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首页> 外文期刊>Indian Journal of Horticulture >Relationship of pseudostem cross-sectional area with bunch weight, fruit quality and nutrient status in banana cv. Rasthali (Pathkapoora - AAB).
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Relationship of pseudostem cross-sectional area with bunch weight, fruit quality and nutrient status in banana cv. Rasthali (Pathkapoora - AAB).

机译:香蕉简历假茎截面积与束重,果实品质和营养状况的关系。拉斯塔利(Pathkapoora-AAB)。

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摘要

A field experiment was conducted during 2005-07 to find out the relationship between pseudostem cross-sectional area (PCA) with bunch weight, physico-chemical characteristics of banana fruit, dry matter and nutrient content in leaf, pseudostem and fruit of banana. The pseudostem cross-sectional area (321.58, 327.96, 338.31, 344.20, 348.82, 354.14, 365.57, 376.49, 386.18 and 396.70 cm2) were calculated at 30 cm above the ground level. The bunch weight and physico-chemical properties of fruits improved with increasing the pseudostem cross sectional area from 321.58 to 396.70 cm2. Maximum bunch weight (13.22 kg), number of hands and finger (8.2 and 104.65/bunch), TSS (24.97 degrees Brix), TSS/acid ratio (227.00); leaf, fruit and pseudostem dry matter content (30.50, 27.58 and 9.42% respectively), leaf nutrient content (N-2.21%, P-0.21% and K-2.04% respectively), fruit nutrient (N-1.16%, P-0.079% and K-1.23% respectively) and pseudostem nutrient content (N-0.66%, P-0.042% and K-1.16%) were recorded in plants with maximum pseudostem cross sectional area. Positive and linear relationship were recorded between pseudostem cross-sectional area and bunch weight, number of fingers, TSS and TSS/acid ratio, whereas negative correlation was observed between pseudostem cross-sectional area and fresh and ripe finger weight, peel and pulp weight and fruit acidity. The maximum fresh and ripe finger weight (152.23 and 137.45 g/finger), peel and pulp weight (18.24 and 119.21 g/finger), finger size (14.75x4.38 cm) and titratable acidity (0.16%) were recorded with lowest trunk cross-sectional area.
机译:在2005-07年度进行了田间试验,以查明假茎截面积(PCA)与束重,香蕉果实的理化特性,干物质以及香蕉,假茎和香蕉果实中养分含量之间的关系。在距地面30 cm处计算出假茎截面积(321.58、327.96、338.31、344.20、348.82、354.14、365.57、376.49、386.18和396.70 cm 2 )。假茎截面积从321.58增加到396.70 cm 2 ,果实的束重和理化特性得到改善。最大束重(13.22公斤),手和手指数(8.2和104.65 /束),TSS(白利糖度24.97度),TSS /酸比(227.00);叶片,果实和假茎干物质含量(分别为30.50、27.58和9.42%),叶片养分含量(分别为N-2.21%,P-0.21%和K-2.04%),水果营养素(N-1.16%,P-0.079)在具有最大假茎截面积的植物中记录到分别为%和K-1.23%)和假茎营养素含量(N-0.66%,P-0.042%和K-1.16%)。假茎横断面积与束重,手指数,TSS和TSS /酸比之间呈正相关和线性关系,而假茎横断面积与新鲜和成熟的指重,果皮和果肉重量和负相关。水果酸度。记录的新鲜和成熟手指最大重量(152.23和137.45 g /手指),果皮和果肉重量(18.24和119.21 g /手指),手指大小(14.75x4.38 cm)和可滴定酸度(0.16%),最低躯干横截面面积。

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