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991.
Xiao-feng YUE Yan-lun JU Zi-zhu TANG Ya-meng ZHAO Xu-liang JIAO Zhen-wen ZHANG 《农业科学学报》2019,18(9):2052-2062
The effects of the severity and timing of leaf removal(LR) on the amino acids of Sauvignon Blanc grapes and wines were studied during the 2017 growing season. High-performance liquid chromatography(HPLC) was used to analyze the amino acids profiles of grape berries and wines. The basal leaves were removed at three time points(40, 56 and 72 days after flowering, named LR40, LR56 and LR72, respectively) at two severity levels(one at which the first, third, and fifth basal leaves of each shoot were removed(50% level); and another at which the first six basal leaves were removed(100% level)). The results showed that leaf removal had little impact on total soluble solids(°Brix), titratable acidity, pH or berry weight. The LR72-50% treated grapes had higher berry weight, titratable acidity and °Brix than those of the other treatments. The highest concentrations of total amino acids and of total amino acids except proline were detected in LR72-50% treated grapes(2 952.58 and 2 764.36 mg L~(-1), respectively); the lowest were detected in LR72-100% treated grapes(2 172.82 and 2 038.71 mg L~(-1), respectively). LR72-50% treatment significantly promoted the synthesis of aspartic acid, serine, arginine, alanine, aminobutyric acid and proline at both severity levels for grapes, the concentrations of all of these amino acids were increased relative to the control concentrations. The LR72-50%, LR40-100% and LR72-100% treated wines had higher total amino acids concentrations and higher concentrations of some individual amino acids, such as arginine, alanine and serine, than did the control wines. Of all the amino acids studied, glycine, tyrosine, cysteine, methionine and lysine were not significantly influenced by the timing or severity basal defoliation in grapes and wines. The present study reveals the effects of the timing and severity of leaf removal on the amino acids profiles of grapes and wines. 相似文献
992.
Cadmium (Cd) intake is harmful to human health and Cd contamination in rice grains represents a severe threat to those consuming rice as a staple food. Knockout of Cd transporters is a promising strategy to reduce Cd accumulation in rice grains. OsNRAMP5 is the major transporter for Cd and manganese (Mn) uptake in rice. Nevertheless, it is uncertain whether knockout of OsNRAMP5 is applicable to produce low Cd rice without affecting plant growth and grain yield. In this study, we adopted CRISPR/Cas9-based gene editing technology to knock out OsNRAMP5 in two japonica varieties. We generated three independent transgene-free osnramp5 mutants and investigated the effect of osnramp5 mutations on Cd accumulation and plant growth. Hydroponic experiments showed that plant growth and chlorophyll content were significantly reduced in osnramp5 mutants at low Mn conditions, and this defective growth in the mutants could be fully rescued by supply of high levels of Mn. Cd and Mn accumulation in both roots and shoots was markedly reduced in the mutants compared to that in wild-type plants. In paddy field experiments, although Cd in flag leaves and grains was greatly reduced in osnramp5 mutants, some agronomic traits including plant height, seed setting rate, and grain number per panicle were affected in the mutants, which ultimately caused a mild reduction in grain yield. The reduced plant growth in the mutants can be attributed to a marked decrease in Mn accumulation. Our results reveal that the manipulation of OsNRAMP5 should be treated with caution: When assessing the applicability of osnramp5 mutants, soil pH and soil water content in paddy fields need to be taken into consideration, since they might affect the levels of available Mn in the soil and consequently determine the effect of the mutation on grain yield. 相似文献
993.
994.
探究链霉菌30702复合壳聚糖对番木瓜环斑病毒病(papaya ringspot virus,PRSV)的防控效果,为番木瓜环斑花叶病防治提供基础。以台农二号番木瓜为材料,壳聚糖设3个浓度1.0g/L、0.5g/L、0.25g/L;30702菌液2个浓度0 cfu/L和4.2×10 6cfu/L,互相组合为6个处理,以清水处理为空白组,宁南霉素0.05 g/L为对照组,共8个处理;运用分光光度计法测量相关酶活。1.0 g/L壳聚糖复合4.2×106 cfu/L链霉菌30702的防治效果为88.6(p<0.05),显著高于其他组;壳聚糖复合链霉菌30702组的防治效果、超氧化物歧化酶(SOD)活性、过氧化物酶(POD)活性、多酚氧化酶(PPO)活性相较于单独使用壳聚糖组有显著提升。使用1.0 g/L壳聚糖复合4.2×106 cfu/L的30702对番木瓜防控PRSV的效果最好,防治指数达到88.6%。 相似文献
995.
996.
组合盆栽是园艺之花卉栽培、插花技艺、盆景制作的完美结合,它主要是通过艺术配置的手法,将几种不同种类的观赏植物组合设计同植在一个容器内,组合盆栽比插花观赏性强、生命力强,比盆景制作周期短、制作难度小,更易出成品,适合家庭用,适合推广普及。 相似文献
997.
西府海棠锈病是危害西府海棠的最重要病害,造成叶片枯黄、早落,影响次年的开花与结果。本研究,分析了近年来病害严重发生的环境影响因素,并提出防治技术方案。 相似文献
998.
999.
本文通过整理右旗1969—2018年气温逐年气象观测资料,对右旗近50a平均气温年际变动、季节性变化趋势、突变特点展开研究。得出结论:50a来右旗温度呈0.39℃/10a的速度增加,在20世纪九十年代之后増温明显,且有显著的阶段性波动特点。季节性气温都是以不同速度在增加,春季平均气温增加发展趋势在四季中极为明显。由最高气温季节平均值可知,春季最大,其次秋季夏季冬季,由此可知,最低温度季节性均值是春季最大,其次夏季秋季冬季。年和四季平均最低气温的增加波动,使得平均气温日较差呈减小态势。 相似文献
1000.
以紫斑牡丹种子为研究对象,研究不同质量浓度(0、0.025、0.050、0.075、0.100 g·mL-1)的种皮和胚乳水浸提液对白菜、小麦和绿豆种子萌发、幼苗生长和幼苗的抗氧化酶活性的影响,探究紫斑牡丹种子内源抑制物质的活性,为进一步研究紫斑牡丹种子休眠机理提供理论依据。结果表明:紫斑牡丹种皮和胚乳中均含有抑制受体植物种子萌发和幼苗生长的物质,且同一质量浓度下,胚乳浸提液的抑制作用强于种皮浸提液;种皮和胚乳浸提液对白菜幼苗生长的抑制作用高于小麦和绿豆;种皮和胚乳浸提液对3种受体植物幼苗根长的抑制作用大于苗高和鲜质量;种皮和胚乳浸提液对3种受体植物幼苗的SOD、CAT和POD活性均产生了一定的影响。其中,随着种皮浸提液质量浓度的提高,受体植物幼苗SOD、POD活性先上升后下降,而CAT活性持续下降;加入胚乳浸提液后,受体植物幼苗的CAT、POD活性与对照相比显著下降,SOD活性则依然随着胚乳浸提液质量浓度的升高而表现出先上升后下降的趋势。由结果可知,紫斑牡丹种皮和胚乳浸提液中均含有能抑制受体植物种子萌发和幼苗生长的物质,并且能够影响受体幼苗的抗氧化酶活性,但是紫斑牡丹种皮和胚乳内源抑制物质的活性存在一定的差异。 相似文献