首页> 外文期刊>Trees. Structure and Function >Effects of boron toxicity on root and leaf anatomy in two Citrus species differing in boron tolerance
【24h】

Effects of boron toxicity on root and leaf anatomy in two Citrus species differing in boron tolerance

机译:硼毒性对两种耐硼性不同的柑橘根和叶解剖的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Key message Typical toxic symptom only occurred in B-toxic C. grandis leaves. B-toxicity induced PCD of C. grandis leaf phloem tissue. The lower leaf free B might contribute to the higher B-tolerance of C. sinensis.Seedlings of 'Xuegan' (Citrus sinensis) and 'Sour pummelo' (Citrus grandis) differing in boron (B)-tolerance were irrigated with nutrient solution containing 10 (control) or 400 (B-toxic) mu M H3BO3 for 15 weeks. Thereafter, the effects of B-toxicity on leaf photosynthesis, chlorophyll, plant B absorption and distribution, root and leaf anatomy were investigated to elucidate the possible B-tolerant mechanisms of Citrus plants. Typical toxic symptom only occurred in B-toxic C. grandis leaves. Similarly, B-toxicity only affected C. grandis photosynthesis and chlorophyll. Although total B concentration in B-toxic roots and leaves was similar between the two species, leaves from B-toxic C. grandis plant middle had higher free B and lower bound B as compared with those from C. sinensis. Effects of B-toxicity on leaf structure were mainly limited to the mesophyll cells and the phloem of leaf veins. Although irregular cell wall thickening was observed in leaf cortex cells and phloem tissue of B-toxic C. grandis and C. sinensis leaves, exocytosis only occurred in the companion cells and the parenchyma cells of B-toxic C. sinensis leaf phloem. Also, B-toxicity induced cell death of phloem tissue through autophagy in C. grandis leaf veins. B-toxicity caused death of root epidermal cells of the two Citrus species. B-toxicity restrained degradation of middle lamella, but did not alter ultrastructure of Golgi apparatus and mitochondria in root elongating zone cells. In conclusion, C. sinensis was more tolerant to B-toxicity than C. grandis. The lower leaf free B and higher bound B might contribute to the higher B-tolerance of C. sinensis
机译:关键信息典型的中毒症状仅发生在B毒性的C. grandis叶片中。 B毒性诱导了C. grandis叶韧皮部组织的PCD。较低的叶片游离B可能有助于中华绒螯蟹的较高的B耐性。用含氮的营养液灌溉不同耐硼性的'Xuegan'(Citrus sinensis)和'Sour pummelo'(Citrus grandis)的幼苗。 10(对照)或400(B毒性)μM H3BO3,持续15周。此后,研究了B毒性对叶片光合作用,叶绿素,植物B吸收和分布,根和叶解剖结构的影响,以阐明柑橘植物可能的B耐受机制。典型的毒性症状仅发生在对B有害的C. grandis叶片中。同样,B毒性仅影响大棒梭菌的光合作用和叶绿素。尽管两个物种中B毒根和叶中的总B浓度相似,但与C. sinensis相比,来自B毒龙胆植物中间的叶片具有较高的游离B和较低的结合B。 B毒性对叶片结构的影响主要限于叶肉细胞和叶脉韧皮部。尽管在B毒梭状芽胞杆菌和中华绒螯蟹叶片的叶皮层细胞和韧皮部组织中观察到不规则的细胞壁增厚,但胞吐作用仅发生在B毒梭状芽孢杆菌叶片的韧皮部的陪伴细胞和实质细胞中。而且,B毒性通过巨噬梭状芽叶静脉中的自噬诱导了韧皮部组织的细胞死亡。 B毒性导致两种柑橘属植物的根表皮细胞死亡。 B毒性抑制了中间层的降解,但并未改变根伸长区细胞中高尔基体和线粒体的超微结构。总而言之,中华绒螯蟹比大中华绒螯蟹对B毒性的耐受性更高。较低的叶片游离B和较高的结合B可能有助于中华锦葵的较高B耐性

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号