泰米尔纳德邦普都科泰地区千斤顶果种质的多样性

R. Jayavalli, S. J. R. Sheeba, K. Kumanan
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The genotypes KDM-AhJ 31 and KDM-AhJ 32 were produced during the main season (March-April, 2016-2019) and also during the off-season (September -November 2016-2019) production of jackfruit. The highest number of fruits per plant (43.33.00) was obtained from 08, followed by 31 (33.33). Maximum individual fruit weight was gained from 46 (16.33 kg) followed by 10 (14.33 kg), and a minimum of (4.67 kg) was observed that genotype 08 was suitable for small families. Yield varied from 62.67 kg/tree to 458.33. Yield was recorded from 10. The highest number of flakes per fruit was obtained from 10 (210.00). The highest Flakes: Seed ratio was obtained from 10 (5.30). Upper limit TSS content recorded to 08 (29.17° brix). The highest total sugar (25.20%), highest protein, lowest acidity (0.10%), and lowest ascorbic acid content were found to be 8. Maximum carotene content was recorded on KDM-AhJ- 46, followed by 8 and 10. Maximum color and appearance of 9.00 were obtained from the genotypes KDM-AhJ- 10. A maximum overall acceptability of 9.75 was observed by genotype 08, followed by 10 (9.00). Genotype 51, recorded for the TSS content of (6° brix) followed by the genotypes viz.,6, 18, 20, 21, 22, 24, 25, and 26 (7° brix), was found to have low TSS content, hence it is suitable for diabetic patients. Genotype 37 was identified for vegetable purposes in the immature stage, and ripened fruits were more suitable for table purposes. KDM-AhJ- 31 and 39 identified for thousand fruited jackfruit genotype. Flake color varied from white, yellow, whitish yellow, light yellow, bright yellow, and senthuram/deep orange. The genotypes KDM-AhJ-01, 4, 7, and 10 showed good deep orange (Senthuram color) flakes. Genotype 45 recorded pure white flakes that were very sweet in taste. The owner of this jackfruit farmer, S.Karthick, said this is for Seeni pala. Genotypes 17, 18, and 19 were identified for Tharaipala. 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引用次数: 0

