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Cloning  & Transgenesis

Cloning & Transgenesis
Open Access

ISSN: 2168-9849

Cloning & Transgenesis : Citations & Metrics Report

Articles published in Cloning & Transgenesis have been cited by esteemed scholars and scientists all around the world. Cloning & Transgenesis has got h-index 6, which means every article in Cloning & Transgenesis has got 6 average citations.

Following are the list of articles that have cited the articles published in Cloning & Transgenesis.

  2020 2019 2018 2017 2016

Year wise published articles

0 2 4 4 12

Year wise citations received

9 11 14 19 17
Journal total citations count 134
Journal impact factor 1.67
Journal 5 years impact factor 3.04
Journal cite score 4.82
Journal h-index 6
Journal h-index since 2018 4
Important citations (178)

Challa s, neelapu nr, dutta t, mishra mr. involvement of policymakers, public acceptance, and commercialization of nutritionally enhanced and genetically modified rice. rice research for quality improvement: genomics and genetic engineering. 2020:749-80.

Mehrab-ghoochani o, ghanian m, baradaran m. analysis the factors influencing specialists’ attitudes towards iranian genetically modified rice. iranian agricultural extension and education journal. 2017 feb 19;12(2):53-72.

Sarmah bk, gupta r. biosafety of genetically engineered (ge) crops–is it really a concern?.

Xu w. pcr methods for detecting gm crops and food in agriculture and the food chain: a review. functional nucleic acids detection in food safety. 2016:323-42.

Ghoochani om, ghanian m, baradaran m, azadi h. factors influencing stakeholders’ behavioral intention toward bt rice in iran. gmo biosafety research. 2016 jan 19;6.

Quintero ny, cohen im. the nexus between co 2 emissions and genetically modified crops: a perspective from order theory. environmental modeling & assessment. 2019 dec;24(6):641-58.

Clement wk, wong my, jugah k, maziah m. producing transgenic rice with improved traits and yield–how far have we come?. pertanika journal of scholarly research reviews. 2017;3(3).

Sadiq m, akram na. field performance of transgenic drought-tolerant crop plants. inbiochemical, physiological and molecular avenues for combating abiotic stress tolerance in plants 2018 jan 1 (pp. 83-102). academic press.

Parvathi ms, nataraja kn. simultaneous expression of abiotic stress-responsive genes: an approach to improve multiple stress tolerance in crops. inplant tolerance to individual and concurrent stresses 2017 (pp. 151-163). springer, new delhi.

Yu yh, hu zy, li mh, li b, wang zm, chen sl. cardiac hypertrophy is positively regulated by long non-coding rna pvt1. international journal of clinical and experimental pathology. 2015;8(3):2582.

Sun chaohui, jiang xiufeng, zhang hongtao, zhao yaxian, ren yuqin, zhou qin. observation on embryonic development of puffer fish. marine fisheries. 2019 jan 31;41(1):65.

Saha u, fayiga a, biswas bk, sonon l. selenium in soil-crop-animal system: a holistic perspective to manage animal and human health.

Ávila pa, faquin v, Ávila fw, kachinski wd, carvalho gs, guilherme lr. phosphorus and sulfur in a tropical soil and their effects on growth and selenium accumulation in leucaena leucocephala (lam.) de wit. environmental science and pollution research. 2020 dec;27(35):44060-72.

Noll lw, worley jn, yang x, shridhar pb, ludwig jb, shi x, bai j, caragea d, meng j, nagaraja tg. comparative genomics reveals differences in mobile virulence genes of escherichia coli o103 pathotypes of bovine fecal origin. plos one. 2018 feb 1;13(2):e0191362.

Smith jl, gunther iv nw. commentary: campylobacter and hemolytic uremic syndrome. foodborne pathogens and disease. 2019 feb 1;16(2):90-3.

Brusa v. desarrollo y validación intralaboratorio de una metodología para la detección y aislamiento de escherichia coli productor de toxina shiga en carne bovina molida (doctoral dissertation, universidad nacional de la plata).

Rádis-baptista g, campelo is, morlighem jÉ, melo lm, freitas vj. cell-penetrating peptides (cpps): from delivery of nucleic acids and antigens to transduction of engineered nucleases for application in transgenesis. journal of biotechnology. 2017 jun 20;252:15-26.

Campelo is, canel ng, bevacqua rj, melo lm, rádis-baptista g, freitas vj, salamone df. crotamine, a cell-penetrating peptide, is able to translocate parthenogenetic and in vitro fertilized bovine embryos but does not improve exogenous dna expression. journal of assisted reproduction and genetics. 2016 oct;33(10):1405-13.

Freitas vj, campelo is, silva mm, cavalcanti cm, teixeira di, camargo ls, melo lm, rádis-baptista g. disulphide-less crotamine is effective for formation of dnaâ??peptide complex but is unable to improve bovine embryo transfection. zygote. 2020 feb;28(1):72-9.

Moreno jd, de gh ed, da cf, folicular dd. prÓ-reitoria de pÓs-graduaÇÃo e pesquisa faculdade de veterinÁria programa de pÓs-graduaÇÃo em ciÊncias veterinÁrias.

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