Matches in SemOpenAlex for { <https://semopenalex.org/work/W2991147029> ?p ?o ?g. }
- W2991147029 endingPage "109036" @default.
- W2991147029 startingPage "109036" @default.
- W2991147029 abstract "The content of bioactive compounds and fruit yield in chilli is varying with the genetic and environmental factors. Increase the productivity of chilli pepper over the environments or under different temperature stress conditions, with enhance the bioactive compound contents in fruit for their industrial use in the International market, is a primary goal of plant breeder worldwide. To achieve this target, three newly developed cytoplasmic male sterile (CMS) lines and 20 potential restorer lines were crossed in a line × tester mating design to develop 60 F1 hybrids. Eighty-five progenies including 60 F1 hybrids, 23 parents and two commercial cultivars were evaluated for 15 plant growth, yield and quality traits with special focus on seed number and bioactive compounds, such as ascorbic acid, capsaicin content over three different temperature regimes, low temperature condition (the early season, E1), normal temperature condition (the main season, E2), and high temperature condition (the late season, E3). Percent heterosis was estimated over better parent and two commercial checks. The mean squares (MS) due to genotypes, environments and G × E interaction were significant for all the traits, except for G × E interaction for 1000 seed weight. The maximum, the mean and the widest range of better parent heterosis was expressed for total yield plant−1, which was mainly contributed by the number of fruits plant−1. A wide range of variability for plant growth, fruit and quality traits offered opportunity to select hybrids for different seasons such as early (E1), main (E2) and late (E3), and for varied purposes such as for fresh consumptions, powder making, and oleoresin and capsaicin extraction. In E1, the hybrids CMS463D13A × DL 161 and CMS463D13A × C 142, and in E2 and E3, the hybrids CMS463D13A × SL 475 and CMS4626A × SL 475 have been identified as promising with higher yield, and for extraction of oleoresin and capsaicin. Overall, the hybrids CMS463D13A × SL 475, CMS463D13A × VR 523, CMS463D13A × YL 581 and CMS463D13A × IS 268 performed significantly better than the commercial checks for yield and quality traits, and thus have the potential to be exploited for commercial cultivation." @default.
- W2991147029 created "2019-12-05" @default.
- W2991147029 creator A5023588689 @default.
- W2991147029 creator A5058132558 @default.
- W2991147029 creator A5089180803 @default.
- W2991147029 date "2020-02-01" @default.
- W2991147029 modified "2023-10-16" @default.
- W2991147029 title "Heterosis breeding in chilli pepper by using cytoplasmic male sterile lines for high-yield production with special reference to seed and bioactive compound content under temperature stress regimes" @default.
- W2991147029 cites W1168290525 @default.
- W2991147029 cites W1513379478 @default.
- W2991147029 cites W1746163278 @default.
- W2991147029 cites W1947731614 @default.
- W2991147029 cites W1956372958 @default.
- W2991147029 cites W1969216281 @default.
- W2991147029 cites W1973328075 @default.
- W2991147029 cites W1987970929 @default.
- W2991147029 cites W1988929136 @default.
- W2991147029 cites W1991964168 @default.
- W2991147029 cites W1996846304 @default.
- W2991147029 cites W2003665762 @default.
- W2991147029 cites W2004836692 @default.
- W2991147029 cites W2013600984 @default.
- W2991147029 cites W2014624415 @default.
- W2991147029 cites W2016529551 @default.
- W2991147029 cites W2016543908 @default.
- W2991147029 cites W2018811213 @default.
- W2991147029 cites W2021350938 @default.
- W2991147029 cites W2026920551 @default.
- W2991147029 cites W2027273145 @default.
- W2991147029 cites W2028306725 @default.
- W2991147029 cites W2029207613 @default.
- W2991147029 cites W2029651393 @default.
- W2991147029 cites W2034458389 @default.
- W2991147029 cites W2036795689 @default.
- W2991147029 cites W2036811845 @default.
- W2991147029 cites W2037431697 @default.
- W2991147029 cites W2037504035 @default.
- W2991147029 cites W2038065285 @default.
- W2991147029 cites W2046413529 @default.
- W2991147029 cites W2048795636 @default.
- W2991147029 cites W2049086148 @default.
- W2991147029 cites W2050028164 @default.
- W2991147029 cites W2051756717 @default.
- W2991147029 cites W2052382929 @default.
- W2991147029 cites W2054804346 @default.
- W2991147029 cites W2055811191 @default.
- W2991147029 cites W2063885257 @default.
- W2991147029 cites W2065904569 @default.
- W2991147029 cites W2066733049 @default.
- W2991147029 cites W2070903247 @default.
- W2991147029 cites W2074177375 @default.
- W2991147029 cites W2075514650 @default.
- W2991147029 cites W2075532109 @default.
- W2991147029 cites W2086332374 @default.
- W2991147029 cites W2086614613 @default.
- W2991147029 cites W2086644309 @default.
- W2991147029 cites W2094771196 @default.
- W2991147029 cites W2097255068 @default.
- W2991147029 cites W2103476451 @default.
- W2991147029 cites W2105286889 @default.
- W2991147029 cites W2110964594 @default.
- W2991147029 cites W2111849040 @default.
- W2991147029 cites W2115605381 @default.
- W2991147029 cites W2123907963 @default.
- W2991147029 cites W2124146642 @default.
- W2991147029 cites W2131316342 @default.
- W2991147029 cites W2133496496 @default.
- W2991147029 cites W2134675906 @default.
- W2991147029 cites W2145424717 @default.
- W2991147029 cites W2147860048 @default.
- W2991147029 cites W2161972691 @default.
- W2991147029 cites W2163902028 @default.
- W2991147029 cites W2167623879 @default.
- W2991147029 cites W2168170226 @default.
- W2991147029 cites W2170784230 @default.
- W2991147029 cites W2184713141 @default.
- W2991147029 cites W2188269104 @default.
- W2991147029 cites W2189618384 @default.
- W2991147029 cites W2258184229 @default.
- W2991147029 cites W2314534972 @default.
- W2991147029 cites W2320850532 @default.
- W2991147029 cites W2321630596 @default.
- W2991147029 cites W2337905944 @default.
- W2991147029 cites W2517106844 @default.
- W2991147029 cites W2524614646 @default.
- W2991147029 cites W2530673327 @default.
- W2991147029 cites W2590957564 @default.
- W2991147029 cites W2622006512 @default.
- W2991147029 cites W2766578340 @default.
- W2991147029 cites W2888609525 @default.
- W2991147029 cites W2964952978 @default.
- W2991147029 cites W4233561689 @default.
- W2991147029 cites W4292201186 @default.
- W2991147029 cites W2025397722 @default.
- W2991147029 doi "https://doi.org/10.1016/j.scienta.2019.109036" @default.
- W2991147029 hasPublicationYear "2020" @default.
- W2991147029 type Work @default.
- W2991147029 sameAs 2991147029 @default.