摘要

本研究旨在开发千层塔品种。因此,在 2016-2019 年期间,对印度泰米尔纳德邦普杜科泰地区不同千层塔基因型的结果树进行了研究。研究选取了 55 个千层塔基因型,即 KDM-AhJ-01 至 KDM-AhJ-55,以确定优良基因型。记录了每个基因型的结果季节,并将其分为早季(3 月至 4 月)、中季(5 月至 6 月)和晚季(7 月至 8 月)。结果发现,基因型 46 属于中期结果(2016-2019 年,5-6 月)。同时,KDM-AhJ -08、KDM-AhJ -10和KDM-AhJ -35被发现具有晚熟生育期(2016-2019年7月至8月)。基因型 KDM-AhJ 31 和 KDM-AhJ 32 在柚子主产季(2016-2019 年 3-4 月)和淡季(2016-2019 年 9-11 月)均有生产。单株果实数最多的是 08 号(43.33.00),其次是 31 号(33.33)。单果重量最大的是 46 号(16.33 千克),其次是 10 号(14.33 千克),最小的是(4.67 千克),表明基因型 08 适合小家庭种植。产量从 62.67 公斤/棵到 458.33 公斤/棵不等。产量记录为 10。10 号的单果片数最高(210.00)。果片、种子比率最高的是 10(210.00):籽粒比最高的是 10 号(5.30)。TSS 含量上限为 08(29.17° brix)。总糖含量最高(25.20%)、蛋白质含量最高、酸度最低(0.10%)、抗坏血酸含量最低的是 8。KDM-AhJ- 46 的胡萝卜素含量最高,其次是 8 和 10。基因型 KDM-AhJ- 10 的色泽和外观达到 9.00。基因型 08 的总体可接受性最高,为 9.75,其次是 10(9.00)。基因型 51 的 TSS 含量为(6° brix),其次是基因型 6、18、20、21、22、24、25 和 26(7° brix)。基因型 37 在未成熟阶段被鉴定为蔬菜用,成熟后的果实更适合食用。KDM-AhJ- 31 和 39 被鉴定为千果菠萝基因型。果片颜色有白、黄、白黄、浅黄、亮黄和深橙色。基因型 KDM-AhJ-01、4、7 和 10 显示出良好的深橙色(Senthuram 色)果片。基因型 45 的果片为纯白色,口感非常甜。该柚农 S.Karthick 说,这是用于 Seeni pala 的。基因型 17、18 和 19 被确定为 Tharaipala 的基因型。55 种菠萝种质的薄片保质期差异明显。基因型 KDM-AhJ -08 和 KDM-Ah -10 的保质期为五天。在 55 个基因型中,每个基因型都存在多样性。根据无性系生长、产量和质量的总体表现,记录了鉴定优良基因型的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diversity of jack fruit germplasm in Pudukkottai district of Tamil Nadu
The present investigation was undertaken to develop a variety of jackfruit. Hence, the research was conducted on the bearing trees of different jackfruit genotypes in the Pudukkottai District of Tamil Nadu, India, during the year 2016-2019. Fifty-five jackfruit genotypes, viz., KDM-AhJ-01 to KDM-AhJ-55, were selected for the study to identify superior ones. The season of fruiting in each genotype was recorded and classified into early (March-April), mid-season (May-June), and late (July-August). The genotype 46 was found to be mid-season bearing (May-June, 2016-2019). Meanwhile, KDM-AhJ -08, KDM-AhJ -10, and KDM-AhJ -35 were found to have late season bearing (July to August 2016-2019). The genotypes KDM-AhJ 31 and KDM-AhJ 32 were produced during the main season (March-April, 2016-2019) and also during the off-season (September -November 2016-2019) production of jackfruit. The highest number of fruits per plant (43.33.00) was obtained from 08, followed by 31 (33.33). Maximum individual fruit weight was gained from 46 (16.33 kg) followed by 10 (14.33 kg), and a minimum of (4.67 kg) was observed that genotype 08 was suitable for small families. Yield varied from 62.67 kg/tree to 458.33. Yield was recorded from 10. The highest number of flakes per fruit was obtained from 10 (210.00). The highest Flakes: Seed ratio was obtained from 10 (5.30). Upper limit TSS content recorded to 08 (29.17° brix). The highest total sugar (25.20%), highest protein, lowest acidity (0.10%), and lowest ascorbic acid content were found to be 8. Maximum carotene content was recorded on KDM-AhJ- 46, followed by 8 and 10. Maximum color and appearance of 9.00 were obtained from the genotypes KDM-AhJ- 10. A maximum overall acceptability of 9.75 was observed by genotype 08, followed by 10 (9.00). Genotype 51, recorded for the TSS content of (6° brix) followed by the genotypes viz.,6, 18, 20, 21, 22, 24, 25, and 26 (7° brix), was found to have low TSS content, hence it is suitable for diabetic patients. Genotype 37 was identified for vegetable purposes in the immature stage, and ripened fruits were more suitable for table purposes. KDM-AhJ- 31 and 39 identified for thousand fruited jackfruit genotype. Flake color varied from white, yellow, whitish yellow, light yellow, bright yellow, and senthuram/deep orange. The genotypes KDM-AhJ-01, 4, 7, and 10 showed good deep orange (Senthuram color) flakes. Genotype 45 recorded pure white flakes that were very sweet in taste. The owner of this jackfruit farmer, S.Karthick, said this is for Seeni pala. Genotypes 17, 18, and 19 were identified for Tharaipala. The shelf life of flakes varied distinctly among the fifty-five jackfruit germplasms. The genotypes KDM-AhJ -08 and KDM-Ah -10 record for five days. Among the 55 genotypes, diversity was recorded for every genotype. Based on overall performance concerning vegetative growth, yield, and quality, characters were recorded to identify the superior genotypes.
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