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- W2926277548 endingPage "90" @default.
- W2926277548 startingPage "77" @default.
- W2926277548 abstract "Phosphorus (P), an essential macronutrient, is pivotal for growth and development of plants. Availability of phosphate (Pi), the only assimilable P, is often suboptimal in rhizospheres. Pi deficiency triggers an array of spatiotemporal adaptive responses including the differential regulation of several transcription factors (TFs). Studies on MYB TF PHR1 in Arabidopsis thaliana (Arabidopsis) and its orthologs OsPHRs in Oryza sativa (rice) have provided empirical evidence of their significant roles in the maintenance of Pi homeostasis. Since the functional characterization of PHR1 in 2001, several other TFs have now been identified in these model plants. This raised a pertinent question whether there are any likely interactions across these TFs. Clustered regularly interspaced short palindromic repeat (CRISPR)/CRISPR-associated protein 9 (Cas9) system has provided an attractive paradigm for editing genome in plants. Here, we review the applications and challenges of this technique for genome editing of the TFs for deciphering the function and plausible interactions across them. This technology could thus provide a much-needed fillip towards engineering TFs for generating Pi use efficient plants for sustainable agriculture. Furthermore, we contemplate whether this technology could be a viable alternative to the controversial genetically modified (GM) rice or it may also eventually embroil into a limbo." @default.
- W2926277548 created "2019-04-11" @default.
- W2926277548 creator A5002827289 @default.
- W2926277548 creator A5014739827 @default.
- W2926277548 creator A5023608208 @default.
- W2926277548 creator A5029072914 @default.
- W2926277548 creator A5040794161 @default.
- W2926277548 creator A5066372965 @default.
- W2926277548 creator A5067446205 @default.
- W2926277548 creator A5071763432 @default.
- W2926277548 creator A5084013075 @default.
- W2926277548 date "2019-12-01" @default.
- W2926277548 modified "2023-10-13" @default.
- W2926277548 title "The potential application of genome editing by using CRISPR/Cas9, and its engineered and ortholog variants for studying the transcription factors involved in the maintenance of phosphate homeostasis in model plants" @default.
- W2926277548 cites W1494075612 @default.
- W2926277548 cites W1532368094 @default.
- W2926277548 cites W1636931877 @default.
- W2926277548 cites W1672151631 @default.
- W2926277548 cites W1757853913 @default.
- W2926277548 cites W1787401975 @default.
- W2926277548 cites W1892406518 @default.
- W2926277548 cites W1902413709 @default.
- W2926277548 cites W1921920502 @default.
- W2926277548 cites W1963933516 @default.
- W2926277548 cites W1966131781 @default.
- W2926277548 cites W1969118015 @default.
- W2926277548 cites W1977404406 @default.
- W2926277548 cites W1977620504 @default.
- W2926277548 cites W1978094899 @default.
- W2926277548 cites W1980579279 @default.
- W2926277548 cites W1981160614 @default.
- W2926277548 cites W1981763026 @default.
- W2926277548 cites W1982666875 @default.
- W2926277548 cites W1982802227 @default.
- W2926277548 cites W1985213868 @default.
- W2926277548 cites W1988067615 @default.
- W2926277548 cites W1988101725 @default.
- W2926277548 cites W1989568784 @default.
- W2926277548 cites W1990187840 @default.
- W2926277548 cites W1990379499 @default.
- W2926277548 cites W1992783297 @default.
- W2926277548 cites W2001845502 @default.
- W2926277548 cites W2003797386 @default.
- W2926277548 cites W2004833582 @default.
- W2926277548 cites W2006228189 @default.
- W2926277548 cites W2009790316 @default.
- W2926277548 cites W2012946217 @default.
- W2926277548 cites W2015428090 @default.
- W2926277548 cites W2015891226 @default.
- W2926277548 cites W2016172869 @default.
- W2926277548 cites W2016216895 @default.
- W2926277548 cites W2016667239 @default.
- W2926277548 cites W2017746652 @default.
- W2926277548 cites W2018403717 @default.
- W2926277548 cites W2019670881 @default.
- W2926277548 cites W2019734507 @default.
- W2926277548 cites W2021767455 @default.
- W2926277548 cites W2023956543 @default.
- W2926277548 cites W2024199022 @default.
- W2926277548 cites W2024702466 @default.
- W2926277548 cites W2026520402 @default.
- W2926277548 cites W2027132658 @default.
- W2926277548 cites W2029690199 @default.
- W2926277548 cites W2032141669 @default.
- W2926277548 cites W2035644750 @default.
- W2926277548 cites W2036176224 @default.
- W2926277548 cites W2036501841 @default.
- W2926277548 cites W2038065534 @default.
- W2926277548 cites W2040532839 @default.
- W2926277548 cites W2043369680 @default.
- W2926277548 cites W2043764521 @default.
- W2926277548 cites W2045362835 @default.
- W2926277548 cites W2045435533 @default.
- W2926277548 cites W2050480410 @default.
- W2926277548 cites W2051622693 @default.
- W2926277548 cites W2052194774 @default.
- W2926277548 cites W2054141518 @default.
- W2926277548 cites W2055331458 @default.
- W2926277548 cites W2056014639 @default.
- W2926277548 cites W2058554931 @default.
- W2926277548 cites W2059244281 @default.
- W2926277548 cites W2059265474 @default.
- W2926277548 cites W2061081431 @default.
- W2926277548 cites W2061638677 @default.
- W2926277548 cites W2061650108 @default.
- W2926277548 cites W2062352708 @default.
- W2926277548 cites W2063171253 @default.
- W2926277548 cites W2064815984 @default.
- W2926277548 cites W2067876587 @default.
- W2926277548 cites W2070614858 @default.
- W2926277548 cites W2070756616 @default.
- W2926277548 cites W2073579158 @default.
- W2926277548 cites W2081261052 @default.
- W2926277548 cites W2082402972 @default.
- W2926277548 cites W2085069783 @default.
- W2926277548 cites W2088168714 @default.
- W2926277548 cites W2088813866 @default.
- W2926277548 cites W2089162936 @default.