop Science, National Agriculture and Food Research Organization, 2-1-2 Kan-non-dai, Tsukuba, Ibaraki 3058518, Japan, Institute of Agrobiological Sciences, National Agriculture and Food Research Organization, 3-1-3 Kan-non-dai, Tsukuba, Ibaraki 305-8604, Japan, Kazusa DNA Research Institute, 2-6-7 Kazusa-Kamatari, Kisarazu, Chiba 292-0818, Japan, and Research Center for Agricultural Information Technology, National Agriculture and Food Research Organization, 3-5-1 Kasumigaseki, Chiyoda, Tokyo 100-0013, Japan

Article Title: Fine root dynamics responses to nitrogen addition depend on root order, soil layer, and experimental duration in a subtropical forest
Article Snippet: Elevated atmospheric N deposition has been well documented to enhance fine root production in N-limited temperate forests, but how fine roots respond to N deposition in N-rich tropical and subtropical forests remains poorly understood.. The sequential coring and minirhizotron methods were applied to quantify fine root biomass, production, and turnover of a N-rich but P-limited subtropical forest in southern China and to assess the responses of these root variables to a gradient of N additions (control (0), low-N (35), medium-N (70), and high-N (105 kg N ha year)) during the first 3 years of experimentation.. The highand medium-N additions significantly reduced fine root diameter by about 30% but increased the specific root length by 20–105%, i.e., fine roots became thinner and longer under the experimental N addition.

Article Title: Three-dimensional image analysis specifies the root distribution for drought avoidance in the early growth stage of rice.
Article Snippet: 1Institute of Crop Science, National Agriculture and Food Research Organization, 2-1-2, Kan-non-dai, Tsukuba, Ibaraki, 305-8518, Japan and 2Research Center for Agricultural Information Technology, National Agriculture and Food Research Organization, 2-14-1 Nishi-shinbashi, Minato-ku, Tokyo, 105-0003, Japan †Present address: Institute of Agrobiological Sciences, National Agriculture and Food Research Organization, 1-2 Owashi, Tsukuba, Ibaraki, 305-0851, Japan ‡Present address: Department of Bioresource Development, Tokyo University of Agriculture, Atsugi, Kanagawa, 243-0034, Japan *For correspondence.. E-mail yuga@affrc.go.jp

Article Title: The transcriptomic landscapes of rice cultivars with diverse root system architectures grown in upland field conditions.
Article Snippet: Root system architecture affects plant drought resistance and other key agronomic traits such as lodging.. However, although phenotypic and genomic variation has been extensively analyzed, few field studies have integrated phenotypic and transcriptomic information, particularly for below-ground traits such as root system architecture.. Here, we report the phenotypic and transcriptomic landscape of 61 rice (Oryza sativa) accessions with highly diverse below-ground traits grown in an upland field.



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