Matches in SemOpenAlex for { <https://semopenalex.org/work/W2126863553> ?p ?o ?g. }
- W2126863553 endingPage "3911" @default.
- W2126863553 startingPage "3899" @default.
- W2126863553 abstract "Rice OsERF922, encoding an APETELA2/ethylene response factor (AP2/ERF) type transcription factor, is rapidly and strongly induced by abscisic acid (ABA) and salt treatments, as well as by both virulent and avirulent pathovars of Magnaporthe oryzae, the causal agent of rice blast disease. OsERF922 is localized to the nucleus, binds specifically to the GCC box sequence, and acts as a transcriptional activator in plant cells. Knockdown of OsERF922 by means of RNAi enhanced resistance against M. oryzae. The elevated disease resistance of the RNAi plants was associated with increased expression of PR, PAL, and the other genes encoding phytoalexin biosynthetic enzymes and without M. oryzae infection. In contrast, OsERF922-overexpressing plants showed reduced expression of these defence-related genes and enhanced susceptibility to M. oryzae. In addition, the OsERF922-overexpressing lines exhibited decreased tolerance to salt stress with an increased Na+/K+ ratio in the shoots. The ABA levels were found increased in the overexpressing lines and decreased in the RNAi plants. Expression of the ABA biosynthesis-related genes, 9-cis-epoxycarotenoid dioxygenase (NCED) 3 and 4, was upregulated in the OsERF922-overexpressing plants, and NCED4 was downregulated in the RNAi lines. These results suggest that OsERF922 is integrated into the cross-talk between biotic and abiotic stress-signalling networks perhaps through modulation of the ABA levels." @default.
- W2126863553 created "2016-06-24" @default.
- W2126863553 creator A5043044960 @default.
- W2126863553 creator A5056456976 @default.
- W2126863553 creator A5066755452 @default.
- W2126863553 creator A5079641568 @default.
- W2126863553 creator A5081326400 @default.
- W2126863553 date "2012-03-21" @default.
- W2126863553 modified "2023-10-10" @default.
- W2126863553 title "The rice ERF transcription factor OsERF922 negatively regulates resistance to Magnaporthe oryzae and salt tolerance" @default.
- W2126863553 cites W1581233167 @default.
- W2126863553 cites W1973082176 @default.
- W2126863553 cites W1979685932 @default.
- W2126863553 cites W1981546231 @default.
- W2126863553 cites W1983124032 @default.
- W2126863553 cites W1984147979 @default.
- W2126863553 cites W1988642276 @default.
- W2126863553 cites W1993082924 @default.
- W2126863553 cites W1994704939 @default.
- W2126863553 cites W1995828353 @default.
- W2126863553 cites W2000685564 @default.
- W2126863553 cites W2004439769 @default.
- W2126863553 cites W2004552758 @default.
- W2126863553 cites W2022290525 @default.
- W2126863553 cites W2027940419 @default.
- W2126863553 cites W2032497698 @default.
- W2126863553 cites W2041537246 @default.
- W2126863553 cites W2041810723 @default.
- W2126863553 cites W2044565924 @default.
- W2126863553 cites W2046067774 @default.
- W2126863553 cites W2052009618 @default.
- W2126863553 cites W2054747421 @default.
- W2126863553 cites W2055654803 @default.
- W2126863553 cites W2059846377 @default.
- W2126863553 cites W2064486323 @default.
- W2126863553 cites W2064576007 @default.
- W2126863553 cites W2070539328 @default.
- W2126863553 cites W2071647949 @default.
- W2126863553 cites W2073720652 @default.
- W2126863553 cites W2080485947 @default.
- W2126863553 cites W2083300694 @default.
- W2126863553 cites W2086268898 @default.
- W2126863553 cites W2088101238 @default.
- W2126863553 cites W2089393135 @default.
- W2126863553 cites W2092988070 @default.
- W2126863553 cites W2096349460 @default.
- W2126863553 cites W2096590190 @default.
- W2126863553 cites W2098007670 @default.
- W2126863553 cites W2101588641 @default.
- W2126863553 cites W2104504808 @default.
- W2126863553 cites W2104989176 @default.
- W2126863553 cites W2107446409 @default.
- W2126863553 cites W2113386331 @default.
- W2126863553 cites W2115876683 @default.
- W2126863553 cites W2117956345 @default.
- W2126863553 cites W2121323558 @default.
- W2126863553 cites W2122901692 @default.
- W2126863553 cites W2123208777 @default.
- W2126863553 cites W2123235796 @default.
- W2126863553 cites W2123563192 @default.
- W2126863553 cites W2129308725 @default.
- W2126863553 cites W2132471904 @default.
- W2126863553 cites W2137136072 @default.
- W2126863553 cites W2138910585 @default.
- W2126863553 cites W2138947127 @default.
- W2126863553 cites W2139950683 @default.
- W2126863553 cites W2139967388 @default.
- W2126863553 cites W2141164548 @default.
- W2126863553 cites W2144073967 @default.
- W2126863553 cites W2150731830 @default.
- W2126863553 cites W2155421142 @default.
- W2126863553 cites W2156016500 @default.
- W2126863553 cites W2157278055 @default.
- W2126863553 cites W2158018108 @default.
- W2126863553 cites W2158918882 @default.
- W2126863553 cites W2159115629 @default.
- W2126863553 cites W2165924949 @default.
- W2126863553 cites W2169115409 @default.
- W2126863553 cites W2170936627 @default.
- W2126863553 cites W2172070996 @default.
- W2126863553 cites W4246133959 @default.
- W2126863553 doi "https://doi.org/10.1093/jxb/ers079" @default.
- W2126863553 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3388842" @default.
- W2126863553 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22442415" @default.
- W2126863553 hasPublicationYear "2012" @default.
- W2126863553 type Work @default.
- W2126863553 sameAs 2126863553 @default.
- W2126863553 citedByCount "228" @default.
- W2126863553 countsByYear W21268635532012 @default.
- W2126863553 countsByYear W21268635532013 @default.
- W2126863553 countsByYear W21268635532014 @default.
- W2126863553 countsByYear W21268635532015 @default.
- W2126863553 countsByYear W21268635532016 @default.
- W2126863553 countsByYear W21268635532017 @default.
- W2126863553 countsByYear W21268635532018 @default.
- W2126863553 countsByYear W21268635532019 @default.
- W2126863553 countsByYear W21268635532020 @default.
- W2126863553 countsByYear W21268635532021 @default.