
Potential lines of black rice crossing with Jeliteng variety and their reciprocals
Author(s) -
Nandariyah,
Endang Yuniastuti,
Edi Purwanto,
Rahmaniyah Dwi Astuti
Publication year - 2022
Publication title -
iop conference series. earth and environmental science
Language(s) - English
Resource type - Journals
eISSN - 1755-1307
pISSN - 1755-1315
DOI - 10.1088/1755-1315/1016/1/012017
Subject(s) - brown planthopper , black rice , brown rice , sowing , new variety , black spot , biology , agronomy , horticulture , cultivar , raw material , ecology , biochemistry , food science , gene
Climate change causes an increase in rice plant pests, one of them is brown planthopper. The effort through an assembly of black rice potential lines was made by mutation induction of Cempo Ireng black rice, but it’s only able to shorten the age of plant without being able to improve rice resistance to brown planthopper. Jeliteng as a new high yielding variety of black rice that is resistant to brown planthopper biotype 1 makes it worthy of being a potential parent source. Reciprocal crosses needed to be carried out to get offspring that have superior traits from both parents. This research aims to get F1 generation from the potential lines of black rice crossing with the Jeliteng variety and their reciprocals to improve local varieties of black rice. The research was conducted in the experimental field of the village of Gawanan, Sukoharjo Regency from August 2020 to April 2021. The planting materials were the Jeliteng variety as male parents while 6 potential lines of black rice 8, 13, 44, 46, 51, 52, and Cempo Ireng variety as female parents. Crosses were conducted by hand crossing technique on 14 sets. The data were analyzed descriptively and using the Chi-square test. The results showed that the crossing set could be crossed and produced fertile F1 generation. The length of grain, the width of grain, and the weight of a grain of the F1 varied in all sets. The skin colour of the F1 generation in all sets was mostly straw yellow with brown spots.