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首页> 外文期刊>Journal of Plant Nutrition >Activated antioxidant enzymes-reduced malondialdehyde concentration, and improved mineral uptake-promoted watermelon seedlings growth under boron deficiency
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Activated antioxidant enzymes-reduced malondialdehyde concentration, and improved mineral uptake-promoted watermelon seedlings growth under boron deficiency

机译:活化的抗氧化酶降低了丙二醛的浓度,并改善了缺硼条件下矿物质的吸收,促进了西瓜幼苗的生长

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摘要

Although boron deficiency (BD) is a drastic disorder to the agriculture crops, its effects on watermelon still unknown. Therefore, the present study investigates the effect of BD (0 and 0.5mg L-1) on different morphological, physiological and biochemical traits, and mineral uptake during early seedlings stage of watermelon. B-deficiency induced leaf chlorosis in watermelon initiated from the leaf margins and tips. Despite that, BD increased shoot length, and root and shoot dry weight of BD-watermelon seedlings. BD decreased leaf chlorophyll and carotenoid contents, and photosynthetic parameters without affecting quantum yield of PSII. BD significantly inhibited total soluble protein accumulation, while leaf proline content was unaffected. A significant increase in antioxidant enzyme activities in response to higher hydrogen peroxide (H2O2) generation could possibly reduced lipid peroxidation and promoted BD-watermelon plant growth. BD influenced mineral uptake variously: the induction of phosphorus (P) and zinc (Zn), and the preservation of potassium (K), calcium (Ca) and molybdenum (Mo) levels in the leaves could maintain watermelon growth; while, the inhibition of magnesium (Mg) uptake seemed to be responsible for suppressed leaf chlorophyll and photosynthesis. These results would further help in understanding the physiological pathways and mechanisms associated with BD especially in watermelon, and provide database for fertilizer recommendations in B-deficient areas.
机译:尽管缺硼(BD)对农作物而言是一种严重的疾病,但其对西瓜的影响仍未知。因此,本研究探讨了BD(0和0.5mg L-1)对西瓜早期苗期不同形态,生理生化特性和矿物质吸收的影响。 B缺乏导致西瓜叶绿化从叶缘和叶尖开始。尽管如此,BD会增加BD西瓜幼苗的茎长,根和茎干重。 BD降低了叶绿素和类胡萝卜素的含量,并降低了光合参数,但不影响PSII的量子产率。 BD显着抑制总可溶性蛋白质积累,而叶片脯氨酸含量不受影响。响应更高的过氧化氢(H2O2)产生,抗氧化酶活性的显着增加可能会减少脂质过氧化并促进BD-西瓜植物的生长。 BD对矿物质的吸收有不同的影响:磷(P)和锌(Zn)的诱导以及叶片中钾(K),钙(Ca)和钼(Mo)的保存可以维持西瓜的生长;同时,抑制镁(Mg)的吸收似乎是抑制叶绿素和光合作用的原因。这些结果将进一步帮助理解与BD有关的生理途径和机制,特别是西瓜中的BD,并为缺乏硼的地区提供肥料建议数据库。

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