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首页> 外文期刊>Assam Review and Tea News >Physiological Variations of Assam, China and Cambod Varieties of Tea (Camellia Sinensis L.)
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Physiological Variations of Assam, China and Cambod Varieties of Tea (Camellia Sinensis L.)

机译:阿萨姆邦和中国茶树的生理变化(茶树(Camellia Sinensis L.))

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Based on diversity and phenotypic characters the tea plants are broadly classified as Assam, China and Cambod varieties. The monthly mean of photosynthesis (Pn) of Assam (TV2), China (TV7) and Cambod varietis (TV22) was 6.28, 6.68 and 8.34 ^mol C02 nr2s-1 respectively. All clones assimilated more C02 in the month of September. Highest carbon was assimilated by Cambod and lowest by Assam variety while China variety showed an intermediate type in carbon assimilation efficiency. Transpiration loss (E) of TV2, TV7 and TV22 was 4.41, 3.58, 3.82 nmol nr2s1 respectively. Highest E 5.51 nmol m"2s"1 was in the month of July. Higher transpiration correlates with higher light intensity of the month. Water use efficiency (WUE) of Cambod clone TV22 was highest (2.44 jamol/ mmol m2s1) as compared to Assam variety TV2 (1.68 nmol/mmol nrrV) and China variety TV7 (2.17 |imol/mmol m-2s_1). Assam variety TV2 had the least WUE. High WUE of a variety confers better tolerance to drought as it can conserve more water inits cells to maintain high leaf water potential to regulate the metabolic activities during soil moisture stress. Light intensity (Photosynthetic photon flux density: PPFD) and leaf temperature of corresponding Pn, E and WUE were estimated and discussed. Considering the metabolic activities of photosynthesis, water use efficiency and transpiration loss it can be inferred that Cambod variety is more efficient for biosynthesis of carbohydrates.
机译:根据多样性和表型特征,将茶树大致分为阿萨姆邦,中国和坎波德两个品种。阿萨姆邦(TV2),中国(TV7)和变异柬埔寨(TV22)的光合作用(Pn)的月平均值分别为6.28、6.68和8.34 ^ mol CO2 nr2s-1。所有克隆在9月吸收了更多的CO2。最高的碳被Cambod吸收,最低的被Assam吸收,而China品种显示出中等的碳吸收效率。 TV2,TV7和TV22的蒸腾损失(E)分别为4.41、3.58、3.82 nmol nr2s1。最高的E 5.51 nmol m“ 2s” 1是在7月。较高的蒸腾与该月较高的光照强度相关。与阿萨姆邦品种TV2(1.68 nmol / mmol nrrV)和中国品种TV7(2.17 | imol / mmol m-2s_1)相比,Cambod克隆TV22的水分利用效率(WUE)最高(2.44 jamol / mmol m2s1)。阿萨姆邦电视2的WUE最少。各种品种的高水分利用效率赋予干旱更好的耐受性,因为它可以保留更多的水分进入其细胞,从而保持较高的叶片水势,以调节土壤水分胁迫期间的代谢活动。估算并讨论了相应的Pn,E和WUE的光强度(光合光子通量密度:PPFD)和叶片温度。考虑到光合作用的代谢活性,水分利用效率和蒸腾作用的损失,可以推断出Cambod品种对于碳水化合物的生物合成更为有效。

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