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首页> 外文期刊>Journal of Agriculture and Rural Development in the Tropics and Subtropics >Changes in biochemical characteristics and Na and K content of caper (Capparis spinosa L.) seedlings under water and salt stress
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Changes in biochemical characteristics and Na and K content of caper (Capparis spinosa L.) seedlings under water and salt stress

机译:水和盐胁迫下钙(Capparis Spinosa L.)幼苗生物化学特征和Na和K含量的变化

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In order to investigate the effect of water and salt stress on caper (Capparis spinosa L.) seedlings, a randomized complete block design with five replications was carried out in 2013 at Shiraz University, Iran. Water stress had three levels: 100% (control), 75%, and 50% field capacity (FC), and five levels of salinity were applied: 0 (control), 4, 8, 12, and 18 dS m~(-1). The results indicated that salinity had a significantly negative effect on chlorophyll content of caper seedlings, while drought increased this content. The carotenoid content in caper seedlings under water and salinity stress was significantly increased. Proline and total protein content increased also under both salinity and water stress. Antioxidant enzyme activity; superoxide dismutase (SOD), catalase (CAT), peroxidase (POD) and ascorbate peroxidase (APX) also increased in response of salinity and drought. Salinity stress significantly increased the content of Na~+ in cells but decreased K~+ content. It seems that caper seedlings could tolerate a salinity level up to 4-8 dS m~(-1) as well as water stress of 75 % FC, no significant differences were observed between these two salinity levels, the water stress level and the control. The interaction effect of water stress and salinity had a significant effect on biochemical characteristics of caper. The highest content of carotenoid, proline and total protein content were obtained in 50 % FC and 18dS m~(-1).The results of biochemical characteristics and leaf content of K~+ and Na~+ suggest that caper plant is a very tolerant species to salinity and drought stress which make it a suitable crop for most arid and semi-arid regions of Iran.
机译:为了探讨水和盐胁迫对雀跃(Capparis Spinosa L.)幼苗的影响,2013年在Shiraz University进行了一种随机完全块设计,在2013年在伊朗。水分胁迫有三个水平:100%(对照),75%和50%的场地容量(Fc),施加5级盐度:0(对照),4,8,12和18ds m〜( - 1)。结果表明,盐度对钙蛋白幼苗的叶绿素含量显着产生了显着的负面影响,而干旱增加了这种含量。水和盐度胁迫下瓣膜幼苗的类胡萝卜素含量显着增加。脯氨酸和总蛋白质含量也在盐度和水胁迫下增加。抗氧化酶活性;超氧化物歧化酶(SOD),过氧化氢酶,过氧化物酶(POD)和抗坏血酸过氧化物酶(APX)也响应盐度和干旱。盐度应力显着增加了细胞中Na〜+的含量,但降低了K〜+含量。似乎刺柑幼苗可以耐受4-8ds m〜(-1)的盐度水平,以及75%Fc的水胁迫,在这两个盐度水平之间没有显着差异,水分胁迫水平和控制。水分胁迫和盐度的相互作用效应对夹蛋白的生化特征具有显着影响。在50%Fc和18ds m〜(-1)中获得了类胡萝卜素,脯氨酸和总蛋白质含量的最高含量。K〜+和Na +的生化特性和叶片含量的结果表明雀壶植物是非常宽容的盐度和干旱胁迫的种类使其成为伊朗最干旱和半干旱地区的合适作物。

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