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greenhouse adjusted to 84 °F, and placed on heating pads set to 89 °F. Seeds of triploid watermelon were oriented with the radicle oriented upward to facilitate release of the seed coat ( Maynard, 1989 ). After seeds were sown, planting trays were placed on

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review Euphytica 89 3 325 337 10.1007/BF00022289 Stout, A. 1936 Seedlessness in grapes New York Agr. Expt. Sta. Tech. Bul. 238 Striem, M.J. Spiegel-Roy, P. Baron, J. Sahar, R. 1992 The degree of development of the seed-coat and

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, Gong C , Mohammed U , Liu W . 2020 . Genetic mapping and discovery of the candidate gene for black seed coat color in watermelon ( Citrullus lanatus ) . Front Plant Sci . 10 : 1689 . https://doi.org/10.3389/fpls.2019.01689 . Li B

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.1016/0048-3575(78)90058-5 Espelie, K.E. Davis, R.W. Kolattukudy, P.E. 1980 Composition, ultrastructure and function of the cutin- and suberin-containing layers in the leaf, fruit peel, juice-sac and inner seed coat of grapefruit ( Citrus paradisi Macfed

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-like protein required for flavonoid sequestration in vacuoles of the seed coat endothelium Plant Cell 13 4 853 871 doi: 10.1023/A:1024018729349 10.1105/tpc.13.4.853 Deguchi, A. Tatsuzawa, F. Hosokawa, M. Doi, M. Ohno, S. 2015 Tobacco streak

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. Chen, F. Dixon, R.A. 2020 Substrate specificity of LACCASE8 facilitates polymerization of caffeyl alcohol for C-Lignin biosynthesis in the seed coat of Cleome hassleriana Plant Cell 32 12 3825 3845 https://doi.org/10.1105/tpc.20.00598 Wei

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Effects of in vitro subculture on the physiological characteristics of adventitious root formation of Castanea mollissima cv ‘yanshanhong’ J. For. Res. 21 155 160 Kelly, K.M. Van Staden, J. Bell, W.E. 1992 Seed coat structure and dormancy Plant Growth

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-3054.1975.tb03882.x Murphy, J.B. Stanley, R. 1975 Increased germination rates of baldcypress and pondcypress seed following treatments affecting the seed coat Physiol. Plant. 35 135 139 doi: 10.1111/j.1399-3054.1975.tb03882.x 10.31018/jans.v7i2.715 Nayak, D

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Agricultural Statistics Service, Blackberry Statistics. 4 Feb. 2016. < http://www.nass.usda.gov/Statistics_by_Subject/?sector=CROPS > Wada, S. Reed, B.M. 2010 Seed coat morphology differentiates blackberry cultivars J. Amer. Pomol. Soc. 64 152 161 Wada, S

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. Kasai, A. Sano, T. Hong, J.S. MacFarlane, S. 2004 Patterning of virus-infected Glycine max seed coat is associated with suppression of endogenous silencing of chalcone synthase genes Plant Cell 16 4 807 818 https://doi.org/10.1105/tpc.019885

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